Chinese Journal of Organic Chemistry ›› 2021, Vol. 41 ›› Issue (11): 4255-4278.DOI: 10.6023/cjoc202103044 Previous Articles Next Articles
REVIEWS
收稿日期:
2021-03-24
修回日期:
2021-06-14
发布日期:
2021-07-12
通讯作者:
郑彩娟
基金资助:
Weinü Zeng, Guolei Huang, Bin Wang, Jin Cai, Caijuan Zheng()
Received:
2021-03-24
Revised:
2021-06-14
Published:
2021-07-12
Contact:
Caijuan Zheng
Supported by:
Share
Weinü Zeng, Guolei Huang, Bin Wang, Jin Cai, Caijuan Zheng. Secondary Metabolites and Bioactivities of Penicillium sp. Sourced from Mangrove from 2007 to 2020[J]. Chinese Journal of Organic Chemistry, 2021, 41(11): 4255-4278.
Plant species | Isolated fungi | Site | Ref. |
---|---|---|---|
Rhizospheric soil of mangrove plants | Penicillium javanicum HK1-22 Penicillium sp. HK1-22 Penicillium janthinellum HK1-6 Penicillium sp. SYFz-1 Penicillium sp. SCSIO041218 Penicillium pinophilum SCAU037 Penicillium pinophilum H608 Penicillium camemberti OUCMDZ-1492 Penicillium herquei MA-370 Penicillium polonicum H175 Penicillium polonicum MCCC3A00951 | 海南东寨港自然保护区 海南东寨港自然保护区 海南 海南三亚 三亚 中国特呈岛 厦门 海南文昌 海南 福建张江口 福建张江口 | [ [ [ [ [ [ [ [ [ [ [ |
Kandelia candel | Penicillium commune QQF-3 Penicillium aculeatum No. 9EB Penicillium chermesinum ZH4-E2 Penicillium sp. sk5GW1L Penicillium sp. sk14JW2P Penicillium sp. (SBE-8) Penicillium citrinum QJF-22 | 广东 广东阳江 广东 广西 广西 香港 海南海口 | [ [ [ [ [ [ [ |
Bruguiera sexangula var. rhynchopetala | Penicillium sp. TGM112 Penicillium citrinum HL-5126 Penicillium simplicissimum MA-332 Penicillium sp. (J41221) | 海南东寨港自然保护区 海南东寨港自然保护区 海南 海南东寨港自然保护区 | [ [ [ [ |
Bruguiear gymnorrhiza | Penicillium sp. GD6 Penicillium thomi Penicillium sp. MA-37 | 广州湛江 广西 海南 | [ [ [ |
Avicennia marina | Penicillium brocae MA-231 Penicillium sp. FJ-1 Penicillium brocae MA-192 Penicillium sp. ZH16 Penicillium citrinum | 海南 福建 海南 海南东寨港自然保护区 福建 | [ [ [ [ [ |
Acanthus ilicifolius | Penicillium chrysogenum HND11-24 Penicillium dipodomyicola HN4-3A Penicillium sp. (ZZF 32#) Penicillium sp. 299# Penicillium sp. FJ-1 | 海南 海南 广东湛江 海南 海南 | [ [ [ [ [ |
Rhizophora stylosa | Penicillium oxalicum EN-201 Penicillium solitum GWQ-143 | 海南 / | [ [ |
Cerbera manghas | Penicillium sp. HN29-3B1 | 海南东寨港自然保护区 | [ |
Plant species | Isolated fungi | Site | Ref. |
Aegiceras corniculatum | Penicillium sp. JP-1 Penicillium sp. (strain HKI0459) | 福建 福建厦门 | [ [ |
Sonneratia caseolaris | Penicillium janthinellum HDN13-309 | 海南 | [ |
Ceriouiopps tagal | Penicillium sp. J-54 Penicillium sp. JY246 | 海南东寨港自然保护区 南海 | [ [ |
Lumnitzera racemosa | Penicillium sumatrense MA-92 Penicillium bilaiae MA-267 | 海南文昌 海南 | [ [ |
Myoporum bontioides | Penicillium chrysogenum V11 | 中国雷州半岛 | [ |
Laguncularia racemose | Penicillium coffeae MA-314 | 海南岛 | [ |
Sonneratia apetala | Penicillium sp. ZJ-SY2 | 广东 | [ |
Hibiscus tiliaceus | Penicillium aurantiogriseum 328# Penicillium commune G2M | 广东 海南 | [ [ |
Heritiera littoralis | Penicillium chermesinum strain HLit-ROR2 Penicillium sp. YYSJ-3 | 泰国 广东珠海 | [ [ |
Excoecaria agallocha | Penicillium expansum 091006 Penicillium sp. Y2-2-1 | 海南文昌 广东广州 | [ [ |
Bruguiera sexangula | Penicillium sp. 091402 | 海南 | [ |
Penicillium sp. 303 # | 广东湛江 | [ | |
Penicillium variabile | 福建 | [ |
Plant species | Isolated fungi | Site | Ref. |
---|---|---|---|
Rhizospheric soil of mangrove plants | Penicillium javanicum HK1-22 Penicillium sp. HK1-22 Penicillium janthinellum HK1-6 Penicillium sp. SYFz-1 Penicillium sp. SCSIO041218 Penicillium pinophilum SCAU037 Penicillium pinophilum H608 Penicillium camemberti OUCMDZ-1492 Penicillium herquei MA-370 Penicillium polonicum H175 Penicillium polonicum MCCC3A00951 | 海南东寨港自然保护区 海南东寨港自然保护区 海南 海南三亚 三亚 中国特呈岛 厦门 海南文昌 海南 福建张江口 福建张江口 | [ [ [ [ [ [ [ [ [ [ [ |
Kandelia candel | Penicillium commune QQF-3 Penicillium aculeatum No. 9EB Penicillium chermesinum ZH4-E2 Penicillium sp. sk5GW1L Penicillium sp. sk14JW2P Penicillium sp. (SBE-8) Penicillium citrinum QJF-22 | 广东 广东阳江 广东 广西 广西 香港 海南海口 | [ [ [ [ [ [ [ |
Bruguiera sexangula var. rhynchopetala | Penicillium sp. TGM112 Penicillium citrinum HL-5126 Penicillium simplicissimum MA-332 Penicillium sp. (J41221) | 海南东寨港自然保护区 海南东寨港自然保护区 海南 海南东寨港自然保护区 | [ [ [ [ |
Bruguiear gymnorrhiza | Penicillium sp. GD6 Penicillium thomi Penicillium sp. MA-37 | 广州湛江 广西 海南 | [ [ [ |
Avicennia marina | Penicillium brocae MA-231 Penicillium sp. FJ-1 Penicillium brocae MA-192 Penicillium sp. ZH16 Penicillium citrinum | 海南 福建 海南 海南东寨港自然保护区 福建 | [ [ [ [ [ |
Acanthus ilicifolius | Penicillium chrysogenum HND11-24 Penicillium dipodomyicola HN4-3A Penicillium sp. (ZZF 32#) Penicillium sp. 299# Penicillium sp. FJ-1 | 海南 海南 广东湛江 海南 海南 | [ [ [ [ [ |
Rhizophora stylosa | Penicillium oxalicum EN-201 Penicillium solitum GWQ-143 | 海南 / | [ [ |
Cerbera manghas | Penicillium sp. HN29-3B1 | 海南东寨港自然保护区 | [ |
Plant species | Isolated fungi | Site | Ref. |
Aegiceras corniculatum | Penicillium sp. JP-1 Penicillium sp. (strain HKI0459) | 福建 福建厦门 | [ [ |
Sonneratia caseolaris | Penicillium janthinellum HDN13-309 | 海南 | [ |
Ceriouiopps tagal | Penicillium sp. J-54 Penicillium sp. JY246 | 海南东寨港自然保护区 南海 | [ [ |
Lumnitzera racemosa | Penicillium sumatrense MA-92 Penicillium bilaiae MA-267 | 海南文昌 海南 | [ [ |
Myoporum bontioides | Penicillium chrysogenum V11 | 中国雷州半岛 | [ |
Laguncularia racemose | Penicillium coffeae MA-314 | 海南岛 | [ |
Sonneratia apetala | Penicillium sp. ZJ-SY2 | 广东 | [ |
Hibiscus tiliaceus | Penicillium aurantiogriseum 328# Penicillium commune G2M | 广东 海南 | [ [ |
Heritiera littoralis | Penicillium chermesinum strain HLit-ROR2 Penicillium sp. YYSJ-3 | 泰国 广东珠海 | [ [ |
Excoecaria agallocha | Penicillium expansum 091006 Penicillium sp. Y2-2-1 | 海南文昌 广东广州 | [ [ |
Bruguiera sexangula | Penicillium sp. 091402 | 海南 | [ |
Penicillium sp. 303 # | 广东湛江 | [ | |
Penicillium variabile | 福建 | [ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year |
---|---|---|---|---|
1~5 | A. marina | S. aureus: 0.25~32.0 μg/mL (except 4); Gaeumannomyces graminis: 0.25~64.0 μg/mL (except 4) Micrococcus luteus: 0.25 μg/mL (3); | Hainan | 2015[ |
6~11 | A. marina | DU145/HeLa/HepG2/MCF-7/NCI-H460/SGC-7901/ SW1990/SW480/U251: 0.89~9 μmol/L (except 8/9) | Hainan | 2014[ |
12~15 | A. marina | E. coli/A. hydrophilia/V. harveyi/V. parahaemolyticus: 16.0~32.0 μg/mL (14/15) | Hainan | 2017[ |
16~18 | A. marina | E. coli/A. hydrophilia/V. harveyi: 16.0~64.0 μg/mL (16); E. coli/A. hydrophilia/V. harveyi: 32 μg/mL (18) | Hainan | 2016[ |
19 | A. marina | S. aureus: 0.25 μg/mL | Hainan | 2016[ |
20~27 | Root of S. caseolaris | SOD2/HO-1: 10 μmol/L (22/23) | Hainan | 2020[ |
28~33 | Root of S. caseolaris | HeLa: 0.3~3.9 μmol/L (28~30); HL-60: 0.1~1.6 μmol/L (28~30) | Hainan | 2017[ |
34~41 | Stem of A. corniculatum | BKCa: (34, 35, 37) | Fujian | 2007[ |
