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1.
Mol Genet Metab Rep ; 40: 101097, 2024 Sep.
Article in English | MEDLINE | ID: mdl-38846518

ABSTRACT

Background: Increased homogentisic acid (HGA) in alkaptonuria (AKU) causes severe arthritis. Nitisinone reduces the production of HGA, but whether it also decreases arthroplasty was examined in 237 AKU patients. Patients and methods: Patients attending the United Kingdom National Alkaptonuria Centre (NAC) and the Suitability of Nitisinone in Alkaptonuria 2 (SONIA 2) study were studied. Assessments included questionnaires eliciting details of arthroplasty. Nitisinone was administered from baseline, 2 mg in the NAC and 10 mg in SONIA 2. In SONIA 2, subgroups consisted of those with baseline arthroplasty on and not on nitisinone (BR + N+, BR + N-), as well as those without baseline arthroplasty on and not on nitisinone (BR-N+, BR-N-). Results: In the SONIA2 subgroups, new joint replacement (JR) probabilities after baseline were significantly different (BR + N+, BR + N-, BR-N+, BR-N-) (χ2 = 23.3, p < 0.001); mean (SD) was 3.8 (0.1) years in BR-N-, 3.7 (0.1) years in BR-N+, 3.4 (0.3) years in BR + N-, and 3.0 (0.3) years in BR + N+. Further, the BR + N- showed more JR than the BR-N- subgroup (p < 0.01), while BR + N+ similarly showed more JR than the BR-N+ subgroup (p < 0.001).In the NAC, the BR- group had a mean age of 51.6 (7.0) years at baseline but 57.7 (8.7) years at final follow up during nitisinone therapy and showed only 7 incident JR. The BR+ group had an age at baseline of 57.4 (8.5) years and had undergone 94 JRs at baseline. Conclusion: The incidence of arthroplasty was earlier and more frequent after the first JR and was not affected by nitisinone.

2.
Sci Rep ; 12(1): 16083, 2022 09 27.
Article in English | MEDLINE | ID: mdl-36167967

ABSTRACT

Nitisinone (NIT) produces inevitable but varying degree of tyrosinaemia. However, the understanding of the dynamic adaptive relationships within the tyrosine catabolic pathway has not been investigated fully. The objective of the study was to assess the contribution of protein intake, serum NIT (sNIT) and tyrosine pathway metabolites to nitisinone-induced tyrosinaemia in alkaptonuria (AKU). Samples of serum and 24-h urine collected during SONIA 2 (Suitability Of Nitisinone In Alkaptonuria 2) at months 3 (V2), 12 (V3), 24 (V4), 36 (V5) and 48 (V6) were included in these analyses. Homogentisic acid (HGA), tyrosine (TYR), phenylalanine (PHE), hydroxyphenylpyruvate (HPPA), hydroxyphenyllactate (HPLA) and sNIT were analysed at all time-points in serum and urine. Total body water (TBW) metabolites were derived using 60% body weight. 24-h urine and TBW metabolites were summed to obtain combined values. All statistical analyses were post-hoc. 307 serum and 24-h urine sampling points were analysed. Serum TYR from V2 to V6, ranging from 478 to 1983 µmol/L were stratified (number of sampling points in brackets) into groups < 701 (47), 701-900 (105), 901-1100 (96) and > 1100 (59) µmol/L. The majority of sampling points had values greater than 900 µmol/L. sPHE increased with increasing sTYR (p < 0.001). Tyrosine, HPPA and HPLA in serum and TBW all increased with rising sTYR (p < 0.001), while HPLA/TYR ratio decreased (p < 0.0001). During NIT therapy, adaptive response to minimise TYR formation was demonstrated. Decreased conversion of HPPA to HPLA, relative to TYR, seems to be most influential in determining the degree of tyrosinaemia.


Subject(s)
Alkaptonuria , Brain Diseases, Metabolic, Inborn , Tyrosinemias , Alkaptonuria/drug therapy , Cyclohexanones/therapeutic use , Homogentisic Acid , Humans , Nitrobenzoates/therapeutic use , Phenylalanine , Phenylpropionates , Tyrosine/metabolism , Tyrosinemias/drug therapy
3.
Arch Pediatr ; 27(5): 250-256, 2020 Jul.
Article in English | MEDLINE | ID: mdl-32418642

