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可高压灭菌和可注射的生物医学应用冷冻胶。

Autoclavable and Injectable Cryogels for Biomedical Applications.

机构信息

Center of Nanotechnology, King Abdulaziz University, Jeddah, 21589, Saudi Arabia.

Department of Chemical Engineering, Northeastern University, Boston, MA, 02215, USA.

出版信息

Adv Healthc Mater. 2019 Sep;8(17):e1900679. doi: 10.1002/adhm.201900679. Epub 2019 Jul 26.

Abstract

Prior to any clinical application, terminal sterilization of biomaterials is a critical process imposed by the Food and Drug Administration. Of all the methods available for sterilization, high-pressure steam sterilization such as autoclaving is the most widely used. While autoclave sterilization minimizes pathogen contamination, it can dramatically impact both structural and biological properties of biomaterials. It has recently been reported that injectable cryogels with shape memory properties hold great promises as 3D macroporous biomimetic scaffolds for biomedical applications including tissue engineering. In this study, the impact of autoclave sterilization on properties of a series of cryogels is measured. Unlike conventional hydrogels, cryogels made of natural polymers demonstrate a strong resilience to autoclave sterilization. This process does not alter either their macrostructural or unique physical properties including syringe injectability. The scaffolds' bioactive sites are preserved and autoclaved cryogels retain their excellent cytological compatibility post-autoclaving. Furthermore, autoclaved cryogels do not trigger a notable activation of primary murine bone marrow-derived dendritic cells suggesting a minimal risk for biomaterial-induced inflammation, which is further confirmed by an in vivo histologic analysis. In summary, these results further demonstrate the huge potential of cryogels in the biomedical field and their capacity to be translated into clinical applications.

摘要

在任何临床应用之前,生物材料的终端灭菌都是食品和药物管理局强制要求的关键过程。在所有可用的灭菌方法中,高压蒸汽灭菌(如高压灭菌器)是最广泛使用的方法。虽然高压灭菌器消毒可以最大限度地减少病原体污染,但它会显著影响生物材料的结构和生物学特性。最近有报道称,具有形状记忆特性的可注射冷冻凝胶作为 3D 大孔仿生支架,在包括组织工程在内的生物医学应用中具有广阔的前景。在这项研究中,测量了高压灭菌器对一系列冷冻凝胶性能的影响。与传统水凝胶不同,由天然聚合物制成的冷冻凝胶对高压灭菌器具有很强的弹性。该过程不会改变其宏观结构或包括可注射性在内的独特物理性质。支架的生物活性位点得以保留,并且经过高压灭菌的冷冻凝胶在高压灭菌后仍然保持出色的细胞相容性。此外,高压灭菌的冷冻凝胶不会引起原代鼠骨髓来源树突状细胞的显著激活,这表明生物材料诱导的炎症风险很小,这进一步通过体内组织学分析得到证实。总之,这些结果进一步证明了冷冻凝胶在生物医学领域的巨大潜力及其转化为临床应用的能力。

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