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用于再生医学中干细胞微囊化的多糖基水凝胶

Polysaccharide-Based Hydrogels for Microencapsulation of Stem Cells in Regenerative Medicine.

作者信息

Lee Si-Yuen, Ma Jingyi, Khoo Tze Sean, Abdullah Norfadhilatuladha, Nik Md Noordin Kahar Nik Nur Farisha, Abdul Hamid Zuratul Ain, Mustapha Muzaimi

机构信息

Department of Medicine, School of Medical Sciences, Universiti Sains Malaysia, Kota Bharu, Malaysia.

Duke-NUS Medical School, Singapore, Singapore.

出版信息

Front Bioeng Biotechnol. 2021 Oct 18;9:735090. doi: 10.3389/fbioe.2021.735090. eCollection 2021.

Abstract

Stem cell-based therapy appears as a promising strategy to induce regeneration of damaged and diseased tissues. However, low survival, poor engraftment and a lack of site-specificity are major drawbacks. Polysaccharide hydrogels can address these issues and offer several advantages as cell delivery vehicles. They have become very popular due to their unique properties such as high-water content, biocompatibility, biodegradability and flexibility. Polysaccharide polymers can be physically or chemically crosslinked to construct biomimetic hydrogels. Their resemblance to living tissues mimics the native three-dimensional extracellular matrix and supports stem cell survival, proliferation and differentiation. Given the intricate nature of communication between hydrogels and stem cells, understanding their interaction is crucial. Cells are incorporated with polysaccharide hydrogels using various microencapsulation techniques, allowing generation of more relevant models and further enhancement of stem cell therapies. This paper provides a comprehensive review of human stem cells and polysaccharide hydrogels most used in regenerative medicine. The recent and advanced stem cell microencapsulation techniques, which include extrusion, emulsion, lithography, microfluidics, superhydrophobic surfaces and bioprinting, are described. This review also discusses current progress in clinical translation of stem-cell encapsulated polysaccharide hydrogels for cell delivery and disease modeling (drug testing and discovery) with focuses on musculoskeletal, nervous, cardiac and cancerous tissues.

摘要

基于干细胞的疗法似乎是一种诱导受损和患病组织再生的有前景的策略。然而,低存活率、差的植入性和缺乏位点特异性是主要缺点。多糖水凝胶可以解决这些问题,并作为细胞递送载体具有若干优点。由于其独特的性质,如高含水量、生物相容性、生物可降解性和柔韧性,它们已经变得非常流行。多糖聚合物可以通过物理或化学交联来构建仿生水凝胶。它们与活组织的相似性模拟了天然的三维细胞外基质,并支持干细胞的存活、增殖和分化。鉴于水凝胶和干细胞之间通讯的复杂性质,了解它们的相互作用至关重要。使用各种微囊化技术将细胞与多糖水凝胶结合,从而能够生成更相关的模型并进一步增强干细胞疗法。本文全面综述了再生医学中最常用的人类干细胞和多糖水凝胶。描述了最近的先进干细胞微囊化技术,包括挤压、乳化、光刻、微流体、超疏水表面和生物打印。本综述还讨论了用于细胞递送和疾病建模(药物测试和发现)的干细胞封装多糖水凝胶在临床转化方面的当前进展,重点关注肌肉骨骼、神经、心脏和癌组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15d0/8558675/4bfe0af022be/fbioe-09-735090-g001.jpg

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