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Role of mechanical and thermal damage in pericapsular inflammatory response to injectable silicone in a rabbit model

机译:机械和热损伤在兔模型中对可注射硅酮的囊周炎性反应中的作用

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摘要

Silicone is used widely for tissue augmentation in humans. However, late complications, such as delayed inflammation and capsular contracture, remain uncharacterized, despite their importance. In the present study, we aimed to determine whether mechanical and thermal damage induce capsular inflammation around a foreign body, and elucidate the biological mechanism underlying this phenomenon. We injected silicone into the subcutaneous layer of the skin of New Zealand white rabbits. The rabbits were divided into two groups: the control group received no treatment; in the experimental group, external force was applied near the injection silicone using high-intensity focused ultrasound (HIFU). Tissues near the injected silicone were harvested from both groups on Days 4, 7, and 30 after HIFU treatment for comparative analysis. Visual and histological examinations showed clearly increased inflammation in the experimental group compared with that in the control group. Furthermore, capsular tissue from the experimental group displayed markedly increased collagen production. Immunofluorescence revealed marked activation of macrophages in the early stages of inflammation (Days 4 and 7 after HIFU treatment), which decreased on Day 30. Assessment of cytokine activation showed significantly increased expression of heat shock protein (HSP)27, HSP60, HSP70, toll-like receptor (TLR)2, TLR4, and interleukin-8 in the experimental group. The expression of transforming growth factor-β1 did not increase significantly in the experimental group. In conclusion, damage to tissues around the injected silicone induced capsular inflammation. Macrophages and damage-associated molecular pattern molecules were involved in the early stages of inflammation. HSP release activated TLRs, which subsequently activated innate immunity and induced the inflammatory response.
机译:硅酮被广泛用于人体组织的增强。但是,晚期并发症,例如延迟发炎和囊膜挛缩,尽管很重要,但仍然没有特征。在本研究中,我们旨在确定机械损伤和热损伤是否会引起异物周围的荚膜炎症,并阐明这种现象的生物学机制。我们将有机硅注入新西兰白兔皮肤的皮下层。兔子分为两组:对照组不接受治疗;对照组不接受任何治疗。在实验组中,使用高强度聚焦超声(HIFU)在注射硅胶附近施加外力。在HIFU处理后第4、7和30天,从两组中收集注射的硅酮附近的组织用于比较分析。视觉和组织学检查显示,与对照组相比,实验组的炎症明显增加。此外,来自实验组的荚膜组织显示出胶原蛋白产生显着增加。免疫荧光显示在炎症的早期阶段(HIFU治疗后第4天和第7天)巨噬细胞明显活化,在第30天下降。细胞因子活化评估显示热休克蛋白(HSP)27,HSP60,HSP70,通行费的表达明显增加。实验组中的类脂蛋白样受体(TLR)2,TLR4和白细胞介素8。实验组中转化生长因子-β1的表达没有明显增加。总之,对注射的硅酮周围组织的损伤会引起荚膜炎症。巨噬细胞和与损伤相关的分子模式分子参与了炎症的早期阶段。 HSP释放激活的TLR,随后激活先天免疫并诱导炎症反应。

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