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Development of a System and Method for Automated Isolation of Stromal Vascular Fraction from Adipose Tissue Lipoaspirate

机译:从脂肪组织脂肪中自动分离基质血管部分的系统和方法的开发

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摘要

Autologous fat grafting for soft tissue reconstruction is challenged by unpredictable long-term graft survival. Fat derived stromal vascular fraction (SVF) is gaining popularity in tissue reconstruction as SVF-enriched fat grafts demonstrate improved engraftment. SVF also has potential in regenerative medicine for remodeling of ischemic tissues by promoting angiogenesis. Since SVF cells do not require culture expansion, attempts are being made to develop automated devices to isolate SVF at the point of care. We report development of a closed, automated system to process up to 500 mL lipoaspirate using cell size-dependent filtration technology. The yield of SVF obtained by automated tissue digestion and filtration (1.17 ± 0.5 × 105 cells/gram) was equivalent to that obtained by manual isolation (1.15 ± 0.3 × 105; p = 0.8), and the viability of the cells isolated by both methods was greater than 90%. Cell composition included CD34+CD31− adipose stromal cells, CD34+CD31+ endothelial progenitor cells, and CD34−CD31+ endothelial cells, and their relative percentages were equivalent to SVF isolated by the manual method. CFU-F capacity and expression of angiogenic factors were also comparable with the manual method, establishing proof-of-concept for fully automated SVF isolation, suitable for use in reconstructive surgeries and regenerative medicine applications.
机译:自体脂肪移植用于软组织重建受到不可预测的长期移植存活的挑战。脂肪来源的间质血管分数(SVF)在组织重建中正变得越来越普遍,因为富含SVF的脂肪移植物显示出改进的移植物。 SVF在再生医学中还具有通过促进血管生成而重塑缺血组织的潜力。由于SVF细胞不需要培养物扩增,因此正在尝试开发自动设备以在护理时分离SVF。我们报告开发了一种封闭的自动化系统,该系统使用依赖于细胞大小的过滤技术处理多达500μmL的脂肪抽吸物。通过自动组织消化和过滤获得的SVF产量(1.17±0.5×10 5 细胞/克)与通过手工分离获得的SVF(1.15±0.3×10 5

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