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首页> 外文期刊>Nature reviews neuroscience >Comparison of cytokine expression and ultrastructural alterations in fresh-frozen and dried electron beam-irradiated human amniotic membrane and chorion
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Comparison of cytokine expression and ultrastructural alterations in fresh-frozen and dried electron beam-irradiated human amniotic membrane and chorion

机译:新鲜冷冻和干燥电子束照射人羊膜和绒毛膜中细胞因子表达和超微结构改变的比较

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The purpose of the current study was to compare the effects of drying and fresh-freezing on human amniotic membrane (HAM) and amnion/chorion membrane (HACM) in terms of histological and structural characteristics and cytokine levels. HAM and HACM samples, obtained from six placentae, were investigated. HAM and HACM were dried, electron beam-irradiated (dehydration group; d-HAM/d-HACM), or fresh-frozen (freezing group; f-HAM/f-HACM). Luminex assay was used to assay the levels of 15 cytokines. The ultrastructural characteristics of HAM and HACM were evaluated using light and transmission electron microscopies. Total cytokine contents did not show the statistical difference between dehydration and fresh-freezing process. Significantly higher levels of total cytokines were observed in HACM than in HAM. Epidermal growth factor (EGF) level was significantly higher in d-HAM than in the other samples. The levels of most of the other growth factors were higher in HACM than in HAM, but there was no statistical difference between the dehydration process and the fresh-freezing process. The levels of the cytokines, other than the growth factors, were higher in HACM than in HAM, and higher concentrations of cytokines were observed in the freezing group than in the dehydration group. Histological examination revealed that the dehydration group had thinner tissues than the freezing group, but the structural stability, including the basement membrane, did not differ between the two groups. Microscopic structures such as microvilli and nuclei were well-preserved in the freezing group, based on the results of the transmission electron microscopy. Our dehydration process maintained the histological structure of HAM/HACM and a variety of growth factors and cytokines were identified. Especially, the HAM, processed with the dehydration method, had a higher EGF level than that processed with the fresh-freezing method. Therefore, dehydration method can be used to effectively promote wound repair.
机译:目前研究的目的是在组织学和结构特征和细胞因子水平方面比较干燥和新鲜冻干对人羊膜(火腿)和胚胎/绒毛膜(HACM)的影响。研究了从六个胎盘获得的火腿和HACM样品。干燥火腿和HACM,电子束辐照(脱水组; D-HAM / D-HACM),或新鲜冷冻(冷冻组; F-HAM / F-HACM)。 Luminex测定用于测定15个细胞因子的水平。使用光和透射电子显微镜评估火腿和HACM的超微结构特征。全细胞因子含量没有显示脱水和新鲜冷冻过程之间的统计差异。在HACM中观察到HACM的显着较高水平的全细胞因子。表皮生长因子(EGF)水平在D-HAM中显着高于其他样品。大多数其他生长因子的水平在HACM中比火腿更高,但脱水过程与新鲜冷冻过程之间没有统计学差异。除了生长因子之外的细胞因子的水平均高于HACM的较高,并且在冻结组中观察到较高浓度的细胞因子,而不是在脱水组中。组织学检查表明,脱水基团的组织较薄,而不是冷冻组,但包括基底膜的结构稳定性在两组之间没有差异。基于透射电子显微镜的结果,在冷冻组中,在冷冻组中保存了微观结构。我们的脱水过程保持了火腿/ HACM的组织学结构,并确定了各种生长因子和细胞因子。特别是用脱水方法加工的火腿具有比用新鲜冷冻方法加工的更高的EGF水平。因此,脱水方法可用于有效促进伤口修复。

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