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