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覆盖片放置模拟低灌注时培养的肾小管细胞中缺氧诱导因子-1α的独特分布。

A distinctive distribution of hypoxia-inducible factor-1α in cultured renal tubular cells with hypoperfusion simulated by coverslip placement.

机构信息

Division of Nephrology and Endocrinology, Graduate School of Medicine, The University of Tokyo, Tokyo, Japan.

Graduate School of Science and Technology, Gunma University, Gunma, Japan.

出版信息

Physiol Rep. 2021 Jan;9(1):e14689. doi: 10.14814/phy2.14689.

Abstract

Chronic hypoxia in the renal tubulointerstitium plays a key role in the progression of chronic kidney disease (CKD). It is therefore important to investigate tubular hypoxia and the activity of hypoxia-inducible factor (HIF)-1α in response to hypoxia. Rarefaction of the peritubular capillary causes hypoperfusion in CKD; however, the effect of hypoperfusion on HIFs has rarely been investigated. We induced hypoperfusion caused by coverslip placement in human kidney-2 cells, and observed an oxygen gradient under the coverslip. Immunocytochemistry of HIF-1α showed a doughnut-shaped formation on the edge of a pimonidazole-positive area, which we named the "HIF-ring". The oxygen tension of the HIF-ring was estimated to be between approximately 4 mmHg and 20 mmHg. This result was not compatible with those of past research showing HIF-1α accumulation in the anoxic range with homogeneous oxygen tension. We further observed the presence of a pH gradient under a coverslip, as well as a shift of the HIF ring due to changes in the pH of the culture medium, suggesting that the HIF ring was formed by suppression of HIF-1α related to low pH. This research demonstrated that HIF-1α activation mimics the physiological state in cultured cells with hypoperfusion.

摘要

肾小管间质的慢性缺氧在慢性肾脏病(CKD)的进展中起着关键作用。因此,研究肾小管缺氧和缺氧诱导因子(HIF)-1α的活性非常重要。小管周围毛细血管稀疏会导致 CKD 中的灌注不足;然而,灌注不足对 HIF 的影响很少被研究。我们通过在人肾-2 细胞中放置盖玻片来诱导灌注不足,并观察到盖玻片下的氧气梯度。HIF-1α的免疫细胞化学显示在 pimonidazole 阳性区域的边缘形成了一个甜甜圈形状的结构,我们称之为“HIF 环”。HIF 环的氧分压估计在大约 4mmHg 和 20mmHg 之间。这一结果与过去的研究结果不一致,过去的研究表明,在缺氧范围内,HIF-1α在均匀的氧分压下积累。我们进一步观察到在盖玻片下存在 pH 梯度,以及由于培养基 pH 变化导致 HIF 环的移动,表明 HIF 环是通过抑制与低 pH 相关的 HIF-1α形成的。这项研究表明,HIF-1α的激活模拟了具有灌注不足的培养细胞中的生理状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5137/7769172/1f76ff6ae333/PHY2-9-e14689-g001.jpg

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