利用刺激反应生物材料进行心肌组织工程靶向治疗心肌梗死

Zarin Tasnim Tisha, Kazi Tasnuva Alam, Tanvir Ahmed
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引用次数: 0

摘要

心脏组织工程为心肌梗死(MI)的靶向治疗提供了一种可行的策略,克服了现有治疗方法在心脏修复和再生方面的局限性。这篇综述探讨了刺激响应生物材料的潜力,这些生物材料通过对各种环境刺激(包括pH、温度、酶、超声波和活性氧)做出反应来参与心脏环境。这些材料能够精确地给药,调节细胞反应,增强组织再生。水凝胶、聚合物、壳聚糖、胶原蛋白和海藻酸盐等生物材料提高了靶向和局部递送药物、干细胞和生长因子的准确性和有效性,从而提高了治疗的准确性和有效性。这篇综述着眼于这些生物材料模拟健康心肌的复杂生化和机械信号的能力。讨论了刺激反应生物材料的临床应用的挑战和前景,强调了它们在靶向心脏治疗方面的变革潜力,同时改善了心肌梗死患者的预后。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cardiac Tissue Engineering Using Stimuli-Responsive Biomaterials for the Targeted Therapy of Myocardial Infarction

Cardiac Tissue Engineering Using Stimuli-Responsive Biomaterials for the Targeted Therapy of Myocardial Infarction

Cardiac tissue engineering presents a viable strategy for the targeted therapy of myocardial infarction (MI), overcoming the limitations of existing therapies in cardiac repair and regeneration. This review explores the potential of stimuli-responsive biomaterials that engage with the cardiac environment by reacting to various environmental stimuli including pH, temperature, enzymes, ultrasound, and reactive oxygen species. These materials enable precise drug delivery, modulate cellular responses, and enhance tissue regeneration. Biomaterials such as hydrogels, polymers, chitosan, collagen, and alginate improve the accuracy and effectiveness of targeted and localized delivery of drugs, stem cells, and growth factors, thus improving the precision and efficacy of treatments. The review looks at the ability of these biomaterials to mimic the complex biochemical and mechanical cues of a healthy myocardium. The challenges and prospects of clinical applications for stimuli-responsive biomaterials are discussed, highlighting their transformative potential in targeted cardiac therapy while improving outcomes for patients with MI.

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