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基于纤维素的复合材料作为组织工程支架:最新进展。

Cellulose-Based Composites as Scaffolds for Tissue Engineering: Recent Advances.

机构信息

Faculty of Pharmacy and Pharmaceutical Sciences, Isfahan University of Medical Sciences, Isfahan 81746-73461, Iran.

Regional Centre of Advanced Technologies and Materials, Czech Advanced Technology and Research Institute, Palacký University in Olomouc, Šlechtitelů 27, 783 71 Olomouc, Czech Republic.

出版信息

Molecules. 2022 Dec 12;27(24):8830. doi: 10.3390/molecules27248830.

Abstract

Today, numerous studies have focused on the design of novel scaffolds for tissue engineering and regenerative medicine applications; however, several challenges still exist in terms of biocompatibility/cytocompatibility, degradability, cell attachment/proliferation, nutrient diffusion, large-scale production, and clinical translation studies. Greener and safer technologies can help to produce scaffolds with the benefits of cost-effectiveness, high biocompatibility, and biorenewability/sustainability, reducing their toxicity and possible side effects. However, some challenges persist regarding their degradability, purity, having enough porosity, and possible immunogenicity. In this context, naturally derived cellulose-based scaffolds with high biocompatibility, ease of production, availability, sustainability/renewability, and environmentally benign attributes can be applied for designing scaffolds. These cellulose-based scaffolds have shown unique mechanical properties, improved cell attachment/proliferation, multifunctionality, and enhanced biocompatibility/cytocompatibility, which make them promising candidates for tissue engineering applications. Herein, the salient developments pertaining to cellulose-based scaffolds for neural, bone, cardiovascular, and skin tissue engineering are deliberated, focusing on the challenges and opportunities.

摘要

如今,许多研究都集中在新型支架的设计上,用于组织工程和再生医学应用;然而,在生物相容性/细胞相容性、可降解性、细胞附着/增殖、营养扩散、大规模生产和临床转化研究方面,仍然存在一些挑战。更环保、更安全的技术可以帮助生产具有成本效益、高生物相容性和生物可再生性/可持续性的支架,降低其毒性和潜在的副作用。然而,它们的可降解性、纯度、足够的多孔性和潜在的免疫原性仍然存在一些挑战。在这种情况下,具有高生物相容性、易于生产、可用性、可持续性/可再生性和环境友好特性的天然衍生纤维素基支架可用于支架设计。这些纤维素基支架具有独特的机械性能、改善的细胞附着/增殖、多功能性和增强的生物相容性/细胞相容性,使它们成为组织工程应用的有前途的候选材料。本文详细讨论了用于神经、骨骼、心血管和皮肤组织工程的纤维素基支架的显著发展,重点讨论了挑战和机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b2b2/9784432/163959d4fcd9/molecules-27-08830-g001.jpg

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