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富含干细胞的混合乳房重建术可降低混合乳房模型中包膜挛缩的风险。

Stem Cell-Enriched Hybrid Breast Reconstruction Reduces Risk for Capsular Contracture in a Hybrid Breast Model.

机构信息

From the Department of Hand, Plastic, and Reconstructive Surgery, Burn Trauma Center, BG Trauma Center Ludwigshafen; University of Heidelberg.

Private Practice for Plastic and Aesthetic Surgery, Aesthetikon Mannheim and Heidelberg.

出版信息

Plast Reconstr Surg. 2023 Sep 1;152(3):572-580. doi: 10.1097/PRS.0000000000010260. Epub 2023 Feb 2.

Abstract

BACKGROUND

Hybrid breast reconstruction (HBR) combines silicone implants with fat grafting to improve implant coverage, treating local tissue deficiencies and leading to a more natural breast appearance. Recent data also indicated less capsular contracture after HBR. The authors developed a novel technique and animal model of cell-assisted (CA) HBR to illuminate its effects on capsular contracture.

METHODS

Animals received silicone implants in a dorsal submuscular pocket. Although animals of the HBR group received fat grafting around the implant without stem cell enrichment, rats of the CA-HBR1 and the CA-HBR2 groups received stem cell-enriched fat grafting with 2 × 10 6 and 4 × 10 6 adipose-derived stem cells immediately after implant insertion. On day 60, animals underwent sonography and elastography imaging and were euthanized, and outcome analysis was performed by means of histology, immunohistochemistry, chemical collagen quantification, and gene expression analysis.

RESULTS

With this novel technique, long-term survival of adipose-derived stem cells within the implant pocket was demonstrated after 60 days after implant insertion. CA-HBR led to significantly reduced thickness and collagen density of capsular contractures. In addition, CA-HBR resulted in reduced fibrotic responses with less occurrence of collagen type I and transforming growth factor-β in capsule tissue. Moreover, the addition of stem cells suppressed fibrotic and inflammatory responses on a genetic level with significant underexpression of collagen type I and transforming growth factor-β1.

CONCLUSIONS

With this new technique and animal model, the authors observed a preventive effect on capsular contracture substantiating the basis of clinical outcomes of HBR. The authors propose that the addition of stem cells to HBR might booster its beneficial results.

CLINICAL RELEVANCE STATEMENT

Stem cell-enriched fat grafting around silicone implants may reduce the risk for capsular contracture after silicone breast implantation. While fat grafting alone already shows beneficial effects, the addition of stem cells to the fat graft can potentiate this effect.

摘要

背景

混合乳房重建(HBR)将硅胶植入物与脂肪移植相结合,以改善植入物的覆盖范围,治疗局部组织缺陷,并使乳房外观更自然。最近的数据还表明,HBR 后包膜挛缩的发生率较低。作者开发了一种新的细胞辅助(CA)HBR 技术和动物模型,以阐明其对包膜挛缩的影响。

方法

动物在背部肌下口袋中接受硅胶植入物。尽管 HBR 组的动物在没有干细胞富集的情况下在植入物周围进行了脂肪移植,但 CA-HBR1 和 CA-HBR2 组的大鼠在植入物插入后立即接受了富含干细胞的脂肪移植,分别有 2×10 6 和 4×10 6 个脂肪来源干细胞。在第 60 天,动物进行了超声和弹性成像检查,并进行安乐死,通过组织学、免疫组织化学、化学胶原定量和基因表达分析进行结果分析。

结果

通过这项新技术,在植入后 60 天,在植入物口袋内证明了脂肪来源干细胞的长期存活。CA-HBR 显著降低了包膜挛缩的厚度和胶原密度。此外,CA-HBR 导致胶囊组织中胶原蛋白 I 和转化生长因子-β的发生减少,纤维化反应减少。此外,干细胞的添加在基因水平上抑制了纤维化和炎症反应,导致胶原蛋白 I 和转化生长因子-β1 的表达显著下调。

结论

通过这项新技术和动物模型,作者观察到对包膜挛缩的预防作用,证实了 HBR 临床结果的基础。作者提出,在 HBR 中添加干细胞可能会增强其有益效果。

临床相关性声明

硅胶植入物周围富含干细胞的脂肪移植可能会降低硅胶乳房植入后包膜挛缩的风险。虽然单独的脂肪移植已经显示出有益的效果,但将干细胞添加到脂肪移植中可以增强这种效果。

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