Ambient
Showing 84001–84050 of 148542 results
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EPN
Molecular Formula : C14 H14 N O4 P S
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EPN
Molecular Formula : C14 H14 N O4 P S
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EPO, Human
Erythropoietin (EPO), a glycoprotein produced primarily by the kidney, is the principal factor that regulates erythropoiesis by stimulating the proliferation and differentiation of erythroid progenitor cells. The production of EPO by kidney cells is increased in response to hypoxia or anemia. Recombinant EPO has been approved for the treatment of anemia associated with chronic renal failure as well as for anemia of AZT treated AIDS patients.The cDNAs for EPO have been cloned from human, mouse, canine, etc. The mature proteins from the various species are highly conserved, exhibiting greater than 80% sequence identity at the amino acid level. Human EPO cDNA encodes a 193 amino acid residue precursor protein that is processed to yield a 165 amino acid residue mature protein. EPO contains one O-linked and three N-linked glycosylation sites. Glycosylation of EPO is required for EPO biological activities in vivo. EPO exhibits structural as well as amino sequence identity to the amino terminal 153 amino acid region of thrombopoietin.
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EPO, Human
Erythropoietin (EPO), a glycoprotein produced primarily by the kidney, is the principal factor that regulates erythropoiesis by stimulating the proliferation and differentiation of erythroid progenitor cells. The production of EPO by kidney cells is increased in response to hypoxia or anemia. Recombinant EPO has been approved for the treatment of anemia associated with chronic renal failure as well as for anemia of AZT treated AIDS patients.The cDNAs for EPO have been cloned from human, mouse, canine, etc. The mature proteins from the various species are highly conserved, exhibiting greater than 80% sequence identity at the amino acid level. Human EPO cDNA encodes a 193 amino acid residue precursor protein that is processed to yield a 165 amino acid residue mature protein. EPO contains one O-linked and three N-linked glycosylation sites. Glycosylation of EPO is required for EPO biological activities in vivo. EPO exhibits structural as well as amino sequence identity to the amino terminal 153 amino acid region of thrombopoietin.
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EPO, Human
Erythropoietin (EPO), a glycoprotein produced primarily by the kidney, is the principal factor that regulates erythropoiesis by stimulating the proliferation and differentiation of erythroid progenitor cells. The production of EPO by kidney cells is increased in response to hypoxia or anemia. Recombinant EPO has been approved for the treatment of anemia associated with chronic renal failure as well as for anemia of AZT treated AIDS patients.The cDNAs for EPO have been cloned from human, mouse, canine, etc. The mature proteins from the various species are highly conserved, exhibiting greater than 80% sequence identity at the amino acid level. Human EPO cDNA encodes a 193 amino acid residue precursor protein that is processed to yield a 165 amino acid residue mature protein. EPO contains one O-linked and three N-linked glycosylation sites. Glycosylation of EPO is required for EPO biological activities in vivo. EPO exhibits structural as well as amino sequence identity to the amino terminal 153 amino acid region of thrombopoietin.
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Epolamine
Molecular Formula : C6H13NO
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Epolamine
Molecular Formula : C6H13NO
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Epolamine
Molecular Formula : C6H13NO
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Epon 828, Technical Grade
Molecular Formula : No Data Available
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Epon 828, Technical Grade
Molecular Formula : No Data Available
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Epostane
Molecular Formula : C22 H31 N O3
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Epostane
Molecular Formula : C22 H31 N O3
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Epothilone A
Molecular Formula : C26H39NO6S
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Epothilone A
Molecular Formula : C26H39NO6S
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Epothilone A
Molecular Formula : C26H39NO6S
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Epothilone A
Epothilone A
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Epothilone A
Epothilone A
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Epothilone B
Epothilone B
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Epothilone B
Epothilone B
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Epothilone B (synthetic)
Molecular Formula : C27 H41 N O6 S
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Epothilone B (synthetic)
Molecular Formula : C27 H41 N O6 S
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Epothilone B-d3 (synthetic)
Molecular Formula : C27 D3 H38 N O6 S
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Epothilone B-d3 (synthetic)
Molecular Formula : C27 D3 H38 N O6 S
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Epothilone D (synthetic)
Molecular Formula : C26 H39 N O5 S
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Epothilone D (synthetic)
Molecular Formula : C26 H39 N O5 S
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Epothilone D (synthetic)
Molecular Formula : C26 H39 N O5 S
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Epoxiconazole
Molecular Formula : C17 H13 Cl F N3 O
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Epoxiconazole
Molecular Formula : C17 H13 Cl F N3 O
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Epoxiconazole
Molecular Formula : C17 H13 Cl F N3 O
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Epoxiconazole-d4
Molecular Formula : C17 D4 H9 Cl F N3 O
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Epoxiconazole-d4
Molecular Formula : C17 D4 H9 Cl F N3 O
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Epoxide Biperiden
Molecular Formula : C21 H29 N O2
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Epoxide Biperiden
Molecular Formula : C21 H29 N O2
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Epoxide Biperiden
Molecular Formula : C21 H29 N O2
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Epoxy Metradiene
Molecular Formula : C22 H28 O4
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Epoxy Metradiene
Molecular Formula : C22 H28 O4
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Epoxyazadiradione
Molecular Formula : C28 H34 O6
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Epoxyazadiradione
Molecular Formula : C28 H34 O6
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Epoxyazadiradione
Molecular Formula : C28 H34 O6
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Eprazinone Dihydrochloride
Molecular Formula : C24H34Cl2N2O2
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Eprazinone Dihydrochloride
Molecular Formula : C24H34Cl2N2O2
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Eprazinone Dihydrochloride
Molecular Formula : C24H34Cl2N2O2
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Eprinomectin
Molecular Formula : C50 H75 N O14 . C49 H73 N O14
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Eprinomectin (>85%)
Molecular Formula : C50 H75 N O14 . C49 H73 N O14
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Eprinomectin (>85%)
Molecular Formula : C50 H75 N O14 . C49 H73 N O14
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Eprinomectin-13CD3
Molecular Formula : 13C C49 D3 H72 N O14
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Eprinomectin-13CD3
Molecular Formula : 13C C49 D3 H72 N O14
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Eprinomectin-13CD3
Molecular Formula : 13C C49 D3 H72 N O14
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Eprodisate-D₆ Sodium
Molecular Formula : C3 D6 Na2 O6 S2
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Eprodisate-D₆ Sodium
Molecular Formula : C3 D6 Na2 O6 S2