42 | Rhizospheric soil of mangrove plant | H1N1: 28.3 μmol/L | Hainan | 2013[ |
43 | Rhizospheric soil of mangrove Plant | H1N1: 38.9 μmol/L | Hainan | 2013[ |
44 | Rhizospheric soil of mangrove plant | H1N1: 32.2 μmol/L | Hainan | 2013[ |
45 | Rhizospheric soil of mangrove plant | / | Hainan | 2013[ |
46 | Rhizospheric soil of mangrove plant | H1N1: 73.3 μmol/L | Hainan | 2013[ |
47 | Rhizospheric soil of mangrove plant | H1N1: 34.1 μmol/L | Hainan | 2013[ |
48 | Rhizospheric soil of mangrove plant | / | Hainan | 2018[ |
49 | Rhizospheric soil of mangrove plan | / | Hainan | 2020[ |
50~53 | Rhizospheric soil of mangrove plant | / | Hainan | 2017[ |
54 | Leaves of R. stylosa | A. salina: 5.6 μmol/L | Hainan | 2015[ |
55~57 | Rhizospheric soil of mangrove plant | AchE: 58.0 μmol/L (57) | Hainan | 2014[ |
58, 59 | A. marina | S. aureus: 0.125 μg/mL (58) | Hainan | 2017[ |
60~62 | Leaves of A. marina | A. salina: 36.7 μmol/L | Hainan | 2014[ |
63 | B.gymnorrhiza | / | Hainan | 2014[ |
64~66 | M. bontioides | Rhizoctonia solani: 195.98 μmol/L (64, 66); MTA-MB435/A549: 7.32~16.13 μmol/L | Leizhou Peninsula | 2017[ 2016[ |
67 | A. ilicifolius | / | Hainan | 2015[ |
68 | Leaves of R. stylosa | A. salina: 2.3 μmol/L | Hainan | 2015[ |
69 | Branch of C. manghas | / | Hainan | 2015[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year |
---|---|---|---|---|
1~5 | A. marina | S. aureus: 0.25~32.0 μg/mL (except 4); Gaeumannomyces graminis: 0.25~64.0 μg/mL (except 4) Micrococcus luteus: 0.25 μg/mL (3); | Hainan | 2015[ |
6~11 | A. marina | DU145/HeLa/HepG2/MCF-7/NCI-H460/SGC-7901/ SW1990/SW480/U251: 0.89~9 μmol/L (except 8/9) | Hainan | 2014[ |
12~15 | A. marina | E. coli/A. hydrophilia/V. harveyi/V. parahaemolyticus: 16.0~32.0 μg/mL (14/15) | Hainan | 2017[ |
16~18 | A. marina | E. coli/A. hydrophilia/V. harveyi: 16.0~64.0 μg/mL (16); E. coli/A. hydrophilia/V. harveyi: 32 μg/mL (18) | Hainan | 2016[ |
19 | A. marina | S. aureus: 0.25 μg/mL | Hainan | 2016[ |
20~27 | Root of S. caseolaris | SOD2/HO-1: 10 μmol/L (22/23) | Hainan | 2020[ |
28~33 | Root of S. caseolaris | HeLa: 0.3~3.9 μmol/L (28~30); HL-60: 0.1~1.6 μmol/L (28~30) | Hainan | 2017[ |
34~41 | Stem of A. corniculatum | BKCa: (34, 35, 37) | Fujian | 2007[ |
42 | Rhizospheric soil of mangrove plant | H1N1: 28.3 μmol/L | Hainan | 2013[ |
43 | Rhizospheric soil of mangrove Plant | H1N1: 38.9 μmol/L | Hainan | 2013[ |
44 | Rhizospheric soil of mangrove plant | H1N1: 32.2 μmol/L | Hainan | 2013[ |
45 | Rhizospheric soil of mangrove plant | / | Hainan | 2013[ |
46 | Rhizospheric soil of mangrove plant | H1N1: 73.3 μmol/L | Hainan | 2013[ |
47 | Rhizospheric soil of mangrove plant | H1N1: 34.1 μmol/L | Hainan | 2013[ |
48 | Rhizospheric soil of mangrove plant | / | Hainan | 2018[ |
49 | Rhizospheric soil of mangrove plan | / | Hainan | 2020[ |
50~53 | Rhizospheric soil of mangrove plant | / | Hainan | 2017[ |
54 | Leaves of R. stylosa | A. salina: 5.6 μmol/L | Hainan | 2015[ |
55~57 | Rhizospheric soil of mangrove plant | AchE: 58.0 μmol/L (57) | Hainan | 2014[ |
58, 59 | A. marina | S. aureus: 0.125 μg/mL (58) | Hainan | 2017[ |
60~62 | Leaves of A. marina | A. salina: 36.7 μmol/L | Hainan | 2014[ |
63 | B.gymnorrhiza | / | Hainan | 2014[ |
64~66 | M. bontioides | Rhizoctonia solani: 195.98 μmol/L (64, 66); MTA-MB435/A549: 7.32~16.13 μmol/L | Leizhou Peninsula | 2017[ 2016[ |
67 | A. ilicifolius | / | Hainan | 2015[ |
68 | Leaves of R. stylosa | A. salina: 2.3 μmol/L | Hainan | 2015[ |
69 | Branch of C. manghas | / | Hainan | 2015[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year |
---|---|---|---|---|
70 | M. bontioides | / | Leizhou Peninsula | 2018[ |
71 | M. bontioides | / | Leizhou Peninsula | 2018[ |
72 | Stem of B. gymnorrhiza | / | Guangdong | 2018[ |
73~75 | Root of S. caseolaris | / | Hainan | 2017[ |
76 | Root of S. caseolaris | H2O2-induced oxidative damage | Hainan | 2017[ |
77 | Rhizospheric soil of mangrove plant | / | Fujian | 2020[ |
78 | Leaves of E. agallocha | Salmonell paratyphi/E. coli/Shigella/ V. parahaemolyticus: 50 mg/mL | Guangdong | 2020[ |
79, 80 | Soil of R. stylosa | DPPH: 5.6 (79), 4.7 μmol/L (80) | / | 2015[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year |
---|---|---|---|---|
70 | M. bontioides | / | Leizhou Peninsula | 2018[ |
71 | M. bontioides | / | Leizhou Peninsula | 2018[ |
72 | Stem of B. gymnorrhiza | / | Guangdong | 2018[ |
73~75 | Root of S. caseolaris | / | Hainan | 2017[ |
76 | Root of S. caseolaris | H2O2-induced oxidative damage | Hainan | 2017[ |
77 | Rhizospheric soil of mangrove plant | / | Fujian | 2020[ |
78 | Leaves of E. agallocha | Salmonell paratyphi/E. coli/Shigella/ V. parahaemolyticus: 50 mg/mL | Guangdong | 2020[ |
79, 80 | Soil of R. stylosa | DPPH: 5.6 (79), 4.7 μmol/L (80) | / | 2015[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year | ||||
---|---|---|---|---|---|---|---|---|
81 | Soil of B. sexangula var. rhynchopetala | Physalospora piricola: 64 μg/mL | Hainan | 2018[ | ||||
82~88 | Leaves of C. tagal | K-562: 90.1 μmol/L (83); α-glucosidase: 2.27±0.058 μmol/L (87) | Hainan | 2019[ | ||||
89, 90 | L. racemose | C. gleosporioides: 0.125~1.0 μg/mL | Hainan | 2014[ | ||||
91 | Root of E. agallocha | / | Hainan | 2010[ | ||||
92 | Root of E. agallocha | / | Hainan | 2010[ | ||||
93, 94 | B. sexangula var. rhynchopetala | C. elegans: 9.4~9.9 μg/mL | Hainan | 2019[ | ||||
95 | B. sexangular | MDA-MB 435/HepG2/HCT-116/A549: 23.87~34.06 μmol/L | Guangdong | 2014[ | ||||
96 | B. sexangular | MDA-MB 435/HepG2/HCT-116/A549: 23.87~34.06 μmol/L | Guangdong | 2014[ | ||||
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year | ||||
97 | Soil of B. gymnorrhiza | / | Hainan | 2012[ | ||||
98 | Soil of B. gymnorrhiza | / | Hainan | 2012[ | ||||
99 | Soil of B. gymnorrhiza | / | Hainan | 2012[ | ||||
100 | Leaves of K. candel | / | Guangxi | 2016[ | ||||
101 | Laves of K. candel | AchE: 0.64±0.08 μmol/L | Guangxi | 2013[ | ||||
102 | Root of H. littoralis | / | Thailand | 2015[ | ||||
103 | B. sexangula var. rhynchopetala | E. coli ATCC 25922/S. albus ATCC 8799/S. aureus ATCC 27154/ B. cereus ATCC 11778: 9.76 μmol/L (103) | Hainan | 2014[ | ||||
104 | B. sexangula var. rhynchopetala | E. coli ATCC 25922/S. albus ATCC 8799/S. aureus ATCC 27154/B. ATCC 663/ B. cereus ATCC 11778/M. tetragenus ATCC 13623): 5~10 μmol/L (104) | Hainan | 2014[ | ||||
105, 106 | Soil of L. racemose | C. cornigerum, Edwardsiella tarda: 0.25, 0.5 μmol/L (105) | Hainan | 2020[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year | ||||
---|---|---|---|---|---|---|---|---|
81 | Soil of B. sexangula var. rhynchopetala | Physalospora piricola: 64 μg/mL | Hainan | 2018[ | ||||
