The molecular regulatory network underlying stem cell pluripotency has been intensively studied, and we now have a reliable ensemble model for the “average” pluripotent cell. However, evidence of significant cell-to-cell variability suggests that the activity of this network varies within individual stem cells, leading to differential processing of environmental signals and variability in cell fates. Here, we adapt a method originally designed for face recognition to infer regulatory network patterns within individual cells from single-cell expression data. Using this method we identify three distinct network configurations in cultured mouse embryonic stem cells—corresponding to naïve and formative pluripotent states and an early primitive ...
A 30-node signed and directed network responsible for self-renewal and pluripotency of mouse embryon...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
Induced pluripotent stem cells (iPSCs) are promising tools for biomedical research such as human dis...
The molecular regulatory network underlying stem cell pluripotency has been intensively studied, and...
The molecular regulatory network underlying stem cell pluripotency has been intensively studied, and...
The molecular regulatory network underlying stem cell pluripotency has been intensively studied, and...
Motivation: Transcriptional regulatory networks controlling cell fate decisions in mammalian embryon...
Cellular differentiation, from pluripotent stem cells to the diverse cell types in our body, is guid...
Self-renewal, the ability of a stem cell to divide repeatedly while maintaining an undifferentiated ...
Self-renewal, the ability of a stem cell to divide repeatedly while maintaining an undifferentiated ...
Pluripotent stem cells (PSCs) are a popular model system for investigating development, tissue regen...
<div><p>Self-renewal, the ability of a stem cell to divide repeatedly while maintaining an undiffere...
Abstract Single-cell technologies enable the dynamic analyses of cell fate mapping. However, capturi...
Stem cells are defined as self-renewing cell populations that can differentiate into multiple distin...
Pluripotent embryonic stem cells are of paramount importance for biomedical sciences because of thei...
A 30-node signed and directed network responsible for self-renewal and pluripotency of mouse embryon...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
Induced pluripotent stem cells (iPSCs) are promising tools for biomedical research such as human dis...
The molecular regulatory network underlying stem cell pluripotency has been intensively studied, and...
The molecular regulatory network underlying stem cell pluripotency has been intensively studied, and...
The molecular regulatory network underlying stem cell pluripotency has been intensively studied, and...
Motivation: Transcriptional regulatory networks controlling cell fate decisions in mammalian embryon...
Cellular differentiation, from pluripotent stem cells to the diverse cell types in our body, is guid...
Self-renewal, the ability of a stem cell to divide repeatedly while maintaining an undifferentiated ...
Self-renewal, the ability of a stem cell to divide repeatedly while maintaining an undifferentiated ...
Pluripotent stem cells (PSCs) are a popular model system for investigating development, tissue regen...
<div><p>Self-renewal, the ability of a stem cell to divide repeatedly while maintaining an undiffere...
Abstract Single-cell technologies enable the dynamic analyses of cell fate mapping. However, capturi...
Stem cells are defined as self-renewing cell populations that can differentiate into multiple distin...
Pluripotent embryonic stem cells are of paramount importance for biomedical sciences because of thei...
A 30-node signed and directed network responsible for self-renewal and pluripotency of mouse embryon...
Despite being the object of intense study, embryonic development has been difficult to model due to ...
Induced pluripotent stem cells (iPSCs) are promising tools for biomedical research such as human dis...