首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Genipin-crosslinked adipose stem cell derived extracellular matrix-nano graphene oxide composite sponge for skin tissue engineering
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Genipin-crosslinked adipose stem cell derived extracellular matrix-nano graphene oxide composite sponge for skin tissue engineering

机译:Genipin-交联的脂肪干细胞衍生的皮肤组织工程的细胞外基质 - 纳米石墨烯氧化物复合海绵

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摘要

Autologous skin grafts, which can cause donor site morbidity, are currently used to treat deep wounds. To improve the regeneration of poorly healing wounds, cell-derived extracellular matrix (ECM) scaffolds are garnering great research interest due to their associated lower risks of pathogen transfer and immune rejection. However, the mechanical properties of cell-derived ECM scaffolds are inferior when compared to those of tissue-derived ECM scaffolds. To overcome this drawback, different amounts (10, 20, 50, and 100 mu g mL(-1)) of graphene oxide (GO) and genipin (1% w/v) were applied to adipose stem cell (ASC)-derived ECM sponges. There are still only a few studies employing cell-derived extracellular matrices as biomimetic scaffolds for biomedical applications. The aim of our study was to develop biocompatible, biodegradable, low immunogenic, and genipin-crosslinked ASC-derived ECM sponges containing a suitable amount of GO for skin-tissue engineering. Sponges were fabricated using cultures of ASCs, cell sheets, and decellularization of an ASC cell sheet, freeze-thawing, and crosslinking in a sequential manner. Scanning electron microscopic analyses of the sponges demonstrated a highly porous microstructure with a pore size of 71.22 +/- 19.52 mu m. The in vitro degradation rate was found to be significantly higher in the non-crosslinked ECM sponges and pure ECM sponges than in the genipin-crosslinked ECM sponges. During an in vivo study, we investigated the material feasibilities and degradability of the constructed ECM sponges as a suitable skin tissue-engineering scaffold in a xenogenic animal (rat) model for 4 weeks. After subcutaneous implantation, the ECM sponges containing a medium amount of GO showed appropriate biodegradation with a lower inflammatory reaction. Hence, the fabricated ECM sponges might be a suitable xenogenous skin substitute for full-thickness skin defects and in other future soft-tissue engineering applications, such as healing partial tears of the anterior cruciate ligament.
机译:可引起供体部位发病率的自体皮肤移植物目前用于治疗深伤。为了改善愈合伤害较差的再生,由于其相关的病原体转移和免疫排斥的较低风险,细胞衍生的细胞外基质(ECM)支架是巨大的研究兴趣。然而,与组织衍生的ECM支架相比,细胞衍生的ECM支架的力学性质差。为了克服该缺点,将氧化石墨烯(10,20,50和100μg)和Genipin(1%w / v)的不同量(10,20,50和100μg)施加到脂肪干细胞(ASC)中ECM海绵。仍然只有一些研究采用细胞源细胞外基质作为生物医学应用的仿生支架。我们的研究目的是开发生物相容性,可生物降解,低免疫原性和恩哌交联的ASC衍生的ECM海绵,含有适量的皮肤组织工程。以顺序方式使用ASCS,细胞片,细胞片和脱细胞化和交联和交联的培养物制造海绵。海绵的扫描电子显微镜分析显示出高度多孔的微观结构,孔径为71.22 +/-19.52μm。在非交联的ECM海绵和纯ECM海绵中发现,体外降解速率明显高于Genipin交联的ECM海绵。在体内研究期间,我们调查了构建的ECM海绵的材料可行性和可降解性,作为致异性动物(大鼠)模型中的合适的皮肤组织工程支架4周。在皮下植入后,含有中等液体的ECM海绵显示出具有较低炎症反应的适当生物降解。因此,制造的ECM海绵可能是一种合适的外源性皮肤替代全厚度皮肤缺陷,以及在其他未来的软组织工程应用中,例如愈合前十字架韧带的愈合部分撕裂。

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