82~88 | Leaves of C. tagal | K-562: 90.1 μmol/L (83); α-glucosidase: 2.27±0.058 μmol/L (87) | Hainan | 2019[ | ||||
89, 90 | L. racemose | C. gleosporioides: 0.125~1.0 μg/mL | Hainan | 2014[ | ||||
91 | Root of E. agallocha | / | Hainan | 2010[ | ||||
92 | Root of E. agallocha | / | Hainan | 2010[ | ||||
93, 94 | B. sexangula var. rhynchopetala | C. elegans: 9.4~9.9 μg/mL | Hainan | 2019[ | ||||
95 | B. sexangular | MDA-MB 435/HepG2/HCT-116/A549: 23.87~34.06 μmol/L | Guangdong | 2014[ | ||||
96 | B. sexangular | MDA-MB 435/HepG2/HCT-116/A549: 23.87~34.06 μmol/L | Guangdong | 2014[ | ||||
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year | ||||
97 | Soil of B. gymnorrhiza | / | Hainan | 2012[ | ||||
98 | Soil of B. gymnorrhiza | / | Hainan | 2012[ | ||||
99 | Soil of B. gymnorrhiza | / | Hainan | 2012[ | ||||
100 | Leaves of K. candel | / | Guangxi | 2016[ | ||||
101 | Laves of K. candel | AchE: 0.64±0.08 μmol/L | Guangxi | 2013[ | ||||
102 | Root of H. littoralis | / | Thailand | 2015[ | ||||
103 | B. sexangula var. rhynchopetala | E. coli ATCC 25922/S. albus ATCC 8799/S. aureus ATCC 27154/ B. cereus ATCC 11778: 9.76 μmol/L (103) | Hainan | 2014[ | ||||
104 | B. sexangula var. rhynchopetala | E. coli ATCC 25922/S. albus ATCC 8799/S. aureus ATCC 27154/B. ATCC 663/ B. cereus ATCC 11778/M. tetragenus ATCC 13623): 5~10 μmol/L (104) | Hainan | 2014[ | ||||
105, 106 | Soil of L. racemose | C. cornigerum, Edwardsiella tarda: 0.25, 0.5 μmol/L (105) | Hainan | 2020[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year |
---|---|---|---|---|
107~114 | B. sexangula var. rhynchopetala | Helicoverpa armigera Hubner: 200 μg/mL (107, 111, 112) | Hainan | 2019[ |
115, 116 | Leaves of L. racemose | / | Hainan | 2019[ |
117~126 | Fruit of K. candel | α-glucosidase: 38.1~110.3 μmol/L (119, 123, 125, 126); MptpB: 20.7 μmol/L (124) | Guangdong | 2018[ |
127~129 | B. sexangula var. rhynchopetala | Staphylococcus epidermidis/S. aureus/E. coli/Bacillus cereus/ Vibrio alginolyticus: 20μmol/L (127/128) | Hainan | 2016[ |
130~132 | B. sexangula var. rhynchopetala | salina: 7.7~18.6 μg/mL (130~132), E. coli/P. aeruginosa/ V. harveyi/C. gloeosprioides: 4 μg/mL (130) | Hainan | 2016[ |
133 | Root of B. sexangular | K562: 18.9 μg/mL | Hainan | 2009[ |
134 | Stem of H. littoralis | α-glucosidase: 309.6 μmol/L | Guangdong | 2020[ |
135 | Stem of H. littoralis | α-glucosidase: 237.4 μmol/L | Guangdong | 2020[ |
136 | Stem of H. littoralis | α-glucosidase: 100.6 μmol/L | Guangdong | 2020[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year |
---|---|---|---|---|
107~114 | B. sexangula var. rhynchopetala | Helicoverpa armigera Hubner: 200 μg/mL (107, 111, 112) | Hainan | 2019[ |
115, 116 | Leaves of L. racemose | / | Hainan | 2019[ |
117~126 | Fruit of K. candel | α-glucosidase: 38.1~110.3 μmol/L (119, 123, 125, 126); MptpB: 20.7 μmol/L (124) | Guangdong | 2018[ |
127~129 | B. sexangula var. rhynchopetala | Staphylococcus epidermidis/S. aureus/E. coli/Bacillus cereus/ Vibrio alginolyticus: 20μmol/L (127/128) | Hainan | 2016[ |
130~132 | B. sexangula var. rhynchopetala | salina: 7.7~18.6 μg/mL (130~132), E. coli/P. aeruginosa/ V. harveyi/C. gloeosprioides: 4 μg/mL (130) | Hainan | 2016[ |
133 | Root of B. sexangular | K562: 18.9 μg/mL | Hainan | 2009[ |
134 | Stem of H. littoralis | α-glucosidase: 309.6 μmol/L | Guangdong | 2020[ |
135 | Stem of H. littoralis | α-glucosidase: 237.4 μmol/L | Guangdong | 2020[ |
136 | Stem of H. littoralis | α-glucosidase: 100.6 μmol/L | Guangdong | 2020[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year |
---|---|---|---|---|
137 | Leaves of A. marina | / | Hainan | 2015[ |
138 | Leaves of A. marina | / | Hainan | 2015[ |
139 | Branch of C. manghas | α-glucosidase: 9.5±1.2 μmol/L | Hainan | 2014[ |
140 | Branch of C. manghas | / | Hainan | 2014[ |
141 | Branch of C. manghas | α-glucosidase: 8.0±1.5 μmol/L | Hainan | 2014[ |
142~144 | L. racemosa | Du145/HeLa/Huh/MCF-7/NCI-H460/ SGC-7901/SW1990: 3.8~10 µmol/L | Hainan | 2013[ |
145 | Leaves of L. racemose | Fusarium oxysporum, f. sp. momordicae nov. f./ C. gleosporioides: 5 μmol/L | Hainan | 2019[ |
146 | Rhizospheric soil of mangrove plant | / | Hainan | 2019[ |
147, 148 | Soil of R. stylosa | DPPH: 14~15 μmol/L | / | 2015[ |
149 | Leaves of A. marina | MG-63: 26 μmol/L, Tca8113: 35 μmol/L | Fujian | 2014[ |
150~152 | B. sexangula var. rhynchopetala | S. aureus: 6.25 μg/mL (150), A. salina: 78.5 μg/mL (152) | Hainan | 2019[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year |
---|---|---|---|---|
137 | Leaves of A. marina | / | Hainan | 2015[ |
138 | Leaves of A. marina | / | Hainan | 2015[ |
139 | Branch of C. manghas | α-glucosidase: 9.5±1.2 μmol/L | Hainan | 2014[ |
140 | Branch of C. manghas | / | Hainan | 2014[ |
141 | Branch of C. manghas | α-glucosidase: 8.0±1.5 μmol/L | Hainan | 2014[ |
142~144 | L. racemosa | Du145/HeLa/Huh/MCF-7/NCI-H460/ SGC-7901/SW1990: 3.8~10 µmol/L | Hainan | 2013[ |
145 | Leaves of L. racemose | Fusarium oxysporum, f. sp. momordicae nov. f./ C. gleosporioides: 5 μmol/L | Hainan | 2019[ |
146 | Rhizospheric soil of mangrove plant | / | Hainan | 2019[ |
147, 148 | Soil of R. stylosa | DPPH: 14~15 μmol/L | / | 2015[ |
149 | Leaves of A. marina | MG-63: 26 μmol/L, Tca8113: 35 μmol/L | Fujian | 2014[ |
150~152 | B. sexangula var. rhynchopetala | S. aureus: 6.25 μg/mL (150), A. salina: 78.5 μg/mL (152) | Hainan | 2019[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year | ||
---|---|---|---|---|---|---|
153~156 | Rhizospheric soil of mangrove plant | K562/MCF-7/Huh-7: 55.2~67.5 μmol/L | Hainan | 2019[ | ||
157, 158 | Rhizospheric soil of mangrove plant | / | Hainan | 2018[ | ||
159 | Leaves of K. candel | Salmonell: 2.00±0.02 μmol/L | Guangdong | 2017[ | ||
160, 161 | Rhizospheric soil of mangrove plant | H1975/MCF-7/K562/HL7702: 30 μmol/L (160) | Hainan | 2017[ | ||
162 | Soil of A. ilicifolius | HeLa/Bel-7402/HEK-293/HCT-116/A549: 10.0~30.6 μmol/L | Hainan | 2015[ | ||
163 | Stem of A. ilicifolius | / | Guangdong | 2008[ | ||
164 | Stem of A. ilicifolius | Fusarium oxysporumf. sp. Cubense: 12.5 μg/mL | Guangdong | 2008[ | ||
165 | B. sexangula var. rhynchopetala | / | Hainan | 2017[ | ||
166 | B. sexangula var. rhynchopetala | V. parahaemolyticus: 10 μmol/L | Hainan | 2017[ | ||
167~170 | Stem of C. tagal | Helicoverpa armigera Hubner: 100~200 μg/mL (168/169); Culex quinquefasciatus: 8.5~20.5 μg/mL (except 168) | Nanhai | 2019[ | ||
171, 172 | B. sexangula var. rhynchopetala | S. aureus: 20 μg/mL (171); A549: 15.7 μg/mL (172) | Hainan | 2019[ | ||
173 | Leaves of S. apetala | Con A-induced (T cell): 8.1 μg/mL; LPS-induced (B cell): 9.3 μg/mL | Guangdong | 2016[ | ||
174 | Leaves of S. apetala | / | Guangdong | 2016[ | ||