ABSTRACT

Neurological involvement is frequent in inherited metabolic disease of the intoxication type. Hyperammonemic coma related to these diseases may cause severe neurological sequelae. Early optimal treatment is mandatory combining metabolite scavengers (MS) and sometimes continuous veno-venous hemodialysis (CVVHD). We aimed to describe the therapeutic management of hyperammonemia in neonates upon diagnosis of their metabolic disease and to compare neonates managed with MS alone or with both MS and CVVHD. We conducted a retrospective study including all neonates admitted for initial hyperammonemia to the pediatric intensive care unit of a Reference Center of Inherited Metabolic Diseases, between 2001 and 2012. The study included 35 neonates. Before admission, MS were initiated for 11 neonates. At admission, the median ammonia levels were 391 µmol/L and were significantly lower in neonates who received MS before admission. At admission, ammonia levels were 644 µmol/L in dialyzed and 283 µmol/L in non-dialyzed neonates. The median time to reach a 50% decrease of the initial ammonia levels was significantly shorter in dialyzed neonates; however, the normalization of ammonia levels was similar between dialyzed and non-dialyzed neonates. Hemodynamic disorders were more frequent in dialyzed neonates. CONCLUSION: MS represent an effective treatment for hyperammonemia and should be available in all pediatric units to avoid the need for CVVHD. Although CVVHD enhances the kinetics of toxic metabolite decrease, it is associated with adverse hemodynamic effects.


Subject(s)
Antimetabolites/therapeutic use , Continuous Renal Replacement Therapy/methods , Hyperammonemia/therapy , Renal Dialysis/methods , Combined Modality Therapy , Critical Illness , Female , Humans , Hyperammonemia/diagnosis , Infant, Newborn , Male , Retrospective Studies , Treatment Outcome
5.
Clin Genet ; 87(5): 448-54, 2015 May.
Article in English | MEDLINE | ID: mdl-24814349

ABSTRACT

ABCC8 encodes a subunit of the ß-cell potassium channel (KATP ) whose loss of function is responsible for congenital hyperinsulinism (CHI). Patients with two recessive mutations of ABCC8 typically have severe diffuse forms of CHI unresponsive to diazoxide. Some dominant ABCC8 mutations are responsible for a subset of diffuse diazoxide-unresponsive forms of CHI. We report the analysis of 21 different ABCC8 mutations identified in 25 probands with diazoxide-unresponsive diffuse CHI and carrying a single mutation in ABCC8. Nine missense ABCC8 mutations were subjected to in vitro expression studies testing traffic efficiency and responses of mutant channels to activation by MgADP and diazoxide. Eight of the 9 missense mutations exhibited normal trafficking. Seven of the 8 mutants reaching the plasma membrane had dramatically reduced response to MgADP or to diazoxide (<10% of wild-type response). In our cohort, dominant KATP mutations account for 22% of the children with diffuse unresponsive-diazoxide CHI. Their clinical phenotype being indistinguishable from that of children with focal CHI and diffuse CHI forms due to two recessive KATP mutations, we show that functional testing is essential to make the most reliable diagnosis and offer appropriate genetic counseling.


Subject(s)
Alleles , Congenital Hyperinsulinism/drug therapy , Congenital Hyperinsulinism/genetics , Diazoxide/therapeutic use , Drug Resistance/genetics , Mutation , Sulfonylurea Receptors/genetics , Amino Acid Substitution , Congenital Hyperinsulinism/diagnosis , DNA Mutational Analysis , Female , Genes, Recessive , Humans , Infant , Infant, Newborn , Male , Phenotype , Sulfonylurea Receptors/metabolism , Treatment Outcome
6.
J Child Neurol ; 29(2): 274-9, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24334345

ABSTRACT

Propionic acidemia is an inborn deficiency of propionyl-coenzyme A (CoA) carboxylase activity, which leads to mitochondrial accumulation of propionyl-CoA and its by-products. Neurologic complications are frequent, but only a few cases presenting with psychiatric symptoms have been reported so far. We report 2 cases of children with chronic psychiatric symptoms who presented with an acute psychotic episode as teenagers. Both patients had hallucinations, panic and grossly disorganized behavior, for several weeks to several months. They had signs of moderate metabolic decompensation at the beginning of the episode, although the psychiatric symptoms lasted longer than the metabolic imbalance. We propose that these episodes were at least partially imputable to propionic acidemia. Such episodes require psychiatric examination and antipsychotic treatment, which may have to be adapted in case of cardiomyopathy or long QT syndrome.


