Human-like Skin Tissue Graft Generated Using Human UmbilicalCordBlood Mesenchymal Stem Cells and Acellular Amniotic Membrane: A New Approach in Reconstructive Medicine.

IF 2
Binh Thanh Nguyen, Thao Duy Huynh, Hoa Khanh Nguyen, Huong Kc Hoang, Thuy Thanh Thi Tran, Hien Ngoc Nhan, Hien Thu Thi Nguyen, Quan Minh Thai Ngo, Kiet Tuan Nguyen, Francesco Inchingolo, Luigi Santacroce, Kieu Cd Nguyen, Ciro Gargiulo Isacco
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Abstract

Background: Due to its outstanding biological properties, the Human Amniotic Membrane (HAM) has been a topic of medical research for many years to treat, repair, and regenerate damages related to the epithelial surface, corneal epithelial, orthopedic, and infected body parts. The HAM shows crucial anti-inflammatory, anti-bacterial, and anti-viral properties and immunomodulating qualities. Therefore, the HAM is one of the most used natural biomaterials in tissue engineering to generate bio-scaffolds.

Objective: This study used HAM as a raw material to produce a collagen membrane that fully meets the criteria for creating a bioscaffold with suitable mechanical strength and limited risk of graft rejection. This collagen membrane would be a bioscaffold to carry Human Umbilical Cord Blood Mesenchymal Stem Cells (hUCB-MSCs) to generate human epithelial-like cell sheets. Shortly, these cell sheets can repair and regenerate the epithelial layer in trauma cases, severe damage from accidents, burns, and other post-operational conditions.

Methods: Among the varieties of stem cells currently being researched, MSCs are the most studied and applied due to their outstanding bio-qualities and regenerative features. We used International Society for Cells and Gene Therapy (ISCT) standards to identify and characterize the hUCB-MSCs obtained from a donor's umbilical cord blood who provided consent. We used an inverted phase contrast microscope to evaluate morphological changes and epithelial stratification of cultured growing cells on the collagen scaffold. Further, staining techniques, such as H&E and Trichrome, were used to assess the morphology and structure of the new epithelial construct; histochemical staining with p63 and ck 1/10 markers was used to evaluate the cellular characteristics and specific traits. Transmission electron microscopy was used to validate cell junctions.

Results: This study successfully obtained human epithelial-like cell sheets with multiple cell layers, morphology, and characteristics comparable to human epithelial tissue.

Conclusion: The results of this study will constitute a potential alternative to autologous skin grafting in heavy skin loss and deep lesions.

利用人脐带血间充质干细胞和脱细胞羊膜制备类人皮肤组织:重建医学的新途径。
背景:人羊膜(Human Amniotic Membrane, HAM)由于其突出的生物学特性,多年来一直是医学研究的主题,用于治疗、修复和再生与上皮表面、角膜上皮、骨科和感染身体部位相关的损伤。火腿具有重要的抗炎、抗菌、抗病毒特性和免疫调节特性。因此,HAM是组织工程中应用最多的天然生物材料之一。目的:本研究以HAM为原料制备完全符合生物支架制备标准的胶原膜,该生物支架具有合适的机械强度和有限的移植排斥风险。该胶原膜可作为携带人脐带血间充质干细胞(hub - mscs)生成人上皮样细胞片的生物支架。简而言之,这些细胞片可以修复和再生创伤病例,事故,烧伤和其他术后条件造成的严重损伤的上皮层。方法:在目前正在研究的干细胞品种中,间充质干细胞因其突出的生物特性和再生特性而被研究和应用最多。我们使用国际细胞和基因治疗学会(ISCT)标准来鉴定和表征从同意供者脐带血中获得的hub - mscs。我们使用倒置相差显微镜观察胶原支架上培养的生长细胞的形态变化和上皮分层。此外,染色技术,如H&E和Trichrome,被用来评估新的上皮结构的形态和结构;采用p63和ck 1/10标记进行组织化学染色,评价细胞特性和特异性。透射电子显微镜用于验证细胞连接。结果:本研究成功获得了具有多层细胞、形态和与人上皮组织相似特征的人上皮样细胞片。结论:本研究结果将为重度皮肤脱落和深度病变的自体皮肤移植提供一种潜在的替代方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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