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Treatment of hypoxia‐dependent cardiovascular diseases by myo‐inositol trispyrophosphate (ITPP)‐enhancement of oxygen delivery by red blood cells

机译:肌醇三焦磷酸酯(ITPP)增强缺氧依赖性心血管疾病的治疗-增强红细胞的氧气输送

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摘要

Heart failure is a consequence of progression hypoxia‐dependent tissue damages. Therapeutic approaches to restore and/or protect the healthy cardiac tissue have largely failed and remain a major challenge of regenerative medicine. The myo‐inositol trispyrophosphate (ITPP) is a modifier of haemoglobin which enters the red blood cells and modifies the haemoglobin properties, allowing for easier and better delivery of oxygen by the blood. Here, we show that this treatment approach in an in vivo model of myocardial infarction (MI) results in an efficient protection from heart failure, and we demonstrate the recovery effect on post‐MI left ventricular remodelling in the rat model. Cultured cardiomyocytes used to study the molecular mechanism of action of ITPP in vitro displayed the fast stimulation of HIF‐1 upon hypoxic conditions. HIF‐1 overexpression was prevented by ITPP when incorporated into red blood cells applied in a model of blood‐perfused cardiomyocytes coupling the dynamic shear stress effect to the enhanced O supply by modification of haemoglobin ability to release O in hypoxia. ITPP treatment appears a breakthrough strategy for the efficient and safe treatment of hypoxia‐ or ischaemia‐induced injury of cardiac tissue.
机译:心力衰竭是进展性缺氧依赖性组织损伤的结果。恢复和/或保护健康心脏组织的治疗方法在很大程度上失败了,并且仍然是再生医学的主要挑战。肌醇三焦磷酸酯(ITPP)是血红蛋白的一种修饰剂,它进入红细胞并改变血红蛋白的性质,使血液中的氧气更容易更好地传递。在这里,我们表明在心肌梗塞(MI)体内模型中的这种治疗方法可有效预防心力衰竭,并且在大鼠模型中证明了对MI后左心室重构的恢复作用。用于研究ITPP体外作用分子机制的培养心肌细胞显示出在缺氧条件下对HIF-1的快速刺激。当将其掺入血液灌注的心肌细胞模型中的红细胞中时,ITPP可以防止HIF-1的过表达,该模型通过改变血红蛋白在缺氧状态下释放O的能力,将动态切应力作用与增加的O供给相结合。 ITPP治疗似乎是有效,安全地治疗缺氧或缺血引起的心脏组织损伤的突破性策略。

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