Isolated Complex I (CI) deficiency is the most commonly observed mitochondrial respiratory chain biochemical defect, affecting the largest OXPHOS component. CI is genetically heterogeneous; pathogenic variants affect one of 38 nuclear-encoded subunits, 7 mitochondrial DNA (mtDNA)-encoded subunits or 14 known CI assembly factors. The laboratory diagnosis relies on the spectrophotometric assay of enzyme activity in mitochondrially-enriched tissue homogenates, requiring at least 50 mg skeletal muscle, as there is no reliable histochemical method for assessing CI activity directly in tissue cryosections. We have assessed a validated quadruple immunofluorescent OXPHOS (IHC) assay to detect CI deficiency in the diagnostic setting, using 10 µm tra...
Complex I (CI) deficiency is the most common respiratory chain defect representing more than 30% of ...
Background: Mitochondrial diseases display a heterogeneous spectrum of clinical phenotypes and there...
Background: Mitochondrial diseases display a heterogeneous spectrum of clinical phenotypes and there...
Oxidative phosphorylation defects in human tissues are often challenging to quantify due to a mosaic...
AbstractOXPHOS deficits are associated with most reported cases of inherited, degenerative and acqui...
© 2019 Dr. Shalini ThirukeswaranMitochondrial oxidative phosphorylation (OXPHOS) disorders constitut...
PhD ThesisMitochondrial dysfunction occurs in patients with mitochondrial disease, in neurodegenerat...
NADH-ubiquinone oxidoreductase or complex I deficiency is a frequently diagnosed enzyme defect of th...
Complex I deficiency is the most frequently encountered single mitochondrial single enzyme deficienc...
OXPHOS deficits are associated with most reported cases of inherited, degenerative and acquired mito...
Complex I (CI) deficiency is a defect of OXPHOS caused by mutations in the mitochondrial or nuclear ...
Background: Mitochondrial diseases display a heterogeneous spectrum of clinical phenotypes and there...
Mitochondrial dysfunction has been implicated in many human diseases and off-target drug effects. Is...
Contains fulltext : 80048.pdf (publisher's version ) (Closed access)OXPHOS deficit...
Contains fulltext : 185667.pdf (Publisher’s version ) (Open Access)Complex I defec...
Complex I (CI) deficiency is the most common respiratory chain defect representing more than 30% of ...
Background: Mitochondrial diseases display a heterogeneous spectrum of clinical phenotypes and there...
Background: Mitochondrial diseases display a heterogeneous spectrum of clinical phenotypes and there...
Oxidative phosphorylation defects in human tissues are often challenging to quantify due to a mosaic...
AbstractOXPHOS deficits are associated with most reported cases of inherited, degenerative and acqui...
© 2019 Dr. Shalini ThirukeswaranMitochondrial oxidative phosphorylation (OXPHOS) disorders constitut...
PhD ThesisMitochondrial dysfunction occurs in patients with mitochondrial disease, in neurodegenerat...
NADH-ubiquinone oxidoreductase or complex I deficiency is a frequently diagnosed enzyme defect of th...
Complex I deficiency is the most frequently encountered single mitochondrial single enzyme deficienc...
OXPHOS deficits are associated with most reported cases of inherited, degenerative and acquired mito...
Complex I (CI) deficiency is a defect of OXPHOS caused by mutations in the mitochondrial or nuclear ...
Background: Mitochondrial diseases display a heterogeneous spectrum of clinical phenotypes and there...
Mitochondrial dysfunction has been implicated in many human diseases and off-target drug effects. Is...
Contains fulltext : 80048.pdf (publisher's version ) (Closed access)OXPHOS deficit...
Contains fulltext : 185667.pdf (Publisher’s version ) (Open Access)Complex I defec...
Complex I (CI) deficiency is the most common respiratory chain defect representing more than 30% of ...
Background: Mitochondrial diseases display a heterogeneous spectrum of clinical phenotypes and there...
Background: Mitochondrial diseases display a heterogeneous spectrum of clinical phenotypes and there...