Stem cells persist for long periods in the body and experience many intrinsic and extrinsic stresses. For this reason, they present a powerful and effective DNA repair system in order to properly fix DNA damage and avoid the onset of a degenerative process, such as neoplastic transformation or aging. In this chapter, we compare the DNA repair ability of pluripotent stem cells (ESCs, iPSCs, and Muse cells) and other adult stem cells. We also describe personal investigations showing a robust and effective capacity of Muse cells in sensing and repairing DNA following chemical and physical stress. Muse cells can repair DNA through base and nucleotide excision repair mechanisms, BER and NER, respectively. Furthermore, they present a pronounced c...
Stem cells harbor significant potential for regenerative medicine as well as basic and clinical tran...
that accumulate mutations or DNA damage must berenewal, are only poorly understood and have been lar...
Human induced pluripotent stem cells (hiPSCs) play roles in both disease modeling and regenerative m...
Stem cells persist for long periods in the body and experience many intrinsic and extrinsic stresses...
Stem cells persist for long periods in the body and experience many intrinsic and extrinsic stresses...
Mesenchymal stromal cells (MSCs) are not a homogenous population but comprehend several cell types, ...
DNA damage is deleterious to all cells, but especially to stem cells because they maintain tissue in...
<div><p>The potential for human disease treatment using human pluripotent stem cells, including embr...
DNA repair is a double-edged sword in stem cells. It protects normal stem cells in both embryonic an...
Public and private human stem cell banking institutions are currently hosting hundreds of thousands ...
Public and private human stem cell banking institutions are currently hosting hundreds of thousands ...
The discovery of tumor-initiating cells endowed with stem-like features has added a further level of...
Differences in ex vivo cell culture conditions can drastically affect stem cell physiology. We sough...
The potential for human disease treatment using human pluripotent stem cells, including embryonic st...
DNA repair is fundamental to all cell types to maintain genomic stability. A collection of cutting-e...
Stem cells harbor significant potential for regenerative medicine as well as basic and clinical tran...
that accumulate mutations or DNA damage must berenewal, are only poorly understood and have been lar...
Human induced pluripotent stem cells (hiPSCs) play roles in both disease modeling and regenerative m...
Stem cells persist for long periods in the body and experience many intrinsic and extrinsic stresses...
Stem cells persist for long periods in the body and experience many intrinsic and extrinsic stresses...
Mesenchymal stromal cells (MSCs) are not a homogenous population but comprehend several cell types, ...
DNA damage is deleterious to all cells, but especially to stem cells because they maintain tissue in...
<div><p>The potential for human disease treatment using human pluripotent stem cells, including embr...
DNA repair is a double-edged sword in stem cells. It protects normal stem cells in both embryonic an...
Public and private human stem cell banking institutions are currently hosting hundreds of thousands ...
Public and private human stem cell banking institutions are currently hosting hundreds of thousands ...
The discovery of tumor-initiating cells endowed with stem-like features has added a further level of...
Differences in ex vivo cell culture conditions can drastically affect stem cell physiology. We sough...
The potential for human disease treatment using human pluripotent stem cells, including embryonic st...
DNA repair is fundamental to all cell types to maintain genomic stability. A collection of cutting-e...
Stem cells harbor significant potential for regenerative medicine as well as basic and clinical tran...
that accumulate mutations or DNA damage must berenewal, are only poorly understood and have been lar...
Human induced pluripotent stem cells (hiPSCs) play roles in both disease modeling and regenerative m...