Subject(s)
Propionic Acidemia/psychology , Psychotic Disorders/diagnosis , Psychotic Disorders/etiology , Acute Disease , Adolescent , Antipsychotic Agents/therapeutic use , Brain/pathology , Child , Chronic Disease , Diagnosis, Differential , Female , Humans , Magnetic Resonance Imaging , Male , Psychotic Disorders/drug therapy , Psychotic Disorders/metabolism , Time Factors
7.
Mol Genet Metab ; 110(1-2): 106-10, 2013.
Article in English | MEDLINE | ID: mdl-23751327

ABSTRACT

INTRODUCTION: Patients with methylmalonic acidemia (MMA) may develop many complications despite medical treatment, in particular, severe central nervous system damage and chronic kidney disease (CKD). A kidney transplant may partially correct the metabolic dysfunctions. Liver, kidney and combined liver-kidney transplantations have been advocated but no guidelines are available to identify the most suitable organ to transplant. PATIENTS AND METHODS: Four patients with MMA (mut° phenotype) received a kidney graft because of repeated metabolic decompensations, with progression to CKD in 3 patients (end-stage kidney disease in two patients and CKD stage III in one patient with an estimated glomerular filtration rate [eGFR] of 40ml/min/1.73m(2)) but normal renal function in one (eGFR of 93ml/min/1.73m(2)) before transplantation. RESULTS: The medium age at transplantation was 7.9y (5-10.2) and the median follow-up was 2.8years (1.8-4.6). Renal transplantation improved the relevant metabolic parameters in 4/4 patients and renal function in the patients with CKD. Plasma and urinary MMA levels immediately decreased and remained normal or subnormal (mean values of plasma MMA before transplantation 1530µmol/L versus 240µmol/L after transplantation, and mean values of urine MMA before transplantation 4700mmol/mol creatinine versus 2300mmol/mol creatinine after transplantation). No further acute metabolic decompensation was observed and protein-intake was increased from 0.60 to 0.83g/Kg/day. One patient transplanted at age 9.7years developed a hepatoblastoma at age 11years with subsequent neurological complications and eventually died. The three other patients are alive. Two of them remained neurologically stable. The 3rd patient who displayed choreoathetosis transiently improved his neurological condition immediately after transplantation and then remained stable. CONCLUSION: Kidney transplantation represents an interesting alternative therapeutic option in methylmalonic aciduria, for renal complications but also as a "cellular therapy" that may significantly reduce metabolic decompensations and hospitalizations. However, further neurological impairment remains possible.


Subject(s)
Amino Acid Metabolism, Inborn Errors/therapy , Kidney Transplantation , Liver Transplantation , Metabolic Diseases/therapy , Renal Insufficiency, Chronic/therapy , Amino Acid Metabolism, Inborn Errors/blood , Amino Acid Metabolism, Inborn Errors/genetics , Amino Acid Metabolism, Inborn Errors/pathology , Amino Acid Metabolism, Inborn Errors/urine , Cell- and Tissue-Based Therapy , Child , Disease Progression , Female , Glomerular Filtration Rate , Humans , Male , Metabolic Diseases/genetics , Methylmalonic Acid/blood , Methylmalonic Acid/urine , Renal Insufficiency, Chronic/genetics , Renal Insufficiency, Chronic/pathology
8.
J Inherit Metab Dis ; 36(6): 939-44, 2013 Nov.
Article in English | MEDLINE | ID: mdl-23250513

ABSTRACT

BACKGROUND: Acute decompensation of maple syrup urine disease (MSUD) is usually treated by enteral feeding with an amino-acid mixture without leucine (Leu), valine or isoleucine. However, its administration is ineffective in cases of gastric intolerance and some adult patients refuse enteral feeding via a nasogastric tube. We developed a new parenteral amino-acid mixture for patients with MSUD. METHODS: Seventeen decompensation episodes in four adult patients with MSUD treated with a parenteral amino-acid mixture (group P) were compared to 18 previous episodes in the same patients treated by enteral feeding (group E). RESULTS: The mean Leu concentration at presentation was similar in the groups P and E (1196.9 µmol/L and 1212.2 µmol/L, respectively). The mean decrease in the Leu concentration during the first 3 days of hospitalisation was significantly higher in group P than group E (p = 0.0026); there were no side effects. The mean duration of hospitalisation was similar (4 vs. 4.5 days, p = NS). No patient in group P deteriorated whereas one patient in group E required dialysis. CONCLUSION: This new parenteral amino-acid mixture is safe and allows efficient Leu concentration decrease during acute MSUD decompensation episodes in adults. Its use avoids the need for nasogastric tube insertion.


