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The effect of human platelet lysate on corneal nerve regeneration

机译:人血小板裂解物对角膜神经再生的影响

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This study aimed to test whether human platelet lysate (HPL) has neurotrophic ability for corneal nerve regeneration.We measured the neurotrophic factors in human peripheral serum (HPS) and two commercially available HPLs, UltraGRO and PLTMax. In vitro, we compared the growth rates, neuronal differentiation and immunostaining of neuron markers in mouse neuroblastoma cell line (Neuro-2a) and primary culture of mouse trigeminal ganglion cells that were cultivated in different concentrations of fetal bovine serum, HPS and HPL. In vivo, we created corneal wounds on Sprague Dawley rats with a rotating burr and evaluated the effects of topical HPL on wound healing and corneal nerve regeneration by in vivo confocal microscopy and corneal aesthesiometry.HPLs had significantly higher concentrations of various neurotrophic factors compared with HPS (p0.05). In Neuro-2a cells, 3% HPL was better at promoting neuronal growth and differentiation compared with HPS at the same concentration. HPL was also found to have superior neurotrophic effects compared with HPS in primary cultures of mouse trigeminal ganglion cells. In vivo, HPL-treated eyes had better corneal epithelial wound healing rate, nerve regeneration length and corneal touch threshold compared with eyes treated with artificial tears (p0.05).HPL has significantly higher concentrations of neurotrophic factors compared with HPS. It showed not only in vitro but also in vivo corneal neurotrophic abilities. Our results suggest that HPL may have a potential role in the treatment of diseases related to corneal nerve damage or degeneration.
机译:该研究旨在测试人类血小板裂解物(HPL)是否具有角膜神经再生的神经营养能力。我们测量人周围血清(HPS)中的神经营养因子和两种可商购的HPLS,Ultragro和Pltmax。在体外,我们比较了小鼠神经母细胞瘤细胞系(神经-2a)中神经元标记物的生长速率,神经元分化和免疫染色,以及以不同浓度的胎儿牛血清,HPS和HPL培养的小鼠三叉神经神经节细胞的原培养。在体内,我们在Sprague Dawley大鼠上创造了角膜伤口,旋转毛刺,并评估了局部HPL对伤口愈合和角膜神经再生的影响,通过体内共聚焦显微镜和角膜吸收度。与HPS相比,各种神经营养因子的浓度明显高。 (P <0.05)。在Neuro-2a细胞中,与相同浓度相同的HPS相比,在促进神经元生长和分化时,3%HPL更好。还发现HPL具有优异的神经营养效果,与小鼠三叉神经神经节细胞的原发性培养物中的HPS相比。在体内,与用人工泪液治疗的眼睛相比,HPL处理的眼睛具有更好的角膜上皮伤口愈合速率,神经再生长度和角膜触摸阈值(P <0.05).hpl与HPS相比具有显着较高的神经营养因子浓度。它不仅在体外而且体内角膜神经营养能力表现出。我们的研究结果表明,HPL可能在治疗与角膜神经损伤或退化相关的疾病中具有潜在作用。

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