RecruitingNot ApplicableNCT06283082

Oxalate Excretion Profile in Patients with a Heterozygous Mutation of the AGXT (alanine-glyoxylate Aminotransferase) Gene

Oxalate Excretion Profile in Patients with a Heterozygous Mutation of the AGXT (alanine-glyoxylate Aminotransferase) Gene - Influence of Hygienic and Dietary Conditions and Identification of Favouring Factors by Comparison of Asymptomatic and Symptomatic Patients (lithiasis or Oxalic Nephropathy)


Sponsor

Hospices Civils de Lyon

Enrollment

25 participants

Start Date

Dec 11, 2024

Study Type

INTERVENTIONAL

Conditions

Summary

Primary hyperoxaluria type I (PH1) is a rare genetic disorder responsible for severe lithiasis leading to progressive deterioration of renal function and end-stage renal failure. PH1 is linked to a deficiency in glyoxylate amino transferase (AGXT), which leads to increased endogenous oxalate synthesis and hyperoxaluria. In the urine, urinary oxalate precipitates with calcium, forming insoluble crystals, leading to lithiasis and the development of nephrocalcinosis. Non-genetic etiologies of oxalic nephropathy are well known, in particular enteric causes (malabsorptions, bypass, calcium deficiencies, etc.) and sometimes linked to increased oxalate intake in the form of nutritional or vitamin supplements, reinforcing the hypothesis of probably underestimated favouring factors of hyperoxaluria. Until now, heterozygous patients with a mutation in the AGXT gene were considered asymptomatic. However, there have been several cases of patients with heterozygous AGXT mutations presenting with lithiasis. Consequently, the characteristics of symptomatic and asymptomatic heterozygous patients will be studied in order to define the elements that would explain the expression of the disease (particularities of the AGXT mutation, presence of another heterozygous mutation or favorable living conditions). The hypothesis is that there is an increase in hepatic oxalate production in heterozygous patients, which explains why they remain asymptomatic under usual conditions, but could favor stone formation under favorable conditions such as severe calcium deficiency or malabsorption.


Eligibility

Min Age: 18 YearsMax Age: 75 Years

Plain Language Summary

Simplified for easier understanding

This study examines whether people who carry a single mutated copy of the AGXT gene — which is linked to primary hyperoxaluria type 1 (PH1), a rare kidney stone disease — produce more oxalate in the liver than normal, putting them at higher risk for kidney stones especially under certain conditions like calcium deficiency. Previously, people with only one mutated AGXT copy (heterozygous) were thought to be unaffected, but several have developed kidney stones, raising questions about their actual risk. Eligible participants are adults who carry a heterozygous AGXT mutation, whether or not they have had kidney stones or nephrocalcinosis, and who can attend a day hospital appointment and provide 24-hour urine samples; those under legal protection orders, pregnant, or not covered by social security are excluded. Participation involves providing urine samples and attending a day hospital visit for metabolic testing to measure oxalate levels and understand what triggers stone formation in this population. This summary was prepared using AI to help patients understand the study in plain language.

This summary was AI-generated to explain the trial in plain language. It is not medical advice. Always discuss eligibility with your doctor before enrolling in a clinical trial.

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Interventions

DIAGNOSTIC_TESTLithiasis assessment

Measurement of oxaluria and glycolaturia on 24 h urine collection, identification of lithiasis disease (biological and ultrasound) and search for lithiasis risk factors.


Locations(1)

CLIMA, pavillon R, Hôpital Edouard Herriot

Lyon, France

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NCT06283082