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基于自制的人去细胞真皮基质和体外培养的人成纤维细胞制作的生物活性皮片的原子力显微镜生产。

Atomic force microscopy in the production of a biovital skin graft based on human acellular dermal matrix produced in-house and in vitro cultured human fibroblasts.

机构信息

Dr Stanislaw Sakiel Centre for Burn Treatment, Siemianowice, Śląskie, Poland.

Department of Chronic Wounds Management Organization, School of Health Sciences in Katowice, Medical University of Silesia, Katowice, Poland.

出版信息

J Biomed Mater Res B Appl Biomater. 2018 Feb;106(2):726-733. doi: 10.1002/jbm.b.33883. Epub 2017 Mar 21.

Abstract

The most efficient method in III° burn treatment is the use of the autologous split thickness skin grafts that were donated from undamaged body area. The main limitation of this method is lack of suitable donor sites. Tissue engineering is a useful tool to solve this problem. The goal of this study was to find the most efficient way of producing biovital skin substitute based on in house produced acellular dermal matrix ADM and in vitro cultured fibroblasts. Sixty samples of sterilized human allogeneic skin (that came from 10 different donors) were used to examine the influence of decellularizing substances on extracellular matrix and clinical usefulness of the test samples of allogeneic human dermis. Six groups of acellular dermal matrix were studied: ADM-1 control group, ADM-2 research group (24 h incubation in 0.05% trypsin/EDTA solution), ADM-3 research group (24 h incubation in 0.025% trypsin/EDTA solution), ADM-4 research group (24 h incubation in 0.05% trypsin/EDTA solution and 4 h incubation in 0,1% SDS), ADM-5 research group (24 h incubation in 0.025% trypsin/EDTA solution and 4 h incubation in 0,1% SDS), and ADM-6 research group (24 h incubation in 0,1% SDS). Obtained ADMs were examined histochemically and by atomic force microscopy (AFM). ADMs were settled by human fibroblasts. The number of cultured cells and their vitality were measured. The obtained results indicated that the optimal method for production of living skin substitutes is colonization of autologous fibroblasts on the scaffold prepared by the incubation of human allogeneic dermis in 0.05% trypsin/EDTA. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 726-733, 2018.

摘要

在 III°烧伤治疗中,最有效的方法是使用从未受损身体部位捐献的自体断层皮片移植。这种方法的主要限制是缺乏合适的供体部位。组织工程是解决这个问题的有用工具。本研究的目的是找到一种最有效的方法,基于自制的去细胞真皮基质 ADM 和体外培养的成纤维细胞来生产生物活性皮肤替代物。使用 60 个已消毒的同种异体人皮肤样本(来自 10 个不同的供体)来检查脱细胞物质对细胞外基质的影响和同种异体人真皮测试样本的临床用途。研究了 6 组去细胞真皮基质:ADM-1 对照组、ADM-2 研究组(在 0.05%胰蛋白酶/ EDTA 溶液中孵育 24 小时)、ADM-3 研究组(在 0.025%胰蛋白酶/ EDTA 溶液中孵育 24 小时)、ADM-4 研究组(在 0.05%胰蛋白酶/ EDTA 溶液中孵育 24 小时,在 0.1% SDS 中孵育 4 小时)、ADM-5 研究组(在 0.025%胰蛋白酶/ EDTA 溶液中孵育 24 小时,在 0.1% SDS 中孵育 4 小时)和 ADM-6 研究组(在 0.1% SDS 中孵育 24 小时)。通过组织化学和原子力显微镜(AFM)检查获得的 ADM。将人成纤维细胞接种到 ADM 上。测量培养细胞的数量及其活力。获得的结果表明,生产活皮肤替代物的最佳方法是将自体成纤维细胞接种到在 0.05%胰蛋白酶/ EDTA 孵育的同种异体真皮制备的支架上。© 2017 Wiley Periodicals, Inc. J 生物材料 Res 部分 B: 应用生物材料,106B:726-733,2018。

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