Metabolomic analyses in alkaptonuria (AKU) have recently revealed alternative pathways in phenylalanine-tyrosine (phe-tyr) metabolism from biotransformation of homogentisic acid (HGA), the active molecule in this disease. The aim of this research was to study the phe-tyr metabolic pathway and whether the metabolites upstream of HGA, increased in nitisinone-treated patients, also undergo phase 1 and 2 biotransformation reactions. Metabolomic analyses were performed on serum and urine from patients partaking in the SONIA 2 phase 3 international randomised-controlled trial of nitisinone in AKU (EudraCT no. 2013-001633-41). Serum and urine samples were taken from the same patients at baseline (pre-nitisinone) then at 24 and 48 months on nitisin...
Background Alkaptonuria is a rare, debilitating autosomal recessive disorder affecting tyrosine meta...
Background: Nitisinone-induced hypertyrosinaemia is well documented in Alkaptonuria (AKU), and there...
For over two decades, nitisinone (NTBC) has been successfully used to manipulate the tyrosine degrad...
Changes in the phenylalanine (PHE)/tyrosine (TYR) pathway metabolites before and during homogentisic...
Alkaptonuria (AKU) is a rare debilitating autosomal recessive disorder of tyrosine (TYR) metabolism ...
BackgroundAdaptations within the phenylalanine (PHE)/tyrosine (TYR) pathway during nitisinone (NIT) ...
BackgroundAlthough changes in the tyrosine pathway during nitisinone therapy are known, a complete c...
Alkaptonuria (AKU) is an inherited disorder of tyrosine metabolism caused by lack of active enzyme h...
BACKGROUND:Identification of unknown chemical entities is a major challenge in metabolomics. To addr...
Nitisinone (NIT) produces inevitable but varying degree of tyrosinaemia. However, the understanding ...
BackgroundOne of the major metabolic consequences of using nitisinone to treat patients with alkapto...
Alkaptonuria (AKU) is a rare multisystem metabolic disease caused by deficient activity of homogenti...
Alkaptonuria (AKU) is a rare debilitating autosomal recessive disorder of tyrosine metabolism. Defic...
International audienceBACKGROUND:Different pathophysiological mechanisms have been described in phen...
Alkaptonuria (AKU) is an ultra-rare, autosomal recessive disorder of tyrosine catabolism due to muta...
Background Alkaptonuria is a rare, debilitating autosomal recessive disorder affecting tyrosine meta...
Background: Nitisinone-induced hypertyrosinaemia is well documented in Alkaptonuria (AKU), and there...
For over two decades, nitisinone (NTBC) has been successfully used to manipulate the tyrosine degrad...
Changes in the phenylalanine (PHE)/tyrosine (TYR) pathway metabolites before and during homogentisic...
Alkaptonuria (AKU) is a rare debilitating autosomal recessive disorder of tyrosine (TYR) metabolism ...
BackgroundAdaptations within the phenylalanine (PHE)/tyrosine (TYR) pathway during nitisinone (NIT) ...
BackgroundAlthough changes in the tyrosine pathway during nitisinone therapy are known, a complete c...
Alkaptonuria (AKU) is an inherited disorder of tyrosine metabolism caused by lack of active enzyme h...
BACKGROUND:Identification of unknown chemical entities is a major challenge in metabolomics. To addr...
Nitisinone (NIT) produces inevitable but varying degree of tyrosinaemia. However, the understanding ...
BackgroundOne of the major metabolic consequences of using nitisinone to treat patients with alkapto...
Alkaptonuria (AKU) is a rare multisystem metabolic disease caused by deficient activity of homogenti...
Alkaptonuria (AKU) is a rare debilitating autosomal recessive disorder of tyrosine metabolism. Defic...
International audienceBACKGROUND:Different pathophysiological mechanisms have been described in phen...
Alkaptonuria (AKU) is an ultra-rare, autosomal recessive disorder of tyrosine catabolism due to muta...
Background Alkaptonuria is a rare, debilitating autosomal recessive disorder affecting tyrosine meta...
Background: Nitisinone-induced hypertyrosinaemia is well documented in Alkaptonuria (AKU), and there...
For over two decades, nitisinone (NTBC) has been successfully used to manipulate the tyrosine degrad...