175 | B. gymnorrhiza | Aeromonas hydrophilia: 8 μg/mL; A. salina: 25.3 μmol/L | Hainan | 2014[ | ||
176 | corniculatum | / | Fujian | 2008[ | ||
177, 178 | Rhizospheric soil of mangrove plant | A. salina: 14.2~25.3 μmol/L | Techeng Isle | 2019[ | ||
179, 180 | Rhizospheric soil of mangrove plant | S. aureus/ Enterococcus faecalis: 3.13~12.5 μmol/L (180) | Hainan | 2019[ | ||
181~184 | Rhizospheric soil of mangrove plant | S. aureus: 3.13~6.25 μmol/L (except 181) | Hainan | 2017[ | ||
185, 186 | Branch of C. manghas | α-glucosidase: 28.0 μmol/L | Hainan | 2014[ | ||
187 | B. sexangula | MDA-MB-435/HepG2/HCT-116/A549: 11.09~24.62 μmol/L | Guangdong | 2014[ | ||
188, 190 | Stem of K. candel | α-glucosidase: 24.5 μmol/L | Guangdong | 2011[ | ||
191~193 | Rhizospheric soil of mangrove plant | S. aureus (ATCC 43300, 33591, 29213 25923): 12.5~50 μg/mL | Hainan | 2019[ | ||
194 | A. marina | S. aureus/ V. harveyi/V. parahaemolyticus: 0.5 μg/mL | Hainan | 2015[ | ||
195 | Rhizospheric soil of mangrove | / | Hainan | 2018[ | ||
196, 197 | Rhizospheric soil of mangrove plant | S. aureus ATCC 33591: 3.13 μg/mL (196) | Hainan | 2019[ | ||
198~203 | Stem of H. tiliaceus | / | Guangdong | 2015[ | ||
204 | Root of K. candel | AchE: 12 μmol/L | Guangxi | 2014[ | ||
205 | Root of K. candel | AchE: 0.079 μmol/L | Guangxi | 2014[ | ||
206 | Root of K. candel | / | Guangxi | 2014[ | ||
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year | ||
207 | Stem of A. corniculatum | A549: 1.45 μmol/L | Fujian | 2008[ | ||
208 | Stem of A. corniculatum | P388: 1.38 μmol/L | Fujian | 2008[ | ||
209 | Stem of A. corniculatum | / | Fujian | 2008[ | ||
210~212 | A. marina | HeLa/BEL-7402/HEK-293/HCT-116/A-549: 3.4~40.5 μmol/L | / | 2015[ | ||
213~216 | Root of H. littoralis | / | Thailand | 2015[ | ||
217 | A. ilicifolius | corticosterone-damaged PC12 cells | Hainan | 2014[ | ||
218 | A. ilicifolius | U251/BT-325/SHG-44: 2.3~4.1 μmol/L | Hainan | 2014[ | ||
219~221 | B. sexangula | HeLa/K562/HCT-116/HL-60/A549/MCF-7: 1.2~9.8 μmol/L (219) | Fujian | 2017[ | ||
222 | B. sexangula | / | Fujian | 2017[ | ||
223~225 | Rhizospheric soil of mangrove plant | / | Techeng Isle | 2019[ | ||
226 | A. marina | KB/KBV200/HeLa/ HepG2/SGC7901: 5~42 μg/mL | Hainan | 2012[ | ||
227, 228 | B. sexangula | / | Hainan | 2020[ | ||
229 | Rhizospheric soil of mangrove plant | / | Hainan | 2020[ | ||
230 | Rhizospheric soil of mangrove plant | / | Hainan | 2020[ | ||
231~233 | Stem of A.ilicifolius | MptpB: 0.16~1.375 μmol/L (231/232) | Hainan | 2014[ | ||
234 | Branch of C. manghas | / | Hainan | 2015[ | ||
235 | A. marina | / | Fujian | 2015[ | ||
236 | A. marina | / | Fujian | 2015[ | ||
237 | Leaves of S. apetala | / | Hainan | 2012[ | ||
238 | Soil of B. gymnorrhiza | / | Fujian | 2012[ | ||
239 | Rhizospheric soil of mangrove plant | / | Fujian | 2020[ | ||
240 | K. candel | AChE/ α-glucosidase /Antioxidant: >100 μmol/L | Hainan | 2020[ | ||
241 | B. sexangula var. rhynchopetala | / | Hainan | 2016[ | ||
242 | Rhizospheric soil of mangrove plant | Attenuate OGD-induced cell viability loss in rat spinal cord astrocytes | Hainan | 2020[ | ||
243, 244 | Stem of ilicifolius | / | Hainan | 2014[ | ||
245 | K. candel | / | Hong Kong | 2009[ | ||
246 | K. candel | AChE/α-glucosidase/Antioxidant: >100 μmol/L | Hainan | 2020[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year | ||
---|---|---|---|---|---|---|
153~156 | Rhizospheric soil of mangrove plant | K562/MCF-7/Huh-7: 55.2~67.5 μmol/L | Hainan | 2019[ | ||
157, 158 | Rhizospheric soil of mangrove plant | / | Hainan | 2018[ | ||
159 | Leaves of K. candel | Salmonell: 2.00±0.02 μmol/L | Guangdong | 2017[ | ||
160, 161 | Rhizospheric soil of mangrove plant | H1975/MCF-7/K562/HL7702: 30 μmol/L (160) | Hainan | 2017[ | ||
162 | Soil of A. ilicifolius | HeLa/Bel-7402/HEK-293/HCT-116/A549: 10.0~30.6 μmol/L | Hainan | 2015[ | ||
163 | Stem of A. ilicifolius | / | Guangdong | 2008[ | ||
164 | Stem of A. ilicifolius | Fusarium oxysporumf. sp. Cubense: 12.5 μg/mL | Guangdong | 2008[ | ||
165 | B. sexangula var. rhynchopetala | / | Hainan | 2017[ | ||
166 | B. sexangula var. rhynchopetala | V. parahaemolyticus: 10 μmol/L | Hainan | 2017[ | ||
167~170 | Stem of C. tagal | Helicoverpa armigera Hubner: 100~200 μg/mL (168/169); Culex quinquefasciatus: 8.5~20.5 μg/mL (except 168) | Nanhai | 2019[ | ||
171, 172 | B. sexangula var. rhynchopetala | S. aureus: 20 μg/mL (171); A549: 15.7 μg/mL (172) | Hainan | 2019[ | ||
173 | Leaves of S. apetala | Con A-induced (T cell): 8.1 μg/mL; LPS-induced (B cell): 9.3 μg/mL | Guangdong | 2016[ | ||
174 | Leaves of S. apetala | / | Guangdong | 2016[ | ||
175 | B. gymnorrhiza | Aeromonas hydrophilia: 8 μg/mL; A. salina: 25.3 μmol/L | Hainan | 2014[ | ||
176 | corniculatum | / | Fujian | 2008[ | ||
177, 178 | Rhizospheric soil of mangrove plant | A. salina: 14.2~25.3 μmol/L | Techeng Isle | 2019[ | ||
179, 180 | Rhizospheric soil of mangrove plant | S. aureus/ Enterococcus faecalis: 3.13~12.5 μmol/L (180) | Hainan | 2019[ | ||
181~184 | Rhizospheric soil of mangrove plant | S. aureus: 3.13~6.25 μmol/L (except 181) | Hainan | 2017[ | ||
185, 186 | Branch of C. manghas | α-glucosidase: 28.0 μmol/L | Hainan | 2014[ | ||
187 | B. sexangula | MDA-MB-435/HepG2/HCT-116/A549: 11.09~24.62 μmol/L | Guangdong | 2014[ | ||
188, 190 | Stem of K. candel | α-glucosidase: 24.5 μmol/L | Guangdong | 2011[ | ||
191~193 | Rhizospheric soil of mangrove plant | S. aureus (ATCC 43300, 33591, 29213 25923): 12.5~50 μg/mL | Hainan | 2019[ | ||
194 | A. marina | S. aureus/ V. harveyi/V. parahaemolyticus: 0.5 μg/mL | Hainan | 2015[ | ||
195 | Rhizospheric soil of mangrove | / | Hainan | 2018[ | ||
196, 197 | Rhizospheric soil of mangrove plant | S. aureus ATCC 33591: 3.13 μg/mL (196) | Hainan | 2019[ | ||
198~203 | Stem of H. tiliaceus | / | Guangdong | 2015[ | ||
204 | Root of K. candel | AchE: 12 μmol/L | Guangxi | 2014[ | ||
205 | Root of K. candel | AchE: 0.079 μmol/L | Guangxi | 2014[ | ||
206 | Root of K. candel | / | Guangxi | 2014[ | ||
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year | ||
207 | Stem of A. corniculatum | A549: 1.45 μmol/L | Fujian | 2008[ | ||
208 | Stem of A. corniculatum | P388: 1.38 μmol/L | Fujian | 2008[ | ||
209 | Stem of A. corniculatum | / | Fujian | 2008[ | ||
210~212 | A. marina | HeLa/BEL-7402/HEK-293/HCT-116/A-549: 3.4~40.5 μmol/L | / | 2015[ | ||
213~216 | Root of H. littoralis | / | Thailand | 2015[ | ||
217 | A. ilicifolius | corticosterone-damaged PC12 cells | Hainan | 2014[ | ||
218 | A. ilicifolius | U251/BT-325/SHG-44: 2.3~4.1 μmol/L | Hainan | 2014[ | ||
219~221 | B. sexangula | HeLa/K562/HCT-116/HL-60/A549/MCF-7: 1.2~9.8 μmol/L (219) | Fujian | 2017[ | ||
