Chinese Journal of Organic Chemistry ›› 2025, Vol. 45 ›› Issue (9): 3301-3313.DOI: 10.6023/cjoc202503015 Previous Articles Next Articles
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彭澳霈a, 李扬a, 朱园园b,*(
), 吴广文a,*(
), 古双喜a,*(
)
收稿日期:2025-03-16
修回日期:2025-04-18
发布日期:2025-05-15
基金资助:
Aopei Penga, Yang Lia, Yuanyuan Zhub,*(
), Guangwen Wua,*(
), Shuangxi Gua,*(
)
Received:2025-03-16
Revised:2025-04-18
Published:2025-05-15
Contact:
E-mail: Supported by:Share
Aopei Peng, Yang Li, Yuanyuan Zhu, Guangwen Wu, Shuangxi Gu. Advances in Chemoselective Recognition of Amino Acids by Schiff Base Fluorescent Probes[J]. Chinese Journal of Organic Chemistry, 2025, 45(9): 3301-3313.
| 氨基酸 | 探针 | 荧光响应 | 检测限 | 溶剂 | pH | 金属离子 | 识别机理 | |
|---|---|---|---|---|---|---|---|---|
| 酸性 | Glu | 17[ | 增强 | 185.0 nmol/L | EtOH/H2O (V/V=1/4) | 7.0 | Al3+ | C=N、氨基酸的氨基和羰基与Al3+的共配位作用 |
| 碱性 | Arg | 1[ | 增强 | DMSO/H2O (V/V=1/1) | 7.0 | No | 与Arg的作用改变了C=N与OH之间氢键上电子转移 | |
| 2[ | 增强 | DMSO/H2O (V/V=1/1) | 7.0 | No | 与Arg作用后C=N与NO2之间氢键变化 | |||
| 3[ | 增强 | DMSO/H2O (V/V=1/1) | 7.0 | No | 与Arg的作用改变了C=N与OH之间氢键上电子转移 | |||
| 4[ | 无响应 | DMSO/H2O (V/V=1/1) | 7.0 | No | ||||
| 5[ | 增强 | DMSO/H2O (V/V=1/1) | 7.0 | No | 与Arg的作用改变了C=N与OH之间氢键上电子转移 | |||
| 11[ | 增强 | 13.07 nmol/L | THF/H2O | 7.0 | Zn2+ | C=N、Arg的氨基和羧基与Zn2+的共配位作用, C=N与Arg胍基质子氢键作用 | ||
| 16[ | 增强 | 148.0 nmol/L | EtOH/H2O (V/V=1/4) | 7.0 | Cu2+ | C=N、Arg的氨基和羧基与Cu2+的共配位作用 | ||
| Lys | 11[ | 增强 | 12.53 nmol/L | H2O/1.25% THF | 7.0 | Zn2+ | C=N、Lys的氨基、羧基与Zn2+的共配位作用, C=N与Lys氨基质子氢键作用 | |
| 非极性 | Phe | 12[ | 淬灭 | 18.45 μmol/L | MeOH/H2O (V/V=6/4) | 7.0 | No | C=N、三唑环、OCH2与Phe的氨基、羧基之间的氢键作用 |
| Trp | 13[ | 增强 | DMSO/H2O (V/V=9/1) | 7~11 | Cu2+ | 竞争配位与共配位形成三元复合物 | ||
| 14[ | 增强 | 130.7 μmol/L | MeOH | 2~12 | No | C=O、C=C与Trp的氨基、羧基之间通过氢键作用, 形成包含C=N的大环 | ||
| 极性 | Cys | 6[ | 增强 | 3.6 nmol/L | CH3CN-PBS (V/V=1/2) | 7.2 | No | 探针醛基与Cys巯基发生环化反应后通过分子内氢键形成五元环, 抑制C=N异构化诱导的荧光淬灭 |
| 7[ | 增强 | 9 μmol/L | HEPES buffer/1% MeCN | 7.4 | Cu2+ | Cys对Cu2+的竞争配位, C=N水解释放荧光素 | ||
| 8[ | 增强 | 0.64 nmol/L | PBS buffer | 7.4 | Cu2+ | 探针的C=N, C=O, OH与Cu2的配位作用淬灭荧光, Cys对Cu2+的竞争配位, 释放探针分子, 荧光恢复 | ||
