Results 251 to 260 of about 537,037 (306)
Primed bovine embryonic stem cell lines can be derived at diverse stages of blastocyst development with similar efficiency and molecular characteristics. [PDF]
Guiltinan C +5 more
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Petri net modeling and simulation of post-transcriptional regulatory networks of human embryonic stem cell (hESC) differentiation to cardiomyocytes. [PDF]
Hansel-Fröse AFF +4 more
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The efficacy of an embryonic stem cell-based vaccine for lung cancer prevention depends on the undifferentiated state of the stem cells. [PDF]
Meng S +4 more
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Correction: CXCL13 suppresses liver regeneration through the negative regulation of HGF signaling
Qun Zhao +11 more
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RNA-Mediated Regulation of Glycolysis in Embryonic Stem Cell Pluripotency and Differentiation. [PDF]
Fan W, Li X.
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Stem Cells and Development, 2007
Stem cells are unique cell populations with the ability to choose between self-renewal and differentiation. Embryonic stem (ES) cells have the ability to form any fully differentiated cell of the body. To date, only three species of mammals have yielded long-term cultures of self-renewing ES cells- mice, monkeys, and humans.
Atindriya, Biswas, Robert, Hutchins
openaire +2 more sources
Stem cells are unique cell populations with the ability to choose between self-renewal and differentiation. Embryonic stem (ES) cells have the ability to form any fully differentiated cell of the body. To date, only three species of mammals have yielded long-term cultures of self-renewing ES cells- mice, monkeys, and humans.
Atindriya, Biswas, Robert, Hutchins
openaire +2 more sources
Neurosurgery Clinics of North America, 2007
Human embryonic stem cells (hESCs) are stable in terms of their pluripotency, karyotype, global gene expression, ability to repair DNA and maintain telomerase levels, and growth characteristics. hESCs offer a renewable source of a wide range of cell types for use in research and cell-based therapies to treat disease.
Cleo, Choong, Mahendra S, Rao
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Human embryonic stem cells (hESCs) are stable in terms of their pluripotency, karyotype, global gene expression, ability to repair DNA and maintain telomerase levels, and growth characteristics. hESCs offer a renewable source of a wide range of cell types for use in research and cell-based therapies to treat disease.
Cleo, Choong, Mahendra S, Rao
openaire +2 more sources
2014
Embriyonik kök hücre, embriyoda erken evrede bulunan totipotent kök hücreler olarak tanımlanırlar. Embriyonik kök hücreler, erken embriyonik dönemde inner cell mass (ICM) kısmından elde edilir ve in vitro olarak bütün somatik hücrelere dönüşebilme yeteneği vardır.
Irina Klimanskaya +2 more
openaire +3 more sources
Embriyonik kök hücre, embriyoda erken evrede bulunan totipotent kök hücreler olarak tanımlanırlar. Embriyonik kök hücreler, erken embriyonik dönemde inner cell mass (ICM) kısmından elde edilir ve in vitro olarak bütün somatik hücrelere dönüşebilme yeteneği vardır.
Irina Klimanskaya +2 more
openaire +3 more sources

