Javascript must be enabled to continue!
Stiripentol identifies a therapeutic target to reduce oxaluria
View through CrossRef
Purpose of review
Oxalate is a metabolic end-product promoting the formation of calcium oxalate crystals in urine. Massive urine oxalate excretion occurs in genetic diseases, mainly primary hyperoxaluria type I and II, threatening renal function. Ethylene glycol poisoning may induce the precipitation of calcium oxalate crystals in renal tubules, leading to acute renal failure. In both cases, oxalate results from glyoxylate transformation to oxalate in the liver, by lactate dehydrogenase (LDH) enzymes, especially the LDH-5 isoenzyme. The purpose of the review is to highlight LDH as a potential therapeutic target according to recent publications.
Recent findings
Genetic therapy targeting LDH metabolism decreases urine oxalate excretion in rodents. Stiripentol is an antiepileptic drug that has been shown recently to inhibit neuronal LDH-5 isoenzyme. Stiripentol was hypothesized to reduce hepatic oxalate production and urine oxalate excretion.
In vitro
, stiripentol decreases oxalate synthesis by hepatocytes.
In vivo
, stiripentol oral administration decreases urine oxalate excretion in rats and protects renal function and renal tissue against ethylene glycol intoxication and chronic calcium oxalate crystalline nephropathy.
Summary
The use of stiripentol in-vitro and in-vivo highlights that targeting hepatic LDH by pharmacological or genetic tools may decrease oxalate synthesis, deserving clinical studies.
Ovid Technologies (Wolters Kluwer Health)
Title: Stiripentol identifies a therapeutic target to reduce oxaluria
Description:
Purpose of review
Oxalate is a metabolic end-product promoting the formation of calcium oxalate crystals in urine.
Massive urine oxalate excretion occurs in genetic diseases, mainly primary hyperoxaluria type I and II, threatening renal function.
Ethylene glycol poisoning may induce the precipitation of calcium oxalate crystals in renal tubules, leading to acute renal failure.
In both cases, oxalate results from glyoxylate transformation to oxalate in the liver, by lactate dehydrogenase (LDH) enzymes, especially the LDH-5 isoenzyme.
The purpose of the review is to highlight LDH as a potential therapeutic target according to recent publications.
Recent findings
Genetic therapy targeting LDH metabolism decreases urine oxalate excretion in rodents.
Stiripentol is an antiepileptic drug that has been shown recently to inhibit neuronal LDH-5 isoenzyme.
Stiripentol was hypothesized to reduce hepatic oxalate production and urine oxalate excretion.
In vitro
, stiripentol decreases oxalate synthesis by hepatocytes.
In vivo
, stiripentol oral administration decreases urine oxalate excretion in rats and protects renal function and renal tissue against ethylene glycol intoxication and chronic calcium oxalate crystalline nephropathy.
Summary
The use of stiripentol in-vitro and in-vivo highlights that targeting hepatic LDH by pharmacological or genetic tools may decrease oxalate synthesis, deserving clinical studies.
Related Results
Oxaluria in inflammatory bowel diseases (review)
Oxaluria in inflammatory bowel diseases (review)
AIM: to analyse and synthesize Russian and foreign literature, to get acquainted with the concept of oxaluria, its types, transport mechanisms of oxalate transport in the intest...
Therapeutic Drug Monitoring of the Newer Anti-Epilepsy Medications
Therapeutic Drug Monitoring of the Newer Anti-Epilepsy Medications
In the past twenty years, 14 new antiepileptic drugs have been approved for use in the United States and/or Europe. These drugs are eslicarbazepine acetate, felbamate, gabapentin, ...
P289 Hyperoxaluria in patients after ileocolic resection
P289 Hyperoxaluria in patients after ileocolic resection
Abstract
Background
Oxaluria is one of the risk factors for developing urolithiasis and oxalate nephropathy, which may lead to r...
Synthesis and hLDHA Inhibitory Activity of New Stiripentol-Related Compounds of Potential Use in Primary Hyperoxaluria
Synthesis and hLDHA Inhibitory Activity of New Stiripentol-Related Compounds of Potential Use in Primary Hyperoxaluria
Human lactate dehydrogenase A (hLDHA) is a homotetrameric isozyme involved in the conversion of glyoxylate into oxalate in the cytosol of liver cells (hepatocytes) and partially re...
In Silico Analysis of miR-223 and miR-181b and Their Target Genes in the Pathogenesis of Acute Promyelocytic Leukaemia
In Silico Analysis of miR-223 and miR-181b and Their Target Genes in the Pathogenesis of Acute Promyelocytic Leukaemia
Acute promyelocytic leukaemia (APL) is the M3 subtype of acute myeloid leukaemia (AML). The hallmark for APL diagnosis is the reciprocal chromosomal translocation between chromosom...
A Three-Dimensional Target Depth-Resolution Method with a Single-Vector Sensor
A Three-Dimensional Target Depth-Resolution Method with a Single-Vector Sensor
This paper mainly studies and verifies the target number category-resolution method in multi-target cases and the target depth-resolution method of aerial targets. Firstly, target ...
BRIDGING THE GAP BETWEEN SEIZURE CONTROL AND QUALITY OF LIFE: STIRIPENTOL AND FENFLURAMINE IN DRAVET SYNDROME
BRIDGING THE GAP BETWEEN SEIZURE CONTROL AND QUALITY OF LIFE: STIRIPENTOL AND FENFLURAMINE IN DRAVET SYNDROME
Dravet syndrome is a severe, early childhood epileptic encephalopathy, most often associated with a mutation in the SCN1a gene characterized by drug resistance and high neurologica...
CRISPR/Cas “non-target” sites inhibit on-target cutting rates
CRISPR/Cas “non-target” sites inhibit on-target cutting rates
Abstract
CRISPR/Cas systems have become ubiquitous for genome editing in eukaryotic as well as bacterial systems. Cas9 associated with a guide RNA (gRNA) searches D...

