用于正位治疗心肌梗塞的水凝胶配方。

Qiang Luo, Zhibo Li, Bin Liu, Jianxun Ding
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摘要

导言:心肌梗死(MI)会导致心肌细胞大量丧失,从而对心脏组织造成广泛的结构和功能损伤。早期再灌注是急性心肌梗死的标准治疗策略,但会带来不利影响。此外,目前缓解心肌梗死后病理变化的疗法并不有效。受损心肌随后的病理重塑往往会导致心力衰竭。旨在减轻心肌损伤和重塑的口服药物需要反复服用大剂量才能维持治疗水平。这影响了疗效和患者的依从性,并可能导致低血压、肝脏和/或肾脏功能障碍等不良反应。水凝胶因其高含水量和良好的组织相容性,已成为治疗心肌缺血的有效给药平台:水凝胶为药物、蛋白质和细胞的输送提供了最佳的微环境,可保持其疗效并提高其生物利用率。目前的研究重点是发现功能性水凝胶,用于减轻心肌损伤和调节心肌梗死治疗中的修复过程:水凝胶是加强心肌修复和改善心肌梗死后患者预后的一个前景广阔的前沿领域。水凝胶技术的进一步发展有望改变心肌梗死的治疗,为个性化治疗策略和改善患者预后铺平道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrogel formulations for orthotopic treatment of myocardial infarction.

Introduction: Myocardial infarction (MI) causes extensive structural and functional damage to the cardiac tissue due to the significant loss of cardiomyocytes. Early reperfusion is the standard treatment strategy for acute MI, but it is associated with adverse effects. Additionally, current therapies to alleviate pathological changes post-MI are not effective. Subsequent pathological remodeling of the damaged myocardium often results in heart failure. Oral drugs aimed at reducing myocardial damage and remodeling require repeated administration of high doses to maintain therapeutic levels. This compromises efficacy and patient adherence and may cause adverse effects, such as hypotension and liver and/or kidney dysfunction. Hydrogels have emerged as an effective delivery platform for orthotopic treatment of MI due to their high water content and excellent tissue compatibility.

Area covered: Hydrogels create an optimal microenvironment for delivering drugs, proteins, and cells, preserving their efficacy and increasing their bioavailability. Current research focuses on discovering functional hydrogels for mitigating myocardial damage and regulating repair processes in MI treatment.

Expert opinion: Hydrogels offer a promising approach in enhancing cardiac repair and improving patient outcomes post-MI. Advancements in hydrogel technology are poised to transform MI therapy, paving the way for personalized treatment strategies and enhanced recovery.

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