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体积稳定的脂肪组织工程

Engineering of volume-stable adipose tissues.

作者信息

Cho Seung-Woo, Kim Sang-Soo, Rhie Jong Won, Cho Hyun Mi, Choi Cha Yong, Kim Byung-Soo

机构信息

Department of Chemical Engineering, Hanyang University, 17 Haengdang-dong, Seongdong-gu, Seoul 133-791, Republic of Korea.

出版信息

Biomaterials. 2005 Jun;26(17):3577-85. doi: 10.1016/j.biomaterials.2004.09.013.

Abstract

Autologous adipose tissues have been clinically used for augmentation of soft tissues lost due to mastectomy or lumpectomy in plastic and reconstructive surgery. However, this therapy has problems of absorption and subsequent volume loss of the implanted adipose tissues. In this study, volume-stable adipose tissues were engineered in vivo using mechanical support structures fabricated from biodegradable synthetic polymers. Dome-shaped mechanical support structures were fabricated by reinforcing poly(glycolic acid) fiber-based matrices with poly(L-lactic acid). The support structures were placed into subcutaneous pockets of athymic mice, and human preadipocytes suspended in fibrin matrix were injected into the space under the support structures (group I). Injection of either fibrin matrix without preadipocytes under the support structures (group II) or fibrin matrix containing preadipocytes into subcutaneous spaces with no support structures (group III) served as controls. Six weeks after implantation, the original implant volume was maintained approximately in groups I and II, whereas, group III showed significant implant shrinkage. The compressive modulus of the mechanical support structures did not change significantly over 6-week incubation in phosphate-buffered saline at 37 degrees C. Histological analyses of the implants showed regeneration of adipose tissues in group I. In contrast, groups II and III did not show extensive adipose tissue formation. This study demonstrates that volume-stable adipose tissues can be engineered in vivo using mechanical support structures. This technique offers the potential for augmentation of adipose tissues with volume conservation.

摘要

自体脂肪组织已在临床用于整形和重建手术中,以填充因乳房切除术或肿块切除术而缺失的软组织。然而,这种治疗方法存在植入脂肪组织吸收及随后体积减少的问题。在本研究中,利用由可生物降解合成聚合物制成的机械支撑结构在体内构建了体积稳定的脂肪组织。通过用聚(L-乳酸)增强基于聚乙醇酸纤维的基质来制造圆顶形机械支撑结构。将支撑结构置于无胸腺小鼠的皮下囊袋中,并将悬浮在纤维蛋白基质中的人前脂肪细胞注入支撑结构下方的空间(第一组)。在支撑结构下方注射不含前脂肪细胞的纤维蛋白基质(第二组)或在无支撑结构的皮下空间注射含前脂肪细胞的纤维蛋白基质(第三组)作为对照。植入六周后,第一组和第二组大致维持了原始植入体积,而第三组则出现了明显的植入物收缩。在37℃的磷酸盐缓冲盐水中孵育6周期间,机械支撑结构的压缩模量没有显著变化。植入物的组织学分析显示第一组有脂肪组织再生。相比之下,第二组和第三组未显示广泛的脂肪组织形成。本研究表明,利用机械支撑结构可在体内构建体积稳定的脂肪组织。这项技术为在保留体积的情况下增加脂肪组织提供了可能性。

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