Molecular basis of embryonic stem cell self-renewal: from signaling pathways to pluripotency network

G Huang, S Ye, X Zhou, D Liu, QL Ying - Cellular and molecular life …, 2015 - Springer
Embryonic stem cells (ESCs) can be maintained in culture indefinitely while retaining the
capacity to generate any type of cell in the body, and therefore not only hold great promise …

Molecular basis of embryonic stem cell self-renewal: from signaling pathways to pluripotency network

G Huang, S Ye, X Zhou, D Liu, QL Ying - Cellular and Molecular Life …, 2015 - infona.pl
Embryonic stem cells (ESCs) can be maintained in culture indefinitely while retaining the
capacity to generate any type of cell in the body, and therefore not only hold great promise …

Molecular basis of embryonic stem cell self-renewal: from signaling pathways to pluripotency network

G Huang, S Ye, X Zhou, D Liu… - Cellular and molecular …, 2015 - pubmed.ncbi.nlm.nih.gov
Embryonic stem cells (ESCs) can be maintained in culture indefinitely while retaining the
capacity to generate any type of cell in the body, and therefore not only hold great promise …

Molecular basis of embryonic stem cell self-renewal: from signaling pathways to pluripotency network

G Huang, S Ye, X Zhou, D Liu… - Cellular and Molecular …, 2015 - search.proquest.com
Embryonic stem cells (ESCs) can be maintained in culture indefinitely while retaining the
capacity to generate any type of cell in the body, and therefore not only hold great promise …

Molecular basis of embryonic stem cell self-renewal: from signaling pathways to pluripotency network.

G Huang, S Ye, X Zhou, D Liu… - Cellular and Molecular Life …, 2015 - europepmc.org
Embryonic stem cells (ESCs) can be maintained in culture indefinitely while retaining the
capacity to generate any type of cell in the body, and therefore not only hold great promise …

[HTML][HTML] Molecular basis of embryonic stem cell self-renewal: from signaling pathways to pluripotency network

G Huang, S Ye, X Zhou, D Liu… - Cellular and Molecular Life …, 2015 - ncbi.nlm.nih.gov
Embryonic stem cells (ESCs) can be maintained in culture indefinitely while retaining the
capacity to generate any type of cell in the body, and therefore not only hold great promise …

[引用][C] Molecular basis of embryonic stem cell self-renewal: from signaling pathways to pluripotency network

G Huang, S Ye, X Zhou, D Liu, QL Ying - Cellular and Molecular Life …, 2015 - cir.nii.ac.jp
Molecular basis of embryonic stem cell self-renewal: from signaling pathways to
pluripotency network | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] …

Molecular basis of embryonic stem cell self-renewal: from signaling pathways to pluripotency network.

G Huang, S Ye, X Zhou, D Liu… - Cellular & Molecular Life …, 2015 - search.ebscohost.com
Embryonic stem cells (ESCs) can be maintained in culture indefinitely while retaining the
capacity to generate any type of cell in the body, and therefore not only hold great promise …

Molecular basis of embryonic stem cell self-renewal: from signaling pathways to pluripotency network.

G Huang, S Ye, X Zhou, D Liu… - Cellular and Molecular Life …, 2015 - europepmc.org
Embryonic stem cells (ESCs) can be maintained in culture indefinitely while retaining the
capacity to generate any type of cell in the body, and therefore not only hold great promise …

[HTML][HTML] Molecular basis of embryonic stem cell self-renewal: from signaling pathways to pluripotency network

G Huang, S Ye, X Zhou, D Liu… - Cellular and molecular life …, 2015 - ncbi.nlm.nih.gov
Embryonic stem cells (ESCs) can be maintained in culture indefinitely while retaining the
capacity to generate any type of cell in the body, and therefore not only hold great promise …