| 9[ | 淬灭 | 1.2 μmol/L | MeOH/H2O (V/V=3/7) | 7.0 | Cu2+ | Cys对Cu2+的竞争配位, 释放罗丹明分子且使其内酰胺环重新形成, 荧光淬灭 | ||
| 10[ | 淬灭 | 1.23 μmol/L | MeCN/H2O (V/V=8/2) | 7.0 | Zn2+ | Cys对Zn2+的竞争配位, 释放探针分子 | ||
| Ser | 15[ | 增强 | 1.74 nmol/L | DMF | 7.0 | No | Ser与探针分子之间的电荷转移 | |
| 氨基酸 | 探针 | 荧光响应 | 检测限 | 溶剂 | pH | 金属离子 | 识别机理 | |
|---|---|---|---|---|---|---|---|---|
| 酸性 | Glu | 17[ | 增强 | 185.0 nmol/L | EtOH/H2O (V/V=1/4) | 7.0 | Al3+ | C=N、氨基酸的氨基和羰基与Al3+的共配位作用 |
| 碱性 | Arg | 1[ | 增强 | DMSO/H2O (V/V=1/1) | 7.0 | No | 与Arg的作用改变了C=N与OH之间氢键上电子转移 | |
| 2[ | 增强 | DMSO/H2O (V/V=1/1) | 7.0 | No | 与Arg作用后C=N与NO2之间氢键变化 | |||
| 3[ | 增强 | DMSO/H2O (V/V=1/1) | 7.0 | No | 与Arg的作用改变了C=N与OH之间氢键上电子转移 | |||
| 4[ | 无响应 | DMSO/H2O (V/V=1/1) | 7.0 | No | ||||
| 5[ | 增强 | DMSO/H2O (V/V=1/1) | 7.0 | No | 与Arg的作用改变了C=N与OH之间氢键上电子转移 | |||
| 11[ | 增强 | 13.07 nmol/L | THF/H2O | 7.0 | Zn2+ | C=N、Arg的氨基和羧基与Zn2+的共配位作用, C=N与Arg胍基质子氢键作用 | ||
| 16[ | 增强 | 148.0 nmol/L | EtOH/H2O (V/V=1/4) | 7.0 | Cu2+ | C=N、Arg的氨基和羧基与Cu2+的共配位作用 | ||
| Lys | 11[ | 增强 | 12.53 nmol/L | H2O/1.25% THF | 7.0 | Zn2+ | C=N、Lys的氨基、羧基与Zn2+的共配位作用, C=N与Lys氨基质子氢键作用 | |
| 非极性 | Phe | 12[ | 淬灭 | 18.45 μmol/L | MeOH/H2O (V/V=6/4) | 7.0 | No | C=N、三唑环、OCH2与Phe的氨基、羧基之间的氢键作用 |
| Trp | 13[ | 增强 | DMSO/H2O (V/V=9/1) | 7~11 | Cu2+ | 竞争配位与共配位形成三元复合物 | ||
| 14[ | 增强 | 130.7 μmol/L | MeOH | 2~12 | No | C=O、C=C与Trp的氨基、羧基之间通过氢键作用, 形成包含C=N的大环 | ||
| 极性 | Cys | 6[ | 增强 | 3.6 nmol/L | CH3CN-PBS (V/V=1/2) | 7.2 | No | 探针醛基与Cys巯基发生环化反应后通过分子内氢键形成五元环, 抑制C=N异构化诱导的荧光淬灭 |
| 7[ | 增强 | 9 μmol/L | HEPES buffer/1% MeCN | 7.4 | Cu2+ | Cys对Cu2+的竞争配位, C=N水解释放荧光素 | ||
| 8[ | 增强 | 0.64 nmol/L | PBS buffer | 7.4 | Cu2+ | 探针的C=N, C=O, OH与Cu2的配位作用淬灭荧光, Cys对Cu2+的竞争配位, 释放探针分子, 荧光恢复 | ||
| 9[ | 淬灭 | 1.2 μmol/L | MeOH/H2O (V/V=3/7) | 7.0 | Cu2+ | Cys对Cu2+的竞争配位, 释放罗丹明分子且使其内酰胺环重新形成, 荧光淬灭 | ||
| 10[ | 淬灭 | 1.23 μmol/L | MeCN/H2O (V/V=8/2) | 7.0 | Zn2+ | Cys对Zn2+的竞争配位, 释放探针分子 | ||
| Ser | 15[ | 增强 | 1.74 nmol/L | DMF | 7.0 | No | Ser与探针分子之间的电荷转移 | |
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