Stem Cell and Molecular Biology Laboratory, Bhupat and Jyoti Mehta School of Biosciences, Department of Biotechnology, Indian Institute of Technology Madras, Chennai 600036, TN, India.
Heat Transfer and Thermal Power, Department of Mechanical Engineering, Indian Institute of Technology Madras, Chennai 600036, TN, India.
Int J Pharm. 2021 Jun 15;603:120673. doi: 10.1016/j.ijpharm.2021.120673. Epub 2021 May 5.
Heart failure is major cause of mortality associated with mostly Myocardial infarction (MI). Transplanting mesenchymal stem cells (MSC) have exhibited potential role in myocardial regeneration. Secretion of immune-modulatory cytokines and various growth factors after transplantation plays significant role in remodelling process of MI region. However, low retention, higher shear stress during administration and rejection at host infarct environment hinders therapeutic efficacy. Myocardial regeneration demands for accurate spatio-temporal delivery of MSCs with supportive vascular network that leads to improvement of cardiac function. In this study, injectable alginate based microporous hydrogel has been used to deliver 5-Azacytidine (5-Aza) in zein protein nanoparticle with MSCs for attenuating adverse cardiac remodelling after MI. Zein nanoparticles loaded with 5-Aza were prepared by liquid-liquid dispersion, and it was found that 35% of drug was released in 7 days supported with mathematical modelling. The presence of 5-Aza and zein in developed hydrogel supported in vitro MSC proliferation, migration and angiogenesis. Significant increased expression of cardiac specific markers, GATA4, MEF2C, MLC, SERCA and NKX2.5 was observed in vitro. 5-Aza loaded protein nanoparticle with MSCs encapsulated hydrogels in rat MI model also exhibited substantial improvement of functional cardiac parameters such as cardiac output and ejection fraction. Histopathological analysis showed reduced fibrosis, attenuated infarct expansion and cardiac tissue restoration and angiogenesis. In brief, we developed nanocarrier-hydrogel system a promising strategy for co-delivering 5-Aza as cardiac differentiation cue with MSCs to achieve higher cell retention and enhanced improvement in myocardial regeneration after MI.
心力衰竭是与心肌梗死(MI)相关的主要死亡原因。间充质干细胞(MSC)的移植已表现出在心肌再生中的潜在作用。移植后免疫调节细胞因子和各种生长因子的分泌在 MI 区域的重塑过程中起着重要作用。然而,低保留率、在给药过程中较高的剪切应力和宿主梗塞环境中的排斥反应阻碍了治疗效果。心肌再生需要 MSC 的精确时空递送来支持血管网络,从而改善心脏功能。在这项研究中,使用可注射的藻酸盐基微孔水凝胶来递送 5-氮杂胞苷(5-Aza)与 MSC 共载于玉米醇溶蛋白纳米颗粒中,以减轻 MI 后不良的心脏重塑。通过液-液相分散法制备了负载 5-Aza 的玉米醇溶蛋白纳米颗粒,结果发现 7 天内有 35%的药物释放,并通过数学建模得到支持。开发的水凝胶中存在 5-Aza 和玉米醇溶蛋白,支持 MSC 的体外增殖、迁移和血管生成。在体外观察到心脏特异性标志物 GATA4、MEF2C、MLC、SERCA 和 NKX2.5 的表达显著增加。在大鼠 MI 模型中,负载 5-Aza 的蛋白纳米颗粒与 MSC 包封水凝胶也表现出对心脏功能参数的显著改善,如心输出量和射血分数。组织病理学分析显示纤维化减少,梗塞扩张减轻,心脏组织恢复和血管生成。总之,我们开发了纳米载体-水凝胶系统,这是一种有前途的策略,可将 5-Aza 作为心脏分化信号与 MSC 共递送来实现更高的细胞保留率,并增强 MI 后心肌再生的改善。