222 | B. sexangula | / | Fujian | 2017[ | ||
223~225 | Rhizospheric soil of mangrove plant | / | Techeng Isle | 2019[ | ||
226 | A. marina | KB/KBV200/HeLa/ HepG2/SGC7901: 5~42 μg/mL | Hainan | 2012[ | ||
227, 228 | B. sexangula | / | Hainan | 2020[ | ||
229 | Rhizospheric soil of mangrove plant | / | Hainan | 2020[ | ||
230 | Rhizospheric soil of mangrove plant | / | Hainan | 2020[ | ||
231~233 | Stem of A.ilicifolius | MptpB: 0.16~1.375 μmol/L (231/232) | Hainan | 2014[ | ||
234 | Branch of C. manghas | / | Hainan | 2015[ | ||
235 | A. marina | / | Fujian | 2015[ | ||
236 | A. marina | / | Fujian | 2015[ | ||
237 | Leaves of S. apetala | / | Hainan | 2012[ | ||
238 | Soil of B. gymnorrhiza | / | Fujian | 2012[ | ||
239 | Rhizospheric soil of mangrove plant | / | Fujian | 2020[ | ||
240 | K. candel | AChE/ α-glucosidase /Antioxidant: >100 μmol/L | Hainan | 2020[ | ||
241 | B. sexangula var. rhynchopetala | / | Hainan | 2016[ | ||
242 | Rhizospheric soil of mangrove plant | Attenuate OGD-induced cell viability loss in rat spinal cord astrocytes | Hainan | 2020[ | ||
243, 244 | Stem of ilicifolius | / | Hainan | 2014[ | ||
245 | K. candel | / | Hong Kong | 2009[ | ||
246 | K. candel | AChE/α-glucosidase/Antioxidant: >100 μmol/L | Hainan | 2020[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year |
---|---|---|---|---|
247 | Leaves of A. marina | Tca8113: 2.0 μmol/L, MG-63: 35 μmol/L | Fujain | 2014[ |
248 | Branch of C. manghas | / | Hainan | 2015[ |
249~252 | E. agallocha | HL-60: 18.2/20.8 μmol/L (250, 251) | Hainan | 2012[ |
253 | Root of B. gymnorrhiza | A549/HepG2/HT29: 8.9~12.2 μmol/L | Guangxi | 2015[ |
254/255 | Laves of A. marina | ABTS: 14.4 μg/mL (254) | Hainan | 2015[ |
256 | H. tiliaceus | / | Guangdong | 2010[ |
257 | Stem of B. gymnorrhiza | Methicillin-resistant S. aureus: 80 μg/mL | Guangdong | 2018[ |
258 | Stem of K. candel | α-glucosidase: 0.9 μmol/L | Guangdong | 2011[ |
259 | Stem of K. candel | α-glucosidase: 4.9 μmol/L | Guangdong | 2011[ |
260 | Stem of K. candel | α-glucosidase: 2.5 μmol/L | Guangdong | 2011[ |
261 | Rhizospheric soil of mangrove plant | / | Hainan | 2019[ |
262 | Rhizospheric soil of mangrove plant | / | Hainan | 2019[ |
263 | Rhizospheric soil of mangrove plant | / | Hainan | 2019[ |
264 | Stem of B. gymnorrhiza | / | Guangdong | 2014[ |
265, 266 | Leaves of A. marina | ABTS: 8.7/5.9 μg/mL DPPH: 18.7/16.3 μg/mL | Hainan | 2015[ |
267, 268 | B. gymnorrhiza | A. salina: 14.2/39.2 μmol/L | Hainan | 2014[ |
269 | Root of E. agallocha | / | Hainan | 2012[ |
270 | Soil of B. gymnorrhiza | M. luteus/E. coli: 64/16 μg/mL | Hainan | 2012[ |
271 | Soil of B. gymnorrhiza | / | Hainan | 2012[ |
272 | Rhizospheric soil of mangrove plant | / | Fujian | 2020[ |
273 | K. candel | AChE/α-glucosidase /Antioxidant: >100 μmol/L | Hainan | 2020[ |
274 | A. marina | / | Fujian | 2015[ |
275, 276 | Root of E. agallocha | HL-60: 15.7 μmol/L (275), A549/HL-60: 1.9, 5.4 μmol/L (276) | Hainan | 2010[ |
Compound | Source | Bioactivity (MIC, LD50, IC50) | Region | Year |
---|---|---|---|---|
247 | Leaves of A. marina | Tca8113: 2.0 μmol/L, MG-63: 35 μmol/L | Fujain | 2014[ |
248 | Branch of C. manghas | / | Hainan | 2015[ |
249~252 | E. agallocha | HL-60: 18.2/20.8 μmol/L (250, 251) | Hainan | 2012[ |
253 | Root of B. gymnorrhiza | A549/HepG2/HT29: 8.9~12.2 μmol/L | Guangxi | 2015[ |
254/255 | Laves of A. marina | ABTS: 14.4 μg/mL (254) | Hainan | 2015[ |
256 | H. tiliaceus | / | Guangdong | 2010[ |
257 | Stem of B. gymnorrhiza | Methicillin-resistant S. aureus: 80 μg/mL | Guangdong | 2018[ |
258 | Stem of K. candel | α-glucosidase: 0.9 μmol/L | Guangdong | 2011[ |
259 | Stem of K. candel | α-glucosidase: 4.9 μmol/L | Guangdong | 2011[ |
260 | Stem of K. candel | α-glucosidase: 2.5 μmol/L | Guangdong | 2011[ |
261 | Rhizospheric soil of mangrove plant | / | Hainan | 2019[ |
262 | Rhizospheric soil of mangrove plant | / | Hainan | 2019[ |
263 | Rhizospheric soil of mangrove plant | / | Hainan | 2019[ |
264 | Stem of B. gymnorrhiza | / | Guangdong | 2014[ |
265, 266 | Leaves of A. marina | ABTS: 8.7/5.9 μg/mL DPPH: 18.7/16.3 μg/mL | Hainan | 2015[ |
267, 268 | B. gymnorrhiza | A. salina: 14.2/39.2 μmol/L | Hainan | 2014[ |
269 | Root of E. agallocha | / | Hainan | 2012[ |
270 | Soil of B. gymnorrhiza | M. luteus/E. coli: 64/16 μg/mL | Hainan | 2012[ |
271 | Soil of B. gymnorrhiza | / | Hainan | 2012[ |
272 | Rhizospheric soil of mangrove plant | / | Fujian | 2020[ |
273 | K. candel | AChE/α-glucosidase /Antioxidant: >100 μmol/L | Hainan | 2020[ |
274 | A. marina | / | Fujian | 2015[ |
275, 276 | Root of E. agallocha | HL-60: 15.7 μmol/L (275), A549/HL-60: 1.9, 5.4 μmol/L (276) | Hainan | 2010[ |
[1] |
Liang, Z. Y.; Shen, N. X.; Zheng, Y. Y.; Wu, J. T.; Li, M.; Fu, X. M.; Chen, M.; Wang, C. Y. Bioorg. Chem. 2019, 93, 103331.
doi: 10.1016/j.bioorg.2019.103331 |
[2] |
Chen, H. Q.; Qiu, L. M.; Wang, P.; Cai, C. H.; Wang, H.; Dai, H. F.; Mei, W. L. Photochem. Lett. 2019, 33, 36.
|
[3] |
Zheng, Y. Y.; Liang, Z. Y.; Shen, N. X.; Liu, W. L.; Zhou, X. J.; Fu, X. M.; Chen, M.; Wang, C. Y. Mar. Drugs 2019, 17, 3221.
|
[4] |
Chen, M.; Zheng, Y. Y.; Chen, Z. Q.; Shen, N. X.; Shen, L.; Zhang, F. M.; Zhou, X. J.; Wang, C. Y. J. Nat. Prod. 2019, 82, 368.
doi: 10.1021/acs.jnatprod.8b00930 pmid: 30693772 |
[5] |
Zheng, Y. Y.; Shen, N. X.; Liang, Z. Y.; Shen, L.; Chen, M.; Wang, C. Y. Nat. Prod. Res. 2020, 34, 378.
doi: 10.1080/14786419.2018.1534105 |
[6] |
Chen, M.; Shen, N. X.; Chen, Z. Q.; Zhang, F. M.; Chen, Y. J. Nat. Prod. 2017, 80, 1081.
doi: 10.1021/acs.jnatprod.6b01179 pmid: 28248508 |
[7] |
Zheng, Y. Y.; Chen, X; Shen, L.; Fu, X. M.; Chen, Q. X.; Chen, M.; Wang, C. Y. J. Ocean Univ. China 2020, 19, 700.
doi: 10.1007/s11802-020-4286-7 |
[8] |
Tao, H. M.; Wei, X. Y.; Lin, X. P.; Zhou, X. F.; Dong, J. D.; Yang, B. Nat. Prod. Res. 2017, 31, 2218.
doi: 10.1080/14786419.2017.1297442 |
[9] |
Yang, B.; Dong, J. D.; Lin, X. P.; Zhou, X. F.; Zhang, Y. Y.; Liu, Y. Y. Tetrahedron 2014, 70, 3859.
doi: 10.1016/j.tet.2014.04.043 |
[10] |
Huang, J. X.; She, J. L.; Yang, X. L.; Liu, J.; Zhou, X. F.; Yang, B. Molecules 2019, 24, 16862.
|
[11] |
Yang, B.; Tao, H. M.; Lin, X. P.; Wang, J. F.; Liao, S. R.; Dong, J. D.; Zhou, X. F.; Liu, Y. H. Tetrahedron 2018, 74, 77.
|
[12] |
He, F.; Li, X. B.; Yu, J. H.; Zhang, X. Y.; Nong, X. H.; Chen, G. Y.; Zhu, K. K.; Wang, Y. Y.; Bao, J.; Zhang, H. Fitoterapia 2019, 136, 104177.
doi: 10.1016/j.fitote.2019.104177 |
[13] |
Wu, C. M.; Zhao, Y.; Chen, R.; Liu, D.; Liu, M. Y.; Peter, P.; Guo, P.; Lin, W. H. RSC Adv. 2016, 6, 21969.
doi: 10.1039/C6RA00033A |
[14] |
Fan, Y. Q.; Wang, Y.; Liu, P. P.; Fu, P.; Zhu, T. H.; Wang, W.; Zhu, W. M. J. Nat. Prod. 2013, 76, 1328.
