Gomes Y V R, Tavares A A, Barbosa R C, Tomaz A F, Sousa W J B, Oliveira L C C, Silva S M L, Fook M V L
Programa de Pós-Graduação em Ciência e Engenharia de Materiais, Departamento de Engenharia de Materiais, Universidade Federal de Campina Grande, Campina Grande, PB, Brasil.
Departamento de Fisioterapia, Universidade Estadual da Paraíba, Campina Grande, PB, Brasil.
Braz J Med Biol Res. 2025 May 9;58:e14599. doi: 10.1590/1414-431X2025e14599. eCollection 2025.
Biomaterials stimulate diverse biological responses, including inflammation, wound healing, foreign body reactions, and fibrous encapsulation, all critical for evaluating biocompatibility and effectiveness. These responses are influenced by the material's physicochemical and biological properties, such as composition, texture, and surface characteristics. Adverse reactions, such as severe inflammation or fibrous encapsulation, can hinder tissue integration, jeopardizing patient health and increasing healthcare costs. This review aimed to summarize the current scientific evidence on biological responses to biomaterials. A systematic search was conducted through multiple databases (VHL, PubMed, SCOPUS, EMBASE, and Web of Science) including in vitro and in vivo studies that compared biomaterial interactions with the natural immune response (innate and adaptive). From the 791 articles identified, 25 met strict inclusion criteria. These studies revealed variations in immune responses and material surface characteristics, highlighting advancements made to enhance tissue integration. Bioactive materials demonstrated greater potential for tissue regeneration, while inert materials triggered moderate inflammatory reactions. This variability emphasizes the need for a personalized biomaterial selection, considering both short-term biocompatibility and long-term tissue functionality. This review underscores the importance of comprehensive evaluation to optimize biomaterial performance in clinical applications.
生物材料会引发多种生物学反应,包括炎症、伤口愈合、异物反应和纤维包裹,所有这些对于评估生物相容性和有效性都至关重要。这些反应受材料的物理化学和生物学特性影响,如组成、质地和表面特征。诸如严重炎症或纤维包裹等不良反应会阻碍组织整合,危及患者健康并增加医疗成本。本综述旨在总结当前关于生物材料生物学反应的科学证据。通过多个数据库(VHL、PubMed、SCOPUS、EMBASE和Web of Science)进行了系统检索,纳入了比较生物材料与天然免疫反应(固有免疫和适应性免疫)相互作用的体外和体内研究。在确定的791篇文章中,有25篇符合严格的纳入标准。这些研究揭示了免疫反应和材料表面特征的差异,突出了为增强组织整合所取得的进展。生物活性材料在组织再生方面显示出更大潜力,而惰性材料会引发中度炎症反应。这种变异性强调了考虑短期生物相容性和长期组织功能进行个性化生物材料选择的必要性。本综述强调了全面评估对于优化生物材料在临床应用中性能的重要性。