Mitochondrial dysfunction is heavily implicated in the multifactorial aging process. Aging humans have increased levels of somatic mtDNA mutations that tend to undergo clonal expansion to cause mosaic respiratory chain deficiency in various tissues, such as heart, brain, skeletal muscle, and gut. Genetic mouse models have shown that somatic mtDNA mutations and cell type-specific respiratory chain dysfunction can cause a variety of phenotypes associated with aging and age-related disease. There is thus strong observational and experimental evidence to implicate somatic mtDNA mutations and mosaic respiratory chain dysfunction in the mammalian aging process. The hypothesis that somatic mtDNA mutations are generated by oxidative damage has not ...
AbstractMitochondrial DNA (mtDNA) that codes protein subunits essential for the maintenace of mitoch...
Mitochondrial DNA (mtDNA) mutations accumulate in somatic stem cells during ageing and cause mitocho...
Clonally expanded mitochondrial DNA (mtDNA) mutations resulting in focal respiratory chain deficienc...
Mitochondrial dysfunction is heavily implicated in the multifactorial aging process. Aging humans ha...
Mitochondria were first postulated to contribute to aging more than 40 years ago. During the followi...
AbstractA number of studies have shown that ageing is associated with increased amounts of mtDNA del...
The accumulation of acquired mitochondrial genome (mtDNA) mutations with aging in somatic cells has ...
The small mammalian mitochondrial DNA (mtDNA) is very gene dense and encodes factors critical for ox...
Somatic mutations of mtDNA are implicated in the aging process, but there is no universally accepted...
Ageing is due to an accumulation of various types of damage, and mitochondrial dysfunction has long ...
AbstractThe accumulation of mitochondrial DNA mutations has been proposed as a potential mechanism i...
Mitochondrial dysfunction plays an important role in the aging process. However, the mechanism by wh...
A decline in the replicative and regenerative capacity of adult stem cell populations is a major con...
A decline in the replicative and regenerative capacity of adult stem cell populations is a major con...
Mitochondrial DNA (mtDNA) mutations accumulate in somatic stem cells during ageing and cause mitocho...
AbstractMitochondrial DNA (mtDNA) that codes protein subunits essential for the maintenace of mitoch...
Mitochondrial DNA (mtDNA) mutations accumulate in somatic stem cells during ageing and cause mitocho...
Clonally expanded mitochondrial DNA (mtDNA) mutations resulting in focal respiratory chain deficienc...
Mitochondrial dysfunction is heavily implicated in the multifactorial aging process. Aging humans ha...
Mitochondria were first postulated to contribute to aging more than 40 years ago. During the followi...
AbstractA number of studies have shown that ageing is associated with increased amounts of mtDNA del...
The accumulation of acquired mitochondrial genome (mtDNA) mutations with aging in somatic cells has ...
The small mammalian mitochondrial DNA (mtDNA) is very gene dense and encodes factors critical for ox...
Somatic mutations of mtDNA are implicated in the aging process, but there is no universally accepted...
Ageing is due to an accumulation of various types of damage, and mitochondrial dysfunction has long ...
AbstractThe accumulation of mitochondrial DNA mutations has been proposed as a potential mechanism i...
Mitochondrial dysfunction plays an important role in the aging process. However, the mechanism by wh...
A decline in the replicative and regenerative capacity of adult stem cell populations is a major con...
A decline in the replicative and regenerative capacity of adult stem cell populations is a major con...
Mitochondrial DNA (mtDNA) mutations accumulate in somatic stem cells during ageing and cause mitocho...
AbstractMitochondrial DNA (mtDNA) that codes protein subunits essential for the maintenace of mitoch...
Mitochondrial DNA (mtDNA) mutations accumulate in somatic stem cells during ageing and cause mitocho...
Clonally expanded mitochondrial DNA (mtDNA) mutations resulting in focal respiratory chain deficienc...