For over two decades, nitisinone (NTBC) has been successfully used to manipulate the tyrosine degradation pathway and save the lives of many children with hereditary tyrosinaemia type 1. More recently, NTBC has been used to halt homogentisic acid accumulation in alkaptonuria (AKU) with evidence suggesting its efficacy as a disease modifying agent. NTBC-induced hypertyrosinaemia has been associated with cognitive impairment and potentially sight-threatening keratopathy. In the context of a non-lethal condition (ie, AKU), these serious risks call for an evaluation of the wider impact of NTBC on the tyrosine pathway. We hypothesised that NTBC increases the tyrosine pool size and concentrations in tissues. In AKU mice tyrosine concentrations of...
OBJECTIVE:Nitisinone induced hypertyrosinaemia is a concern in patients with Alkaptonuria (AKU). It ...
Alkaptonuria is a rare genetic disorder characterized by a high level of circulating (and urine) hom...
BackgroundAdaptations within the phenylalanine (PHE)/tyrosine (TYR) pathway during nitisinone (NIT) ...
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...
BackgroundAlthough changes in the tyrosine pathway during nitisinone therapy are known, a complete c...
Background Alkaptonuria is a rare, debilitating autosomal recessive disorder affecting tyrosine meta...
BACKGROUND: Alkaptonuria (AKU) is caused by homogentisate 1,2-dioxygenase deficiency that leads to h...
BackgroundNitisinone-induced hypertyrosinaemia is well documented in Alkaptonuria (AKU), and there i...
Nitisinone (NIT) produces inevitable but varying degree of tyrosinaemia. However, the understanding ...
Introduction: Alkaptonuria is an iconic disease, dating back to the Egyptians and has continued to p...
Changes in the phenylalanine (PHE)/tyrosine (TYR) pathway metabolites before and during homogentisic...
Alkaptonuria (AKU) is an ultrarare autosomal recessive disorder resulting from a deficiency of homog...
BackgroundOne of the major metabolic consequences of using nitisinone to treat patients with alkapto...
Metabolomic analyses in alkaptonuria (AKU) have recently revealed alternative pathways in phenylalan...
OBJECTIVE:Nitisinone induced hypertyrosinaemia is a concern in patients with Alkaptonuria (AKU). It ...
Alkaptonuria is a rare genetic disorder characterized by a high level of circulating (and urine) hom...
BackgroundAdaptations within the phenylalanine (PHE)/tyrosine (TYR) pathway during nitisinone (NIT) ...
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...
BackgroundAlthough changes in the tyrosine pathway during nitisinone therapy are known, a complete c...
Background Alkaptonuria is a rare, debilitating autosomal recessive disorder affecting tyrosine meta...
BACKGROUND: Alkaptonuria (AKU) is caused by homogentisate 1,2-dioxygenase deficiency that leads to h...
BackgroundNitisinone-induced hypertyrosinaemia is well documented in Alkaptonuria (AKU), and there i...
Nitisinone (NIT) produces inevitable but varying degree of tyrosinaemia. However, the understanding ...
Introduction: Alkaptonuria is an iconic disease, dating back to the Egyptians and has continued to p...
Changes in the phenylalanine (PHE)/tyrosine (TYR) pathway metabolites before and during homogentisic...
Alkaptonuria (AKU) is an ultrarare autosomal recessive disorder resulting from a deficiency of homog...
BackgroundOne of the major metabolic consequences of using nitisinone to treat patients with alkapto...
Metabolomic analyses in alkaptonuria (AKU) have recently revealed alternative pathways in phenylalan...
OBJECTIVE:Nitisinone induced hypertyrosinaemia is a concern in patients with Alkaptonuria (AKU). It ...
Alkaptonuria is a rare genetic disorder characterized by a high level of circulating (and urine) hom...
BackgroundAdaptations within the phenylalanine (PHE)/tyrosine (TYR) pathway during nitisinone (NIT) ...