Department of Physiology and Pharmacology, Faculty of Health Sciences and cGMP Regenerative Medicine Facility, School of Medicine, Aristotle University of Thessaloniki (A.U.Th), Thessaloniki, Greece.
Laboratory of Histology, Embryology, and Anthropology, Faculty of Health Sciences, School of Medicine, Aristotle University of Thessaloniki (A.U.Th), Thessaloniki, Greece.
Tissue Eng Part B Rev. 2022 Feb;28(1):206-245. doi: 10.1089/ten.TEB.2020.0295. Epub 2021 Mar 10.
Articular cartilage can be easily damaged from human's daily activities, leading to inflammation and to osteoarthritis, a situation that can diminish the patients' quality of life. For larger cartilage defects, scaffolds are employed to provide cells the appropriate three-dimensional environment to proliferate and differentiate into healthy cartilage tissue. Natural biomaterials used as scaffolds, attract researchers' interest because of their relative nontoxic nature, their abundance as natural products, their easy combination with other materials, and the relative easiness to establish Marketing Authorization. The last 15 years were chosen to review, document, and elucidate the developments on cell-seeded natural biomaterials for articular cartilage treatment . The parameters of the experimental designs and their results were all documented and presented. Considerations about the newly formed cartilage and the treatment of cartilage defects were discussed, along with difficulties arising when applying natural materials, research limitations, and tissue engineering approaches for hyaline cartilage regeneration. Impact statement This review includes information from the literature and has never been complied before. The last 15 years were chosen to document and elucidate the developments on , articular cartilage treatment with cell-seeded natural biomaterials. The parameters of the experimental designs and their results were all documented and presented thoroughly. Natural materials overall seem to have a positive role in the recovery of cartilage defects. We expect that the knowledge from this review will be very useful to researchers organizing experimental protocols on critical analysis of advanced therapy medicinal products for human use.
关节软骨很容易因人们的日常活动而受损,导致炎症和骨关节炎,从而降低患者的生活质量。对于较大的软骨缺损,支架被用来为细胞提供合适的三维环境,使其增殖并分化为健康的软骨组织。天然生物材料作为支架,因其相对无毒的特性、作为天然产物的丰富性、与其他材料的容易结合性以及相对容易获得市场授权而引起研究人员的兴趣。选择过去 15 年的时间来回顾、记录和阐明用于关节软骨治疗的细胞接种天然生物材料的发展情况。记录并呈现了实验设计的参数及其结果。讨论了新形成的软骨和软骨缺损治疗的考虑因素,以及应用天然材料时出现的困难、研究限制以及用于透明软骨再生的组织工程方法。
本综述包括文献中的信息,以前从未有过汇编。选择过去 15 年的时间来记录和阐明用于关节软骨治疗的细胞接种天然生物材料的发展情况。记录并详细呈现了实验设计的参数及其结果。天然材料总体上似乎在软骨缺损的恢复中发挥积极作用。我们希望本综述中的知识将对研究人员组织用于人类使用的先进治疗药物产品的关键分析实验方案非常有用。