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硅酮植入物表面的微观形貌调节包膜纤维化中的炎症和组织修复。

Silicone implant surface microtopography modulates inflammation and tissue repair in capsular fibrosis.

机构信息

Department of Plastic, Reconstructive and Aesthetic Surgery, Medical University of Innsbruck, Innsbruck, Austria.

Protein Core Facility, Institute of Medical Chemistry, Biocenter, Medical University of Innsbruck, Innsbruck, Austria.

出版信息

Front Immunol. 2024 Mar 19;15:1342895. doi: 10.3389/fimmu.2024.1342895. eCollection 2024.

Abstract

Excessive fibrous capsule formation around silicone mammary implants (SMI) involves immune reactions to silicone. Capsular fibrosis, a common SMI complication linked to host responses, worsens with specific implant topographies. Our study with 10 patients investigated intra- and inter-individually, reduced surface roughness effects on disease progression, wound responses, chronic inflammation, and capsular composition. The results illuminate the significant impact of surface roughness on acute inflammatory responses, fibrinogen accumulation, and the subsequent fibrotic cascade. The reduction of surface roughness to an average roughness of 4 μm emerges as a promising approach for mitigating detrimental immune reactions, promoting healthy wound healing, and curbing excessive fibrosis. The identified proteins adhering to rougher surfaces shed light on potential mediators of pro-inflammatory and pro-fibrotic processes, further emphasizing the need for meticulous consideration of surface design. The composition of the implant capsule and the discovery of intracapsular HSP60 expression highlight the intricate web of stress responses and immune activation that can impact long-term tissue outcomes.

摘要

硅酮乳房植入物(SMI)周围过度纤维囊形成涉及对硅酮的免疫反应。囊纤维化是与宿主反应相关的常见 SMI 并发症,其会随着特定植入物形貌的变化而恶化。我们对 10 名患者进行了研究,从个体内和个体间两个角度研究了表面粗糙度降低对疾病进展、伤口反应、慢性炎症和囊组成的影响。结果阐明了表面粗糙度对急性炎症反应、纤维蛋白原积累以及随后的纤维化级联反应的重大影响。将表面粗糙度降低到平均粗糙度 4μm,有望减轻有害的免疫反应,促进健康的伤口愈合,并抑制过度纤维化。粘附在更粗糙表面的鉴定蛋白提示了潜在的促炎和促纤维化过程的介质,进一步强调了需要仔细考虑表面设计。囊的组成和囊内 HSP60 表达的发现强调了应激反应和免疫激活的复杂网络,这些可能会影响长期的组织结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26bc/10985323/d15d519c7693/fimmu-15-1342895-g001.jpg

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