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Nanotechnology Approaches in Tackling Cardiovascular Diseases

机译:纳米技术解决心血管疾病

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Cardiovascular diseases have continued to remain a leading cause of mortality and morbidity worldwide. Poor proliferation capability of adult cardiomyocytes disables the heart from regenerating new myocardium after a myocardial ischaemia event and therefore weakens the heart in the long term, which may result in heart failure and death. Delivery of cardioprotective therapeutics soon after the event can help to protect the heart from further cell death and improve cardiac function, but delivery methods and potential side effects of these therapeutics may be an issue. Advances in nanotechnology, particularly nanoparticles for drug delivery, have enabled researchers to obtain better drug targeting capability, thus increasing the therapeutic outcome. Detailed study of nanoparticles in vivo is useful as it can provide insight for future treatments. Nanogel can help to create a more favourable environment, not only for a sustained delivery of therapeutics, but also for a better navigation of the therapeutics to the targeted sites. Finally, if the damage to the myocardium is too severe for drug treatment, nanopatch can help to improve cardiac function and healing by becoming a platform for pluripotent stem cell-derived cardiomyocytes to grow for the purpose of cell-based regenerative therapy.
机译:心血管疾病仍然继续是全世界死亡率和发病率的主要原因。成年心肌细胞的不良增殖能力使心肌缺血后心脏无法再生新的心肌,因此从长远来看会削弱心脏,这可能导致心力衰竭和死亡。事件发生后不久,心脏保护药物的给药可以帮助保护心脏免受进一步的细胞死亡并改善心脏功能,但是这些药物的给药方法和潜在的副作用可能是一个问题。纳米技术的进步,尤其是用于药物输送的纳米粒子,使研究人员能够获得更好的药物靶向能力,从而提高治疗效果。体内详细研究纳米颗粒是有用的,因为它可以为将来的治疗提供见识。纳米凝胶可以帮助创造一个更有利的环境,不仅可以持续输送治疗药物,而且可以更好地将治疗药物引导至目标部位。最后,如果心肌损伤对于药物治疗而言过于严重,nanopatch可以成为多能干细胞来源的心肌细胞生长的平台,从而促进基于细胞再生疗法的心脏功能和愈合。

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