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三维生物打印骨的研究进展:进展与挑战。

Advances in three-dimensional bioprinting of bone: Progress and challenges.

机构信息

Stem Cell Facility (DBT-Centre of Excellence for Stem Cell Research), All India Institute of Medical Sciences (AIIMS), New Delhi, India.

Department of Oral and Maxillofacial Surgery, Faculty of Dentistry, Jamia Millia Islamia, New Delhi, India.

出版信息

J Tissue Eng Regen Med. 2019 Jun;13(6):925-945. doi: 10.1002/term.2847. Epub 2019 Apr 24.

Abstract

Several attempts have been made to engineer a viable three-dimensional (3D) bone tissue equivalent using conventional tissue engineering strategies, but with limited clinical success. Using 3D bioprinting technology, scientists have developed functional prototypes of clinically relevant and mechanically robust bone with a functional bone marrow. Although the field is in its infancy, it has shown immense potential in the field of bone tissue engineering by re-establishing the 3D dynamic micro-environment of the native bone. Inspite of their in vitro success, maintaining the viability and differentiation potential of such cell-laden constructs overtime, and their subsequent preclinical testing in terms of stability, mechanical loading, immune responses, and osseointegrative potential still needs to be explored. Progress is slow due to several challenges such as but not limited to the choice of ink used for cell encapsulation, optimal cell source, bioprinting method suitable for replicating the heterogeneous tissues and organs, and so on. Here, we summarize the recent advancements in bioprinting of bone, their limitations, challenges, and strategies for future improvisations. The generated knowledge will provide deep insights on our current understanding of the cellular interactions with the hydrogel matrices and help to unravel new methodologies for facilitating precisely regulated stem cell behaviour.

摘要

已经有几种尝试使用传统的组织工程策略来设计可行的三维(3D)骨组织等效物,但临床效果有限。利用 3D 生物打印技术,科学家们已经开发出具有功能骨髓的临床相关且机械坚固的功能性骨的功能原型。尽管该领域仍处于起步阶段,但它通过重新建立天然骨的 3D 动态微环境,在骨组织工程领域显示出了巨大的潜力。尽管在体外取得了成功,但仍需要探索这些细胞负载构建体的活力和分化潜力随时间的保持情况,以及它们在稳定性、机械加载、免疫反应和骨整合潜力方面的临床前测试。由于多种挑战,如但不限于用于细胞包封的墨水选择、最佳细胞来源、适合复制异质组织和器官的生物打印方法等,进展缓慢。在这里,我们总结了骨生物打印的最新进展、它们的局限性、挑战以及未来改进的策略。所产生的知识将深入了解我们目前对细胞与水凝胶基质相互作用的理解,并有助于为促进精确调控干细胞行为的方法提供新的思路。

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