Subject(s)
Amino Acids/administration & dosage , Heart Failure/diet therapy , Maple Syrup Urine Disease/diet therapy , Parenteral Nutrition , Adult , Female , Food, Formulated , Heart Failure/etiology , Hospitalization , Humans , Male , Maple Syrup Urine Disease/complications , Patient Acceptance of Health Care , Young Adult
9.
Arch Pediatr ; 18(10): 1119-23, 2011 Oct.
Article in French | MEDLINE | ID: mdl-21873040

ABSTRACT

In the last years, much progress has been achieved in the treatment of lysosomal storage disorders. Until recently only symptomatic treatment was available for the affected patients. Progressively enzyme replacement treatments have been developed for several diseases, namely Gaucher disease, Fabry disease, mucopolysaccharidoses type I, II and VI and Pompe disease. In this review we will summarize the efficacy and safety of these treatments and describe new therapeutic trials for other lysosomal storage disorders or perspectives in the use of currently available treatments.


Subject(s)
Enzyme Replacement Therapy , Lysosomal Storage Diseases/drug therapy , Clinical Trials as Topic , Enzyme Replacement Therapy/methods , Enzyme Therapy , Enzymes/genetics , Fabry Disease/drug therapy , Gaucher Disease/drug therapy , Glycogen Storage Disease Type II/drug therapy , Humans , Lysosomal Storage Diseases/diagnosis , Lysosomal Storage Diseases/enzymology , Mucopolysaccharidoses/drug therapy , Treatment Outcome
10.
J Med Genet ; 47(11): 752-9, 2010 Nov.
Article in English | MEDLINE | ID: mdl-20685672

ABSTRACT

BACKGROUND: Congenital hyperinsulinism (CHI) is characterised by an over secretion of insulin by the pancreatic ß-cells. This condition is mostly caused by mutations in ABCC8 or KCNJ11 genes encoding the SUR1 and KIR6.2 subunits of the ATP-sensitive potassium (K(ATP)) channel. CHI patients are classified according to their responsiveness to diazoxide and to their histopathological diagnosis (either focal, diffuse or atypical forms). Here, we raise the benefits/limits of the genetic diagnosis in the clinical management of CHI patients. METHODS: ABCC8/KCNJ11 mutational spectrum was established in 109 diazoxide-unresponsive CHI patients for whom an appropriate clinical management is essential to prevent brain damage. Relationships between genotype and radiopathological diagnosis were analysed. RESULTS: ABCC8 or KCNJ11 defects were found in 82% of the CHI cases. All patients with a focal form were associated with a single K(ATP) channel molecular event. In contrast, patients with diffuse forms were genetically more heterogeneous: 47% were associated with recessively inherited mutations, 34% carried a single heterozygous mutation and 19% had no mutation. There appeared to be a predominance of paternally inherited mutations in patients diagnosed with a diffuse form and carrying a sole K(ATP) channel mutation. CONCLUSIONS: The identification of recessively inherited mutations related to severe and diffuse forms of CHI provides an informative genetic diagnosis and allows prenatal diagnosis. In contrast, in patients carrying a single K(ATP) channel mutation, genetic analysis should be confronted with the PET imaging to categorise patients as focal or diffuse forms in order to get the appropriate therapeutic management.


Subject(s)
ATP-Binding Cassette Transporters/genetics , Congenital Hyperinsulinism/genetics , Mutation , Potassium Channels, Inwardly Rectifying/genetics , Receptors, Drug/genetics , Congenital Hyperinsulinism/diagnosis , Congenital Hyperinsulinism/drug therapy , DNA Mutational Analysis , Diazoxide/therapeutic use , Drug Resistance , Female , Genotype , Humans , Infant , Infant, Newborn , Male , Sulfonylurea Receptors , Vasodilator Agents/therapeutic use
13.
J Inherit Metab Dis ; 32(2): 159-62, 2009 Apr.
Article in English | MEDLINE | ID: mdl-19277894

ABSTRACT

An adult patient with methylmalonic aciduria due to defective cobalamin synthesis (CblA) responsive to vitamin B(12) presented suddenly with severe visual impairment ascribed to optic atrophy followed by a fatal multiorgan failure and lactic acidosis but low methylmalonic acid in plasma and urine. Multiple deficiency of oxidative phosphorylation was found in the patient's liver. We suggest that patients with B(12)-sensitive methylmalonic aciduria who have a milder clinical course should be carefully monitored for long-term complications.


