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血管-近红外探针与内皮细胞表面标志物蛋白相互作用的机制分析

Mechanism assay of interaction between blood vessels-near infrared probe and cell surface marker proteins of endothelial cells.

作者信息

Abdul Sisak Muhammad Asri, Louis Fiona, Miyao Tomoyuki, Lee Sun Hyeok, Chang Young-Tae, Matsusaki Michiya

机构信息

Department of Applied Chemistry, Graduate School of Engineering, Osaka University, Osaka, 565-0871, Japan.

Joint Research Laboratory (TOPPAN) for Advanced Cell Regulatory Chemistry, Graduate School of Engineering, Osaka University, Osaka, 565-0871, Japan.

出版信息

Mater Today Bio. 2022 Jun 23;15:100332. doi: 10.1016/j.mtbio.2022.100332. eCollection 2022 Jun.

Abstract

blood vessels imaging is crucial to study blood vessels related diseases in real-time. For this purpose, fluorescent based imaging is one of the utmost techniques for imaging a living system. The discovery of a new near-infrared probe (CyA-B2) by screening chemical probe library in our previous report which showed the most specific binding on the blood capillaries of the 3D-tissue models give us interest to study more about the binding site of this probe to the surface of endothelial cells main component cell of blood capillaries. By studying the competition assays of CyA-B2 using several potential surface markers of endothelial cells found through the chemical database (ChEMBL) and manually selected, CD133 gave the lowest IC (half maximal inhibitory concentration) value. Hence, CD133 protein which is expressed on the endothelial cell membrane was postulated to be the binding site due to the suppression of CyA-B2 on the blood capillaries by the competition assays. Since, CD133 is also expressed on many types of cancer cells, it would be useful to use CyA-B2 as a bioprobe to monitor or diagnostic tumor growth.

摘要

血管成像对于实时研究血管相关疾病至关重要。为此,基于荧光的成像技术是对活体系统进行成像的最重要技术之一。我们之前的报告通过筛选化学探针库发现了一种新的近红外探针(CyA-B2),该探针在三维组织模型的毛细血管上显示出最特异性的结合,这使我们有兴趣进一步研究该探针与血管内皮细胞(毛细血管的主要组成细胞)表面的结合位点。通过使用从化学数据库(ChEMBL)中找到并经人工挑选的几种潜在内皮细胞表面标志物对CyA-B2进行竞争分析,发现CD133的半数抑制浓度(IC)值最低。因此,由于竞争分析中CyA-B2对毛细血管的抑制作用,推测在内皮细胞膜上表达的CD133蛋白是结合位点。由于CD133也在多种癌细胞上表达,因此使用CyA-B2作为生物探针来监测或诊断肿瘤生长将是有用的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe80/9251809/a4070fb6e6ac/ga1.jpg

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