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Tissue Characterization after a New Disaggregation Method for Skin Micro-Grafts Generation

机译:皮肤微移植新的分解方法后的组织表征

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摘要

Several new methods have been developed in the field of biotechnology to obtain autologous cellular suspensions during surgery, in order to provide one step treatments for acute and chronic skin lesions. Moreover, the management of chronic but also acute wounds resulting from trauma, diabetes, infections and other causes, remains challenging. In this study we describe a new method to create autologous micro-grafts from cutaneous tissue of a single patient and their clinical application. Moreover, in vitro biological characterization of cutaneous tissue derived from skin, de-epidermized dermis (Ded) and dermis of multi-organ and/or multi-tissue donors was also performed. All tissues were disaggregated by this new protocol, allowing us to obtain viable micro-grafts. In particular, we reported that this innovative protocol is able to create bio-complexes composed by autologous micro-grafts and collagen sponges ready to be applied on skin lesions. The clinical application of autologous bio-complexes on a leg lesion was also reported, showing an improvement of both re-epitalization process and softness of the lesion. Additionally, our in vitro model showed that cell viability after mechanical disaggregation with this system is maintained over time for up to seven (7) days of culture. We also observed, by flow cytometry analysis, that the pool of cells obtained from disaggregation is composed of several cell types, including mesenchymal stem cells, that exert a key role in the processes of tissue regeneration and repair, for their high regenerative potential. Finally, we demonstrated in vitro that this procedure maintains the sterility of micro-grafts when cultured in Agar dishes. In summary, we conclude that this new regenerative approach can be a promising tool for clinicians to obtain in one step viable, sterile and ready to use micro-grafts that can be applied alone or in combination with most common biological scaffolds.
机译:在生物技术领域中已经开发了几种新方法来在手术期间获得自体细胞悬浮液,以便为急性和慢性皮肤损伤提供一步治疗。而且,由于创伤,糖尿病,感染和其他原因导致的慢性伤口以及急性伤口的处理仍然具有挑战性。在这项研究中,我们描述了一种从单个患者的皮肤组织创建自体微移植物的新方法及其临床应用。此外,还对来自皮肤,去表皮的真皮(Ded)和多器官和/或多组织供体的真皮的皮肤组织进行了体外生物学表征。通过该新方案将所有组织分解,从而使我们能够获得可行的微移植物。特别是,我们报道说,该创新方案能够创建由自体微移植物和胶原海绵组成的生物复合物,准备将其应用于皮肤损伤。还报道了自体生物复合物在腿部病变上的临床应用,显示出复活过程和病变柔软度的改善。此外,我们的体外模型显示,使用该系统进行机械解体后,细胞活力会随着时间的流逝而维持多达七(7)天的培养时间。我们还通过流式细胞仪分析观察到,通过分解获得的细胞池由几种细胞类型组成,包括间充质干细胞,这些细胞类型在组织再生和修复过程中起着关键作用,因为它们具有很高的再生潜力。最后,我们在体外证明了该方法在琼脂培养皿中培养时可保持微移植物的无菌性。总而言之,我们得出的结论是,这种新的再生方法可以成为临床医生一步获得可行,无菌且可以立即使用的微移植物的有前途的工具,这些移植物可以单独使用或与大多数常见的生物支架组合使用。

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