Busulfan (BU) dose adjustment following therapeutic drug monitoring contributes to better outcome of hematopoietic stem cell transplantation (HSCT). Further improvement could be achieved through genotype-guided BU dose adjustments. To investigate this aspect, polymorphism within glutathione S transferase genes were assessed. Particularly, promoter haplotypes of the glutathione S transferase A1 (GSTA1) were evaluated in vitro, with reporter gene assays and clinically, in a pediatric multi-center study (N =138) through association with BU pharmacokinetics (PK) and clinical outcomes. Promoter activity significantly differed between the GSTA1 haplotypes (p < 0.001) supporting their importance in capturing PK variability. Four GSTA1 diplotype gr...
Busulfan (Bu) is a common component of conditioning regimens before hematopoietic stem cell transpla...
This study aimed to retrospectively evaluate the genetic association of null variants of glutathione...
Busulfan liver metabolism depends on glutathione, a crucial mediator of cellular and systemic stress...
Busulfan (BU) dose adjustment following therapeutic drug monitoring contributes to better outcome of...
Busulfan (BU) dose adjustment following therapeutic drug monitoring contributes to better outcome of...
Busulfan (BU) is a key compound in conditioning myeloablative regimens for children undergoing hemat...
Busulfan is widely used as a chemotherapy treatment before hematopoietic stem-cell transplantation (...
BU is a key compound of conditioning regimens in children undergoing hematopoietic SCT (HSCT). Inter...
Busulfan (Bu) is a key component of conditioning regimens used before hematopoietic stem cell transp...
Intravenous (i.v.) busulfan can produce a more consistent pharmacokinetic profile than oral formulat...
Busulfan (Bu) is a key component of conditioning regimens used before hematopoietic stem cell transp...
Busulfan (Bu) is a key component of conditioning regimens used before hematopoietic stem cell transp...
frequently included in conditioning regimens before hematopoietic stem cell transplantation (HSCT). ...
Intravenous (i.v.) busulfan can produce a more consistent pharmacokinetic profile than oral formulat...
The aim of this study is to develop a population pharmacokinetic (PopPK) model for intravenous busul...
Busulfan (Bu) is a common component of conditioning regimens before hematopoietic stem cell transpla...
This study aimed to retrospectively evaluate the genetic association of null variants of glutathione...
Busulfan liver metabolism depends on glutathione, a crucial mediator of cellular and systemic stress...
Busulfan (BU) dose adjustment following therapeutic drug monitoring contributes to better outcome of...
Busulfan (BU) dose adjustment following therapeutic drug monitoring contributes to better outcome of...
Busulfan (BU) is a key compound in conditioning myeloablative regimens for children undergoing hemat...
Busulfan is widely used as a chemotherapy treatment before hematopoietic stem-cell transplantation (...
BU is a key compound of conditioning regimens in children undergoing hematopoietic SCT (HSCT). Inter...
Busulfan (Bu) is a key component of conditioning regimens used before hematopoietic stem cell transp...
Intravenous (i.v.) busulfan can produce a more consistent pharmacokinetic profile than oral formulat...
Busulfan (Bu) is a key component of conditioning regimens used before hematopoietic stem cell transp...
Busulfan (Bu) is a key component of conditioning regimens used before hematopoietic stem cell transp...
frequently included in conditioning regimens before hematopoietic stem cell transplantation (HSCT). ...
Intravenous (i.v.) busulfan can produce a more consistent pharmacokinetic profile than oral formulat...
The aim of this study is to develop a population pharmacokinetic (PopPK) model for intravenous busul...
Busulfan (Bu) is a common component of conditioning regimens before hematopoietic stem cell transpla...
This study aimed to retrospectively evaluate the genetic association of null variants of glutathione...
Busulfan liver metabolism depends on glutathione, a crucial mediator of cellular and systemic stress...