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用于使用植物源生物材料进行生物打印的生物墨水。

Bioinks for bioprinting using plant-derived biomaterials.

作者信息

Hasan Md Mehedee, Ahmad Ashfaq, Akter Mst Zobaida, Choi Yeong-Jin, Yi Hee-Gyeong

机构信息

Department of Convergence Biosystems Engineering, College of Agriculture and Life Sciences (CALS), Chonnam National University, Gwangju 61186, Republic of Korea.

Interdisciplinary Program in IT-Bio Convergence System, Chonnam National University, Gwangju, Republic of Korea.

出版信息

Biofabrication. 2024 Aug 22;16(4). doi: 10.1088/1758-5090/ad6932.

Abstract

Three-dimensional (3D) bioprinting has revolutionized tissue engineering by enabling the fabrication of complex and functional human tissues and organs. An essential component of successful 3D bioprinting is the selection of an appropriate bioink capable of supporting cell proliferation and viability. Plant-derived biomaterials, because of their abundance, biocompatibility, and tunable properties, hold promise as bioink sources, thus offering advantages over animal-derived biomaterials, which carry immunogenic concerns. This comprehensive review explores and analyzes the potential of plant-derived biomaterials as bioinks for 3D bioprinting of human tissues. Modification and optimization of these materials to enhance printability and biological functionality are discussed. Furthermore, cancer research and drug testing applications of the use of plant-based biomaterials in bioprinting various human tissues such as bone, cartilage, skin, and vascular tissues are described. Challenges and limitations, including mechanical integrity, cell viability, resolution, and regulatory concerns, along with potential strategies to overcome them, are discussed. Additionally, this review provides insights into the potential use of plant-based decellularized ECM (dECM) as bioinks, future prospects, and emerging trends in the use of plant-derived biomaterials for 3D bioprinting applications. The potential of plant-derived biomaterials as bioinks for 3D bioprinting of human tissues is highlighted herein. However, further research is necessary to optimize their processing, standardize their properties, and evaluate their long-termperformance. Continued advancements in plant-derived biomaterials have the potential to revolutionize tissue engineering and facilitate the development of functional and regenerative therapies for diverse clinical applications.

摘要

三维(3D)生物打印通过能够制造复杂且功能性的人体组织和器官,给组织工程带来了变革。成功进行3D生物打印的一个关键要素是选择一种能够支持细胞增殖和存活的合适生物墨水。植物源生物材料因其丰富性、生物相容性和可调节特性,有望成为生物墨水来源,因此比存在免疫原性问题的动物源生物材料具有优势。这篇综述探讨并分析了植物源生物材料作为用于人体组织3D生物打印的生物墨水的潜力。讨论了对这些材料进行改性和优化以提高可打印性和生物学功能。此外,还描述了在3D打印各种人体组织(如骨骼、软骨、皮肤和血管组织)中使用植物基生物材料的癌症研究和药物测试应用。讨论了包括机械完整性、细胞活力、分辨率和监管问题在内的挑战和局限性,以及克服这些问题的潜在策略。此外,本综述还深入探讨了基于植物的脱细胞细胞外基质(dECM)作为生物墨水的潜在用途、未来前景以及植物源生物材料在3D生物打印应用中的新兴趋势。本文强调了植物源生物材料作为用于人体组织3D生物打印的生物墨水的潜力。然而,有必要进一步研究以优化其加工过程、规范其性能并评估其长期性能。植物源生物材料的持续进步有可能给组织工程带来变革,并促进针对各种临床应用的功能性和再生性疗法的发展。

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