BackgroundAdaptations within the phenylalanine (PHE)/tyrosine (TYR) pathway during nitisinone (NIT) are not fully understood.ObjectiveTo characterise the temporal changes in metabolic features in NIT-treated patients with alkaptonuria.Patients and methodsSerum (s) and 24-urine (u) homogentisic acid (sHGA, uHGA24), TYR (sTYR, uTYR24), PHE (sPHE, uPHE24), hydroxyphenylpyruvate (sHPPA, uHPPA24), hydroxyphenyllactate (sHPLA, uHPLA24) and sNIT were measured at baseline (V1) and until month 48 (V6) in 69 NIT-treated patients, recommended to reduce protein intake. The 24-h urine urea (uUREA24), creatinine (uCREAT24) and body weight were also measured. Amounts of tyrosine metabolites in total body water (TBW) were derived by multiplying the serum c...
Alkaptonuria (AKU) is an ultra-rare, autosomal recessive disorder of tyrosine catabolism due to muta...
Alkaptonuria (AKU) is a rare debilitating autosomal recessive disorder of tyrosine (TYR) metabolism ...
For over two decades, nitisinone (NTBC) has been successfully used to manipulate the tyrosine degrad...
Nitisinone (NIT) produces inevitable but varying degree of tyrosinaemia. However, the understanding ...
BackgroundAlthough changes in the tyrosine pathway during nitisinone therapy are known, a complete c...
Changes in the phenylalanine (PHE)/tyrosine (TYR) pathway metabolites before and during homogentisic...
Metabolomic analyses in alkaptonuria (AKU) have recently revealed alternative pathways in phenylalan...
Nitisinone (NIT) causes tyrosinaemia and corneal keratopathy (KP), especially in men. However, the a...
BackgroundOne of the major metabolic consequences of using nitisinone to treat patients with alkapto...
Introduction: Nitisinone used in alkaptonuria (AKU) can result in keratopathy due to strongly increa...
BACKGROUND: Alkaptonuria (AKU) is caused by homogentisate 1,2-dioxygenase deficiency that leads to h...
Background Alkaptonuria is a rare, debilitating autosomal recessive disorder affecting tyrosine meta...
Background: Nitisinone-induced hypertyrosinaemia is well documented in Alkaptonuria (AKU), and there...
BACKGROUND:Identification of unknown chemical entities is a major challenge in metabolomics. To addr...
For over two decades, nitisinone (NTBC) has been successfully used to manipulate the tyrosine degrad...
Alkaptonuria (AKU) is an ultra-rare, autosomal recessive disorder of tyrosine catabolism due to muta...
Alkaptonuria (AKU) is a rare debilitating autosomal recessive disorder of tyrosine (TYR) metabolism ...
For over two decades, nitisinone (NTBC) has been successfully used to manipulate the tyrosine degrad...
Nitisinone (NIT) produces inevitable but varying degree of tyrosinaemia. However, the understanding ...
BackgroundAlthough changes in the tyrosine pathway during nitisinone therapy are known, a complete c...
Changes in the phenylalanine (PHE)/tyrosine (TYR) pathway metabolites before and during homogentisic...
Metabolomic analyses in alkaptonuria (AKU) have recently revealed alternative pathways in phenylalan...
Nitisinone (NIT) causes tyrosinaemia and corneal keratopathy (KP), especially in men. However, the a...
BackgroundOne of the major metabolic consequences of using nitisinone to treat patients with alkapto...
Introduction: Nitisinone used in alkaptonuria (AKU) can result in keratopathy due to strongly increa...
BACKGROUND: Alkaptonuria (AKU) is caused by homogentisate 1,2-dioxygenase deficiency that leads to h...
Background Alkaptonuria is a rare, debilitating autosomal recessive disorder affecting tyrosine meta...
Background: Nitisinone-induced hypertyrosinaemia is well documented in Alkaptonuria (AKU), and there...
BACKGROUND:Identification of unknown chemical entities is a major challenge in metabolomics. To addr...
For over two decades, nitisinone (NTBC) has been successfully used to manipulate the tyrosine degrad...
Alkaptonuria (AKU) is an ultra-rare, autosomal recessive disorder of tyrosine catabolism due to muta...
Alkaptonuria (AKU) is a rare debilitating autosomal recessive disorder of tyrosine (TYR) metabolism ...
For over two decades, nitisinone (NTBC) has been successfully used to manipulate the tyrosine degrad...