From the Department of Plastic Surgery and Hand Surgery, University Hospital Zurich.
Plast Reconstr Surg. 2022 Aug 1;150(2):341e-354e. doi: 10.1097/PRS.0000000000009345. Epub 2022 Jun 6.
Nanofat is an injectable oily emulsion, rich in adipose-derived stem cells and growth factors. It is prepared from lipoaspirates through mechanical emulsification and filtration. Despite being successfully used in several procedures in regenerative medicine such as scar attenuation, skin rejuvenation, and treatment of chronic wounds, little is known about exactly how nanofat induces regeneration in treated skin at the molecular level.
Microfat and nanofat samples were isolated from 18 healthy patients. Proteomic profiling was performed through untargeted mass spectrometry proteomics and multiplex antibody arrays. Pathway enrichment analysis of differentially expressed proteins between microfat and nanofat was performed using Gene Ontology, Reactome, and Kyoto Encyclopaedia of Genes and Genomes as reference databases.
Untargeted proteomics showed that up-regulated genes in nanofat are involved in innate immunity responses, coagulation, and wound healing, whereas down-regulated genes were linked to cellular migration and extracellular matrix production. Secretome array screening of microfat and nanofat samples showed no significantly different expression, which strongly suggests that the mechanical emulsification step does not affect the concentration of tissue regeneration biomarkers. The identified proteins are involved in wound healing, cellular migration, extracellular matrix remodeling, angiogenesis, stress response, and immune response.
Mechanical processing of lipoaspirates into nanofat significantly influences the proteome profile by enhancing inflammation, antimicrobial, and wound healing pathways. Nanofat is extremely rich in tissue repair and tissue remodeling factors. This study shows that the effects of microfat and nanofat treatment are based on up-regulated inflammation, antimicrobial, and wound healing pathways. Mechanical emulsification does not alter the concentration of tissue regeneration biomarkers.
In addition to adipose-derived stems cells, nanofat contains distinct tissue repair and remodelling factors, which explains its beneficial effects on tissue regeneration.
纳米脂肪是一种可注射的油性乳液,富含脂肪来源的干细胞和生长因子。它是通过机械乳化和过滤从脂肪抽吸物中制备的。尽管在再生医学的几个程序中成功使用,如疤痕减轻、皮肤年轻化和慢性伤口治疗,但对于纳米脂肪如何在治疗后的皮肤中在分子水平上诱导再生知之甚少。
从 18 名健康患者中分离出微脂肪和纳米脂肪样本。通过非靶向质谱蛋白质组学和多重抗体阵列进行蛋白质组学分析。使用基因本体论、反应组学和京都基因与基因组百科全书作为参考数据库,对微脂肪和纳米脂肪之间差异表达蛋白进行途径富集分析。
非靶向蛋白质组学显示,纳米脂肪中上调的基因参与先天免疫反应、凝血和伤口愈合,而下调的基因与细胞迁移和细胞外基质产生有关。微脂肪和纳米脂肪样本的分泌组阵列筛选显示无明显差异表达,这强烈表明机械乳化步骤不会影响组织再生生物标志物的浓度。鉴定出的蛋白质参与伤口愈合、细胞迁移、细胞外基质重塑、血管生成、应激反应和免疫反应。
机械处理脂肪抽吸物成纳米脂肪通过增强炎症、抗菌和伤口愈合途径显著影响蛋白质组谱。纳米脂肪富含组织修复和组织重塑因子。本研究表明,微脂肪和纳米脂肪处理的效果基于上调的炎症、抗菌和伤口愈合途径。机械乳化不会改变组织再生生物标志物的浓度。
纳米脂肪除了含有脂肪来源的干细胞外,还含有独特的组织修复和重塑因子,这解释了它对组织再生的有益作用。