Center for Natural Sciences and Humanities (CCNH), Federal University of ABC, São Bernardo do Campo, Sao Paulo, Brazil.
Center for Engineering, Modelling and Applied Social Sciences (CECS), Federal University of ABC, São Bernardo do Campo, Sao Paulo, Brazil.
J Biomater Appl. 2021 Aug;36(2):358-371. doi: 10.1177/08853282211024164. Epub 2021 Jun 9.
Bioprinting is a technique that has been applied in the areas of tissue engineering and regenerative medicine (TERM). Natural polymer-based hydrogels are known for their favorable biocompatible properties, as well as attractive biomaterials for cell encapsulation. These hydrogels provide an aqueous three-dimensional environment with biologically relevant chemical and physical signals, mimicking the natural environment of the extracellular matrix (ECM). Chitosan (CHI) and hyaluronic acid (HA) have been widely researched for biomedical applications. Bioinks are "ink" formulations, usually hydrogels, that allow the printing of living cells. This work proposes the development of a low cost and simple chitosan CHI-AH hydrogel with potential to become a bioink. At physiological temperature, the biomaterials form a hydrogel. The material developed was characterized by the analysis of morphology, cytotoxicity, and cell viability. FTIR showed the characteristic vibrational bands of chitosan and HA. No difference in swelling was observed between the different formulations studied, although SEM showed architectural differences between the hydrogels obtained. Extract cytotoxicity testing showed that the hydrogel is not cytotoxic. The direct toxicity test also revealed the absence of toxicity, but the cells had difficulty migrating into the gel, probably because of its density. These data were confirmed by SEM. Further testing are ongoing to better understand the gel's characteristics to improve the limitations found so far.
生物打印技术已应用于组织工程和再生医学(TERM)领域。天然聚合物水凝胶以其良好的生物相容性以及作为细胞封装的有吸引力的生物材料而闻名。这些水凝胶提供了具有生物相关化学和物理信号的水三维环境,模拟细胞外基质(ECM)的自然环境。壳聚糖(CHI)和透明质酸(HA)已广泛研究用于生物医学应用。生物墨水是“墨水”配方,通常是水凝胶,允许打印活细胞。这项工作提出了开发一种低成本且简单的壳聚糖 CHI-AH 水凝胶的方法,该水凝胶有可能成为生物墨水。在生理温度下,生物材料形成水凝胶。通过形态分析、细胞毒性和细胞活力分析对所开发的材料进行了表征。FTIR 显示了壳聚糖和 HA 的特征振动带。尽管 SEM 显示了所获得的水凝胶之间的结构差异,但不同配方之间的溶胀没有差异。细胞毒性提取试验表明该水凝胶无细胞毒性。直接毒性试验也表明没有毒性,但细胞难以迁移到凝胶中,可能是因为凝胶的密度。这些数据得到了 SEM 的证实。正在进行进一步的测试,以更好地了解凝胶的特性,从而改善迄今为止发现的局限性。