McInnes Adam D, Moser Michael A J, Chen Xiongbiao
Division of Biomedical Engineering, College of Engineering, University of Saskatchewan, Saskatoon, SK S7N 5A9, Canada.
Department of Surgery, Health Sciences Building, University of Saskatchewan, Saskatoon, SK S7N 0W8, Canada.
J Funct Biomater. 2022 Nov 14;13(4):240. doi: 10.3390/jfb13040240.
The multidisciplinary fields of tissue engineering and regenerative medicine have the potential to revolutionize the practise of medicine through the abilities to repair, regenerate, or replace tissues and organs with functional engineered constructs. To this end, tissue engineering combines scaffolding materials with cells and biologically active molecules into constructs with the appropriate structures and properties for tissue/organ regeneration, where scaffolding materials and biomolecules are the keys to mimic the native extracellular matrix (ECM). For this, one emerging way is to decellularize the native ECM into the materials suitable for, directly or in combination with other materials, creating functional constructs. Over the past decade, decellularized ECM (or dECM) has greatly facilitated the advance of tissue engineering and regenerative medicine, while being challenged in many ways. This article reviews the recent development of dECM for tissue engineering and regenerative medicine, with a focus on the preparation of dECM along with its influence on cell culture, the modification of dECM for use as a scaffolding material, and the novel techniques and emerging trends in processing dECM into functional constructs. We highlight the success of dECM and constructs in the , , and clinical applications and further identify the key issues and challenges involved, along with a discussion of future research directions.
组织工程和再生医学的多学科领域有潜力通过用功能性工程构建体修复、再生或替换组织和器官的能力来彻底改变医学实践。为此,组织工程将支架材料与细胞和生物活性分子结合成具有适合组织/器官再生的适当结构和特性的构建体,其中支架材料和生物分子是模拟天然细胞外基质(ECM)的关键。为此,一种新兴的方法是将天然ECM去细胞化,使其成为适合直接或与其他材料结合以创建功能性构建体的材料。在过去十年中,去细胞化ECM(或dECM)极大地促进了组织工程和再生医学的发展,但也面临着多方面的挑战。本文综述了用于组织工程和再生医学的dECM的最新进展,重点介绍了dECM的制备及其对细胞培养的影响、用作支架材料的dECM的改性,以及将dECM加工成功能性构建体的新技术和新趋势。我们强调了dECM及其构建体在 、 和临床应用中的成功,并进一步确定了所涉及的关键问题和挑战,同时讨论了未来的研究方向。