doi: 10.1021/np400304q |
[15] |
Fan, Y. Q.; Zhu, G. L.; Wang, Y.; Zhu, X. C.; Gong, Q. H.; Jia, Q.; Fu, P.; Zhu, W. M. Chin. J. Org. Chem. 2018, 38, 2798. (in Chinese)
doi: 10.6023/cjoc201803017 |
(樊亚琴, 朱国良, 王乂, 朱晓翠, 宫倩红, 贾茜, 付鹏, 朱伟明, 有机化学, 2018, 38, 2798.)
doi: 10.6023/cjoc201803017 |
|
[16] |
Fan, Y. Q.; Wang, Y.; Fu, P.; Arthit, C.; Pawinee, P.; Zhu, W. M. Org. Chem. Front. 2018, 5, 2835.
doi: 10.1039/C8QO00756J |
[17] |
Yang, S. Q.; Attila, M.; Li, X. M.; Liu, H.; Li, X.; Sandor, B. K.; Tibor, K.; Wang, B. G. Bioorg. Chem. 2021, 106, 104477.
doi: 10.1016/j.bioorg.2020.104477 |
[18] |
Liu, S. Z.; Tang, X. X.; He, F. M.; Jia, J. X.; Hu, H.; Xie, B. Y. Li, M. Y.; Qiu, Y. K. Nat. Prod. Res. 2020, doi: 10.1080/14786419.2020.1837811.
doi: 10.1080/14786419.2020.1837811 |
[19] |
Liu, S. Z.; He, F. M.; Bin, Y. L.; Qiu, Y. K.; Li, C. F.; Xie, B. Y.; Tang, X. X. Nat. Prod. Res. 2020, doi: 10.1080/14786419.2020.1817015.
doi: 10.1080/14786419.2020.1817015 |
[20] |
Cai, R. L.; Wu, Y. N.; Chen, S. H.; Cui, H.; Liu, Z. M.; Li, C. Y.; She, Z. G. J. Nat. Prod. 2018, 81, 1376.
doi: 10.1021/acs.jnatprod.7b01018 |
[21] |
Huang, H. R.; Liu, T.; Wu, X. E.; Guo, J. X.; Lan, X.; Zhu, Q.; Zheng, X.; Zhang, K. Nat. Prod. Res. 2017, 31, 2593.
doi: 10.1080/14786419.2017.1283498 |
[22] |
Huang, H. B.; Feng, X. J.; Xiao, Z. E.; Liu, L.; Li, H. X.; Ma, L.; Lu, Y. J.; Ju, J. H.; She, Z. G.; Lin, Y. C. J. Nat. Prod. 2011, 74, 997.
doi: 10.1021/np100889v |
[23] |
Huang, X. S.; Sun, X. F.; Ding, B.; Lin, M.; Lan, L.; Huang, H. R.; She, Z. G. Planta Med. 2013, 79, 1572.
doi: 10.1055/s-00000058 |
[24] |
Ding, B.; Wang, Z. Y.; Huang, X. S.; Liu, Y. Y.; Chen, W. R.; She, Z. G. Nat. Prod. Res. 2016, 30, 2805.
doi: 10.1080/14786419.2016.1164702 pmid: 27067533 |
[25] |
Huang, X. S.; Yang, B.; Sun, X. F.; Xia, G. P.; Liu, Y. Y.; Lin, M.; She, Z. G. Helv. Chim. Acta 2014, 97, 664.
doi: 10.1002/hlca.v97.5 |
[26] |
Guo, Z. Y.; Cheng, F.; Zou, K.; Wang, J. Z.; She, Z. G.; Lin, Y. C. Nat. Prod. Commun. 2009, 4, 1481.
|
[27] |
Yang, W. C.; Chen, Y.; Cai, R. L.; Zou, G.; Wang, B.; She, Z. G. Chem. Biodiversity 2020, 17, e2000192.
|
[28] |
Bai, M.; Zheng, C. J.; Huang, G. L.; Mei, R. Q.; Wang, B.; Luo, Y. P.; Zheng, C.; Niu, Z. G.; Chen, G. Y. J. Nat. Prod. 2019, 82, 1155.
doi: 10.1021/acs.jnatprod.8b00866 |
[29] |
Bai, M.; Huang, G. L.; Mei, R. Q.; Wang, B.; Luo, Y. P.; Nong, X. H.; Chen, G. Y.; Zheng, C. J. Mar. Drugs 2019, 17, 4332.
|
[30] |
Huang, G. L.; Zhou, X. M.; Bai, M.; Liu, Y. X.; Zhao, Y. L.; Luo, Y. P.; Niu, Y. Y.; Zheng, C. J.; Chen, G. Y. Mar. Drugs 2016, 14, 1771.
|
[31] |
He, K. Y.; Zhang, C.; Duan, Y. R.; Huang, G. L.; Yang, C. Y.; Lu, X. R.; Zheng, C. J.; Chen, G. Y. J. Antibiot. 2017, 70, 823.
doi: 10.1038/ja.2017.52 |
[32] |
Zheng, C. J.; Liao, H. X.; Mei, R. Q.; Huang, G. L.; Yang, L. J.; Zhou, X. M.; Shao, T. M.; Chen, G. Y.; Wang, C. Y. Nat. Prod. Res. 2019, 33, 1127.
doi: 10.1080/14786419.2018.1460832 |
[33] |
Zheng, C. J.; Huang, G. L.; Xu, Y.; Song, X. M.; Yao, J.; Liu, H.; Wang, R. P.; Sun, X. P. Nat. Prod. Res. 2016, 30, 821.
doi: 10.1080/14786419.2015.1072712 |
[34] |
Xu, R.; Li, X. M.; Wang, B. G. Phytochem. Lett. 2016, 17, 114.
doi: 10.1016/j.phytol.2016.07.003 |
[35] |
Li, H. L.; Xu, R.; Li, X. M.; Yang, S. Q.; Meng, L. H.; Wang, B. G. Org. Lett. 2018, 20, 1465.
doi: 10.1021/acs.orglett.8b00327 |
[36] |
Zheng, C. J.; Huang, G. L.; Tang, X. Z.; Wang, D. E.; Gong, X. L.; Zhang, Q.; Song, X. P.; Chen, G. Y. Chin. J. Org. Chem. 2014, 34, 1172 (in Chineses).
|
(郑彩娟, 黄国雷, 唐雄肇, 王德能, 龚小路, 张强, 宋小平, 陈光英, 有机化学, 2014, 34, 1172.)
doi: 10.6023/cjoc201401014 |
|
[37] |
Zhou, Z. F.; Yang, X. H.; Liu, H. L.; Gu, Y. C.; Ye, B. P.; Guo, Y. W. Helv. Chim. Acta 2014, 97, 1564.
doi: 10.1002/hlca.v97.11 |
[38] |
Zhou, Z. F.; Kurtan, T. B.; Yang, X. H.; Geng, M. Y.; Ye, B. P.; Guo, Y. W. Org. Lett. 2014, 16, 1390.
doi: 10.1021/ol5001523 |
[39] |
Jiang, C. S.; Zhou, Z. F.; Yang, X. H.; Lan, L. F.; Gu, Y. C.; Ye, B. P.; Guo, Y. W. Chin. J. Nat. Med. 2018, 16, 358.
|
[40] |
Chen, G.; Zhu, Y.; Wang, H. Z.; Wang, S. J.; Zhang, R. Q. J. Asian. Nat. Prod. Res. 2007, 9, 159.
pmid: 17454313 |
[41] |
Zhang, Y.; Li, X. M.; Shang, Z.; Li, C. S.; Ji, N. Y.; Wang, B. G. J. Nat. Prod. 2012, 75, 1888.
doi: 10.1021/np300377b pmid: 23148724 |
[42] |
Luo, H.; Li, X. M.; Li, C. S.; Wang, B. G. Phytochem. Lett. 2014, 9, 22.
doi: 10.1016/j.phytol.2014.03.012 |
[43] |
Meng, L. H.; Li, X. M.; Liu, Y.; Wang, B. G. Chin. Chem. Lett. 2015, 26, 610.
doi: 10.1016/j.cclet.2015.01.024 |
[44] |
Meng, L. H.; Zhang, P.; Li, X. M.; Wang, B. G. Mar. Drugs 2015, 13, 276.
doi: 10.3390/md13010276 |
[45] |
Meng, L. H.; Li, X. M.; Lv, C. T.; Huang, C. G.; Wang, B. G. J. Nat. Prod. 2014, 77, 1921.
doi: 10.1021/np500382k |
[46] |
Meng, L. H.; Wang, C. Y.; Li, X. M.; Hu, X. Y.; Wang, B. G. Org. Lett. 2016, 18, 5304.
doi: 10.1021/acs.orglett.6b02620 |
[47] |
Meng, L. H.; Li, X. M.; Liu, Y.; Xu, G. M.; Wang, B. G. RSC. Adv. 2017, 7, 55026.
|
[48] |
Zheng, C.; Chen, Y.; Jiang, L. L.; Shi, X. M. Phytochem. Lett. 2014, 10, 272.
doi: 10.1016/j.phytol.2014.10.011 |
[49] |
Zhang, P.; Meng, L. H.; Mandi, A.; Kurtan, T.; Li, X. M.; Liu, Y.; Li, X.; Li, C. S.; Wang, B. G. Eur. J. Org. Chem. 2014, 2014, 4029.
doi: 10.1002/ejoc.v2014.19 |
[50] |
Zhang, P.; Meng, L. H.; Li, X. M.; Wang, B. G. RSC Adv. 2015, 5, 39870.
doi: 10.1039/C5RA02203G |
[51] |
Huang, Z. J.; Yang, J. X.; Cai, X. L.; She, Z. G.; Lin, Y. C. Nat. Prod. Res. 2012, 26, 1291.
doi: 10.1080/14786419.2011.569502 |
[52] |
Liu, J.; X. M.; Zhu, M. Y.; Feng, Y. Nat. Prod. Commun. 2015, 10, 1203.
|
[53] |
Guo, W. Q.; Li, D.; Peng, J. X.; Zhu, T. J.; Gu, Q. Q.; Li, D. H. J. Nat. Prod. 2015, 78, 306.
