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论生物相容性的机制。

On the mechanisms of biocompatibility.

作者信息

Williams David F

机构信息

University of Liverpool, UK.

出版信息

Biomaterials. 2008 Jul;29(20):2941-53. doi: 10.1016/j.biomaterials.2008.04.023. Epub 2008 Apr 28.

Abstract

The manner in which a mutually acceptable co-existence of biomaterials and tissues is developed and sustained has been the focus of attention in biomaterials science for many years, and forms the foundation of the subject of biocompatibility. There are many ways in which materials and tissues can be brought into contact such that this co-existence may be compromised, and the search for biomaterials that are able to provide for the best performance in devices has been based upon the understanding of all the interactions within biocompatibility phenomena. Our understanding of the mechanisms of biocompatibility has been restricted whilst the focus of attention has been long-term implantable devices. In this paper, over 50 years of experience with such devices is analysed and it is shown that, in the vast majority of circumstances, the sole requirement for biocompatibility in a medical device intended for long-term contact with the tissues of the human body is that the material shall do no harm to those tissues, achieved through chemical and biological inertness. Rarely has an attempt to introduce biological activity into a biomaterial been clinically successful in these applications. This essay then turns its attention to the use of biomaterials in tissue engineering, sophisticated cell, drug and gene delivery systems and applications in biotechnology, and shows that here the need for specific and direct interactions between biomaterials and tissue components has become necessary, and with this a new paradigm for biocompatibility has emerged. It is believed that once the need for this change is recognised, so our understanding of the mechanisms of biocompatibility will markedly improve.

摘要

生物材料与组织如何实现相互可接受的共存并得以维持,多年来一直是生物材料科学关注的焦点,也是生物相容性这一学科的基础。材料与组织接触的方式有很多,可能会影响这种共存,而寻找在装置中能实现最佳性能的生物材料,是基于对生物相容性现象中所有相互作用的理解。在关注长期可植入装置时,我们对生物相容性机制的理解受到了限制。本文分析了50多年来这类装置的使用经验,结果表明,在绝大多数情况下,与人体组织长期接触的医疗装置对生物相容性的唯一要求是材料不对这些组织造成损害,这可通过化学和生物惰性来实现。在这些应用中,将生物活性引入生物材料的尝试在临床上很少成功。本文接着将注意力转向生物材料在组织工程、精密细胞、药物和基因递送系统以及生物技术应用中的使用,并表明在这些领域,生物材料与组织成分之间需要特定的直接相互作用,由此出现了生物相容性的新范式。人们认为,一旦认识到这种变化的必要性,我们对生物相容性机制的理解将显著提高。

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