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生物相容性的可塑性。

The plasticity of biocompatibility.

作者信息

Williams David F

机构信息

Wake Forest Institute of Regenerative Medicine, Winston-Salem, North Carolina, USA.

出版信息

Biomaterials. 2023 May;296:122077. doi: 10.1016/j.biomaterials.2023.122077. Epub 2023 Mar 9.

Abstract

Biocompatibility concerns the phenomena that occur within the interactions between biomaterials and human patients, which ultimately control the performance of many facets of medical technology. It involves aspects of materials science, many different forms of engineering and nanotechnology, chemistry, biophysics, molecular and cellular biology, immunology, pathology and a myriad of clinical applications. It is not surprising that an overarching framework of mechanisms of biocompatibility has been difficult to elucidate and validate. This essay discusses one fundamental reason for this; we have tended to consider biocompatibility pathways as essentially linear sequences of events which follow well-understood processes of materials science and biology. The reality, however, is that the pathways may involve a great deal of plasticity, in which many additional idiosyncratic factors, including those of genetic, epigenetic and viral origin, exert influence, as do complex mechanical, physical and pharmacological variables. Plasticity is an inherent core feature of the performance of synthetic materials; here we follow the more recent biological applications of plasticity concepts into the sphere of biocompatibility pathways. A straightforward linear pathway may result in successful outcomes for many patients; we may describe this in terms of classic biocompatibility pathways. In other situations, which usually command much more attention because of their unsuccessful outcomes, these plasticity-driven processes follow alternative biocompatibility pathways; often, the variability in outcomes with identical technologies is due to biological plasticity rather than material or device deficiency.

摘要

生物相容性涉及生物材料与人类患者相互作用过程中发生的现象,这些现象最终决定了医疗技术诸多方面的性能。它涵盖材料科学、多种不同形式的工程学和纳米技术、化学、生物物理学、分子与细胞生物学、免疫学、病理学以及众多临床应用等方面。因此,生物相容性机制的总体框架难以阐明和验证也就不足为奇了。本文探讨其中一个根本原因:我们倾向于将生物相容性途径视为基本上是遵循材料科学和生物学中易于理解的过程的线性事件序列。然而,实际情况是,这些途径可能涉及大量的可塑性,其中许多额外的特殊因素,包括遗传、表观遗传和病毒来源的因素,以及复杂的机械、物理和药理学变量都会产生影响。可塑性是合成材料性能的一个固有核心特征;在此,我们探讨可塑性概念在生物相容性途径领域的最新生物学应用。对于许多患者来说,一条直接的线性途径可能会带来成功的结果;我们可以用经典的生物相容性途径来描述这一点。在其他情况下,由于结果不理想,这些可塑性驱动的过程会遵循不同的生物相容性途径,而这些情况通常更受关注;通常,相同技术的结果差异是由于生物可塑性而非材料或设备缺陷。

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