Department of Cardiac Surgery, Affiliated South China Hospital, Southern Medical University (Guangdong Provincial People's Hospital), Guangzhou, Guangdong 510515, China; Department of Cardiac Surgery, Guangdong Cardiovascular Institute, Guangdong General Hospital, Guangdong Academy of Medical Sciences, Guangzhou 510100, China.
Department of Cardiac Surgery, Guangdong Cardiovascular Institute, Guangdong General Hospital, Guangdong Academy of Medical Sciences, Guangzhou 510100, China.
Int J Biol Macromol. 2018 Oct 1;117:553-558. doi: 10.1016/j.ijbiomac.2018.04.196. Epub 2018 May 25.
The development of advanced nano-mediated biological macromolecular (PEGylated Chitosan) hydrogel materials is a vital approach to enhance the efficiency of cardiac tissue applications for treatment of cardiac tissue repair. Definite properties of PEG and chitosan hydrogel matrixes including swelling, mechanical stability and porosity need to be further improved with effective and non-toxic nanoparticles to promote the cell adhesion and organization of cardiac cells. In the current study, we fabricated engineered spherical TiO nanoparticles into the biologically active macromolecular (PEG/CTS) hydrogel matrixes with enhanced physico-chemical and biological properties. The morphological improved spherical TiO NPs have been highly dispersed in the porous hydrogel structure and effectively promoted young modulus and swelling properties and also exhibited favorable cell adhesion and organization with the cardiomyocytes cells. The stained fluorescence images of TiO-PEG/CTS hydrogels on the cardiomyocytes cells show the excellent cell-hydrogel matrix interactions comparable to the PEG/CTS hydrogel in the absence of TiO NPs. Thus, the investigation results of the present study clearly suggested that efficient cardiac patches with superior bioactive and mechanical properties for cardiac tissue repair.
先进的纳米介导生物大分子(PEG 化壳聚糖)水凝胶材料的开发是提高心脏组织应用效率的重要方法,用于治疗心脏组织修复。PEG 和壳聚糖水凝胶基质的某些特性,包括溶胀性、机械稳定性和孔隙率,需要用有效且无毒的纳米粒子进一步改进,以促进心脏细胞的黏附和组织。在本研究中,我们将工程化的球形 TiO 纳米粒子制备到具有增强的物理化学和生物特性的生物活性大分子(PEG/CTS)水凝胶基质中。形态改善的球形 TiO NPs 高度分散在多孔水凝胶结构中,有效地提高了杨氏模量和溶胀性能,并表现出与心肌细胞良好的黏附和组织相容性。TiO-PEG/CTS 水凝胶对心肌细胞的染色荧光图像显示,与不存在 TiO NPs 的 PEG/CTS 水凝胶相比,其具有优异的细胞-水凝胶基质相互作用。因此,本研究的结果清楚地表明,具有优异的生物活性和机械性能的高效心脏补片可用于心脏组织修复。