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生物材料与免疫系统之间的相互作用:再生医学中的挑战与机遇

Interplay between biomaterials and the immune system: Challenges and opportunities in regenerative medicine.

作者信息

Salthouse Daniel, Novakovic Katarina, Hilkens Catharien M U, Ferreira Ana Marina

机构信息

School of Engineering, Newcastle University, Newcastle Upon Tyne, United Kingdom.

Translational & Clinical Research Institute, Newcastle University, Newcastle upon Tyne, United Kingdom.

出版信息

Acta Biomater. 2023 Jan 1;155:1-18. doi: 10.1016/j.actbio.2022.11.003. Epub 2022 Nov 7.

Abstract

The use of biomaterials for tissue engineering and regenerative medicine applications has increased dramatically over recent years. However, the clinical uptake of a wide variety of biomaterials remains limited due to adverse effects commonly exhibited by patients, which are caused by the host immune response. Despite this, current in vitro evaluation standards (ISO-10993) for assessing the host response to biomaterials have limitations in predicting the likelihood of in vivo biomaterial acceptance. Furthermore, endotoxin contamination of biomaterials is rarely considered, despite its ability to significantly affect the performance of biomaterials and engineered tissues. This review highlights the importance of the immune response to biomaterials and discusses existing challenges and opportunities in the development and standardised assessment of the immune response to biomaterials, including the importance of endotoxin levels. In addition, the properties of biomaterials that impact the host immune response and the exploitation of immunomodulatory biomaterials in regenerative medicine are explored. Finally, a standardised in vitro pathway of evaluating the immune response to biomaterials (hydrogels) and their regenerative potential is proposed, aiming to ensure safety and consistency, while reducing costs and the use of animals in the biomaterials research for tissue engineering and regenerative medicine. STATEMENT OF SIGNIFICANCE: This review presents a critical analysis of the role of the interactions between the immune system and biomaterials in determining the therapeutic success of biomaterial-based approaches. No such review addressing the lack of understanding of biomaterial-immune system interactions during the developmental and pre-clinical stages of biomaterials, including the impact of the endotoxin levels of biomaterials on the immune response, is published. As there is a lack of in vitro regulations to evaluate the immune response to biomaterials, a standardised in vitro pathway to evaluate the immune response to biomaterials (hydrogels) and their immunomodulatory and regenerative potential for use in tissue engineering/regenerative medicine applications is presented. The aim of the proposed pathway of biomaterial evaluation is to ensure safety and consistency in the biomaterials research community, while reducing costs and animal use (through the concept of the 3R's - reduction, refinement, and replacement of animals).

摘要

近年来,用于组织工程和再生医学应用的生物材料的使用量急剧增加。然而,由于患者通常表现出的不良反应(由宿主免疫反应引起),多种生物材料在临床上的应用仍然有限。尽管如此,目前用于评估宿主对生物材料反应的体外评估标准(ISO - 10993)在预测体内生物材料被接受的可能性方面存在局限性。此外,尽管生物材料的内毒素污染能够显著影响生物材料和工程组织的性能,但很少被考虑。本综述强调了生物材料免疫反应的重要性,并讨论了生物材料免疫反应发展和标准化评估中存在的挑战与机遇,包括内毒素水平的重要性。此外,还探讨了影响宿主免疫反应的生物材料特性以及再生医学中免疫调节生物材料的应用。最后,提出了一种评估生物材料(水凝胶)免疫反应及其再生潜力的标准化体外途径,旨在确保安全性和一致性,同时降低成本并减少组织工程和再生医学生物材料研究中动物的使用。重要性声明:本综述对免疫系统与生物材料之间的相互作用在确定基于生物材料的治疗方法的治疗成功方面的作用进行了批判性分析。尚未发表过此类综述,以解决在生物材料的开发和临床前阶段对生物材料 - 免疫系统相互作用缺乏了解的问题,包括生物材料内毒素水平对免疫反应的影响。由于缺乏评估生物材料免疫反应的体外法规,因此提出了一种标准化的体外途径,用于评估生物材料(水凝胶)的免疫反应及其在组织工程/再生医学应用中的免疫调节和再生潜力。所提出的生物材料评估途径的目的是确保生物材料研究领域的安全性和一致性,同时降低成本并减少动物使用(通过3R概念 - 减少、优化和替代动物)。

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