hTERT Immortalized Cell Lines

ATCC human telomerase reverse transcriptase (hTERT) immortalized cell lines represent a breakthrough in cell biology research that combines the in vivo nature of primary cells with the traditional cell line's ability to survive continuously in vitro.
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Search a wide selection of cultures alphanumerically.
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Barrett's Esophageal Epithelial Cells

ATCC hTERT immortalized Barrett’s esophageal epithelial cells contain stable, defined cell cycle and genetic abnormalities, have an extended life span, and are karyotypically, morphologically, and phenotypically similar to the primary parent cells.
Lung endothelia carvalho

Bronchial Epithelial Cells

ATCC hTERT immortalized bronchial epithelial cells have an extended lifespan, consistently form an electrically tight epithelium, have a stable karyotype and are phenotypically similar to the primary parent cells.
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Chrondrocyte Fibroblast Cells

ATCC hTERT immortalized chondrocyte fibroblasts have an extended lifespan, and are karyotypically, morphologically, and phenotypically similar to the primary parent cells.

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Dermal Microvascular Endothelial Cells

ATCC hTERT immortalized dermal microvascular endothelial cells have an extended lifespan, express a panel of endothelial cell surface proteins, undergo tubule formation in culture and are karyotypically, morphologically, and phenotypically similar to the primary parent cells.
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Endometrial Fibroblast Cells

ATCC hTERT immortalized endometrial fibroblasts have an extended lifespan, display the biochemical endpoints of decidualization after hormone treatment and are karyotypically, morphologically, and phenotypically similar to the primary parent cells.
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Foreskin Keratinocytes

ATCC hTERT immortalized foreskin keratinocytes have an extended lifespan and are karyotypically, morphologically, and phenotypically similar to the primary parent cells.
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Mammary Epithelial Cells

ATCC hTERT immortalized mammary epithelial cells have an extended lifespan, do not express estrogen receptors, and are karyotypically, morphologically, and phenotypically similar to the primary parent cells.
Pancreatic cancer cells

Pancreas Duct Cells

ATCC hTERT immortalized pancreas duct cells have an extended lifespan, express nestin, and are karyotypically, morphologically, and phenotypically similar to the primary parent cells.
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Renal Epithelial Cells

ATCC hTERT immortalized renal epithelial cells have an extended lifespan, show phenotypic characteristics of angiomyolipomas, and are karyotypically, morphologically, and phenotypically similar to the primary parent cells.
Retinal Pigmentend Epithelial

Retinal Pigmented Epithelial Cells

ATCC hTERT immortalized RPE cell lines have an extended lifespan, undergo terminal differentiation, express RPE associated proteins, and are karyotypically, morphologically, and phenotypically similar to the primary parent cells.
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Skin Fibroblast Cells

ATCC hTERT immortalized skin fibroblasts have an extended lifespan, express PDGFR(beta) and are karyotypically, morphologically, and phenotypically similar to the primary parent cells.