doi: 10.1021/np500586r |
[54] |
Li, H. X.; Jiang, J. Y.; Liu, Z. M.; Lin, S. E.; Xia, G. P.; Xia, X. K.; Ding, B.; He, L.; Lu, Y. J.; She, Z. G. J. Nat. Prod. 2014, 77, 800.
doi: 10.1021/np400880w |
[55] |
Shao, C. L.; Wang, C. Y.; Wei, M. Y.; Gu, Y. C.; Xia, X. K.; She, Z. G.; Lin, Y. C. Magn. Reson. Chem. 2008, 46, 1066.
doi: 10.1002/mrc.v46:11 |
[56] |
Li, J.; Zhong, Y. S.; Yuan, J.; Zhu, X.; Lu, Y. J.; Lin, Y. C.; Lan, L. Nat. Prod. Commun. 2015, 10, 1549.
|
[57] |
Liu, J. F.; Chen, W. J.; Xin, B. R.; Lu, J. Nat. Prod. Commun. 2014, 9, 799.
|
[58] |
Zhang, P.; Li, X. M.; Liu, H.; Li, X.; Wang, B. G. Phytochem. Lett. 2015, 13, 160.
doi: 10.1016/j.phytol.2015.06.009 |
[59] |
Guo, W. Q.; Kong, X. L.; Zhu, T. J.; Gu, Q. Q.; Li, D. H. Arch. Pharm. Res. 2015, 38, 1449.
doi: 10.1007/s12272-014-0513-3 |
[60] |
Liu, Y. Y.; Yang, Q.; Xia, G. P.; Huang, H. B.; Li, H. X.; Li, M.; Lu, Y. J.; He, L.; Xia, X. K.; She, Z. G. J. Nat. Prod. 2015, 78, 1816.
doi: 10.1021/np500885f |
[61] |
Liu, Y. Y.; Xia, G. P.; Li, H. X.; Lin, M.; Ding, B.; Lu, Y. J.; He, L.; Xia, X. K.; She, Z. G. Planta Med. 2014, 80, 912.
doi: 10.1055/s-00000058 |
[62] |
Lin, Z. J.; Zhu, T. J.; Fang, Y. C.; Gu, Q. Q.; Zhu, W. M. Phytochemistry 2008, 69, 1273.
doi: 10.1016/j.phytochem.2007.10.030 |
[63] |
Xu, M. J.; Gessner, G. D.; Groth, I.; Lange, C.; Christner, A.; Bruhn, T.; Deng, Z. W.; Li, X.; Lin, W. H. Tetrahedron 2007, 63, 435.
doi: 10.1016/j.tet.2006.10.050 |
[64] |
Zhu, M. L.; Yang, Z.; Feng, H. M.; Gan, Q.; Che, Q.; Zhu, T. J.; Gu, Q. Q.; Han, B. N.; Li, D. H. RSC Adv. 2017, 7, 48019.
doi: 10.1039/C7RA10389A |
[65] |
Zhu, M. L.; Zhang, X. M.; Feng, H. M.; Dai, J. J.; Li, J.; Che, Q.; Gu, Q. Q.; Zhu, T. J.; Li, D. H. J. Nat. Prod. 2017, 80, 71.
doi: 10.1021/acs.jnatprod.6b00483 |
[66] |
Yang, Z.; Zhu, M. L.; Li, D. H.; Zeng, R.; Han, B. N. Bioorg. Med. Chem. Lett. 2017, 25, 6614.
doi: 10.1016/j.bmc.2017.10.044 |
[67] |
Zhu, M. L.; Yang, Z.; Wang, H, T.; Gan, Q.; Zhang, G. J.; Che, Q.; Zhu, T. J.; Gu, Q. Q.; Han, B. N.; Li, D. H. J. Nat. Prod. 2020, 83, 2647.
doi: 10.1021/acs.jnatprod.0c00451 |
[68] |
Qiu, L. M.; Wang, P.; Liao, G.; Zeng, Y. B.; Cai, C. H.; Kong, F. D.; Guo, Z. K.; Peter, P.; Dai, H. F.; Mei, W. L. Mar. Drugs 2018, 16, 1082.
|
[69] |
Bai, M.; Zheng, C. J.; Nong, X. H.; Zhou, X. M.; Luo, Y. P.; Chen, G. Y. Mar. Drugs 2019, 17, 6922.
|
[70] |
Meng, L. H.; Li, X. M.; Lv, C. T.; Li, C. S.; Xu, G. M.; Huang, C. G.; Wang, B. G. J. Nat. Prod. 2013, 76, 2145.
doi: 10.1021/np400614f |
[71] |
Meng, L. H.; Li, X. M.; Liu, Y.; Wang, B. G. Org. Lett. 2014, 16, 6052.
doi: 10.1021/ol503046u |
[72] |
Meng, L. H.; Li, X. M.; Li, H. L.; Wang, B. G. Mar. Drugs 2020, 18, 3392.
|
[73] |
Zhu, X. W.; Wu, Z. H.; Liang, F. Y.; Gan, S. X.; Huang, Q.; Ding, W. J.; Li, C. Y. Chem. Nat. Compd. 2018, 54, 520.
doi: 10.1007/s10600-018-2394-z |
[74] |
Zhu, X. W.; Zhou, D. L.; Liang, F. Y.; Wu, Z. H.; She, Z. G.; Li, C. Y. Fitoterapia 2017, 123, 23.
doi: 10.1016/j.fitote.2017.09.016 |
[75] |
Huang, S.; Chen, H. Y.; Li, W. S.; Zhu, X. W.; Ding, W. J.; Li, C. Y. Mar. Drugs 2016, 14, 1721.
|
[76] |
Cao, J.; Li, X. M.; Li, X.; Li, H. L.; Meng, L. H.; Wang, B. G. Phytochem. Lett. 2019, 32, 1.
doi: 10.1016/j.phytol.2019.04.018 |
[77] |
Liu, H. J.; Chen, S. H.; Liu, W. Y.; Liu, Y. Y.; Huang, X. S.; She, Z. G. Mar. Drugs 2016, 14, 2171.
|
[78] |
Ma, Y. H.; Li, J.; Huang, M. X.; Liu, L.; Wang, J.; Lin, Y. C. Mar. Drugs 2015, 13, 6306.
doi: 10.3390/md13106306 |
[79] |
Yan, H. J.; Gao, S. S.; Li, C. S.; Li, X. M.; Wang, B. G. Molecules 2010, 15, 3270.
doi: 10.3390/molecules15053270 |
[80] |
Darsih, C.; Prachyawarakorn, V.; Wiyakrutta, S.; Mahidol, C.; Ruchirawat, S.; Kittakoop, P. RSC Adv. 2015, 5, 70595.
doi: 10.1039/C5RA13735G |
[81] |
Qiu, P.; Cai, R. L.; Li, L.; She, Z. G. Chin. J. Nat. Med. 2020, 18, 256.
|
[82] |
Lu, Z. Y.; Zhu, H. J.; Fu, P.; Wang, Y.; Zhang, Z. H.; Lin, H. P.; Liu, P. P.; Zhuang, Y. B.; Hong, K.; Zhu, W. M. J. Nat. Prod. 2010, 73, 911.
doi: 10.1021/np100059m |
[83] |
Wang, J. F.; Lu, Z. Y.; Liu, P. P.; Wang, Y.; Li, J.; Hong, K.; Zhu, W. M. Planta Med. 2012, 78, 1861.
doi: 10.1055/s-00000058 |
[84] |
Shen, Y.; Huang, J. G.; Cai, L. H.; Wang, X. X.; Yang, S. T.; Huang, X. S.; Deng, M. C.; Duan, D. Guangdong Chem. Ind. 2020, 47, 85.
|
[85] |
Han, Z.; Mei, W. L.; Zhao, Y. X.; Deng, Y. Y.; Dai, H. F. Chem. Nat. Compd. 2009, 45, 805.
doi: 10.1007/s10600-010-9503-y |
[86] |
Li, J.; Yang, X.; Lin, Y. Y.; Yuan, J.; Lu, Y. J.; Zhu, X.; Li, J.; Li, M. F.; Lin, Y. C.; He, J. G. Fitoterapia 2014, 97, 241.
doi: 10.1016/j.fitote.2014.06.011 |
[87] |
Zhang, Z. Z.; He, X. Q.; Zhang, G. J.; Che, Q.; Zhu, T. J.; Gu, Q. Q.; Li, D. H. J. Nat. Prod. 2017, 80, 3167.
doi: 10.1021/acs.jnatprod.7b00417 |
[88] |
Wang, J. M.; Ding, G. Z.; Fang, L.; Dai, J. G.; Yu, S. S.; Wang, Y. H.; Chen, X. G.; Ma, S. G.; Qu, J.; Xu, S. J. Nat. Prod. 2010, 73, 1240.
doi: 10.1021/np1000895 |
[89] |
Guo, H. J.; Sun, B. D.; Gao, H.; Chen, X. L.; Liu, S. C.; Yao, X. S.; Liu, X. Z.; Che, Y. S. J. Nat. Prod. 2009, 72, 2115.
doi: 10.1021/np900654a |
[90] |
Chi, L. P.; Li, X. M.; Li, X.; Wang, B. G. Chem. Biodiversity 2020, 17, e2000320.
|
[91] |
Harwoko, H.; Lee, J.; Hartmann, R.; Mandi, A.; Kurtan, T.; Mueller, W. E. G.; Feldbruegge, M.; Kalscheuer, R.; Ancheeva, E.; Daletos, G. Fitoterapia 2020, 146, 104698.
doi: S0367-326X(20)30280-X pmid: 32745508 |
[92] |
Kong, F. D.; Wang, Y.; Liu, P. P.; Dong, T. H.; Zhu, W. M. J. Nat. Prod. 2014, 77, 132.
