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利用天然蓝图设计生物墨水以生物打印功能性心脏组织。

Harnessing native blueprints for designing bioinks to bioprint functional cardiac tissue.

作者信息

Akter Mst Zobaida, Tufail Fatima, Ahmad Ashfaq, Oh Yoon Wha, Kim Jung Min, Kim Seoyeon, Hasan Md Mehedee, Li Longlong, Lee Dong-Weon, Kim Yong Sook, Lee Su-Jin, Kim Hyung-Seok, Ahn Youngkeun, Choi Yeong-Jin, Yi Hee-Gyeong

机构信息

Department of Convergence Biosystems Engineering, Chonnam National University, Gwangju 61186, Republic of Korea.

Interdisciplinary Program in IT-Bio Convergence System, Chonnam National University, Gwangju 61186, Republic of Korea.

出版信息

iScience. 2025 Jan 23;28(3):111882. doi: 10.1016/j.isci.2025.111882. eCollection 2025 Mar 21.

Abstract

Cardiac tissue lacks regenerative capacity, making heart transplantation the primary treatment for end-stage heart failure. Engineered cardiac tissues developed through three-dimensional bioprinting (3DBP) offer a promising alternative. However, reproducing the native structure, cellular diversity, and functionality of cardiac tissue requires advanced cardiac bioinks. Major obstacles in CTE (cardiac tissue engineering) include accurately characterizing bioink properties, replicating the cardiac microenvironment, and achieving precise spatial organization. Optimizing bioink properties to closely mimic the extracellular matrix (ECM) is essential, as deviations may result in pathological effects. This review encompasses the rheological and electromechanical properties of bioinks and the function of the cardiac microenvironment in the design of functional cardiac constructs. Furthermore, it focuses on improving the rheological characteristics, printability, and functionality of bioinks, offering valuable perspectives for developing new bioinks especially designed for CTE.

摘要

心脏组织缺乏再生能力,这使得心脏移植成为终末期心力衰竭的主要治疗方法。通过三维生物打印(3DBP)开发的工程心脏组织提供了一种有前景的替代方案。然而,要重现心脏组织的天然结构、细胞多样性和功能,需要先进的心脏生物墨水。心脏组织工程(CTE)中的主要障碍包括准确表征生物墨水特性、复制心脏微环境以及实现精确的空间组织。优化生物墨水特性以紧密模拟细胞外基质(ECM)至关重要,因为偏差可能导致病理效应。本文综述了生物墨水的流变学和机电特性以及心脏微环境在功能性心脏构建体设计中的作用。此外,它专注于改善生物墨水的流变学特性、可打印性和功能,为开发专门用于CTE的新型生物墨水提供了有价值的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b1a/11964760/ce5181e43953/fx1.jpg

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