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受揉面启发的粘性心脏补片设计,通过调节糖代谢减轻心肌纤维化并改善心脏功能。

Dough-Kneading-Inspired Design of an Adhesive Cardiac Patch to Attenuate Cardiac Fibrosis and Improve Cardiac Function via Regulating Glycometabolism.

机构信息

School of Materials Science and Engineering, Tianjin Key Laboratory of Composite and Functional Materials, Tianjin University, Tianjin, 300350, China.

出版信息

Adv Healthc Mater. 2024 Jun;13(14):e2303685. doi: 10.1002/adhm.202303685. Epub 2024 Mar 1.

Abstract

Recently, hydrogel adhesive patches have been explored for treating myocardial infarction. However, achieving secure adhesion onto the wet beating heart and local regulation of pathological microenvironment remains challenging. Herein, a dough-kneading-inspired design of hydrogel adhesive cardiac patch is reported, aiming to improve the strength of prevalent powder-formed patch and retain wet adhesion. In mimicking the polysaccharide and protein components of natural flour, methacrylated polyglutamic acid (PGAMA) is electrostatically interacted with hydroxypropyl chitosan (HPCS) to form PGAMA/HPCS coacervate hydrogel. The PGAMA/HPCS hydrogel is freeze-dried and ground into powders, which are further rehydrated with two aqueous solutions of functional drug, 3-acrylamido phenylboronic acid (APBA)/rutin (Rt) complexes for protecting the myocardium from advanced glycation end product (AGEs) injury by reactive oxygen species (ROS) -responsive Rt release, and hypoxanthine-loaded methacrylated hyaluronic acid (HAMA) nanogels for enhancing macrophage targeting ability to regulate glycometabolism for combating inflammation. The rehydrated powders bearing APBA/Rt complexes and HAMA-hypoxanthine nanogels are repeatedly kneaded into a dough-like gel, which is further subjected to thermal-initiated crosslinking to form a stabilized and sticky patch. This biofunctional patch is applied onto the rats' infarcted myocardium, and the outcomes at 28 days post-surgery indicate efficient restoration of cardiac functions and attenuation of cardiac fibrosis.

摘要

最近,水凝胶粘合剂贴片已被探索用于治疗心肌梗死。然而,实现在湿跳动心脏上的安全黏附和局部调节病理微环境仍然具有挑战性。在此,报告了一种受面团揉捏启发的水凝胶粘合剂心脏贴片设计,旨在提高现有粉末状贴片的强度并保持湿黏附性。在模拟天然面粉的多糖和蛋白质成分时,甲基丙烯酰化聚谷氨酸(PGAMA)与羟丙基壳聚糖(HPCS)静电相互作用形成 PGAMA/HPCS 凝聚水凝胶。PGAMA/HPCS 水凝胶经冷冻干燥并研磨成粉末,然后再用两种含有功能药物的水溶液复水,即 3-丙烯酰胺基苯硼酸(APBA)/芦丁(Rt)复合物,以通过响应活性氧(ROS)的 Rt 释放来保护心肌免受晚期糖基化终产物(AGEs)损伤,以及负载次黄嘌呤的甲基丙烯酰化透明质酸(HAMA)纳米凝胶,以增强巨噬细胞靶向能力,调节糖代谢,从而抗炎。复水后的 APBA/Rt 复合物和 HAMA-次黄嘌呤纳米凝胶载药粉末被反复揉捏成面团状凝胶,然后进行热引发交联,形成稳定且粘性的贴片。将这种生物功能贴片应用于大鼠梗死的心肌上,手术后 28 天的结果表明,心脏功能得到了有效恢复,心脏纤维化得到了减弱。

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