Institute for Clinical & Experimental Surgery, Saarland University, 66421 Homburg/Saar, Germany.
Institute for Clinical & Experimental Surgery, Saarland University, 66421 Homburg/Saar, Germany.
Trends Biotechnol. 2021 Jan;39(1):24-33. doi: 10.1016/j.tibtech.2020.06.001. Epub 2020 Jun 24.
Adipose tissue-derived microvascular fragments serve as natural vascularization units in angiogenesis research and tissue engineering due to their ability to rapidly reassemble into microvascular networks. Recent studies indicate that they exhibit additional unique properties that may be beneficial for a wide range of future biomedical applications. Their angiogenic activity can be increased during short-term cultivation as a means of adapting their vascularization capacity to patient-specific needs. Moreover, they are a source of endothelial progenitor cells, multipotent mesenchymal stromal cells, and lymphatic vessel fragments. Finally, they exert immunomodulatory effects, determining the tissue integration of implanted biomaterials. Hence, microvascular fragments represent versatile building blocks for the improvement of vascularization, organotypic tissue formation, lymphatic regeneration, and implant integration.
脂肪组织来源的微血管片段因其能够快速重新组装成微血管网络,因此在血管生成研究和组织工程中作为天然血管生成单位。最近的研究表明,它们还具有其他独特的特性,可能有益于广泛的未来生物医学应用。在短期培养过程中,它们的血管生成活性可以增加,以使其血管生成能力适应患者的特定需求。此外,它们是内皮祖细胞、多能间充质基质细胞和淋巴管片段的来源。最后,它们发挥免疫调节作用,决定植入生物材料的组织整合。因此,微血管片段是改善血管生成、器官形成、淋巴管再生和植入物整合的多功能构建块。