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Self-Healing Conductive Injectable Hydrogels with Antibacterial Activity as Cell Delivery Carrier for Cardiac Cell Therapy

机译:具有抗菌活性的自修复导电性可注射水凝胶,可作为心脏细胞治疗的细胞递送载体。

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Cell therapy is a promising strategy to regenerate cardiac tissue for myocardial infarction. Injectable hydrogels with conductivity and self-healing ability are highly desirable as cell delivery vehicles for cardiac regeneration. Here, we developed self-healable conductive injectable hydro gels based on chitosan-graft-aniline tetramer (CS-AT) and dibenzaldehyde-terminated poly(ethylene glycol) (PEG-DA) as cell delivery vehicles for myocardial infarction. Self-healed electroactive hydrogels were obtained after mixing CS-AT and PEG-DA solutions at physiological conditions. Rapid self healing behavior was investigated by rheometer. Swelling behavior, morphology, mechanical strength, electrochemistry, conductivity, adhesiveness to host tissue and antibacterial property of the injectable hydrogels were fully studied. Conductivity of the hydrogels is similar to 10(-3) S.cm(-1), which is quite dose to native cardiac tissue. Proliferation of C2C12 myoblasts in the hydrogel showed its good biocompatibility. After injection, viability of C2C12 cells in the hydrogels showed no significant difference with that before injection. Two different cell types were successfully encapsulated in the hydrogels by self-healing effect. Cell delivery profile of C2C12 myoblasts and H9c2 cardiac cells showed a tunable release rate, and in vivo cell retention in the conductive hydrogels was also studied. Subcutaneous injection and in vivo degradation of the hydrogels demonstrated their injectability and biodegradability. Together, these self-healing conductive biodegradable injectable hydrogels are excellent candidates as cell delivery vehicle for cardiac repair.
机译:细胞疗法是用于心肌梗塞再生心脏组织的有前途的策略。具有导电性和自我修复能力的可注射水凝胶非常需要作为心脏再生的细胞递送载体。在这里,我们开发了基于壳聚糖-接枝-苯胺四聚体(CS-AT)和二苯甲醛封端的聚乙二醇(PEG-DA)的自愈导电注射用水凝胶,作为心肌梗死的细胞递送载体。在生理条件下混合CS-AT和PEG-DA溶液后,获得了自修复的电活性水凝胶。流变仪研究了快速的自愈行为。充分研究了可注射水凝胶的溶胀行为,形态,机械强度,电化学,电导率,对宿主组织的粘附性和抗菌性能。水凝胶的电导率类似于10(-3)S.cm(-1),对天然心脏组织而言剂量相当。 C2C12成肌细胞在水凝胶中的增殖显示出良好的生物相容性。注射后,水凝胶中C2C12细胞的活力与注射前无明显差异。通过自愈作用,两种不同的细胞类型成功地封装在水凝胶中。 C2C12成肌细胞和H9c2心肌细胞的细胞传递曲线显示了可调的释放速率,并且还研究了在导电水凝胶中的体内细胞保留。水凝胶的皮下注射和体内降解证明了其可注射性和生物降解性。这些自我修复的导电性可生物降解的可注射水凝胶在一起,可作为心脏修复的细胞递送载体。

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