Junior Researcher, Laboratory of Bioprosthetics; Meshalkin National Medical Research Center of the Ministry of Health of the Russian Federation, 15 Rechkunovskaya St., Novosibirsk, 630055, Russia.
Sovrem Tekhnologii Med. 2022;14(2):68-78. doi: 10.17691/stm2022.14.2.07. Epub 2022 Mar 28.
As early as 50 years ago, bisphosphonates turned from a water treatment agent into one of the most widely used groups of drugs for the treatment of various diseases of calcium metabolism (bone tissue resorption, oncological complications of neurodegenerative diseases and others). Years of research on bisphosphonates have contributed to the understanding of their molecular and cellular pathways of their action. All bisphosphonates have a similar structure and common properties, however, there are obvious chemical, biochemical, and pharmacological differences between them. Each bisphosphonate has its own unique profile. This review summarizes data on the mechanisms of action of bisphosphonates, demonstrates the experience and prospects for their use for the modification of cardiovascular bioprostheses, since the issue of preventing bisphosphonate calcification has not been settled yet.
早在 50 年前,双膦酸盐就已经从一种水处理剂转变为治疗各种钙代谢疾病(骨组织吸收、神经退行性疾病的肿瘤并发症等)的最广泛使用的药物之一。多年来对双膦酸盐的研究促进了对其作用的分子和细胞途径的理解。所有双膦酸盐都具有相似的结构和共同的特性,然而,它们之间存在明显的化学、生化和药理学差异。每种双膦酸盐都有其独特的特点。本综述总结了双膦酸盐作用机制的数据,展示了其用于修饰心血管生物假体的经验和前景,因为预防双膦酸盐钙化的问题尚未解决。