首页> 外文期刊>Journal of Molecular Liquids >The physicochemical properties and influence on living organisms of nanocluster polyoxomolybdates as prospective bioinspired substances (based on materials from the plenary lecture)
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The physicochemical properties and influence on living organisms of nanocluster polyoxomolybdates as prospective bioinspired substances (based on materials from the plenary lecture)

机译:纳米簇聚氧键钼酸盐作为前瞻性生物灌注物质的物理化学性质及对生物体的影响(基于全体讲座的材料)

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摘要

Porous spherical nanocluster polyoxometalates which contain molybdenum at high valence state and with Keplerate structure possess a number of physicochemical properties that allow us to consider them as having biomedical applications in targeted drug delivery, prolonged drug release, and as therapeutic chemicals. In this context. some important POM properties should be noted: Keplerates dissolute in aqueous solutions, forming multicharged macroanions which can be transported in an electric field, and the ability to form in association with different organic substances, including biocompatible polymers. The current report contains the comprehensive results of investigations on the POM Keplerates Mo-132 and Mo72Fe30 concerning: their toxicity (studied on the cell, organ and organism levels); the ability to conjugate with proteins, drugs, and vitamins (vitamin B-1, insulin, antibiotic kanamycin A); transdermal iontophoretic transport of the aforementioned POM conjugates; the selective accumulation and influence of POM on normal and transformed cell cultures; the potential capability of histo-hematic barriers to be overpassed; and the influence on the erythropoiesis and cell membrane permeability of chemotherapeutic agents. (C) 2019 Published by Elsevier B.V.
机译:在高价位状态下含有钼和佩服结构的多孔球形纳米簇多氧化盐具有许多物理化学性质,使我们认为它们具有靶向药物递送,延长药物释放和治疗化学品的生物医学应用。在这种情况下。应注意一些重要的POM性质:开渗在水溶液中的溶解,形成可以在电场中运输的多晶的宏观,以及与不同的有机物质相关的能力,包括生物相容性聚合物。目前的报告载有关于POM开放MO-132和MO72FE30的综合调查结果:它们的毒性(研究了细胞,器官和生物水平);与蛋白质,药物和维生素(维生素B-1,胰岛素,抗生素Kanamycin A)缀合能力;上述POM缀合物的透皮离子电泡传输; POM对正常和转化细胞培养的选择性积累和影响;长度血管屏障被跨越的潜在能力;以及对化学治疗剂的促红细胞和细胞膜渗透性的影响。 (c)2019年由elestvier b.v发布。

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