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Related Concept Videos

Urinary Tract Calculi III: Medical Management01:30

Urinary Tract Calculi III: Medical Management

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The diagnosis of renal calculi involves several imaging techniques, including non-contrast CT scans and ultrasound. These methods help visualize kidney stones, assess their size and location, and detect possible obstructions. Additionally, Measuring urine pH is useful for diagnosing specific stone types, such as struvite (alkaline pH) and uric acid stones (acidic pH). Cystine stones are primarily linked to cystinuria, a genetic condition. A urinalysis helps detect blood in the urine (hematuria)...
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Renal Regulation of Acid-Base Balance01:29

Renal Regulation of Acid-Base Balance

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Metabolic reactions in the body produce nonvolatile acids, such as sulfuric acid, which generate an acid load of approximately 1 mEq of H+ per kilogram of body weight daily. Excreting H+ in the urine is essential to balance this acid load.
In the kidneys, cells within the proximal convoluted tubules (PCT) and the collecting ducts secrete hydrogen ions (H+) into the tubular fluid. Specifically, in the PCT, Na+/H+ antiporters secrete H+ while reabsorbing Na+.
However, the intercalated cells in...
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Urinary Tract Calculi IV: Nutrition Therapy and Prevention01:27

Urinary Tract Calculi IV: Nutrition Therapy and Prevention

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Management of renal calculi focuses on effective strategies like tailored nutrition and hydration therapy. Adjusting diet and fluid intake reduces stone formation and recurrence, making these interventions simple yet powerful in kidney stone prevention and management.Understanding Kidney StonesKidney stones form when calcium, oxalate, uric acid, and cystine concentrate and crystallize in urine. Factors contributing to their formation include genetic predisposition, certain medical conditions,...
558
Renal Drug Excretion: Tubular Secretion01:28

Renal Drug Excretion: Tubular Secretion

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Active tubular secretion is a robust, energy-demanding process that utilizes carrier systems to transport drugs into renal tubules. The active renal secretion systems include the organic anion transporter (OAT) for weak acids and the organic cation transporter (OCT) for weak bases. Structurally similar drugs can compete for the same transporter, potentially leading to drug accumulation and toxicity. However, this principle can be exploited therapeutically. One example is probenecid (Probalan),...
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Natural History of Advanced Primary Hyperoxaluria Type 1: A Retrospective Study.

Kidney medicine·2025
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Genetic and Clinical Characterization of a Large Cohort with Suspected Monogenic Stone Disease.

Clinical journal of the American Society of Nephrology : CJASN·2025
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Urinary Oxalate Excretion During Pregnancy in Primary Hyperoxaluria Type 1: A Report of 4 Cases.

Kidney medicine·2024
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Diagnosis and management of primary hyperoxalurias: best practices.

Pediatric nephrology (Berlin, Germany)·2024
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Natural history of urine and plasma oxalate in children with primary hyperoxaluria type 1.

Pediatric nephrology (Berlin, Germany)·2023
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Successful Treatment of Primary Hyperoxaluria Type 2 with a Combined Liver and Kidney Transplant.

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Related Experiment Video

Updated: Mar 22, 2026

Estimation of Urinary Nanocrystals in Humans using Calcium Fluorophore Labeling and Nanoparticle Tracking Analysis
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siRNA Therapeutics for Primary Hyperoxaluria: A Beginning

Dawn S Milliner1

  • 1Division of Nephrology, Departments of Pediatrics and Internal Medicine, Mayo Clinic, Rochester, Minnesota, USA.

Molecular Therapy : the Journal of the American Society of Gene Therapy
|April 16, 2016
PubMed
Summary

No abstract available in PubMed .

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