琼脂糖
羧甲基纤维素
3D生物打印
自愈水凝胶
材料科学
再生(生物学)
纤维素
聚合物
组织工程
生物医学工程
生物相容性
化学工程
化学
色谱法
高分子化学
复合材料
有机化学
医学
工程类
冶金
生物
细胞生物学
钠
作者
Harshavardhan Budharaju,Harini Chandrababu,Allen Zennifer,Davidraj Chellappan,Swaminathan Sethuraman,Dhakshinamoorthy Sundaramurthi
标识
DOI:10.1016/j.ijbiomac.2024.129443
摘要
3D bioprinting has emerged as a viable tool to fabricate 3D tissue constructs with high precision using various bioinks which offer instantaneous gelation, shape fidelity, and cytocompatibility. Among various bioinks, cellulose is the most abundantly available natural polymer & widely used as bioink for 3D bioprinting applications. To mitigate the demanding crosslinking needs of cellulose, it is frequently chemically modified or blended with other polymers to develop stable hydrogels. In this study, we have developed a thermoresponsive, composite bioink using carboxymethyl cellulose (CMC) and agarose in different ratios (9:1, 8:2, 7:3, 6:4, and 5:5). Among the tested combinations, the 5:5 ratio showed better gel formation at 37 °C and were further characterized for physicochemical properties. Cytocompatibility was assessed by in vitro extract cytotoxicity assay (ISO 10993-5) using skin fibroblasts cells. CMC-agarose (5:5) bioink was successfully used to fabricate complex 3D structures through extrusion bioprinting and maintained over 80 % cell viability over seven days. Finally, in vivo studies using rat full-thickness wounds showed the potential of CMC-agarose bulk and bioprinted gels in promoting skin regeneration. These results indicate the cytocompatibility and suitability of CMC-agarose bioinks for tissue engineering and 3D bioprinting applications.
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