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光交联可注射、高黏附性 GelMA-壳聚糖水凝胶用于软骨修复。

Photo-Cross-Linkable, Injectable, and Highly Adhesive GelMA-Glycol Chitosan Hydrogels for Cartilage Repair.

机构信息

Centre for Biomedical Technologies, Queensland University of Technology, 60 Musk Ave., Kelvin Grove, QLD, 4059, Australia.

Department of Surgery and Radiology, Faculty of Veterinary Medicine and Animal Science, Bangabandhu Sheikh Mujibur Rahman Agricultural University (BSMRAU), Gazipur, 1706, Bangladesh.

出版信息

Adv Healthc Mater. 2023 Dec;12(32):e2302078. doi: 10.1002/adhm.202302078. Epub 2023 Oct 10.

Abstract

Hydrogels provide a promising platform for cartilage repair and regeneration. Although hydrogels have shown some efficacy, they still have shortcomings including poor mechanical properties and suboptimal integration with surrounding cartilage. Herein, hydrogels that are injectable, cytocompatible, mechanically robust, and highly adhesive to cartilage are developed. This approach uses GelMA-glycol chitosan (GelMA-GC) that is crosslinkable with visible light and photoinitiators (lithium acylphosphinate and tris (2,2'-bipyridyl) dichlororuthenium (II) hexahydrate ([RuII(bpy) ] and sodium persulfate (Ru/SPS)). Ru/SPS-cross-linked hydrogels have higher compressive and tensile modulus, and most prominently higher adhesive strength with cartilage, which also depends on inclusion of GC. Tensile and push-out tests of the Ru/SPS-cross-linked GelMA-GC hydrogels demonstrate adhesive strength of ≈100 and 46 kPa, respectively. Hydrogel precursor solutions behave in a Newtonian manner and are injectable. After injection in focal bovine cartilage defects and in situ cross-linking, this hydrogel system remains intact and integrated with cartilage following joint manipulation ex vivo. Cells remain viable (>85%) in the hydrogel system and further show tissue regeneration potential after three weeks of in vitro culture. These preliminary results provide further motivation for future research on bioadhesive hydrogels for cartilage repair and regeneration.

摘要

水凝胶为软骨修复和再生提供了一个有前景的平台。尽管水凝胶已经显示出了一些疗效,但它们仍然存在一些缺点,包括机械性能差和与周围软骨的结合不理想。在此,开发了一种可注射、细胞相容性好、机械强度高、与软骨高度粘合的水凝胶。该方法使用可通过可见光和光引发剂(酰基膦酸盐锂和三(2,2'-联吡啶)二氯二钌(II)六水合物([RuII(bpy) ]和过硫酸钠(Ru/SPS)交联的 GelMA-甘油聚糖(GelMA-GC)。Ru/SPS 交联的水凝胶具有更高的压缩和拉伸模量,尤其是与软骨的粘合强度更高,这也取决于 GC 的包含。Ru/SPS 交联的 GelMA-GC 水凝胶的拉伸和推出测试分别证明了约 100kPa 和 46kPa 的粘合强度。水凝胶前体溶液呈牛顿行为,可注射。在牛软骨局灶性缺损中注射并原位交联后,该水凝胶系统在关节体外操作后仍保持完整并与软骨结合。细胞在水凝胶系统中保持存活(>85%),并且在体外培养三周后进一步显示出组织再生的潜力。这些初步结果为进一步研究用于软骨修复和再生的生物粘附水凝胶提供了动力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6c1/11468424/733133f7ab2d/ADHM-12-2302078-g005.jpg

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