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使用非变性阴离子洗涤剂和核酸内切酶对人真皮进行去细胞化处理:综述

Decellularization of human dermis using non-denaturing anionic detergent and endonuclease: a review.

作者信息

Moore Mark A, Samsell Brian, Wallis Glenna, Triplett Sherry, Chen Silvia, Jones Alyce Linthurst, Qin Xiaofei

机构信息

Institute of Regenerative Medicine, LifeNet Health, 1864 Concert Drive, Virginia Beach, VA, 23453, USA,

出版信息

Cell Tissue Bank. 2015 Jun;16(2):249-59. doi: 10.1007/s10561-014-9467-4. Epub 2014 Aug 28.

Abstract

Decellularized human dermis has been used for a number of clinical applications including wound healing, soft tissue reconstruction, and sports medicine procedures. A variety of methods exist to prepare this useful class of biomaterial. Here, we describe a decellularization technology (MatrACELL(®)) utilizing a non-denaturing anionic detergent, N-Lauroyl sarcosinate, and endonuclease, which was developed to remove potentially immunogenic material while retaining biomechanical properties. Effective decellularization was demonstrated by a residual DNA content of ≤4 ng/mg of wet weight which represented >97 % DNA removal compared to unprocessed dermis. Two millimeter thick MatrACELL processed human acellular dermal matrix (MH-ADM) exhibited average ultimate tensile load to failure of 635.4 ± 199.9 N and average suture retention strength of 134.9 ± 55.1 N. Using an in vivo mouse skin excisional model, MH-ADM was shown to be biocompatible and capable of supporting cellular and vascular in-growth. Finally, clinical studies of MH-ADM in variety of applications suggest it can be an appropriate scaffold for wound healing, soft tissue reconstruction, and soft tissue augmentation.

摘要

脱细胞人真皮已用于多种临床应用,包括伤口愈合、软组织重建和运动医学手术。存在多种制备这类有用生物材料的方法。在此,我们描述一种脱细胞技术(MatrACELL(®)),该技术利用一种非变性阴离子洗涤剂N-月桂酰肌氨酸钠和核酸内切酶,其开发目的是去除潜在的免疫原性物质,同时保留生物力学特性。通过湿重≤4 ng/mg的残余DNA含量证明脱细胞有效,与未处理的真皮相比,这代表DNA去除率>97%。两毫米厚的经MatrACELL处理的人脱细胞真皮基质(MH-ADM)表现出平均最终拉伸破坏载荷为635.4±199.9 N,平均缝线保留强度为134.9±55.1 N。使用体内小鼠皮肤切除模型,显示MH-ADM具有生物相容性,能够支持细胞和血管向内生长。最后,对MH-ADM在多种应用中的临床研究表明,它可以作为伤口愈合、软组织重建和软组织增强的合适支架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/734c/4426135/fe0d20aa0d6a/10561_2014_9467_Fig1_HTML.jpg

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