Evaluation of the Number, Biophysical and Multipotent Characteristics of Adipose Derived Stem Cells Harvested by SEFFI Procedure and Interaction with Different Type of Hyaluronic Acids

A. Gennai, B. Bovani, M. Colli, F. Melfa, D. Piccolo, R. Russo, M. Tretti Clementoni, S. Zia, B. Roda, A. Zattoni
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引用次数: 1

Abstract

Background: Injection of autologous adipose-derived stem cells (ADSCs) and a stromal vascular fraction (VSF) into dermal and subdermal layers promises regenerative advantages by improving skin volume and rejuvenation. Injectable hyaluronic acid (HA) is a temporary dermal filler that, by improving skin hydration, reduces the appearance of fine lines and wrinkles, facial folds and creates structure and volume to the face and lips. This study combined the grafting of micro fragmented fatty tissue with the hyaluronic acid filler procedure, using three different types of HA. Methods: Each sample of micro fragmented adipose tissue harvested using the superficial enhanced fluid fat injection (SEFFI) technique collected from 8 patients were equally divided into two specimens. One of these (EMU specimens) was emulsified by gently applying ten back-and-forth passages from one syringe to another to fluidify the tissue. The other one was not emulsified (Ctrl/NON-EMU specimen). Both EMU and NON-EMU specimens were divided into four aliquots: one served as control, and the others were combined with each of three tested hyaluronic acids. Afterward, we assessed the cellularity of mesenchymal phenotype (defined as the number of adherent cells with mesenchymal phenotype per milliliter of adipose tissue) and the in vitro capacity of differentiation in mesenchymal lineages. Results: Despite low cellularity from emulsified samples combined with HA, isolated cells could grow and expand in culture, thus proving their proliferative ability, showing “good quality” in all conditions (Ctrl/NON-EMU, EMU, and combined with HA). The cells could differentiate towards mesenchymal lineages, express mesenchymal markers by flow cytometry analysis, and maintain their stemness potential. Conclusion: The combination of emulsified harvested tissue with HA products can be exploited to counteract the loss of volume and skin aging of the human face and body. This approach to regenerative aesthetic treatment is a promising treatment for facial antiaging therapy.
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SEFFI方法收获的脂肪干细胞数量、生物物理和多能性的评价及其与不同类型透明质酸的相互作用
背景:将自体脂肪源性干细胞(ADSCs)和间质血管组分(VSF)注入真皮层和真皮下层,通过改善皮肤体积和恢复活力,有望实现再生优势。可注射透明质酸(HA)是一种临时的真皮填充剂,通过改善皮肤水合作用,减少细纹和皱纹、面部褶皱的出现,并使脸部和嘴唇变得有结构、有体积。本研究采用三种不同类型的透明质酸,将微碎片脂肪组织移植与透明质酸填充相结合。方法:采用表面强化液体脂肪注射(SEFFI)技术采集8例患者的微碎片化脂肪组织样本,每个样本平均分为两个样本。其中一个(EMU标本)是通过轻轻地从一个注射器到另一个注射器来回涂抹十次来乳化组织的。另一组未乳化(Ctrl/NON-EMU标本)。欧洲货币联盟和非欧洲货币联盟的标本被分成四份:一份作为对照,另一份分别与三种测试的透明质酸混合。之后,我们评估了间充质表型的细胞数量(定义为每毫升脂肪组织中具有间充质表型的贴壁细胞的数量)和间充质谱系的体外分化能力。结果:尽管与透明质酸结合的乳化样品细胞密度较低,但分离的细胞在培养中能够生长和扩增,证明了其增殖能力,在所有条件下(Ctrl/NON-EMU、EMU和与透明质酸结合)均表现出“良好的质量”。细胞能向间充质细胞系分化,通过流式细胞术分析表达间充质标志物,并保持其干细胞潜能。结论:将采收组织乳化后与透明质酸产品相结合,可有效抑制面部和身体的体积损失和皮肤老化。这种再生美容治疗方法是一种很有前途的面部抗衰老治疗方法。
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