Stem cells safeguard tissue homeostasis and guarantee tissue repair throughout life. The decision between self-renewal and differentiation is influenced by a specialized microenvironment called stem cell niche. Physical and molecular interactions with niche cells and orientation of the cleavage plane during stem cell mitosis control the balance between symmetric and asymmetric division of stem cells. Here we highlight recent progress made on the anatomical and molecular characterization of mammalian stem cell niches, focusing particularly on bone marrow, tooth and hair follicle. The knowledge of the regulation of stem cells within their niches in health and disease will be instrumental to develop novel therapies that target stem cell niches...
Adult stem cells hold many promises for future clinical applications and regenerative medicine. The ...
The vertebrate ectoderm gives rise to organs that produce mineralized or keratinized substances, inc...
The multipotentiality and self-renewal ability of stem cells are controlled by intrinsic genetic pat...
Stem cells safeguard tissue homeostasis and guarantee tissue repair throughout life. The decision be...
Niches are local tissue microenvironments that maintain and regulate stem cells. Long-predicted from...
The hematopoietic stem cell (HSC) is probably the best characterized somatic stem cell and is still ...
Stem cells are fundamental units for achieving regenerative therapies, which leads naturally to a th...
Despite important advances in tissue repair and regeneration over the past few decades, complete fun...
Stem cell niches are able to maintain stable populations of stem cells allowing stem cell self-renew...
Stem cells guarantee tissue repair and regeneration throughout life. The decision between cell self-...
Stem cell niches are dynamic microenvironments that balance stem cell activity to maintain tissue ho...
Most tissues in our bodies undergo constant cellular turnover. This process requires a dynamic balan...
SummaryMost tissues in our bodies undergo constant cellular turnover. This process requires a dynami...
Stem cells have the ability to self-renew and differentiate along multiple lineages, driving tissue ...
Tissue-specific stem cells have the capacity to self-renew and differentiate into several types of f...
Adult stem cells hold many promises for future clinical applications and regenerative medicine. The ...
The vertebrate ectoderm gives rise to organs that produce mineralized or keratinized substances, inc...
The multipotentiality and self-renewal ability of stem cells are controlled by intrinsic genetic pat...
Stem cells safeguard tissue homeostasis and guarantee tissue repair throughout life. The decision be...
Niches are local tissue microenvironments that maintain and regulate stem cells. Long-predicted from...
The hematopoietic stem cell (HSC) is probably the best characterized somatic stem cell and is still ...
Stem cells are fundamental units for achieving regenerative therapies, which leads naturally to a th...
Despite important advances in tissue repair and regeneration over the past few decades, complete fun...
Stem cell niches are able to maintain stable populations of stem cells allowing stem cell self-renew...
Stem cells guarantee tissue repair and regeneration throughout life. The decision between cell self-...
Stem cell niches are dynamic microenvironments that balance stem cell activity to maintain tissue ho...
Most tissues in our bodies undergo constant cellular turnover. This process requires a dynamic balan...
SummaryMost tissues in our bodies undergo constant cellular turnover. This process requires a dynami...
Stem cells have the ability to self-renew and differentiate along multiple lineages, driving tissue ...
Tissue-specific stem cells have the capacity to self-renew and differentiate into several types of f...
Adult stem cells hold many promises for future clinical applications and regenerative medicine. The ...
The vertebrate ectoderm gives rise to organs that produce mineralized or keratinized substances, inc...
The multipotentiality and self-renewal ability of stem cells are controlled by intrinsic genetic pat...