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Hyaluronan and Fibrin Biomaterial as Scaffolds for Neuronal Differentiation of Adult Stem Cells Derived from Adipose Tissue and Skin

机译:透明质酸和纤维蛋白生物材料作为来自脂肪组织和皮肤的成年干细胞神经元分化的支架。

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摘要

Recently, we have described a simple protocol to obtain an enriched culture of adult stem cells organized in neurospheres from two post-natal tissues: skin and adipose tissue. Due to their possible application in neuronal tissue regeneration, here we tested two kinds of scaffold well known in tissue engineering application: hyaluronan based membranes and fibrin-glue meshes. Neurospheres from skin and adipose tissue were seeded onto two scaffold types: hyaluronan based membrane and fibrin-glue meshes. Neurospheres were then induced to acquire a glial and neuronal-like phenotype. Gene expression, morphological feature and chromosomal imbalance (kariotype) were analyzed and compared. Adipose and skin derived neurospheres are able to grow well and to differentiate into glial/neuron cells without any chromosomal imbalance in both scaffolds. Adult cells are able to express typical cell surface markers such as S100; GFAP; nestin; βIII tubulin; CNPase. In summary, we have demonstrated that neurospheres isolated from skin and adipose tissues are able to differentiate in glial/neuron-like cells, without any chromosomal imbalance in two scaffold types, useful for tissue engineering application: hyaluronan based membrane and fibrin-glue meshes.
机译:最近,我们描述了一种简单的协议,可以从两个出生后的组织:皮肤和脂肪组织中获得在神经球组织的成年干细胞的丰富培养物。由于它们在神经元组织再生中的可能应用,在这里我们测试了两种在组织工程应用中众所周知的支架:透明质酸基膜和纤维蛋白胶网。将来自皮肤和脂肪组织的神经球接种到两种支架类型上:透明质酸基膜和纤维蛋白胶网。然后诱导神经球获得神经胶质和神经元样表型。分析并比较了基因表达,形态特征和染色体失衡(染色体类型)。脂肪和皮肤衍生的神经球能够良好生长,并分化为神经胶质/神经元细胞,两种支架均无任何染色体失衡。成年细胞能够表达典型的细胞表面标记,例如S100; GFAP;巢蛋白βIII微管蛋白; CNPase。总之,我们已经证明,从皮肤和脂肪组织分离出的神经球能够在胶质/神经元样细胞中分化,而在两种支架类型中没有任何染色体失衡,可用于组织工程应用:透明质酸基膜和纤维蛋白胶网。

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