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负载Biginelli杂化物的壳聚糖纳米珠作为癌症治疗中具有细胞周期均匀分布的细胞选择性毒性系统。

Chitosan nanobeads loaded with Biginelli hybrids as cell-selective toxicity systems with a homogeneous distribution of the cell cycle in cancer treatment.

作者信息

Ristovski Trifunović Jovana, Žižak Željko, Marković Smilja, Janković Nenad, Ignjatović Nenad

机构信息

Department of Pharmacology, Toxicology and Clinical Pharmacology, Faculty of Medicine, University of Novi Sad Serbia.

Institute of Oncology and Radiology of Serbia Pasterova 14 11000 Belgrade Serbia.

出版信息

RSC Adv. 2020 Nov 13;10(68):41542-41550. doi: 10.1039/d0ra08085c. eCollection 2020 Nov 11.

Abstract

Tetrahydropyrimidines are a class of azaheterocycles, also called Biginelli hybrids (obtained from the Biginelli reaction), that have attracted an enormous interest in the medicinal chemistry community in recent years, due to a broad biological activity, such as anticancer, antiviral, anti-inflammatory, antidiabetic, antituberculosis activities, According to SciFinder®, more than 70 000 different Biginelli-like compounds have been covered in publications. However, although the Biginelli reaction can yield a large number of compounds with a broad range of activities, none of them have been captured in a carrier. In this study, chitosan-based (Ch) nanoparticles (NPs) containing three different molecules (Biginelli hybrids) were developed and tested for the first time as simple and promising vehicles for anticancer Biginelli-based drugs. The key features of NPs, such as size, surface morphology, drug encapsulation efficiency, and release were systematically investigated. Rather weak cell selectivity of pure Biginelli hybrids (A-C) to selected cancer cell lines has improved and this has been accompanied with two-to-four times stronger cytotoxic effect of A-C loaded Ch NPs, with a triple reduction in toxicity to healthy cells (MRC-5). It has been observed that the examined NPs induce apoptosis. The cell cycle analysis has confirmed the influence of A-loaded Ch (A-Ch), B-loaded Ch (B-Ch), and C-loaded Ch (C-Ch) on the cell cycle distribution, which was homogenously affected. This is the difference with regard to the effect of A, B, and C on the cell cycle. It has been established that the increased selectivity and antitumor activity of NPs are related to the presence of the carrier.

摘要

四氢嘧啶是一类氮杂环化合物,也被称为贝纳利杂化物(由贝纳利反应得到),近年来因其广泛的生物活性,如抗癌、抗病毒、抗炎、抗糖尿病、抗结核活性,在药物化学领域引起了极大的关注。根据科学网®的数据,出版物中已涵盖了超过70000种不同的类贝纳利化合物。然而,尽管贝纳利反应能产生大量具有广泛活性的化合物,但它们都没有被载体制备。在本研究中,首次开发并测试了含有三种不同分子(贝纳利杂化物)的壳聚糖基(Ch)纳米颗粒(NPs),作为基于贝纳利的抗癌药物的简单且有前景的载体。系统地研究了纳米颗粒的关键特性,如尺寸、表面形态、药物包封效率和释放情况。纯贝纳利杂化物(A - C)对选定癌细胞系的细胞选择性较弱,而负载A - C的Ch NPs的细胞毒性增强了两到四倍,对健康细胞(MRC - 5)的毒性降低了三分之一。已观察到所检测的纳米颗粒诱导细胞凋亡。细胞周期分析证实了负载A的Ch(A - Ch)、负载B的Ch(B - Ch)和负载C的Ch(C - Ch)对细胞周期分布的影响,细胞周期分布受到均匀影响。这与A、B和C对细胞周期的影响有所不同。已确定纳米颗粒选择性和抗肿瘤活性的提高与载体的存在有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b0e/9057800/78d687cb7559/d0ra08085c-s1.jpg

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