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对关节软骨生物制造的厚望——组织工程和3D生物打印的未来前景如何?

High Hopes for the Biofabrication of Articular Cartilage-What Lies beyond the Horizon of Tissue Engineering and 3D Bioprinting?

作者信息

Sbirkov Yordan, Redzheb Murad, Forraz Nico, McGuckin Colin, Sarafian Victoria

机构信息

Department of Medical Biology, Medical University of Plovdiv, 4000 Plovdiv, Bulgaria.

Research Institute, Medical University of Plovdiv, 4000 Plovdiv, Bulgaria.

出版信息

Biomedicines. 2024 Mar 15;12(3):665. doi: 10.3390/biomedicines12030665.

Abstract

Technologies and biomaterials for 3D bioprinting have been developing extremely quickly in the past decade as they hold great potential in tissue engineering. This, together with the possibility to differentiate stem cells of different origin into any cell type, raises the hopes in regenerative medicine once again after the initial breakthrough with stem cells in the 1980s. Nevertheless, three decades of 3D bioprinting experiments have shown that the production of functional tissues would take a longer time than anticipated. Cartilage, one of the simplest tissues in the body, consists of only one cell type. It is not vascularised and innervated and does not have lymphatic vessels either, which makes it a perfect target tissue for successful implantation. The tremendous amount of work since the beginning of this century, combining the efforts of bioengineers, material scientists, biologists, and physicians, has culminated in multiple proof-of-concept constructs that have been implanted in animals. However, there is no single reproducible, standardised, widely accessible and accepted strategy that can be readily applied in the clinic. In this review, we focus on the current progress in the field of the 3D biofabrication of articular cartilage and critically assess failures and future challenges.

摘要

在过去十年中,用于3D生物打印的技术和生物材料发展极为迅速,因为它们在组织工程领域具有巨大潜力。这与将不同来源的干细胞分化为任何细胞类型的可能性相结合,在20世纪80年代干细胞取得初步突破之后,再次燃起了再生医学的希望。然而,三十年的3D生物打印实验表明,功能性组织的生产所需时间将比预期更长。软骨是人体中最简单的组织之一,仅由一种细胞类型组成。它没有血管化和神经支配,也没有淋巴管,这使其成为成功植入的理想靶组织。自本世纪初以来,生物工程师、材料科学家、生物学家和医生共同付出了巨大努力,最终产生了多个已植入动物体内的概念验证构建体。然而,目前还没有一种可重复、标准化、广泛可用且被接受的策略能够立即应用于临床。在这篇综述中,我们重点关注关节软骨3D生物制造领域的当前进展,并批判性地评估失败之处和未来挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb0c/10968021/dbf823864ec1/biomedicines-12-00665-g001.jpg

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