Background: Five quantitative trait loci (QTLs), Rf-1 to Rf-5, were found in Fawn-Hooded hypertensive (FHH) rats influencing susceptibility to renal damage. Previously, we found that single transfer of the Rf-1 QTL from FHH rats onto the renal-resistant August x Copenhagen Irish (ACI) strain caused a small increase in renal susceptibility. To investigate the separate role of the Rf-4 QTL and its interaction with Rf-1, we generated a single congenic strain carrying Rf-4 and a double congenic carrying both Rf-1 and Rf-4.
Methods: Differences in renal susceptibility between ACI, Rf-1A, and Rf-4 single congenics and Rf-1A+4 double congenics were assessed using four different treatments: control (two-kidney), two-kidney with l-arginine analogue N-nitro-l-arginine methyl ester (L-NAME)-induced hypertension, unilateral nephrectomy, and unilateral nephrectomy + L-NAME. In separate experiments, renal blood flow (RBF) autoregulation was compared between two-kidney ACI and congenic rats.
Results: Compared to ACI, Rf-1A rats developed more renal damage, while Rf-4 rats did not. The most severe renal damage was found in the Rf-1A+4 double congenic rats. Analysis of variance (ANOVA) demonstrated a significant interaction between the Rf-1A and Rf-4 QTLs. The magnitude of the interaction varied with the type and duration of the treatment. The RBF autoregulation was impaired in Rf-1A single and Rf-1A+4 double congenics, while in Rf-4 single congenics it was similar to that of ACI controls.
Conclusion: These findings indicate that the Rf-1 QTL directly influences renal susceptibility and autoregulation. In contrast, the Rf-4 QTL shows no direct effects, but significantly increases susceptibility to renal damage via an interaction with Rf-1.
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BMC Vet Res
December 2024
College of Animal Science and Technology, Henan University of Science and Technology, Luoyang, 471000, China.
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View Article and Find Full Text PDFMol Cell Probes
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Department of Nephrology, The Second Affiliated Hospital of Harbin Medical University, Harbin 150086, China. Electronic address:
Long non-coding RNA TMC3-AS1 is identified to be upregulated by lipopolysaccharide (LPS) in inflammatory disease, but its role in acute kidney injury (AKI) is almost unknown. The study investigated the involvement of TMC3-AS1 in LPS-induced AKI and its downstream molecular regulatory mechanism. Our data suggested that knocking down TMC3-AS1 significantly reduced renal dysfunction, tissue inflammation and tissue damage in LPS-induced mice, and promoted cell viability, inhibited inflammation, apoptosis and necrosis in LPS-stimulated human renal tubular epithelial cells HK2.
View Article and Find Full Text PDFJ Pharm Biomed Anal
December 2024
Institute of Traditional Chinese Medicine, Shaanxi Academy of Traditional Chinese Medicine, Xi'an, Shaanxi, China; Key Laboratory of TCM Drug Delivery, Shaanxi Academy of Traditional Chinese Medicine, Xi'an, Shaanxi, China. Electronic address:
Pharmacologic intervention in chronic heart failure (HF) with renal insufficiency is one of the clinical challenges due to the fact that the mechanisms of cardio-renal interactions in chronic heart failure (CHF) progressing have not been fully revealed. In this paper, C57BL/6 mice were applied thoracic aortic narrowing surgery to establish pressure overload CHF model. Cardiac function, serum markers, renal pathologic changes and kidney metabolism were analyzed at 4th, 8th, 12th, and 16th week after surgery respectively to evaluate the heart-Kidney pathologic overlap.
View Article and Find Full Text PDFAm J Case Rep
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Division of Emergency Medicine, Toho University Sakura Medical Center, Sakura, Chiba, Japan.
BACKGROUND Toluene poisoning can occur as a result of occupational exposure in industries such as painting, as well as through misuse, leading to complications such as neurological symptoms due to the accumulation of the metabolic byproduct of hippuric acid and metabolic acidosis. However, the exact mechanisms remain unclear. Hippuric acid is not removed by dialysis, so urinary excretion plays a central role.
View Article and Find Full Text PDFInt Urol Nephrol
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Nishtar Medical University, Multan, Pakistan.
Renal fibrosis is a hallmark of chronic kidney disease, characterized by the excessive accumulation of extracellular matrix proteins. Sulforaphane, a potent antioxidant found in cruciferous vegetables, has shown promise in targeting renal fibrosis. By inhibiting fibrotic pathways, such as TGF-β signaling, and promoting antioxidant defenses, sulforaphane may offer a novel therapeutic strategy for mitigating kidney damage and slowing disease progression.
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