BIOCOMPATIBLE BIOMIMETIC POLYMER STRUCTURES WITH AN ACTIVE RESPONSE FOR IMPLANTOLOGY AND REGENERATIVE MEDICINE PART I: BASIC PRINCIPLES OF THE ACTIVE IMPLANT’S BIOCOMPATIBILITY

Q4 Agricultural and Biological Sciences Siberian Journal of Life Sciences and Agriculture Pub Date : 2023-02-28 DOI:10.12731/2658-6649-2023-15-1-346-377
O. Gradov, M. Gradova, V. Kochervinskii
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Abstract

Physical and chemical criteria of biocompatibility of the active polymer implants and stimuli-responsive scaffolds are considered. From the standpoint of the surface physics and controlled wetting, the possibilities of dynamic control of biocompatibility and adaptive changes in the implant properties in response to the signal from the surrounding tissues are considered. The basic properties of the active biocompatible and biomimetic implantable materials, which distinguish them from the passive implants, are summarized. The latter include: electrophysical and electrophysiological membrane biocompatibility (up to the analogy with biomembranes – the so-called Fendler’s “membrane mimetics”); excitability, that is, the ability to qualitatively change their state in response to the external stimulus; compatibility of the matching parameters and impedances of biomembranes and active implantable materials; the presence of the main types of the energy conversion characteristic of biomembranes (chemiosmotic, electrochemical, electromechanical, etc.); the ability to transport and release pharmaceuticals consistent with the parameters of the cellular microenvironment and regulated by its state. Due to the qualitative change in the biomedical aim of such implants (from replacing the natural function to its regeneration and maintenance), there is a possibility of implementing various new biologically relevant functions using these materials, such as the ability to sensing and actuation, based on their reactivity and signal / energy conversion capacity. Of particular interest is the adaptive realization of the above functions in a growing and developing organism during its ontogenesis.
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具有主动响应的生物相容性仿生聚合物结构用于植入学和再生医学第一部分:主动植入物生物相容性的基本原理
考虑了活性聚合物植入物和刺激响应性支架的生物相容性的物理和化学标准。从表面物理和可控润湿的角度来看,考虑了生物相容性的动态控制和植入物特性响应于来自周围组织的信号的自适应变化的可能性。综述了有源生物相容性和仿生植入式材料的基本特性,将其与无源植入物区分开来。后者包括:电物理和电生理膜的生物相容性(与生物膜类似,即所谓的芬德勒“膜模拟物”);兴奋性,即对外部刺激做出定性改变的能力;生物膜和活性植入式材料的匹配参数和阻抗的兼容性;生物膜能量转换特性的主要类型(化学渗透、电化学、机电等)的存在;运输和释放药物的能力与细胞微环境的参数一致,并受其状态的调节。由于这种植入物的生物医学目的发生了质的变化(从取代自然功能到再生和维护),因此有可能使用这些材料实现各种新的生物相关功能,例如基于其反应性和信号/能量转换能力的传感和致动能力。特别令人感兴趣的是在个体发生过程中,在生长发育的生物体中适应性地实现上述功能。
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来源期刊
Siberian Journal of Life Sciences and Agriculture
Siberian Journal of Life Sciences and Agriculture Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (all)
CiteScore
0.80
自引率
0.00%
发文量
15
审稿时长
8 weeks
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