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Design and efficacy of a single-use bioreactor for heart valve tissue engineering

机译:心脏瓣膜组织工程单用生物反应器的设计与疗效

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Heart valve tissue engineering offers the promise of improved treatments for congenital heart disorders; however, widespread clinical availability of a tissue engineered heart valve (TEHV) has been hindered by scientific and regulatory concerns, including the lack of a disposable, bioreactor system for nondestructive valve seeding and mechanical conditioning. Here we report the design for manufacture and the production of full scale, functional prototypes of such a system. To evaluate the efficacy of this bioreactor as a tool for seeding, ovine aortic valves were decellularized and subjected to seeding with human mesenchymal stem cells (hMSC). The effects of pulsatile conditioning using cyclic waveforms tuned to various negative and positive chamber pressures were evaluated, with respect to the seeding of cells on the decellularized leaflet and the infiltration of seeded cells into the interstitium of the leaflet. Infiltration of hMSCs into the aortic valve leaflet was observed following 72 h of conditioning under negative chamber pressure. Additional conditioning under positive pressure improved cellular infiltration, while retaining gene expression within the MSC-valve interstitial cell phenotype lineage. This protocol resulted in a subsurface pilot population of cells, not full tissue recellularization. (C) 2015 Wiley Periodicals, Inc.
机译:心脏瓣膜组织工程提供了改进的先天性心脏病治疗的承诺;然而,通过科学和监管的关注,包括缺乏用于非破坏性瓣膜播种和机械调节的软糖的临床(Tehv)的广泛临床可用性。在这里,我们报告了制造的设计和生产的全尺度的生产,这种系统的功能原型。为了评估该生物反应器作为播种工具的疗效,绵羊主动脉瓣膜脱细胞,并与人间充质干细胞(HMSC)进行播种。通过调节循环波形的脉冲调理对各种阴性和正腔压力的影响,相对于脱细胞的细胞播种和种子细胞浸润进入小叶间隙的细胞。在负腔压力下的72小时后,观察到HMSCs进入主动脉瓣片叶片。正压下的另外的调节改善了细胞浸润,同时保留MSC瓣膜间质细胞表型谱系内的基因表达。该协议导致封面的细胞群,而不是完全组织复血性。 (c)2015 Wiley期刊,Inc。

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