糖基化硼二硝基甲烷C1α和C1β异头物体外光动力学活性的比较

Colorants Pub Date : 2022-05-02 DOI:10.3390/colorants1020012
Junlong Xiong, K. Yeung, Clarence T T Wong, W. Fong, D. K. Ng
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引用次数: 1

摘要

光动力疗法(PDT)是一种针对一系列浅表和局部癌症的既定治疗方式。人们对开发先进的光敏剂有着极大的兴趣,这些光敏剂具有优越的光物理特性、高肿瘤选择性和改进的药代动力学。葡萄糖是经过充分研究的靶向分子之一,它可以通过Warburg效应选择性地向癌细胞输送各种治疗药物。然而,糖基化光敏剂用于靶向PDT的研究仍然很少,据我们所知,这些共轭物的位置异构体的PDT效果从未被比较过。本文报道了糖基化硼基二硝基光敏剂的C1α和C1β异头物的制备及其光物理性质。并以A549人肺癌细胞和HEK293人胚胎肾细胞为研究对象,比较了两种异位物的细胞摄取和光毒性。有趣的是,无论细胞类型和孵育时间如何,细胞对C1α异位体的摄取大约是C1β异位体的2倍。研究了两种异头物的吸收途径。研究发现,它们是通过能量依赖性受体/蛋白质介导的内吞作用而不是众所周知的葡萄糖转运蛋白和钠驱动的葡萄糖同调蛋白内化的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of the In Vitro Photodynamic Activity of the C1α and C1β Anomers of a Glucosylated Boron Dipyrromethene
Photodynamic therapy (PDT) is an established treatment modality for a range of superficial and localized cancers. There has been tremendous interest in the development of advanced photosensitizers that exhibit superior photophysical properties, high tumor selectivity, and improved pharmacokinetics. Glucose is one of the well-studied targeting moieties that can deliver various therapeutic agents to cancer cells selectively via the Warburg effect. However, the use of glucosylated photosensitizers for targeted PDT has remained little studied and to the best of our knowledge, the PDT effect of the positional isomers of these conjugates has never been compared. We report herein the preparation and photophysical properties of the C1α and C1β anomers of a glucosylated boron dipyrromethene-based photosensitizer. The cellular uptake and photocytotoxicity of both anomers were also studied and compared using A549 human lung carcinoma cells and HEK293 human embryonic kidney cells. Interestingly, the cellular uptake of the C1α anomer was approximately 2-fold higher than that of the C1β anomer regardless of the cell type and incubation time. The uptake pathway of both anomers was also studied. It was found that they were internalized through energy-dependent receptor/protein-mediated endocytosis rather than the well-known glucose transporters and sodium-driven glucose symporters.
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