Subject(s)
Amino Acid Metabolism, Inborn Errors/drug therapy , Amino Acid Metabolism, Inborn Errors/metabolism , Liver/metabolism , Methylmalonic Acid/urine , Oxidative Phosphorylation , Vitamin B 12/therapeutic use , Vitamin B 12/urine , Adult , Amino Acid Metabolism, Inborn Errors/genetics , Citric Acid Cycle/physiology , DNA, Mitochondrial/chemistry , DNA, Mitochondrial/genetics , Electron Transport/physiology , Fatal Outcome , Humans , Liver/pathology , Male , Muscle, Skeletal/pathology
14.
Mol Genet Metab ; 93(4): 444-9, 2008 Apr.
Article in English | MEDLINE | ID: mdl-18093857

ABSTRACT

The congenital disorder of glycosylation type Ia (CDG-Ia) presents a broad clinical spectrum. Some patients suffer from acute vascular events (thrombosis and bleeding) and stroke-like events. No correlations have been made between the marked hemostasis abnormalities of CDG-Ia and the occurrence of acute vascular events. We report on 6 patients with CDG-Ia presenting vascular events, then we analyze the clinical and hemostasis data of 39 CDG-Ia patients described in the literature, 17 with vascular events (E) and 21 unscathed from any event (EF), to determine the risk factors for acute vascular events in CDG-Ia. Acute vascular events occurred in patients younger than 15 years, especially with fever and prolonged immobilization. Hemostasis and liver cytolysis were statistically abnormal in patients younger than 5 years whatever the occurrence of vascular events and they normalized with time. Higher factors VIII and IX activities were statistically observed in the E cluster (p=0.03) compared to the EF cluster. The activity/antigenicity ratio for protein C (p=0.02) was also higher in the E group. CDG-Ia patients younger than 15 years old are at risk of acute vascular events. The paradoxical results-abnormal VIII and IX factors in EF patients and normal results in E patients, while XI, antithrombin, protein C, ASAT and ALAT are abnormal in both groups, could suggest a disequilibrium between prothrombotic and antithrombotic factors in the E group. Vascular events may also occur in patients where glycoproteins are proportionally more hypoglycosylated, particularly protein C.


Subject(s)
Congenital Disorders of Glycosylation/complications , Phosphotransferases (Phosphomutases)/genetics , Stroke/etiology , Adolescent , Child , Child, Preschool , Female , Glycosylation , Hemostasis , Humans , Infant , Infant, Newborn , Male , Phosphotransferases (Phosphomutases)/deficiency , Risk Assessment , Thrombosis/etiology
15.
Arch Pediatr ; 12(9): 1383-91, 2005 Sep.
Article in French | MEDLINE | ID: mdl-16046110

ABSTRACT

Ewing's tumor (ET) is a malignant bone tumor occurring in children and young adults. ET affects mainly bones of the central axis, and almost always involves soft tissue infiltration. The discovery of a unique genetic alteration, which is a reciprocal translocation most frequently resulting in the fusion of the EWS gene situated on chromosome 22 with the FLI-1 gene on chromosome 11, currently places ET among neuroectodermal tumors. Moreover, this translocation is a tumor-specific genetic marker at the basis of defining ET today and is used as a diagnostic and potentially prognostic tool complementary to imaging and histopathological work-up. Since the 1970 s, important progress has been made in the clinical management of ET patients. Multiagent chemotherapy in association with local treatment (surgery and/or radiation) has clearly improved outcome. The introduction of systemic treatment was justified by the frequent sub-clinical diffusion of apparently localized ET. Intensified therapeutic strategies have for the first time cured some metastatic ET patients, but at the cost of major side effects. Treatment is currently adapted as a result of a better definition of prognostic factors as well as a better assessment of its adverse effects. Improvement in global patient care and increased management of specific acute complications associated with ET (often interwoven with iatrogeneous effects) represent an important step towards improving the quality of life for ET patients as well as preventing long term complications. In the light of present studies, the majority of surviving adults today describe their health and quality of life as good. ET is a fascinating example of the progress made not only in the diagnostic and therapeutic approach to cancer but also in the comprehension of the mechanisms behind carcinogenesis, and consequently reflects the revolution of medicine over the last century.


Subject(s)
Bone Neoplasms/therapy , Sarcoma, Ewing/therapy , Adolescent , Adult , Child , Child, Preschool , Humans , Infant , Neoadjuvant Therapy , Prognosis , Quality of Life , Treatment Outcome
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