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Handling and Assessment of Human Primary Prostate Organoid Culture
Published on: January 17, 2019
The Organ Handling of Soluble Klotho in Humans
Daniela Picciotto1, Abitha Murugavel1, Francesca Ansaldo1
1Department of Internal Medicine, Clinica Nefrologica Dialisi e Trapianto, Genoa University and IRCCS Ospedale Policlinico San Martino, Genoa, Italy.
Insights
Kidney oxygen uptake predicts Klotho release, but the kidney sometimes removes Klotho. Splanchnic organs also remove Klotho, especially in chronic kidney disease (CKD).
Area of Science:
- Nephrology
- Endocrinology
- Cardiovascular Medicine
Background:
- Chronic kidney disease (CKD) is linked to reduced Klotho, accelerating disease progression and cardiovascular issues.
- Mechanisms governing Klotho release by the human kidney remain unclear.
Purpose of the Study:
- To investigate the factors regulating Klotho release from the human kidney.
- To determine the role of oxygen metabolism in Klotho release.
- To identify organs involved in Klotho balance.
Main Methods:
- Plasma Klotho levels were measured across the kidney, splanchnic organs, and lungs in 22 patients undergoing cardiac catheterization.
- Estimated glomerular filtration rate (eGFR) was assessed to categorize kidney function.
Main Results:
- The kidney's contribution to systemic Klotho is variable; it released Klotho in some subjects but removed it in others.
- Renal Klotho enrichment correlated inversely with plasma sodium and directly with renal oxygen extraction.
- Renal oxygen extraction emerged as the sole predictor of Klotho enrichment, suggesting a link to tubular hypoxia or oxidative metabolism.
- Splanchnic organs removed Klotho in patients with eGFR <60 mL/min.
Conclusions:
- Kidney oxygen uptake is a key predictor of Klotho release.
- Splanchnic organs act as a site for Klotho removal, particularly in impaired kidney function.
- Modulating kidney oxygen metabolism may offer a strategy to enhance Klotho delivery and mitigate disease progression and organ damage.
Background:
Chronic kidney disease (CKD) reduces both Klotho expression and its shedding into circulation, an effect that accelerates progression and cardiovascular complications. However, the mechanisms that regulate Klotho release by the human kidney are still unknown.
Methods:
We measured plasma Klotho across the kidney, splanchnic organs and lung in 22 patients (71 ± 2 years, estimated glomerular filtration rate [eGFR] 60 ± 5.4 mL/min 1.73 m2) during elective diagnostic cardiac catheterizations.
Results:
Although the Klotho average renal vein concentrations were remarkably higher (by ∼9%) than arterial values, the kidney removed Klotho (or was at zero balance) in 7 subjects, indicating that the kidney contribution to systemic Klotho is not constant. Klotho fractional enrichment across the kidney was inversely related to plasma sodium (r = 0.43, p = 0.045) and acid uric acid levels (r = 0.38, p = 0.084) and directly, to renal oxygen extraction (r = 0.56, p = 0.006). In multivariate analysis, renal oxygen extraction was the only predictor of the enrichment of Klotho across the kidney, suggesting the dependence of renal Klotho release on tubular hypoxia or oxidative metabolism. Klotho balance was neutral across the lung. In patients with eGFR <60 mL/min, Klotho was also removed by splanchnic organs (single pass fractional extraction ∼11%).
Conclusions:
The present study identifies kidney oxygen uptake as a predictor of Klotho release, and splanchnic organs as a site for Klotho removal. This study provides new understanding of kidney Klotho release and suggests that modulating kidney oxygen metabolism could increase Klotho delivery, as an option to slow disease progression and blunt organ damage.
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