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Bioengineering strategies for polymeric scaffold for tissue engineering an aortic heart valve: An update

机译:用于组织工程主动脉心脏瓣膜的聚合物支架的生物工程策略:更新

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The occurrence of dysfunctional aortic valves is increasing every year, and current replacement heart valves, although having been shown to be clinically successful, are only short-term solutions and suffer from many agonizing long-term drawbacks. The tissue engineering of heart valves is recognized as one of the most promising answers for aortic valve disease therapy, but overcoming current shortcomings will require multidisciplinary efforts. The use of a polymeric scaffold to guide the growth of the tissue is the most common approach to generate a new tissue for an aortic heart valve. However, optimizing the design of the scaffold, in terms of biocompatibility, surface morphology for cell attachments and the correct rate of degradation is critical in creating a viable tissue-engineered aortic heart valve. This paper highlights the bioengineering strategies that need to be followed to construct a polymeric scaffold of sufficient mechanical integrity, with superior surface morphologies, that is capable of mimicking the valve dynamics in vivo. The current challenges and future directions of research for creating tissue-engineered aortic heart valves are also discussed.
机译:功能失常的主动脉瓣的发生每年都在增加,尽管目前已被证明在临床上是成功的,但目前的心脏置换瓣膜只是短期解决方案,并具有许多令人困扰的长期缺陷。心脏瓣膜的组织工程学被认为是主动脉瓣疾病治疗的最有希望的答案之一,但是要克服当前的缺陷将需要多学科的努力。使用聚合物支架来引导组织的生长是产生用于主动脉心脏瓣膜的新组织的最常见方法。但是,就生物相容性,细胞附着的表面形态和正确的降解速率而言,优化支架的设计对于创建可行的组织工程化主动脉心脏瓣膜至关重要。本文重点介绍了构建具有足够机械完整性,具有出色表面形态的聚合物支架所需要遵循的生物工程策略,该支架能够模拟体内的瓣膜动力学。还讨论了创建组织工程性主动脉心脏瓣膜的当前挑战和研究的未来方向。

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