Background & aimsThe epithelia of the intestine and colon turn over rapidly and are maintained by adult stem cells at the base of crypts. Although the small intestine and colon have distinct, well-characterized physiological functions, it remains unclear if there are fundamental regional differences in stem cell behavior or region-dependent degenerative changes during aging. Mesenchyme-free organoids provide useful tools for investigating intestinal stem cell biology in vitro and have started to be used for investigating age-related changes in stem cell function. However, it is unknown whether organoids maintain hallmarks of age in the absence of an aging niche. We tested whether stem cell-enriched organoids preserved the DNA methy...
Aging-associated alterations of cellular functions have been implicated in various disorders includi...
Aberrant DNA methylation in stem cells is a hallmark of aging and tumor development. Here, we explor...
Aging-associated alterations of cellular functions have been implicated in various disorders includi...
Background & aimsThe epithelia of the intestine and colon turn over rapidly and are maintained b...
Maintenance of the mammalian intestine throughout life relies on rapidly dividing stem cells located...
OBJECTIVE: Human intestinal epithelial organoids (IEOs) are increasingly being recognised as a highl...
OBJECTIVE: Human intestinal epithelial organoids (IEOs) are increasingly being recognised as a highl...
AbstractThe intestinal epithelium is a particularly attractive biological adult model to study epige...
International audienceThe intestinal epithelium is a particularly attractive biological adult model ...
The intestinal epithelium is a particularly attractive biological adult model to study epigenetic me...
Epigenetic silencing of Lgr5 in aged organoids To understand the molecular features underlying stem ...
Abstract Background Cell division occurs during normal human development and aging. Despite the like...
The impact of aging on intestinal stem cells (ISCs) has not been fully elucidated. In this study, we...
AbstractThe intestinal epithelium is a particularly attractive biological adult model to study epige...
Aberrant DNA methylation in stem cells is a hallmark of aging and tumor development. Here, we explor...
Aging-associated alterations of cellular functions have been implicated in various disorders includi...
Aberrant DNA methylation in stem cells is a hallmark of aging and tumor development. Here, we explor...
Aging-associated alterations of cellular functions have been implicated in various disorders includi...
Background & aimsThe epithelia of the intestine and colon turn over rapidly and are maintained b...
Maintenance of the mammalian intestine throughout life relies on rapidly dividing stem cells located...
OBJECTIVE: Human intestinal epithelial organoids (IEOs) are increasingly being recognised as a highl...
OBJECTIVE: Human intestinal epithelial organoids (IEOs) are increasingly being recognised as a highl...
AbstractThe intestinal epithelium is a particularly attractive biological adult model to study epige...
International audienceThe intestinal epithelium is a particularly attractive biological adult model ...
The intestinal epithelium is a particularly attractive biological adult model to study epigenetic me...
Epigenetic silencing of Lgr5 in aged organoids To understand the molecular features underlying stem ...
Abstract Background Cell division occurs during normal human development and aging. Despite the like...
The impact of aging on intestinal stem cells (ISCs) has not been fully elucidated. In this study, we...
AbstractThe intestinal epithelium is a particularly attractive biological adult model to study epige...
Aberrant DNA methylation in stem cells is a hallmark of aging and tumor development. Here, we explor...
Aging-associated alterations of cellular functions have been implicated in various disorders includi...
Aberrant DNA methylation in stem cells is a hallmark of aging and tumor development. Here, we explor...
Aging-associated alterations of cellular functions have been implicated in various disorders includi...