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由蕨类植物茎定制的仿生多功能各向异性、电活性纤维素水凝胶支架,用作神经导管和心脏贴片。

Biomimetic Versatile Anisotropic, Electroactive Cellulose Hydrogel Scaffolds Tailored from Fern Stem Serving as Nerve Conduit and Cardiac Patch.

作者信息

Liang Qinghui, Chen Shuhui, Hua Shaofeng, Jiang Weihong, Zhan Jiamian, Pu Chunyi, Lin Rurong, He Yutong, Hou Honghao, Qiu Xiaozhong

机构信息

Department of Anatomy, Guangdong Provincial Key Laboratory of Construction and Detection in Tissue Engineering, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong, 510515, P. R. China.

出版信息

Adv Sci (Weinh). 2025 Jan;12(4):e2400002. doi: 10.1002/advs.202400002. Epub 2024 Dec 4.

Abstract

Peripheral nerve injury (PNI) and myocardial infarction (MI) are the two most clinically common soft excitable tissue injuries. Both nerve and cardiac tissues exhibit structural anisotropy and electrophysiological activity, providing a wide range of biophysical cues for cell and tissue repair. However, balancing microstructural anisotropy, electroactivity, and biocompatibility is challenging. To address this issue, Dicranopteris linearis (D. linearis) is proposed as a low-perceived value fern plant. Moreover, to enhance its usefulness, it can be designed into a tubular structure and a lamellar structure to bridge the damaged tissue. Therefore, a robust yet simple top-down approach is proposed to designing and fabricating the desired biomimetic versatile hydrogels orienting from the D. linearis to customize for different soft excitable tissue repair applications. These anisotropic electroactive hydrogels performed well as nerve guidance conduits (NGC) and engineered cardiac patches (ECP) in the repair of PNI and MI, respectively. Two birds, one stone. Accordingly, the biomimetic strategy of D. linearis to NGC and D. linearis to ECP is first proposed, opening a new horizon for constructing tissue engineering using natural sources.

摘要

周围神经损伤(PNI)和心肌梗死(MI)是临床上最常见的两种软可兴奋组织损伤。神经组织和心脏组织都表现出结构各向异性和电生理活性,为细胞和组织修复提供了广泛的生物物理线索。然而,平衡微观结构各向异性、电活性和生物相容性具有挑战性。为了解决这个问题,提出将芒萁(Dicranopteris linearis)作为一种价值被低估的蕨类植物。此外,为了提高其效用,可以将其设计成管状结构和层状结构来桥接受损组织。因此,提出了一种强大而简单的自上而下的方法,用于设计和制造从芒萁衍生而来的所需仿生多功能水凝胶,以针对不同的软可兴奋组织修复应用进行定制。这些各向异性电活性水凝胶分别在PNI和MI修复中作为神经引导导管(NGC)和工程心脏补片(ECP)表现良好。一举两得。因此,首次提出了从芒萁到NGC以及从芒萁到ECP的仿生策略,为利用天然来源构建组织工程开辟了新的视野。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adde/11789595/142811826f37/ADVS-12-2400002-g001.jpg

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