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基于生物杂交心脏细胞外基质的水凝胶可改善心肌梗死后的长期心脏功能。

Biohybrid cardiac ECM-based hydrogels improve long term cardiac function post myocardial infarction.

作者信息

Efraim Yael, Sarig Hadar, Cohen Anavy Noa, Sarig Udi, de Berardinis Elio, Chaw Su-Yin, Krishnamoorthi Muthukumar, Kalifa Jérôme, Bogireddi Hanumakumar, Duc Thang Vu, Kofidis Theodoros, Baruch Limor, Boey Freddy Y C, Venkatraman Subbu S, Machluf Marcelle

机构信息

Faculty of Biotechnology & Food Engineering, Technion - Israel Institute of Technology, Haifa 32000, Israel.

School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, 639798, Singapore.

出版信息

Acta Biomater. 2017 Mar 1;50:220-233. doi: 10.1016/j.actbio.2016.12.015. Epub 2016 Dec 9.

Abstract

UNLABELLED

Injectable scaffolds for cardiac tissue regeneration are a promising therapeutic approach for progressive heart failure following myocardial infarction (MI). Their major advantage lies in their delivery modality that is considered minimally invasive due to their direct injection into the myocardium. Biomaterials comprising such scaffolds should mimic the cardiac tissue in terms of composition, structure, mechanical support, and most importantly, bioactivity. Nonetheless, natural biomaterial-based gels may suffer from limited mechanical strength, which often fail to provide the long-term support required by the heart for contraction and relaxation. Here we present newly-developed injectable scaffolds, which are based on solubilized decellularized porcine cardiac extracellular matrix (pcECM) cross-linked with genipin alone or engineered with different amounts of chitosan to better control the gel's mechanical properties while still leveraging the ECM biological activity. We demonstrate that these new biohybrid materials are naturally remodeled by mesenchymal stem cells, while supporting high viabilities and affecting cell morphology and organization. They exhibit neither in vitro nor in vivo immunogenicity. Most importantly, their application in treating acute and long term chronic MI in rat models clearly demonstrates the significant therapeutic potential of these gels in the long-term (12weeks post MI). The pcECM-based gels enable not only preservation, but also improvement in cardiac function eight weeks post treatment, as measured using echocardiography as well as hemodynamics. Infiltration of progenitor cells into the gels highlights the possible biological remodeling properties of the ECM-based platform.

STATEMENT OF SIGNIFICANCE

This work describes the development of new injectable scaffolds for cardiac tissue regeneration that are based on solubilized porcine cardiac extracellular matrix (ECM), combined with natural biomaterials: genipin, and chitosan. The design of such scaffolds aims at leveraging the natural bioactivity and unique structure of cardiac ECM, while overcoming its limited mechanical strength, which may fail to provide the long-term support required for heart contraction and relaxation. Here, we present a biocompatible gel-platform with custom-tailored mechanical properties that significantly improve cardiac function when injected into rat hearts following acute and chronic myocardial infarction. We clearly demonstrate the substantial therapeutic potential of these scaffolds, which not only preserved heart functions but also alleviated MI damage, even after the formation of a mature scar tissue.

摘要

未标记

用于心脏组织再生的可注射支架是治疗心肌梗死(MI)后进行性心力衰竭的一种有前景的治疗方法。它们的主要优势在于其递送方式,由于直接注射到心肌中,被认为是微创的。构成此类支架的生物材料应在组成、结构、机械支撑以及最重要的生物活性方面模拟心脏组织。尽管如此,基于天然生物材料的凝胶可能存在机械强度有限的问题,这往往无法提供心脏收缩和舒张所需的长期支撑。在此,我们展示了新开发的可注射支架,其基于单独用京尼平交联或用不同量壳聚糖改造的可溶性脱细胞猪心脏细胞外基质(pcECM),以更好地控制凝胶的机械性能,同时仍利用ECM的生物活性。我们证明这些新型生物杂交材料可被间充质干细胞自然重塑,同时支持高细胞活力并影响细胞形态和组织。它们在体外和体内均无免疫原性。最重要的是,它们在大鼠模型中治疗急性和长期慢性MI的应用清楚地证明了这些凝胶在长期(MI后12周)具有显著的治疗潜力。基于pcECM的凝胶不仅能够保存心脏功能,而且在治疗八周后还能改善心脏功能,这通过超声心动图以及血流动力学测量得到证实。祖细胞浸润到凝胶中突出了基于ECM平台可能具有的生物重塑特性。

重要性声明

本研究描述了用于心脏组织再生的新型可注射支架的开发,该支架基于可溶性猪心脏细胞外基质(ECM),并与天然生物材料京尼平和壳聚糖相结合。此类支架的设计旨在利用心脏ECM的天然生物活性和独特结构,同时克服其有限的机械强度,因为这种强度可能无法提供心脏收缩和舒张所需的长期支撑。在此,我们展示了一种具有定制机械性能的生物相容性凝胶平台,当注射到急性和慢性心肌梗死后的大鼠心脏中时,可显著改善心脏功能。我们清楚地证明了这些支架具有巨大的治疗潜力,它们不仅能保存心脏功能,还能减轻MI损伤,即使在形成成熟瘢痕组织后也是如此。

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