SASTRA University, Centre for Nanotechnology & Advanced Biomaterials, School of Chemical & Biotechnology, Thanjavur, Tamil Nadu, India.
Expert Opin Biol Ther. 2012 Dec;12(12):1623-40. doi: 10.1517/14712598.2012.721770. Epub 2012 Sep 6.
A thorough understanding of the cellular and muscle fiber orientation in left ventricular cardiac tissue is of paramount importance for the generation of artificial cardiac patches to treat the ischemic myocardium. The major challenge faced during cardiac patch engineering is to choose a perfect combination of three entities; cells, scaffolds and signaling molecules comprising the tissue engineering triad for repair and regeneration.
This review provides an overview of various scaffold materials, their mechanical properties and fabrication methods utilized in cardiac patch engineering. Stem cell therapies in clinical trials and the commercially available cardiac patch materials were summarized in an attempt to provide a recent perspective in the treatment of heart failure. Various tissue engineering strategies employed thus far to construct viable thick cardiac patches is schematically illustrated.
Though many strategies have been proposed for fabrication of various cardiac scaffold materials, the stage and severity of the disease condition demands the incorporation of additional cues in a suitable scaffold material. The scaffold may be nanofibrous patch, hydrogel or custom designed films. Integration of stem cells and biomolecular cues along with the scaffold may provide the right microenvironment for the repair of unhealthy left ventricular tissue as well as promote its regeneration.
深入了解左心室心肌组织中的细胞和肌纤维方向对于生成用于治疗缺血性心肌的人工心脏补片至关重要。在心脏补片工程中面临的主要挑战是选择细胞、支架和信号分子这三个实体的完美组合,它们构成了组织工程三联体,用于修复和再生。
本文综述了各种支架材料的特性、机械性能和在心脏补片工程中使用的制造方法。总结了临床试验中的干细胞疗法和市售的心脏补片材料,试图为心力衰竭的治疗提供最新视角。目前为止,为构建可行的厚型心脏补片而采用的各种组织工程策略以示意图形式进行了说明。
虽然已经提出了许多用于制造各种心脏支架材料的策略,但疾病的阶段和严重程度要求在合适的支架材料中加入额外的线索。支架可以是纳米纤维补片、水凝胶或定制设计的薄膜。将干细胞和生物分子线索与支架整合在一起,可以为修复不健康的左心室组织提供合适的微环境,并促进其再生。