doi: 10.1021/np400802d |
[93] |
Zhou, L. M.; Kong, F. D.; Fan, P.; Ma, Q. Y.; Xie, Q. Y.; Li, J. H.; Zheng, H. Z.; Zheng, Z. H.; Yuan, J. Z.; Dai, H. F. J. Nat. Prod. 2019, 82, 2638.
doi: 10.1021/acs.jnatprod.9b00620 pmid: 31469560 |
[94] |
Hu, X. Y.; Meng, L. H.; Li, X.; Yang, S. Q.; Li, X. M.; Wang, B. G. Mar. Drugs 2017, 15, 13701.
|
[95] |
Gao, N.; Shang, Z. C.; Yu, P.; Luo, J.; Jian, K. L.; Kong, L. Y.; Yang, M. H. Chin. Chem. Lett. 2017, 28, 1194.
doi: 10.1016/j.cclet.2017.02.022 |
[96] |
Ariantari, N. P.; Ancheeva, E.; Wang, C. Y.; Mandi, A.; Knedel, T. O.; Kurtan, T.; Chaidir, C.; Mueller, W. E. G.; Kassack, M. U.; Janiak, C. J. Nat. Prod. 2019, 82, 1412.
doi: 10.1021/acs.jnatprod.8b00723 pmid: 31117519 |
[97] |
Zhao, J. C.; Wang, Y. L.; Zhang, T. Y.; Chen, Z. J.; Yang, T. M.; Wu, Y. Y.; Sun, C. P.; Ma, X. C.; Zhang, Y. X. Phytochemistry 2018, 148, 21.
doi: 10.1016/j.phytochem.2018.01.010 |
[98] |
Gao, S. S.; Li, X. M.; Williams, K.; Proksch, P.; Ji, N. Y.; Wang, B. G. J. Nat. Prod. 2016, 79, 2066.
doi: 10.1021/acs.jnatprod.6b00403 |
[99] |
Lo, H. C.; Entwistle, R.; Guo, C. J.; Ahuja, M.; Szewczyk, E.; Hung, J. H.; Chiang, Y. M.; Oakley, B. R.; Wang, C. C. C. J. Am. Chem. Soc. 2012, 134, 4709.
doi: 10.1021/ja209809t |
[100] |
Arunpanichlert, J.; Rukachaisirikul, V.; Phongpaichit, S.; Supaphon, O.; Sakayaroj, J. Tetrahedron 2015, 71, 882.
doi: 10.1016/j.tet.2014.12.009 |
[101] |
Liu, Z. M.; Liu, H. J.; Chen, Y.; She, Z. G. Nat. Prod. Res. 2018, 32, 2652.
doi: 10.1080/14786419.2017.1375924 |
[102] |
Wen, H. L.; Yang, X. L.; Liu, Q.; Li, S. J.; Li, Q.; Zang, Y.; Chen, C. M.; Wang, J. P.; Zhu, H. C.; Zhang, Y. H. J. Nat. Prod. 2020, 83, 99.
doi: 10.1021/acs.jnatprod.9b00878 |
[103] |
Jia, Q.; Du, Y. Q.; Wang, C.; Wang, Y.; Zhu, T. H.; Zhu, W. M. Mar. Drugs 2019, 17, 2602.
|
[104] |
Cao, F.; Meng, Z. H.; Mu, X.; Yue, Y. F.; Zhu, H. J. J. Nat. Prod. 2019, 82, 386.
doi: 10.1021/acs.jnatprod.8b01030 |
[105] |
Cao, F.; Yang, J. K.; Liu, Y. F.; Zhu, H. J.; Wang, C. Y. Nat. Prod. Res. 2016, 30, 2448.
doi: 10.1080/14786419.2016.1198352 |
[106] |
Quang, D. N.; Hashimoto, T.; Nomura, Y.; Wollweber, H.; Hellwig, V.; Fournier, J.; Stadler, M.; Asakawa, Y. Phytochemistry 2005, 66, 797.
pmid: 15797606 |
[1] | Jinyan He, Fuyun Tian, Qingqing Wu, Yueming Zheng, Yuting Chen, Haiyan Xu, Zhengsheng Jin, Li Zhan, Xinqiang Cheng, Yueling Gu, Zhaobing Gao, Guilong Zhao. Design, Synthesis and Bioactivity of [3.3.3]Propellane-Based Voltage-Gated Calcium Channel α2δ Subunit Ligands [J]. Chinese Journal of Organic Chemistry, 2023, 43(6): 2226-2238. |
[2] | Yang Sun, Yang Wang, Zichan Zhang, Ye Qian, Guicheng Luo, Beibei Zhou, Lisha Miao, Yudie Chen, Hong Dai, Baolin Xu, Zhengguang Wu. Synthesis and Bioactivities of Novel Pyrazole Oxime Derivatives Containing 1,3,4-Oxadiazole Group [J]. Chinese Journal of Organic Chemistry, 2023, 43(4): 1584-1590. |
[3] | Bingwen Zhang, Yuqi Lin, Yanqing Xue, Jing Wang, Wenchao Yang, Xiaofeng Wang, Wen Liu. Study on Secondary Metabolites from Fusarium graminearum [J]. Chinese Journal of Organic Chemistry, 2023, 43(11): 4003-4007. |
[4] | Jing-Yu Yang, Min-Min Tang, Li Chen, Xin-Yi Lai, Xin Zhuo, Xue-Ming Zhou, Guang-Ying Chen. Study on the Secondary Metabolites of Endophytic Penicillium sclerotiorum HLL113 [J]. Chinese Journal of Organic Chemistry, 2022, 42(3): 896-900. |
[5] | Sha Zhou, Mukuo Wang, Weibin Xie, Shaa Zhou, Lixia Xiong, Yu Zhao, Zhengming Li. Synthesis and Insecticidal Activities of Novel Optically Active Dicarboxamides Containing N-Trifluoroacetyl Sulfulimiyl Substituents [J]. Chinese Journal of Organic Chemistry, 2021, 41(9): 3532-3538. |
[6] | Jiyan Shao, Zhijie Li, Yajun Wang, Yuyan Xiong, Xiangdong Hu. Synthesis and Bioactivity of Tropone Derivatives as Potential Compounds against Human Gastric Cancer Cells Growth [J]. Chinese Journal of Organic Chemistry, 2021, 41(9): 3675-3681. |
[7] | Chenhao Xu, Yunpeng Gong, Yaxin Chen, Qimeng Song, Jiao Li, Yichao Zheng, Wen Li, Kai Sun, Hongmin Liu. Design, Synthesis and Activity Evaluation of Novel Bromodomain-Containing Protein 4 (BRD4) Small Molecule Inhibitor Based on ABBV-075 [J]. Chinese Journal of Organic Chemistry, 2021, 41(4): 1712-1721. |
[8] | Xibin Wu, Yinfeng Tan, Jiling Yi, Xinming Song, Jingyu Yang, Xueming Zhou, Guangying Chen. Study on Bioactive Secondary Metabolites from Penicillium herquei JX4 [J]. Chinese Journal of Organic Chemistry, 2021, 41(3): 1251-1254. |
[9] | Zhang Min, Zheng Dandan, Ni Yadan, Liang Kai, Xun Xiao, Hu Lanping, Chen Qingwen, Yang Bing, Liang Zhipeng, Ding Ying, Shi Jian, Dai Hong. Synthesis and Bioactivities of Novel Pyrazole Amides Carrying Oxazole Moiety [J]. Chinese Journal of Organic Chemistry, 2020, 40(6): 1772-1778. |
[10] | Huang Jing, Yang Yihua, Feng Juan, Li Junzhang, Liu Shouxin. Research Progress on cis-/trans-Isomerization of Cyclic Peptide [J]. Chinese Journal of Organic Chemistry, 2020, 40(6): 1473-1483. |
[11] | Xun Xiao, Ni Yadan, Li Jinfeng, Ding Ying, Zhang Min, Wang Yang, Hu Lanping, Zhou Huanyu, Yang Bing, Shi Jian, Gao Lei, Dai Hong. Synthesis and Bioactivities of Novel Pyrazole Oxime Derivatives Containing a N-Pyridylpyrazole Moiety [J]. Chinese Journal of Organic Chemistry, 2020, 40(6): 1638-1646. |
[12] | Gu Yiyu, Lü Xiaoqing, Ma Xiaodong, Zhang Haojian, Ji Yuanyuan, Ding Wanjing, Shen Li. Design, Synthesis and Biological Evaluation of Novel (Quinolinyl-3-pyridinyl)benzenesulfonamide-Based Hydroxamic Acids as PI3K and HDAC Dual Targeting Inhibitors [J]. Chinese Journal of Organic Chemistry, 2020, 40(1): 95-107. |
[13] | Wang Yurong, Zheng Dandan, Wang Yang, Ye Hao, Yao Wei, Ding Ying, Gu Haiying, Feng Xia, Li Ling, Dai Hong. Synthesis and Bioactivities of Novel Pyrazole Oxime Ethers Containing 1,2,4-Triazole Moiety [J]. Chin. J. Org. Chem., 2019, 39(7): 2053-2061. |
[14] | Shi Yujun, Zhou Qian, Wang Yang, Qian Hongwei, Ye Linyu, Feng Xia, Chen Hui, Li Yating, Dai Hong, Wei Zhonghao, Wu Jinming. Synthesis and Biological Activities of Novel Pyrazole Amide Derivatives Containing Substituted Pyridyl Group [J]. Chin. J. Org. Chem., 2018, 38(9): 2450-2457. |
[15] | Yuan Rui, Wang Yuanjiang, Huang Shuying, Dou Pengfei, Zhang Longyan, Chen Wen, Ren Xuanxuan, Zhou Shengliang, Wan Yu, Wu Hui. Synthesis and Biological Evaluation of Novel Flavonoid-Substituted Tröger's Bases [J]. Chin. J. Org. Chem., 2018, 38(12): 3338-3344. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||