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细胞组装的细胞外基质:关注这种人类“生物”材料的储存稳定性和终端灭菌。

The cell-assembled extracellular matrix: A focus on the storage stability and terminal sterilization of this human "bio" material.

机构信息

BIOTIS - Laboratory for the Bioengineering of Tissues (UMR Inserm 1026), University of Bordeaux, Inserm, BIOTIS, UMR1026, Campus Carreire, 146 Rue Léo-Saignat, case 45, Bordeaux F-33076, France.

University of Bordeaux, CNRS, UMR 5320, Inserm, UMR121, ANRA, Bordeaux F-33076, France.

出版信息

Acta Biomater. 2023 Aug;166:133-146. doi: 10.1016/j.actbio.2023.05.002. Epub 2023 May 5.

Abstract

The Cell-Assembled extracellular Matrix (CAM) is an attractive biomaterial because it provided the backbone of vascular grafts that were successfully implanted in patients, and because it can now be assembled in "human textiles". For future clinical development, it is important to consider key manufacturing questions. In this study, the impact of various storage conditions and sterilization methods were evaluated. After 1 year of dry frozen storage, no change in mechanical nor physicochemical properties were detected. However, storage at 4 °C and room temperature resulted in some mechanical changes, especially for dry CAM, but physicochemical changes were minor. Sterilization modified CAM mechanical and physicochemical properties marginally except for hydrated gamma treatment. All sterilized CAM supported cell proliferation. CAM ribbons were implanted subcutaneously in immunodeficient rats to assess the impact of sterilization on the innate immune response. Sterilization accelerated strength loss but no significant difference could be shown at 10 months. Very mild and transient inflammatory responses were observed. Supercritical CO sterilization had the least effect. In conclusion, the CAM is a promising biomaterial since it is unaffected by long-term storage in conditions available in hospitals (hydrated at 4 °C), and can be sterilized terminally (scCO) without compromising in vitro nor in vivo performance. STATEMENT OF SIGNIFICANCE: In the field of tissue engineering, the use of extracellular matrix (ECM) proteins as a scaffolding biomaterial has become very popular. Recently, many investigators have focused on ECM produced by cells in vitro to produce unprocessed biological scaffolds. As this new kind of "biomaterial" becomes more and more relevant, it is critical to consider key manufacturing questions to facilitate future transition to the clinic. This article presents an extensive evaluation of long-term storage stability and terminal sterilization effects on an extracellular matrix assembled by cells in vitro. We believe that this article will be of great interest to help tissue engineers involved in so-called scaffold-free approaches to better prepare the translation from benchtop to bedside.

摘要

细胞组装细胞外基质(CAM)是一种很有吸引力的生物材料,因为它为血管移植物提供了支架,这些移植物已成功植入患者体内,并且现在可以“以人类纺织品的形式”进行组装。为了未来的临床发展,考虑关键的制造问题很重要。在这项研究中,评估了各种存储条件和灭菌方法的影响。经过 1 年的干燥冷冻储存,未检测到机械性能和物理化学性能的变化。但是,在 4°C 和室温下储存会导致一些机械变化,尤其是对于干燥的 CAM,但物理化学变化很小。除了水合γ处理外,灭菌仅略微改变了 CAM 的机械和物理化学性质。所有经过灭菌的 CAM 均支持细胞增殖。将 CAM 带植入免疫缺陷大鼠的皮下,以评估灭菌对固有免疫反应的影响。灭菌加速了强度损失,但在 10 个月时没有显示出明显差异。仅观察到非常轻微和短暂的炎症反应。超临界 CO 灭菌的影响最小。总之,CAM 是一种很有前途的生物材料,因为它不受医院中可获得的长期存储条件(在 4°C 下保持湿润)的影响,并且可以进行终端灭菌(scCO),而不会影响体外和体内性能。意义声明:在组织工程领域,细胞外基质(ECM)蛋白作为支架生物材料的使用变得非常流行。最近,许多研究人员都集中在体外细胞产生的 ECM 上,以生产未经处理的生物支架。随着这种新型“生物材料”变得越来越相关,考虑关键制造问题以促进未来向临床的转化至关重要。本文对细胞体外组装的细胞外基质的长期储存稳定性和终端灭菌效果进行了广泛评估。我们相信,这篇文章将引起很大的兴趣,帮助从事所谓无支架方法的组织工程师更好地准备从实验室到临床的转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8344/7614989/5ae71ef5fa22/EMS185239-f001.jpg

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