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蓝光和绿光响应型笼蔽谷氨酸盐

Blue and Green Light Responsive Caged Glutamate.

作者信息

Ma Jingxuan, Egodawaththa Nishal M, Guruge Charitha, Márquez Oriana A Valladares, Likes Molly, Nesnas Nasri

机构信息

Department of Biomedical and Chemical Engineering and Sciences, Florida Institute of Technology, 150 West University Blvd., Melbourne, FL 32901, United States.

出版信息

J Photochem Photobiol A Chem. 2024 Jan 15;447. doi: 10.1016/j.jphotochem.2023.115183. Epub 2023 Sep 18.

Abstract

Glutamate (Glu) is an excitatory neurotransmitter that plays a critical role in memory. Brain mapping activities of such pathways relied heavily on the ability to release Glu with spatiotemporal precision. Several photo-protecting groups (PPGs), referred to as photocages or cages, were designed to accomplish the release of Glu upon irradiation. Previously reported Glu cages responded to UV upon irradiation with single photons, which limited their use in vivo experiments due to cytotoxicity. Other caged designs suffered from lower quantum efficiency (QE) of release necessitating higher concentrations and/or longer photoirradiation times. There have been limited examples of cages that respond to visible light with single photon irradiation. Herein, we report the efficient preparation of 11 caged Glu examples that respond to two visible wavelengths, 467 nm (thiocoumarin based) and 515-540 nm (BODIPY based). The kinetics of photouncaging were studied for all caged designs, and we report all quantum efficiencies, i.e., quantum yields (Φ), that ranged from 0.0001-0.65. Two of the BODIPY cages are reported here for the first time, and one, Me-BODIPY-Br-Glu, shows the most efficient Glu release with a QE of 0.65. Similar caged designs can be extended to the inhibitory neurotransmitter, GABA. This would enable the use of two visible wavelengths to modulate the release of excitatory and inhibitory neurotransmitters upon demand via optical control.

摘要

谷氨酸(Glu)是一种在记忆中起关键作用的兴奋性神经递质。此类神经通路的脑图谱绘制活动在很大程度上依赖于以时空精确性释放Glu的能力。几种光保护基团(PPGs),即所谓的光笼或笼合物,被设计用于在光照下实现Glu的释放。先前报道的Glu光笼在单光子照射下对紫外线有反应,由于细胞毒性,这限制了它们在体内实验中的应用。其他笼合物设计存在释放量子效率(QE)较低的问题,需要更高的浓度和/或更长的光照射时间。对单光子照射可见光有反应的笼合物实例有限。在此,我们报告了11种对467 nm(基于硫代香豆素)和515 - 540 nm(基于BODIPY)这两个可见光波长有反应的笼合Glu实例的高效制备方法。对所有笼合物设计的光解动力学进行了研究,我们报告了所有的量子效率,即量子产率(Φ),范围为0.0001 - 0.65。这里首次报道了两种基于BODIPY的笼合物,其中一种,甲基 - BODIPY - 溴 - Glu,显示出最有效的Glu释放,量子产率为0.65。类似的笼合物设计可以扩展到抑制性神经递质γ - 氨基丁酸(GABA)。这将使得能够利用两个可见光波长通过光学控制按需调节兴奋性和抑制性神经递质的释放。

相似文献

1
Blue and Green Light Responsive Caged Glutamate.蓝光和绿光响应型笼蔽谷氨酸盐
J Photochem Photobiol A Chem. 2024 Jan 15;447. doi: 10.1016/j.jphotochem.2023.115183. Epub 2023 Sep 18.
2
Improved Synthesis of Caged Glutamate and Caging Each Functional Group.笼状谷氨酸的改进合成和每个功能基团的笼化。
ACS Chem Neurosci. 2018 Nov 21;9(11):2713-2721. doi: 10.1021/acschemneuro.8b00152. Epub 2018 May 25.

本文引用的文献

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Conditionally Activatable Visible-Light Photocages.条件激活型可见光光笼
J Am Chem Soc. 2020 Sep 2;142(35):15164-15171. doi: 10.1021/jacs.0c07508. Epub 2020 Aug 18.
6
Water-Soluble BODIPY Photocages with Tunable Cellular Localization.具有可调细胞定位的水溶性 BODIPY 光笼。
J Am Chem Soc. 2020 Mar 18;142(11):4970-4974. doi: 10.1021/jacs.9b13219. Epub 2020 Mar 5.
8
Caged Proline in Photoinitiated Organocatalysis.笼状脯氨酸在光引发的有机催化中的应用。
J Org Chem. 2019 May 3;84(9):5236-5244. doi: 10.1021/acs.joc.9b00220. Epub 2019 Apr 3.
9
Two-Photon Uncaging of Glutamate.谷氨酸的双光子解笼锁
Front Synaptic Neurosci. 2019 Jan 9;10:48. doi: 10.3389/fnsyn.2018.00048. eCollection 2018.
10
Improved Synthesis of Caged Glutamate and Caging Each Functional Group.笼状谷氨酸的改进合成和每个功能基团的笼化。
ACS Chem Neurosci. 2018 Nov 21;9(11):2713-2721. doi: 10.1021/acschemneuro.8b00152. Epub 2018 May 25.

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