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首页> 外文期刊>Biomaterials >Epicardial application of cardiac progenitor cells in a 3D-printed gelatin/hyaluronic acid patch preserves cardiac function after myocardial infarction
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Epicardial application of cardiac progenitor cells in a 3D-printed gelatin/hyaluronic acid patch preserves cardiac function after myocardial infarction

机译:3D印刷明胶/透明质酸蛋白在3D印刷明胶/透明质酸贴片中的心外膜应用在心肌梗死后保持心脏功能

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Cardiac cell therapy suffers from limitations related to poor engraftment and significant cell death after transplantation. In this regard, ex vivo tissue engineering is a tool that has been demonstrated to increase cell retention and survival. The aim of our study was to evaluate the therapeutic potential of a 3D-printed patch composed of human cardiac-derived progenitor cells (hCMPCs) in a hyaluronic acid/gelatin (HA/gel) based matrix. hCMPCs were printed in the HA/gel matrix (30 x 10(6) cells/ml) to form a biocomplex made of six perpendicularly printed layers with a surface of 2 x 2 cm and thickness of 400 um, in which they retained their viability, proliferation and differentiation capability. The printed biocomplex was transplanted in a mouse model of myocardial infarction (MI). The application of the patch led to a significant reduction in adverse remodeling and preservation of cardiac performance as was shown by both MRI and histology. Furthermore, the matrix supported the long-term in vivo survival and engraftment of hCMPCs, which exhibited a temporal increase in cardiac and vascular differentiation markers over the course of the 4 week follow-up period. Overall, we developed an effective and translational approach to enhance hCMPC delivery and action in the heart. (C) 2015 Elsevier Ltd. All rights reserved.
机译:心脏细胞治疗患有与移植后植入不良和显着细胞死亡有关的局限性。在这方面,前体内组织工程是一种已经证明以增加细胞保留和存活的工具。我们的研究目的是评估由透明质酸/明胶(HA /凝胶)基质中的人心脏衍生的祖细胞(HCMPC)组成的3D印刷贴剂的治疗潜力。 HCMPC在HA /凝胶基质(30×10(6)个细胞/ mL)中印刷,形成由六个垂直印刷的层制成的生物用并,表面为2×2cm的表面和400μm的厚度,其中它们保留其存活率,增殖和分化能力。在心肌梗死的小鼠模型中移植印刷的生物键合酶(MI)。贴剂的应用导致不利重塑的显着降低,并且如MRI和组织学所示的那样的不良改造和保存心脏能。此外,基质支持长期体内存活率和HCMPC的植入,在4周随访期间表现出心脏和血管分化标志物的时间增加。总的来说,我们开发了一种有效和翻译的方法,可以增强HCMPC交付和心脏的行动。 (c)2015 Elsevier Ltd.保留所有权利。

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