2011•Unpublished venueRequires access

Preparation of small intestinal submucosa as a scaffold for cardiac tissue engineering

Qiangcheng Zeng, Lu Liu, Yong Xia Guo, Ruixin Li, Juan Sun, Chun Yuan Guo

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Abstract

In this study, small intestinal submucosa (SIS) was prepared and engineered cardiac tissue was constructed using the SIS as scaffold. SIS was decellularized by mechanical and chemical treatment. Its mechanical capability and biocompatibility were evaluated, and then neonatal rat cardiomyocytes were seeded on SIS, thus the engineered cardiac tissue sheets were constructed in vitro. The results showed that the SIS was decellularized completely; its mechanical capability and biocompatibility were both satisfactory. The engineered cardiac tissue could beat spontaneously for a long time; it was consisted of layers of cardiomyocytes. In conclusion, the SIS with good capability was prepared successfully, and engineered cardiac tissue was constructed successfully based on the SIS scaffold.

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What this paper is about

In this study, small intestinal submucosa (SIS) was prepared and engineered cardiac tissue was constructed using the SIS as scaffold. SIS was decellularized by mechanical and chemical treatment. Its mechanical capability and biocompatibility were evaluated, and then neonatal rat cardiomyocytes were seeded on SIS, thus the engineered cardiac tissue sheets were constructed in vitro. The results showed that the SIS was decellularized completely; its mechanical capability and biocompatibility were both satisfactory. The engineered cardiac tissue could beat spontaneously for a long time; it was consisted of layers of cardiomyocytes. In conclusion, the SIS with good capability was prepared successfully, and engineered cardiac tissue was constructed successfully based on the SIS scaffold.

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Available abstract

In this study, small intestinal submucosa (SIS) was prepared and engineered cardiac tissue was constructed using the SIS as scaffold. SIS was decellularized by mechanical and chemical treatment. Its mechanical capability and biocompatibility were evaluated, and then neonatal rat cardiomyocytes were seeded on SIS, thus the engineered cardiac tissue sheets were constructed in vitro. The results showed that the SIS was decellularized completely; its mechanical capability and biocompatibility were both satisfactory. The engineered cardiac tissue could beat spontaneously for a long time; it was consisted of layers of cardiomyocytes. In conclusion, the SIS with good capability was prepared successfully, and engineered cardiac tissue was constructed successfully based on the SIS scaffold.

Key concepts: Decellularization, Biocompatibility, Scaffold, Tissue engineering, Biomedical engineering, Materials science, Medicine, Metallurgy

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