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具有卓越性能的可高压灭菌白蛋白基冷冻凝胶

Autoclavable Albumin-Based Cryogels with Uncompromising Properties.

作者信息

Duan Kairui, Mehwish Nabila, Xu Mengdie, Zhu Hu, Hu Jiajun, Lin Mian, Yu Lu, Lee Bae Hoon

机构信息

Postgraduate Training Base Alliance, Wenzhou Medical University, Wenzhou 325011, China.

Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou 325011, China.

出版信息

Gels. 2023 Sep 1;9(9):712. doi: 10.3390/gels9090712.

Abstract

The development of autoclavable hydrogels has been driven by the need for materials that can withstand the rigors of sterilization without compromising their properties or functionality. Many conventional hydrogels cannot withstand autoclave treatment owing to the breakdown of their composition or structure under the high-temperature and high-pressure environment of autoclaving. Here, the effect of autoclaving on the physical, mechanical, and biological properties of bovine serum albumin methacryloyl (BSAMA) cryogels at three protein concentrations (3, 5, and 10%) was extensively studied. We found that BSAMA cryogels at three concentrations remained little changed after autoclaving in terms of gross shape, pore structure, and protein secondary structure. Young's modulus of autoclaved BSAMA cryogels (BSAMA) at low concentrations (3 and 5%) was similar to that of BSAMA cryogels, whereas 10% BSAMA exhibited a higher Young's modulus value, compared with 10% BSAMA. Interestingly, BSAMA cryogels prolonged degradation. Importantly, cell viability, drug release, and hemolytic behaviors were found to be similar among the pre- and post-autoclaved cryogels. Above all, autoclaving proved to be more effective in sterilizing BSAMA cryogels from bacteria contamination than UV and ethanol treatments. Thus, autoclavable BSAMA cryogels with uncompromising properties would be useful for biomedical applications.

摘要

可高压灭菌水凝胶的发展是由对能够承受严格灭菌条件而不损害其性能或功能的材料的需求所推动的。许多传统水凝胶由于在高压灭菌的高温高压环境下其组成或结构被破坏,无法承受高压灭菌处理。在此,广泛研究了高压灭菌对三种蛋白质浓度(3%、5%和10%)的甲基丙烯酰化牛血清白蛋白(BSAMA)冷冻凝胶的物理、机械和生物学性能的影响。我们发现,三种浓度的BSAMA冷冻凝胶在高压灭菌后,其总体形状、孔结构和蛋白质二级结构几乎没有变化。低浓度(3%和5%)的高压灭菌BSAMA冷冻凝胶(BSAMA)的杨氏模量与BSAMA冷冻凝胶相似,而10%的BSAMA与10%的BSAMA相比,表现出更高的杨氏模量值。有趣的是,BSAMA冷冻凝胶的降解时间延长。重要的是,发现高压灭菌前后的冷冻凝胶在细胞活力、药物释放和溶血行为方面相似。最重要的是,事实证明,高压灭菌在对BSAMA冷冻凝胶进行除菌方面比紫外线和乙醇处理更有效。因此,具有不妥协性能的可高压灭菌BSAMA冷冻凝胶将可用于生物医学应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7481/10530076/15e6945225a0/gels-09-00712-g001.jpg

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