Chen Wancheng, Yuan Sijie, Shen Jie, Chen Yongsheng, Xiao Yang
Translational Medicine Center, Jiangmen Central Hospital, Jiangmen, China.
Department of Endocrinology and Metabolism, The Third Affiliated Hospital, Southern Medical University, Guangzhou, China.
Front Bioeng Biotechnol. 2021 Feb 2;8:627351. doi: 10.3389/fbioe.2020.627351. eCollection 2020.
Hydrogel-based material have been demonstrated promising potential for hemostasis. Herein, we prepared a composite hydrogel (CH-P 40%) by combining pectin and cellulose in ionic liquid. The superficial morphology of the CH-P 40% was explored by SEM; the internal chemical bonds, crystal form and thermal stability were determined via FTIR, XRD and thermogravimetric analysis, respectively. The biocompatibilities of the CH-P 40% hydrogel was evaluated by MTT, flow cytometry, and histological observation with H&E staining. Furthermore, the hemostatic effect was evaluated via the blood clotting index and mouse liver hemostatic model. The results showed that the CH-P 40% hydrogel exhibited a dense network structure and retained its chemical bonds, including the OH, CH, C=O, -CH2, CO, C1-H, and β-glycosidic bonds. Simultaneously, the hydrogel retained the Cellulose I and II crystal structure and favorable thermal stability. Moreover, the proliferation rates of CH-P 40%-treated cells increased ( > 0.05), and there were no pathological lesions in the mouse organs, which suggests favorable biocompatibility. The results showed less bleeding in the hydrogel-treated liver wound within 3 min. Overall, the pectin-cellulose hydrogel is stable and possesses favorable biocompatibility and hemostatic ability, further highlighting that the composite hydrogel has the potential to be rapid hemostatic biomedical material.
基于水凝胶的材料已被证明在止血方面具有广阔的应用前景。在此,我们在离子液体中通过将果胶和纤维素结合制备了一种复合水凝胶(CH-P 40%)。通过扫描电子显微镜(SEM)探究了CH-P 40%的表面形态;分别通过傅里叶变换红外光谱(FTIR)、X射线衍射(XRD)和热重分析确定了其内部化学键、晶体形式和热稳定性。通过MTT法、流式细胞术以及苏木精-伊红(H&E)染色的组织学观察对CH-P 40%水凝胶的生物相容性进行了评估。此外,通过凝血指数和小鼠肝脏止血模型评估了止血效果。结果表明,CH-P 40%水凝胶呈现出致密的网络结构,并保留了其化学键,包括OH、CH、C=O、-CH2、CO、C1-H和β-糖苷键。同时,该水凝胶保留了纤维素I和II的晶体结构以及良好的热稳定性。此外,经CH-P 40%处理的细胞增殖率增加(>0.05),并且小鼠器官中没有病理损伤,这表明其具有良好的生物相容性。结果显示,在水凝胶处理的肝脏伤口处,3分钟内出血较少。总体而言,果胶-纤维素水凝胶稳定,具有良好的生物相容性和止血能力,进一步表明这种复合水凝胶有潜力成为快速止血的生物医学材料。