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Self-renewal of human embryonic stem cells on defined synthetic electrospun nanofibers

机译:在定义的合成电纺纳米纤维上人类胚胎干细胞的自我更新

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Human embryonic stem cells (hESCs) are conventionally expanded and maintained in vitro on biological substrates. Synthetic electrospun polymer nanofibers have the potential to act as non-biological substrates in the culture of hESCs. Three synthetic, FDA approved polymers: poly-epsilon-caprolactone (PCL), poly-L-lactic acid (PLLA) and poly lactic-co-glycolic acid (PLGA) were electrospun as nanofibers (random or aligned conformations) on glass coverslips and their supportive role in hESC culture examined. Clonogenicity experiments demonstrated that nanofibrous scaffolds (PCL aligned and random, PLLA aligned and PLGA aligned) supported hESC adhesion and expansion. A significantly greater number of colonies were observed on PCL-aligned nanofibrous scaffolds in comparison to PLLA-aligned and PLGA-aligned substrates (p < 0.05). hESC colonies were significantly larger on PCL aligned nanofibrous substrates when compared to other polymer substrates (p < 0.05-0.001), where fiber diameter played a pivotal role in support of hESC clonogenicity (on PCL). Retention of pluripotentiality was confirmed by expression of Alkaline phosphatase, OCT-3/4 and Nanog expression on PCL scaffolds and the expression of transcripts representative of mesoderm (ACTC1), ectoderm (SOX1) and endoderm (AFP) during subsequent spontaneous in vitro differentiation. These results demonstrate the potential of nanofibers as xeno-free scaffolds supportive of hESC adhesion, self-renewal and differentiation in in vitro culture conditions.
机译:传统上,人类胚胎干细胞(hESCs)在生物基质上扩增并维持体外。合成的电纺聚合物纳米纤维具有在hESCs培养中充当非生物底物的潜力。将三种经FDA批准的合成聚合物:聚ε-己内酯(PCL),聚L-乳酸(PLLA)和聚乳酸-乙醇酸共聚物(PLGA)纺成纳米纤维(无规或排列的构象),并在玻璃盖玻片和考察了它们在hESC培养中的支持作用。克隆性实验表明,纳米纤维支架(PCL对齐和无规,PLLA对齐和PLGA对齐)支持hESC粘附和扩展。与PLLA对齐和PLGA对齐的底物相比,在PCL对齐的纳米纤维支架上观察到了明显更多的菌落(p <0.05)。与其他聚合物底物相比,在PCL排列的纳米纤维底物上,hESC菌落明显更大(p <0.05-0.001),在其他聚合物底物中,纤维直径在支持hESC克隆性(在PCL上)中起着关键作用。在随后的自发体外分化过程中,PCL支架上碱性磷酸酶的表达,OCT-3 / 4和Nanog的表达以及中胚层(ACTC1),外胚层(SOX1)和内胚层(AFP)的转录本的表达证实了多能性的保留。这些结果证明了纳米纤维作为无异种支架的潜力,在体外培养条件下可支持hESC粘附,自我更新和分化。

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