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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Fabrication and evaluation of modified poly(ethylene terephthalate) microfibrous scaffolds for hepatocyte growth and functionality maintenance
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Fabrication and evaluation of modified poly(ethylene terephthalate) microfibrous scaffolds for hepatocyte growth and functionality maintenance

机译:改性聚(对苯二甲酸乙二醇酯)微纤维支架进行肝细胞生长和功能性的制备和评价

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For hepatocyte culture in vitro, the surface feature of utilized scaffolds exerts a direct impact on cell adhesion, growth and differentiated functionality. Herein, to regulate hepatocyte growth and differentiated functionality, modified microfibrous scaffolds were fabricated by surface grafting monoamine terminated lactobionic lactone (L-NH2) and gelatin onto non-woven poly(ethylene terephthalate) (PET) fibrous substrate (PET-Gal and PET-Gel), respectively. The physicochemical properties of PET scaffolds before and after modification were characterized. Upon 15-day culture, the effects of modified PET scaffolds on growth and differentiated functionality of human induced hepatocytes (hiHeps) were evaluated, compared with that of control without modification. Results demonstrated that both L-NH2 and gelatin modifications improved scaffold properties including hydrophilicity, water uptake ratio, stiffness and roughness, resulting in efficient cell adhesion, similar to 20-fold cell expansion and enhanced differentiated functionality. After culture for 15 days, PET-Gal cultured cells formed aggregates, displaying better cell viability and significantly higher differentiated functionality regarding albumin secretion, urea synthesis, phases I (cytochrome P450, CYP1A1/2 and CYP3A4) and II (uridine 5'-diphosphate glucuronosyltransferases, UGT) enzyme activity, biliary excretion and detoxification ability (ammonia elimination and bilirubin conjugation), compared with PET and PET-Gel cultured ones. Hence, as a three-dimensional (3D) microfibrous scaffold, PET-Gal promotes hiHeps growth and differentiated functionality maintenance, which is promisingly utilized in bioartificial liver (BAL) bioreactors.
机译:对于体外肝细胞培养,所用支架的表面特征对细胞粘附,生长和分化的功能产生直接影响。在本文中,为了调节肝细胞生长和分化的官能度,通过表面接枝单胺封端的乳酸氯酮(L-NH2)和明胶在非织造聚(乙二醇酯)(PET)纤维基质(PET- GAL和PET-)上制造改性的微纤维支架凝胶分别。特征在于和后期和修饰前后PET支架的物理化学性质。在15天的培养物后,评估改性宠物支架对人诱导的肝细胞(HIHEPS)生长和分化功能的影响,与无需修饰的控制相比。结果表明,L-NH2和明胶改性改善了支架性能,包括亲水性,水吸收比,刚度和粗糙度,导致有效的细胞粘附,类似于20倍的细胞膨胀和增强的分化功能。在培养15天后,PET-GAL培养细胞形成聚集体,显示出更好的细胞活力和显着更高的分化官能团关于白蛋白分泌,尿素合成,Ⅰ相I(细胞色素P450,CYP1A1 / CYP3A4)和II(尿苷5'-二磷酸酯与PET和PET-凝胶培养的葡萄糖酶活性,胆尿嘧啶酶活酶,UGT)酶活性,胆道排泄和排毒能力(氨消除和胆红素缀合)。因此,作为三维(3D)微纤维支架,PET-GAL促进HIHEPS生长和分化的功能性维持,其具有伴随的生物肝脏(BAL)生物反应器。

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