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New pulsatile bioreactor for in vitro formation of tissue engineered heart valves.

机译:用于体外形成组织工程心脏瓣膜的新型搏动生物反应器。

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摘要

Two potential obstacles to the creation of implantable tissue engineered heart valves are inadequate mechanical properties (ability to withstand hemodynamic stresses) and adverse host-tissue reactions due to the presence of residual nondegraded polymer scaffold. In an attempt to address these problems, we developed an in vitro cell culture system that provides physiological pressure and flow of nutrient medium to the developing valve constructs. It is anticipated that in vitro physical stress will stimulate the tissue engineered heart valve construct to develop adequate strength prior to a possible implantation. Long-term in vitro development will be realized by an isolated and thereby contamination-resistant system. Longer in vitro development will potentially enable more complete biodegradation of the polymeric scaffold during in vitro cultivation. This new dynamic bioreactor allows for adjustable pulsatile flow and varying levels of pressure. The system is compact and easily fits into a standard cell incubator, representing a highly isolated dynamic cell culture setting with maximum sterility, optimal gas supply and stable temperature conditions especially suited for long-term experiments.
机译:由于存在残留的未降解的聚合物支架,产生可植入组织工程心脏瓣膜的两个潜在障碍是机械性能不足(承受血液动力应力的能力)和不利的宿主组织反应。为了解决这些问题,我们开发了一种体外细胞培养系统,可向发育中的瓣膜结构提供生理压力和营养培养基流。预期在可能的植入之前,体外物理应力将刺激组织工程化的心脏瓣膜构造物发展出足够的强度。通过隔离的,因此抗污染的系统,可以实现长期的体外发育。更长的体外发育将潜在地使得在体外培养期间聚合物支架能够更完全地生物降解。这种新型动态生物反应器可调节脉动流量并改变压力水平。该系统结构紧凑,易于安装在标准细胞培养箱中,代表了高度隔离的动态细胞培养环境,具有最大的无菌性,最佳的气体供应和稳定的温度条件,特别适合于长期实验。

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