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5-亚硝基水杨醛亚胺基序与硅氮烷的化学连接形成具有高药用价值的有机-无机结构。

Chemical Attachment of 5-Nitrosalicylaldimine Motif to Silatrane Resulting in an Organic-Inorganic Structure with High Medicinal Significance.

作者信息

Zaltariov Mirela-Fernanda, Turtoi Mihaela, Peptanariu Dragos, Macsim Ana-Maria, Clima Lilia, Cojocaru Corneliu, Vornicu Nicoleta, Ciubotaru Bianca-Iulia, Bargan Alexandra, Calin Manuela, Cazacu Maria

机构信息

Inorganic Polymers Department, "Petru Poni" Institute of Macromolecular Chemistry, Aleea Gr. Ghica Voda 41 A, 700487 Iasi, Romania.

Medical and Pharmaceutical Bionanotechnologies Laboratory, Institute of Cellular Biology and Pathology "Nicolae Simionescu" of the Romanian Academy, B.P. Hasdeu 8, 050568 Bucharest, Romania.

出版信息

Pharmaceutics. 2022 Dec 18;14(12):2838. doi: 10.3390/pharmaceutics14122838.

Abstract

Two chemical motifs of interest for medicinal chemistry, silatrane as 1-(3-aminopropyl) silatrane (SIL M), and nitro group attached in position 5 to salicylaldehyde, are coupled in a new structure, 1-(3-{[(2-hydroxy-5-nitrophenyl)methylidene]amino}propyl)silatrane (SIL-BS), through an azomethine moiety, also known as a versatile pharmacophore. The high purity isolated compound was structurally characterized by an elemental, spectral, and single crystal X-ray diffraction analysis. Given the structural premises for being a biologically active compound, different specific techniques and protocols have been used to evaluate their in vitro hydrolytic stability in simulated physiological conditions, the cytotoxicity on two cancer cell lines (HepG2 and MCF7), and protein binding ability-with a major role in drug ADME (Absorption, Distribution, Metabolism and Excretion), in parallel with those of the SIL M. While the latter had a good biocompatibility, the nitro-silatrane derivative, SIL-BS, exhibited a higher cytotoxic activity on HepG2 and MCF7 cell lines, performance assigned, among others, to the known capacity of the nitro group to promote a specific cytotoxicity by a "activation by reduction" mechanism. Both compounds exhibited increased bio- and muco-adhesiveness, which can favor an optimized therapeutic effect by increased drug permeation and residence time in tumor location. Additional benefits of these compounds have been demonstrated by their antimicrobial activity on several fungi and bacteria species. Molecular docking computations on Human Serum Albumin (HSA) and M COVID-19 protease demonstrated their potential in the development of new drugs for combined therapy.

摘要

药物化学领域感兴趣的两种化学基序,即作为1-(3-氨基丙基)硅氮烷(SIL M)的硅氮烷和连接在水杨醛5位的硝基,通过甲亚胺部分(也称为通用药效团)偶联成一种新结构,即1-(3-{[(2-羟基-5-硝基苯基)亚甲基]氨基}丙基)硅氮烷(SIL-BS)。通过元素分析、光谱分析和单晶X射线衍射分析对高纯度分离化合物进行了结构表征。鉴于该化合物具有生物活性的结构前提,已采用不同的特定技术和方案来评估其在模拟生理条件下的体外水解稳定性、对两种癌细胞系(HepG2和MCF7)的细胞毒性以及蛋白质结合能力(在药物ADME(吸收、分布、代谢和排泄)中起主要作用),并与SIL M进行了比较。虽然后者具有良好的生物相容性,但硝基硅氮烷衍生物SIL-BS在HepG2和MCF7细胞系上表现出更高的细胞毒性活性,这种性能归因于硝基通过“还原激活”机制促进特定细胞毒性的已知能力。两种化合物均表现出增强的生物粘附性和粘膜粘附性,这可通过增加药物在肿瘤部位的渗透和停留时间来促进优化的治疗效果。这些化合物的其他益处已通过其对几种真菌和细菌物种的抗菌活性得到证明。对人血清白蛋白(HSA)和M COVID-19蛋白酶的分子对接计算证明了它们在开发联合治疗新药方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4ab/9781643/a7f00bff5037/pharmaceutics-14-02838-sch001.jpg

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