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基于两亲性单苯荧光团的脂质滴检测荧光纳米探针的研制及其实际应用

Development of a fluorescent nanoprobe based on an amphiphilic single-benzene-based fluorophore for lipid droplet detection and its practical applications.

作者信息

Jung Yuna, Jin Ji Hye, Kim Youngseo, Oh Ji Hyeon, Moon Heechang, Jeong Huisu, Kim Jaehoon, Park Yoon Kyung, Oh Yohan, Park Sungnam, Kim Dokyoung

机构信息

Department of Biomedical Science, Graduate School, Kyung Hee University, Seoul 02447, Republic of Korea.

Department of Chemistry, Korea University, Seoul, 02841, Republic of Korea.

出版信息

Org Biomol Chem. 2022 Jul 13;20(27):5423-5433. doi: 10.1039/d2ob00830k.

Abstract

Lipid droplets (LDs) are crucial biological organelles connected with metabolic pathways in biological systems and diseases. To monitor the locations and accumulation of LDs in lipid-related diseases, the development of a visualization tool for LDs has gained importance. In particular, LD visualization using fluorescent probes has gained attention. Herein, a new fluorescent nanoprobe, BMeS-Ali, is developed that can sense LDs based on an amphiphilic single benzene-based fluorophore (SBBF). BMeS-Ali consists of hydrophilic (-NH) and hydrophobic (-CH) moieties and exists as a micelle nanostructure in aqueous media. BMeS-Ali has a weak fluorescence, but its emission was dramatically enhanced upon exposure to the LD components such as oleic acids (OA) by reassembling its nano-formulation. BMeS-Ali showed a selective LD staining ability and great biocompatibility in cells (cancer cells and stem cells). It also showed a practical sensing ability towards biologically derived lipids and can be applied to the visualization of human fingerprints. We found that the nanoprobe BMeS-Ali has significant potential to serve as a practical dye and sensor for lipids, especially for LD imaging in the biomedical research area and broader industrial applications.

摘要

脂滴(LDs)是与生物系统和疾病中的代谢途径相关的关键生物细胞器。为了监测脂滴在脂质相关疾病中的位置和积累情况,开发一种用于脂滴的可视化工具变得至关重要。特别是,使用荧光探针进行脂滴可视化受到了关注。在此,开发了一种新型荧光纳米探针BMeS-Ali,它可以基于两亲性单苯荧光团(SBBF)来检测脂滴。BMeS-Ali由亲水部分(-NH)和疏水部分(-CH)组成,在水性介质中以胶束纳米结构存在。BMeS-Ali具有微弱的荧光,但在暴露于油酸(OA)等脂滴成分时,通过重新组装其纳米制剂,其发射显著增强。BMeS-Ali在细胞(癌细胞和干细胞)中表现出选择性的脂滴染色能力和良好的生物相容性。它还对生物衍生脂质具有实际的传感能力,可应用于人类指纹的可视化。我们发现纳米探针BMeS-Ali具有作为脂质实用染料和传感器的巨大潜力,特别是在生物医学研究领域的脂滴成像以及更广泛的工业应用中。

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