The frequency of egg aneuploidy and trisomic pregnancies increases with maternal age. To what extent individual approaches can delay the "maternal age effect"is unclear because multiple causes contribute to chromosomal abnormalities in mammalian eggs. We propose that ovulation frequency determines the physiological aging of oocytes, a key aspect of which is the ability to accurately segregate chromosomes and produce euploid eggs. To test this hypothesis, ovulations were reduced using successive pregnancies, hormonal contraception, and a pre-pubertal knockout mouse model, and the effects on chromosome segregation and egg ploidy were examined. We show that each intervention reduces chromosomal abnormalities in eggs of aged mice, suggesting th...
Ph. D. ThesisThe “maternal age effect” describes the striking increase in risk of miscarriage and ch...
In mammalian oocytes DNA damage can cause chromosomal abnormalities that potentially lead to inferti...
Eichenlaub-Ritter U. Genetics of oocyte ageing. MATURITAS. 1998;30(2):143-169.Objectives: Correlatio...
AbstractAn increase in the incidence of aneuploidy is well documented with increasing maternal age, ...
SummaryBackgroundThe growing trend for women to postpone childbearing has resulted in a dramatic inc...
Aneuploidy in human eggs is the leading cause of pregnancy loss and Down's syndrome. Aneuploid eggs ...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
SummaryTo ensure correct meiotic chromosome segregation, sister chromatid cohesion (SCC) needs to be...
SummaryAneuploidy arising early in development is the leading genetic cause of birth defects and dev...
In most organisms, genome haploidization requires reciprocal DNA exchanges (crossovers) between repl...
Human eggs are highly aneuploid, with female age being the only known risk factor. Here this aging p...
Human eggs are highly aneuploid, with female age being the only known risk factor. Here this aging p...
Aneuploidy represents the most prevalent genetic disorder of man. Its association with spontaneous a...
Cukurcam S, Betzendahl I, Michel G, et al. Influence of follicular fluid meiosis-activating sterol o...
Eichenlaub-Ritter U, Staubach N, Trapphoff T. Chromosomal and cytoplasmic context determines predisp...
Ph. D. ThesisThe “maternal age effect” describes the striking increase in risk of miscarriage and ch...
In mammalian oocytes DNA damage can cause chromosomal abnormalities that potentially lead to inferti...
Eichenlaub-Ritter U. Genetics of oocyte ageing. MATURITAS. 1998;30(2):143-169.Objectives: Correlatio...
AbstractAn increase in the incidence of aneuploidy is well documented with increasing maternal age, ...
SummaryBackgroundThe growing trend for women to postpone childbearing has resulted in a dramatic inc...
Aneuploidy in human eggs is the leading cause of pregnancy loss and Down's syndrome. Aneuploid eggs ...
Aneuploidy arising from chromosome segregation errors in female meiosis is a leading genetic cause o...
SummaryTo ensure correct meiotic chromosome segregation, sister chromatid cohesion (SCC) needs to be...
SummaryAneuploidy arising early in development is the leading genetic cause of birth defects and dev...
In most organisms, genome haploidization requires reciprocal DNA exchanges (crossovers) between repl...
Human eggs are highly aneuploid, with female age being the only known risk factor. Here this aging p...
Human eggs are highly aneuploid, with female age being the only known risk factor. Here this aging p...
Aneuploidy represents the most prevalent genetic disorder of man. Its association with spontaneous a...
Cukurcam S, Betzendahl I, Michel G, et al. Influence of follicular fluid meiosis-activating sterol o...
Eichenlaub-Ritter U, Staubach N, Trapphoff T. Chromosomal and cytoplasmic context determines predisp...
Ph. D. ThesisThe “maternal age effect” describes the striking increase in risk of miscarriage and ch...
In mammalian oocytes DNA damage can cause chromosomal abnormalities that potentially lead to inferti...
Eichenlaub-Ritter U. Genetics of oocyte ageing. MATURITAS. 1998;30(2):143-169.Objectives: Correlatio...