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通过在烯丙基化明胶水凝胶中共价掺入硫酸软骨素可调节粘弹性。

Viscoelasticity Can Be Tuned Through Covalent Incorporation of Chondroitin Sulphate in Allylated Gelatin Hydrogels.

作者信息

Boos Manuela A, Lim Khoon S, Lamandé Shireen R, Stok Kathryn S

机构信息

Department of Biomedical Engineering, The University of Melbourne, Parkville, 3010, Australia.

School of Medical Sciences, The University of Sydney, Sydney, 2006, Australia.

出版信息

Macromol Biosci. 2025 Jun;25(6):e2400422. doi: 10.1002/mabi.202400422. Epub 2025 Mar 19.

Abstract

Cartilage is a slow-remodeling tissue with limited healing capacity. This has led to decades of tissue engineering efforts where the goal is biomaterials with regenerative capacity to restore functional integrity. Achieving full functional and mechanical integrity has proven difficult as cartilage has distinct mechanical properties. Glycosaminoglycans (GAGs) play a crucial role in cartilage mechanics due to their swelling behavior, contributing to viscoelasticity. The aims of this study are to covalently incorporate thiolated chondroitin sulphate (CSSH) in allylated gelatin (gelAGE) hydrogels at different concentrations to mimic GAG-rich regions in cartilage and create platforms to study subsequent cellular behavior. Hydrogels are evaluated for soluble fraction, swelling ratio, chondroitin sulphate (CS) retention, mechanical and viscoelastic properties, and cytocompatibility. ≈80% of CSSH is retained, and samples containing CSSH has an increased swelling ratio, indicating the incorporation of GAGs. Samples containing CSSH has an increased relaxation amplitude compared to gelAGE controls with a more elastic response. The addition of CSSH has no adverse effects on cytocompatibility. In conclusion, this study demonstrates the incorporation of thiolated CS in gelAGE hydrogels at different concentrations with no adverse effects on cytocompatibility. This allows for viscoelastic tuning which is important to consider when engineering new biomaterials.

摘要

软骨是一种重塑缓慢、愈合能力有限的组织。这导致了数十年来的组织工程研究,其目标是开发具有再生能力的生物材料,以恢复功能完整性。由于软骨具有独特的力学性能,实现完全的功能和力学完整性已被证明是困难的。糖胺聚糖(GAGs)因其肿胀行为在软骨力学中起着关键作用,有助于形成粘弹性。本研究的目的是将硫醇化硫酸软骨素(CSSH)以不同浓度共价结合到烯丙基化明胶(gelAGE)水凝胶中,以模拟软骨中富含GAG的区域,并创建研究后续细胞行为的平台。对水凝胶的可溶部分、溶胀率、硫酸软骨素(CS)保留率、力学和粘弹性性能以及细胞相容性进行评估。约80%的CSSH被保留,含有CSSH的样品溶胀率增加,表明GAGs已被结合。与gelAGE对照相比,含有CSSH的样品松弛幅度增加,具有更具弹性的响应。添加CSSH对细胞相容性无不良影响。总之,本研究证明了不同浓度的硫醇化CS可结合到gelAGE水凝胶中,且对细胞相容性无不良影响。这允许进行粘弹性调节,这在设计新型生物材料时是需要考虑的重要因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a607/12169501/66f11c675b85/MABI-25-2400422-g002.jpg

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