Hypoxia is one of the factors severely affect renal function, and, in severe cases, it can lead to renal fibrosis. Although much progress has been made in identifying the molecular mediators of fibrosis, the mechanisms that govern renal fibrosis remain unclear, and there have been no effective therapeutic anti-fibrotic strategies to date. Mammals exposed to low oxygen in the plateau environment for a long time are prone to high-altitude disease, while yaks have been living in the plateau for generations do not develop kidney fibrosis caused by low oxygen. It has been suggested that metabolic reprogramming occurs in renal fibrosis and that pyruvate dehydrogenase kinase 1 (PDK1) plays a crucial role in metabolic reprogramming as an important node between glycolysis and the tricarboxylic acid cycle. The aim of this study was to investigate the effects of hypoxia on the renal tissues and renal interstitial fibroblasts of yaks. We found that, at the tissue level, HIF-1α, PDK1, TGF-β1, Smad2, Smad3, and α-SMA were mainly distributed and expressed in tubular epithelial cells but were barely present in the renal mesenchymal fibroblasts of healthy cattle and yak kidneys. Anoptical density analysis showed that in healthy cattle kidneys, TGF-β1, Smad2, and Smad3 expression was significantly higher than in yak kidneys ( < 0.05), and HIF-1α and PDK1 expression was significantly lower than in yak kidneys ( < 0.05). The results at the protein and gene levels showed the same trend. At the cellular level, prolonged hypoxia significantly elevated PDK1 expression in the renal mesangial fibroblasts of cattle and yak kidneys compared with normoxia ( < 0.05) and was proportional to the degree of cellular fibrosis. However, PDK1 expression remained stable in yaks compared with renal interstitial fibroblast-like cells in cattle during the same hypoxic time period. At the same time, prolonged hypoxia also promoted changes in cellular phenotype, promoting the proliferation, activation, glucose consumption, lactate production, and anti-apoptosis in the both of cattle and yaks renal interstitial fibroblasts The differences in kidney structure and expression of PDK1 and HIF-1α in kidney tissue and renal interstitial fibroblasts induced by different oxygen concentrations suggest that there may be a regulatory relationship between yak kidney adaptation and hypoxic environment at high altitude. This provides strong support for the elucidation of the regulatory relationship between PDK1 and HIF-1α, as well as a new direction for the treatment or delay of hypoxic renal fibrosis; additionally, these findings provide a basis for further analysis of the molecular mechanism of hypoxia adaptation-related factors and the adaptation of yaks to plateau hypoxia.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11545261PMC
http://dx.doi.org/10.3390/ani14213110DOI Listing

Publication Analysis

Top Keywords

renal interstitial
20
renal fibrosis
16
yak kidneys
16
renal
14
interstitial fibroblasts
12
pdk1 expression
12
pyruvate dehydrogenase
8
dehydrogenase kinase
8
renal tissues
8
tissues renal
8

Similar Publications

A preclinical study on effect of betanin on sodium fluoride induced hepatorenal toxicity in wistar rats.

J Complement Integr Med

January 2025

Department of Basic Medical Sciences, Manipal, Manipal Academy of Higher Education, Manipal, Karnataka, India.

Background: Excessive fluoride exposure leads to increased oxidative stress and lipid peroxidation, causing harmful effects on the metabolic organs in the human body. Betanin, a pigment obtained from beetroot, is seen to have powerful anti-inflammatory and antioxidant. The study was conducted to determine the role of betanin in fluoride induced hepato-renal toxicity in Wistar rats.

View Article and Find Full Text PDF

Snakebite is a neglected public health problem in tropical countries. Snakebite envenomation-associated acute kidney injury (SBE-AKI) is a major complication accounting for significant morbidity and mortality. The pathogenesis of SBE-AKI may be multifactorial, including prerenal AKI secondary to hemodynamic alterations, intrinsic renal injury, immune-related mechanisms, venom-induced consumptive coagulopathy and capillary leak syndrome.

View Article and Find Full Text PDF

Introduction: Chronic kidney disease (CKD) and heart failure with preserved ejection fraction (HFpEF) are more prevalent in the elderly. There is a lack of large animal models that allow the study of the impact of age on CKD and HFpEF in a translational fashion. This manuscript reports the first large preclinical model of CKD-HFpEF and metabolic derangements in naturally aged swine.

View Article and Find Full Text PDF

Chronic kidney disease is defined as a progressive loss of kidney function associated with impaired recovery after acute kidney injury. Renal ischemia-reperfusion (IR) induces oxidative stress and inflammatory responses leading to severe tissue damage, where incomplete or maladaptive repair accelerates renal fibrosis and aging. To investigate the role of the purinergic P2Y2 receptor (P2Y2R) in these processes, we used P2Y2R knockout (KO) mice subjected to IR.

View Article and Find Full Text PDF

Acute Kidney Injury Following the Ingestion of a Medicinal Plants' Mixture: A Case Report.

Case Rep Nephrol

December 2024

Department of Nephrology, CHU Bab El-Oued Hopital Mohamed Lamine Debaghine, Algiers, Algeria.

Acute renal failure secondary to medicinal plants is common in countries where the use of traditional phytotherapy is preponderant. Although the nephrotoxic potentials of some herbal preparations have been well characterized, the use of many medicinal plants is still considered largely safe, often relying on weak evidence. Here, we report the case of a 17-year-old patient with severe acute renal failure, associated to an esophagitis with erosive gastritis as well as an inflammatory anemia, with no obvious etiology.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!