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虾青素作为一种新的拉曼探针用于生物传感特定亚细胞脂质结构:我们能否在共振条件下检测细胞中的脂质?

Astaxanthin as a new Raman probe for biosensing of specific subcellular lipidic structures: can we detect lipids in cells under resonance conditions?

机构信息

Jagiellonian Centre for Experimental Therapeutics (JCET), Jagiellonian University, 14 Bobrzynskiego Str., 30- 348, Krakow, Poland.

Faculty of Chemistry, Jagiellonian University, 2 Gronostajowa Str., 30-387, Krakow, Poland.

出版信息

Cell Mol Life Sci. 2021 Apr;78(7):3477-3484. doi: 10.1007/s00018-020-03718-1. Epub 2020 Dec 8.

Abstract

Here we report a new Raman probe for cellular studies on lipids detection and distribution. It is (3S, 3'S)-astaxanthin (AXT), a natural xanthophyll of hydrophobic properties and high solubility in lipids. It contains a chromophore group, a long polyene chain of eleven conjugated C=C bonds including two in the terminal rings, absorbing light in the visible range that coincides with the excitation of lasers commonly used in Raman spectroscopy for studying of biological samples. Depending on the laser, resonance (excitation in the visible range) or pre-resonance (the near infrared range) Raman spectrum of astaxanthin is dominated by bands at ca. 1008, 1158, and 1520 cm that now can be also a marker of lipids distribution in the cells. We showed that AXT accumulates in lipidic structures of endothelial cells in time-dependent manner that provides possibility to visualize e.g. endoplasmic reticulum, as well as nuclear envelope. As a non-toxic reporter, it has a potential in the future studies on e.g. nucleus membranes damage in live cells in a very short measuring time.

摘要

我们在此报告一种用于细胞脂质检测和分布研究的新型拉曼探针。它是(3S,3'S)-虾青素(AXT),一种具有疏水性和高脂溶性的天然叶黄素。它含有发色团,一个由 11 个共轭 C=C 键组成的长多烯链,包括两个末端环中的 C=C 键,在可见光范围内吸收光线,与用于研究生物样品的拉曼光谱中常用的激光激发相吻合。根据激光的不同,虾青素的共振(可见光范围内的激发)或预共振(近红外范围)拉曼光谱主要由约 1008、1158 和 1520 cm 的谱带主导,现在这些谱带也可以作为细胞内脂质分布的标志物。我们表明,AXT 以时间依赖的方式积累在血管内皮细胞的脂类结构中,这为可视化内质网以及核膜等提供了可能性。作为一种无毒的示踪剂,它有可能在未来的研究中,例如在极短的测量时间内研究活细胞中的核膜损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6194/11072526/bf3f04667f1a/18_2020_3718_Fig1_HTML.jpg

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