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Gata6 induced XEN-like cells w/o Sox7
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2015-09-14
相关数据集
Self-Renewing Presomitic Mesoderm Progenitor Lines Reprogrammed from human urine cells [xxx scRNA-seq]. Self-Renewing Presomitic Mesoderm Progenitor Lines Reprogrammed from human urine cells [xxx scRNA-seq]
Vertebrae formation is the defining feature of all vertebrates1,2. Yet, each vertebrate species appears to have a unique timing mechanism for forming somites along the vertebral column3-5. Human verte
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Time course of the miR-203 effect during reprogramming from somatic cells to pluripotent cells. Mus musculus
The balance between pluripotency and differentiation is critical during development and regeneration. miR-203 is a microRNA previously involved in differentiation of different tissues as well as in tu
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mRNA expression in iPS cells generated by a synthetic self-replicative RNA
mRNA expression in iPS cells generated by a synthetic self-replicative RNA
ChEBI2014-04-25 更新00
Chromatin Accessibility Dynamics during Chemical Induction of Pluripotency [RNA-seq]. Chromatin Accessibility Dynamics during Chemical Induction of Pluripotency [RNA-seq]
Chemical induction of pluripotency (CIP) is an ideal way to reprogram cell fate, but remains poorly understood. Here we report the development of an efficient CIP protocol and the chromatin accessibil
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RNA-seq of wild-type, Pbx1/Pbx2 double-knockout and pMsgn1-mut EpiSCs differentiated in vitro to pre-somitic mesoderm in the first 24 hours of differentiation.. RNA-seq of wild-type, Pbx1/Pbx2 double-knockout and pMsgn1-mut EpiSCs differentiated in vitro to pre-somitic mesoderm in the first 24 hours of differentiation.
In vertebrates, body axis elongation is fuelled by bipotent neuromesodermal progenitors (NMPs), which support the development of both spinal cord and paraxial mesoderm (PM). HOX transcription factors
NIAID Data Ecosystem10



