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慢性低压缺氧对成年和胎儿绵羊肾脏初级纤毛的调节作用不同。

Chronic Hypobaric Hypoxia Modulates Primary Cilia Differently in Adult and Fetal Ovine Kidneys.

作者信息

Shamloo Kiumars, Chen Juan, Sardar Jasmine, Sherpa Rinzhin T, Pala Rajasekharreddy, Atkinson Kimberly F, Pearce William J, Zhang Lubo, Nauli Surya M

机构信息

Department of Biomedical and Pharmaceutical Sciences, Chapman UniversityIrvine, CA, United States.

Departments of Basic Sciences, Physiology and Pharmacology, Lawrence D. Longo MD Center for Perinatal Biology, Loma Linda University School of MedicineLoma Linda, CA, United States.

出版信息

Front Physiol. 2017 Sep 20;8:677. doi: 10.3389/fphys.2017.00677. eCollection 2017.

Abstract

Hypoxic environments at high altitude have significant effects on kidney injury. Following injury, renal primary cilia display length alterations. Primary cilia are mechanosensory organelles that regulate tubular architecture. The effect of hypoxia on cilia length is still controversial in cultured cells, and no corresponding study exists. Using fetal and adult sheep, we here study the effect of chronic hypobaric hypoxia on the renal injury, intracellular calcium signaling and the relationship between cilia length and cilia function. Our results show that although long-term hypoxia induces renal fibrosis in both fetal and adult kidneys, fetal kidneys are more susceptible to hypoxia-induced renal injury. Unlike hypoxic adult kidneys, hypoxic fetal kidneys are characterized by interstitial edema, tubular disparition and atrophy. We also noted that there is an increase in the cilia length as well as an increase in the cilia function in the hypoxic fetal proximal and distal collecting epithelia. Hypoxia, however, has no significant effect on primary cilia in the adult kidneys. Increased cilia length is also associated with greater flow-induced intracellular calcium signaling in renal epithelial cells from hypoxic fetuses. Our studies suggest that while hypoxia causes renal fibrosis in both adult and fetal kidneys, hypoxia-induced alteration in cilia length and function are specific to more severe renal injuries in fetal hypoxic kidneys.

摘要

高海拔地区的缺氧环境对肾损伤有显著影响。损伤后,肾初级纤毛会出现长度改变。初级纤毛是调节肾小管结构的机械感觉细胞器。在培养细胞中,缺氧对纤毛长度的影响仍存在争议,且尚无相应研究。我们利用胎羊和成年羊,研究慢性低压缺氧对肾损伤、细胞内钙信号以及纤毛长度与纤毛功能之间关系的影响。我们的结果表明,尽管长期缺氧会在胎肾和成年肾中均诱导肾纤维化,但胎肾对缺氧诱导的肾损伤更敏感。与缺氧的成年肾不同,缺氧的胎肾表现为间质水肿、肾小管消失和萎缩。我们还注意到,缺氧的胎肾近端和远端集合上皮中纤毛长度增加,且纤毛功能增强。然而,缺氧对成年肾中的初级纤毛没有显著影响。纤毛长度增加还与缺氧胎肾的肾上皮细胞中更大的流动诱导细胞内钙信号相关。我们的研究表明,虽然缺氧会在成年肾和胎肾中均导致肾纤维化,但缺氧诱导的纤毛长度和功能改变在缺氧胎肾中更严重的肾损伤中具有特异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9b0/5611369/c3178716ab43/fphys-08-00677-g0001.jpg

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