BACKGROUND: Tissue engineering centers on creating a niche similar to the natural one, with a purpose of developing an organ construct. A natural scaffold can replace none while creating a scaffold unique to each tissue in composition, architecture and cues that regulate the character of cells. METHODS: Whole pancreas from mouse was decellularized using detergent and enzymes, followed by recellularizing with MSC from human placenta. This construct was transplanted in streptozotocin induced diabetic mice. Histopathology of both decellularized and recellularized transplanted pancreas and qPCR analysis were performed to assess its recovery. RESULTS: Decellularization removes the cells leaving behind extracellular matrix rich natural scaffold. After reseeding with mesenchymal stem cells, these cells differentiate into pancreas specific cells. Upon transplantation in streptozotocin induced diabetic mice, this organ was capable of restoring its histomorphology and functioning. Restoration of endocrine (islets), the exocrine region (acinar) and vascular network was seen in transplanted pancreas. The process of functional recovery of endocrine system took about 20Â days when the mice start showing blood glucose reduction, though none achieved gluconormalization. CONCLUSION: Natural decellularized scaffolds of soft organs can be refunctionalized using recipient's mesenchymal stem cells to restore structure and function; and counter immune problems arising during transplantation.
Refunctionalization of Decellularized Organ Scaffold of Pancreas by Recellularization: Whole Organ Regeneration into Functional Pancreas.
通过再细胞化实现胰腺脱细胞器官支架的再功能化:将整个器官再生为功能性胰腺
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作者:Uday Chandrika K, Tripathi Rekha, Kameshwari Y, Rangaraj Nandini, Mahesh Kumar J, Singh Shashi
| 期刊: | Tissue Engineering and Regenerative Medicine | 影响因子: | 4.100 |
| 时间: | 2021 | 起止号: | 2021 Feb;18(1):99-112 |
| doi: | 10.1007/s13770-020-00296-y | 研究方向: | 细胞生物学 |
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