Urea cycle disorders are incurable enzymopathies that affect nitrogen metabolism and typically lead to hyperammonemia. Arginase deficiency results from a mutation in Arg1, the enzyme regulating the final step of ureagenesis and typically results in developmental disabilities, seizures, spastic diplegia, and sometimes death. Current medical treatments for urea cycle disorders are only marginally effective, and for proximal disorders, liver transplantation is effective but limited by graft availability. Advances in human induced pluripotent stem cell research has allowed for the genetic modification of stem cells for potential cellular replacement therapies. In this study, we demonstrate a universally-applicable CRISPR/Cas9-based strategy uti...
Urea-cycle disorders (UCDs) are a group of inborn errors of hepatocyte metabolism that are caused by...
The ASS1 gene encodes argininosuccinate synthetase-1, a cytosolic enzyme with a critical role in the...
The creation of a bio-artificial liver device could assist liver failure patients awaiting liver tra...
Urea cycle disorders are incurable enzymopathies that affect nitrogen metabolism and typically lead ...
Urea cycle disorders are incurable enzymopathies that affect nitrogen metabolism and typically lead ...
Since the first reported generation of induced pluripotent stem cells (hiPSCs) from human somatic ce...
Arginase-1 deficiency in humans is a rare genetic disorder of metabolism resulting from a loss of ar...
Progress in gene editing research has been accelerated by utilizing engineered nucleases in combinat...
Progress in gene editing research has been accelerated by utilizing engineered nucleases in combinat...
The transplantation, engraftment, and expansion of primary hepatocytes have the potential to be an e...
CPS1 deficiency is an inborn error of metabolism caused by loss-of-function mutations in the CPS1 ge...
Arginase-1 (ARG1) deficiency is a rare autosomal recessive disorder that affects the liver-based ure...
CPS1 deficiency is an inborn error of metabolism caused by loss-of-function mutations in the CPS1 ge...
The urea cycle is essential in terrestrial mammals to detoxify ammonia into urea, and disruptions of...
Arginase deficiency is caused by biallelic mutations in arginase 1 (ARG1), the final step of the ure...
Urea-cycle disorders (UCDs) are a group of inborn errors of hepatocyte metabolism that are caused by...
The ASS1 gene encodes argininosuccinate synthetase-1, a cytosolic enzyme with a critical role in the...
The creation of a bio-artificial liver device could assist liver failure patients awaiting liver tra...
Urea cycle disorders are incurable enzymopathies that affect nitrogen metabolism and typically lead ...
Urea cycle disorders are incurable enzymopathies that affect nitrogen metabolism and typically lead ...
Since the first reported generation of induced pluripotent stem cells (hiPSCs) from human somatic ce...
Arginase-1 deficiency in humans is a rare genetic disorder of metabolism resulting from a loss of ar...
Progress in gene editing research has been accelerated by utilizing engineered nucleases in combinat...
Progress in gene editing research has been accelerated by utilizing engineered nucleases in combinat...
The transplantation, engraftment, and expansion of primary hepatocytes have the potential to be an e...
CPS1 deficiency is an inborn error of metabolism caused by loss-of-function mutations in the CPS1 ge...
Arginase-1 (ARG1) deficiency is a rare autosomal recessive disorder that affects the liver-based ure...
CPS1 deficiency is an inborn error of metabolism caused by loss-of-function mutations in the CPS1 ge...
The urea cycle is essential in terrestrial mammals to detoxify ammonia into urea, and disruptions of...
Arginase deficiency is caused by biallelic mutations in arginase 1 (ARG1), the final step of the ure...
Urea-cycle disorders (UCDs) are a group of inborn errors of hepatocyte metabolism that are caused by...
The ASS1 gene encodes argininosuccinate synthetase-1, a cytosolic enzyme with a critical role in the...
The creation of a bio-artificial liver device could assist liver failure patients awaiting liver tra...