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关于与选定的人血浆蛋白体外相互作用的苯并噻嗪衍生物的光谱研究:第 2 部分。

Spectroscopic Studies of Quinobenzothiazine Derivative in Terms of the In Vitro Interaction with Selected Human Plasma Proteins: Part 2.

机构信息

Department of Physical Pharmacy, Faculty of Pharmaceutical Sciences in Sosnowiec, Medical University of Silesia, 40-055 Katowice, Poland.

Department of Organic Chemistry, Faculty of Pharmaceutical Sciences in Sosnowiec, Medical University of Silesia, 40-055 Katowice, Poland.

出版信息

Molecules. 2023 Jan 10;28(2):698. doi: 10.3390/molecules28020698.

Abstract

Synthesis of anticancer substances and studying their binding abilities towards human serum proteins as carriers are important parts of pharmaceutical and medical sciences development. The presented work is a continuation of studies of quinobenzothiazine derivatives binding with serum proteins. The main aim of this work was a spectroscopic analysis of second from benzothiazinium derivatives salt, 9-fluoro-5-alkyl-12(H)-quino [3,4-b][1,4]benzothiazinium chloride (Salt2), its interaction with carrier proteins, i.e., human serum albumin (HSA), α-acid glycoprotein (AGP), human gamma globulin (HGG), and the study of protein secondary and tertiary structure changes using spectroscopic techniques (spectrofluorescence, UV-Vis and circular dichroism CD spectroscopy). In order to mimic in vivo conditions, control normal serum (CNS) was used. Using the Klotz method, both binding constants (K [M]) and the number of binding classes (n) were calculated. In addition, the percentage of displacement of binding site markers from HSA and AGP molecules has been defined. Based on the obtained data, it can be concluded that the main binding protein for Salt2 is AGP. HSA and HGG are also involved in the distribution of the studied substance in the bloodstream. Moreover, Salt2 very slightly interacts with CNS, which can cause strong therapeutic as well as toxic effects. The analysis of CD spectra confirms that there are no changes in the secondary structure of the main binding proteins in the presence of Salt2.

摘要

合成抗癌物质并研究它们与人体血清蛋白作为载体的结合能力是药物和医学科学发展的重要组成部分。本工作是苯并噻嗪衍生物与血清蛋白结合研究的延续。这项工作的主要目的是对第二种苯并噻嗪衍生物盐,9-氟-5-烷基-12(H)-喹诺[3,4-b][1,4]苯并噻嗪鎓氯化物(盐 2)进行光谱分析,研究其与载体蛋白(即人血清白蛋白(HSA)、α-酸性糖蛋白(AGP)、人γ球蛋白(HGG)的相互作用),并使用光谱技术(荧光光谱、紫外-可见和圆二色性 CD 光谱)研究蛋白质二级和三级结构的变化。为了模拟体内条件,使用了对照正常血清(CNS)。使用 Klotz 法计算了结合常数(K [M])和结合类别的数量(n)。此外,还定义了从 HSA 和 AGP 分子中置换结合部位标记物的百分比。根据获得的数据,可以得出结论,盐 2 的主要结合蛋白是 AGP。HSA 和 HGG 也参与了研究物质在血液中的分布。此外,盐 2 与 CNS 的相互作用非常微弱,这可能导致强烈的治疗和毒性作用。CD 光谱分析证实,在盐 2 存在的情况下,主要结合蛋白的二级结构没有变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd3b/9865466/dba9806ed5b8/molecules-28-00698-g001.jpg

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