• 另外发现基因癌化的猪上皮细胞中的表达要比正常组织要高

    In addition, the higher mRNA expression was found in cancerization cell than the normal kidney tissue.

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  • 2表达主要定位于上皮细胞尤其曲小管),可见于毛细血管、间质浸润细胞成纤维细胞

    Par-2mainly expressed in renal tubular epithelial cells especially in proximal tubular cells. it also located in renal capillary ansa interstitial infiltrate cells and fibroblast.

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  • 细胞小管上皮细胞肿胀颗粒变性透明变性,局部细胞溶解,出现坏死病灶

    The cells of the liver and proximal convoluted tubules of kidney showed swell and granular degeneration or hyaline degeneration, in which some cells dissolved and necrotic foci were observed.

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  • 目的探讨庆大霉素实验性大鼠近端小管上皮细胞凋亡影响

    Objective to discuss the effects of gentamicin nephrotoxicity on the apoptosis of proximal tubule epithelial cells of rats.

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  • 结论雌激素可能通过抑制UUO大鼠上皮细胞表型转化而发挥延缓间质纤维化作用。

    Estrogen can prevent the development of interstitial fibrosis, the mechanism may with it restrain the tubular epithelial cell phenotype transdifferentiation in UUO rats.

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  • 间质纤维化上皮细胞线粒体氧化损伤小管功能

    Renal interstitial fibrosis; Renal tubular epithelial cell; Mitochondria oxidative damage; Renal tubular function.

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  • 前人铅中毒动物小管上皮细胞发现有核内包涵体。

    Intranuclear inclusions were found in epithelial cells of renal proximal convoluted tubules in lead - poisoning animals.

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  • 结果正常组织ILK主要表达于小球脏层上皮细胞

    Results in normal kidney tissues, ILK was mainly located in the glomerular visceral epithelial cells.

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  • 临床上尿脱水可能主要与集合管上皮细胞凋亡有关

    The polyuria and dehydration of ill rabbits in clinic were related to renal epithelium apoptosis of distal convoluted renal tubule and collecting duct.

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  • 小管上皮细胞线粒体发生肿胀内皮细胞脱落等病变。

    Swelling of epithelial cells and mitochondria and drop of epithelial cells could occur in renal proximal convoluted tubules.

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  • 目的探讨雌激素单侧输尿管梗阻UUO大鼠间质纤维化模型中对上皮细胞表型转化的影响。

    To evaluate the effect of estrogen on tubular epithelial cell phenotype transdifferentiation of tubulointerstitial fibrosis in unilateral ureteral obstruction(UUO)rats.

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  • 组织PD GFAIGF1表达主要集中在曲小管、远小管上皮细胞小球毛细血管上皮细胞

    The expression of PDGF a was mainly found in the renal distal tubule and epithelial cells of distal straight tubule and glomerulus capillary, but IGF 1 in transplanting artery equal expressed.

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  • 目的探讨宽叶脂质损害小管上皮细胞分化中的作用。

    Objective To evaluate the possible effects of valeriana officinalis var latifolia(VOL) on transdifferentiation of renal tubular epithelial cells in hypercholesterolemic rats.

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  • 结果离子进入上皮细胞内。

    Results Cadmium ions could enter the epithelial cells of renal proximal convoluted tubules.

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  • 结论:急性缺血性损伤时,中药粉防己碱能够调节小管上皮细胞凋亡水平以减轻组织的损伤。

    Conclusion: Tetrandrine can adjust the level of apoptosis in renal tubular epithelial and alleviate renal tissular injury.

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  • 组织免疫组化染色原位杂交显示小球小管上皮细胞内存在VZV抗原转录产物rna

    VZV antigen and RNA transcript were found in glomerular and tubular cells by immunohistochemical staining and in situ hybridization of renal tissues, respectively.

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  • PAR - 2表达主要定位于上皮细胞(尤其近曲小管),也可见于毛细血管间质浸润细胞成纤维细胞

    PAR-2 mainly expressed in renal tubular epithelial cells, especially in proximal tubular cells. It also located in renal capillary ansa, interstitial infiltrate cells and fibroblast.

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  • 水肿炎症细胞浸润部分上皮细胞变性坏死并见管型,死亡率2 0 %。

    The histologic changes of renal tissue were interstitial edema with inflammatory cellular infiltration, denaturalization and necrosis in some tubular epithelia. LPS caused 20% rats death.

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  • ACE2主要分布恒河组织近端小管上皮细胞管腔膜和胞浆

    ACE2 protein was mainly located in epithelium of proximal tubules of Rhesus monkey and human kidney.

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  • 目的研究综合征出血热病毒HFRSV小管上皮细胞RTC致病作用

    Objective To study the cytopathogcnic effect of epidemic hemorrhagic fever with renal syndrome virus(HFRSV) on renal tubular cells(RTC) .

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  • 结论姜黄依那普利可能通过抑制UUO大鼠小管上皮细胞分化而减轻间质纤维化

    Conclusion the pharmacological effects of curcumin and enalapril may be partly mediated by inhibiting the transdifferentiation of renal tubular epithelial cells towards myofibroblast in UUO rats.

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  • 结论姜黄依那普利可能通过抑制UUO大鼠小管上皮细胞分化而减轻间质纤维化

    Conclusion the pharmacological effects of curcumin and enalapril may be partly mediated by inhibiting the transdifferentiation of renal tubular epithelial cells towards myofibroblast in UUO rats.

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