Ambient
Showing 72201–72250 of 149152 results
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CMPF-d3 (Major)
Molecular Formula : C12D5H11O5
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Cnidilin
Molecular Formula : C17H16O5
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Cnidilin
Molecular Formula : C17H16O5
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CNTF, Human
Ciliary Neurotrophic Factor (CNTF) is a cytokine belonging to the Interleukin 6 (IL-6) family, which also includes IL-6, Oncostatin M, Leukemia Inhibitory Factor (LIF), and Cardiotrophin-1. Structurally, CNTF resembles a four-helix bundle composition, similar to the other members of the IL-6 family. The receptor for CNTF is composed of three parts: a gp130-like subunit common in the IL-6 receptor family, a LIF Receptor β subunit, and a CNTF specific α receptor subunit. Upon binding to the CNTF, the β subunit of the CNTF receptor will undergo tyrosine phosphorylation, and activate the intracellular JAK/STAT pathway. The main function of CNTF in vivo is to promote the differentiation and survival of a variety of neurons and glial cells, including sympathetic precursor cells and spinal motor neurons.
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CNTF, Human
Ciliary Neurotrophic Factor (CNTF) is a cytokine belonging to the Interleukin 6 (IL-6) family, which also includes IL-6, Oncostatin M, Leukemia Inhibitory Factor (LIF), and Cardiotrophin-1. Structurally, CNTF resembles a four-helix bundle composition, similar to the other members of the IL-6 family. The receptor for CNTF is composed of three parts: a gp130-like subunit common in the IL-6 receptor family, a LIF Receptor β subunit, and a CNTF specific α receptor subunit. Upon binding to the CNTF, the β subunit of the CNTF receptor will undergo tyrosine phosphorylation, and activate the intracellular JAK/STAT pathway. The main function of CNTF in vivo is to promote the differentiation and survival of a variety of neurons and glial cells, including sympathetic precursor cells and spinal motor neurons.
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CNTF, Human
Ciliary Neurotrophic Factor (CNTF) is a cytokine belonging to the Interleukin 6 (IL-6) family, which also includes IL-6, Oncostatin M, Leukemia Inhibitory Factor (LIF), and Cardiotrophin-1. Structurally, CNTF resembles a four-helix bundle composition, similar to the other members of the IL-6 family. The receptor for CNTF is composed of three parts: a gp130-like subunit common in the IL-6 receptor family, a LIF Receptor β subunit, and a CNTF specific α receptor subunit. Upon binding to the CNTF, the β subunit of the CNTF receptor will undergo tyrosine phosphorylation, and activate the intracellular JAK/STAT pathway. The main function of CNTF in vivo is to promote the differentiation and survival of a variety of neurons and glial cells, including sympathetic precursor cells and spinal motor neurons.
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CNTF, Mouse
Ciliary neurotrophic factor (CNTF) is a polypeptide hormone whose actions appear to be restricted to the nervous system where it promotes neurotransmitter synthesis and neurite outgrowth in certain neuronal populations. CNTF was initially identified as a trophic factor for embryonic chick ciliary parasympathetic neurons in culture. Furthermore, the protein is also a potent survival factor for neurons and oligodendrocytes and may be relevant in reducing tissue destruction during inflammatory attacks. In addition, CNTF is useful for treatment of motor neuron disease and it could reduce food intake without causing hunger or stress. Recombinant murine CNTF containing 198 amino acids and it shares 82 % and 95 % a.a. sequence identity with human and rat CNTF.
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CNTF, Mouse
Ciliary neurotrophic factor (CNTF) is a polypeptide hormone whose actions appear to be restricted to the nervous system where it promotes neurotransmitter synthesis and neurite outgrowth in certain neuronal populations. CNTF was initially identified as a trophic factor for embryonic chick ciliary parasympathetic neurons in culture. Furthermore, the protein is also a potent survival factor for neurons and oligodendrocytes and may be relevant in reducing tissue destruction during inflammatory attacks. In addition, CNTF is useful for treatment of motor neuron disease and it could reduce food intake without causing hunger or stress. Recombinant murine CNTF containing 198 amino acids and it shares 82 % and 95 % a.a. sequence identity with human and rat CNTF.
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CNTF, Mouse
Ciliary neurotrophic factor (CNTF) is a polypeptide hormone whose actions appear to be restricted to the nervous system where it promotes neurotransmitter synthesis and neurite outgrowth in certain neuronal populations. CNTF was initially identified as a trophic factor for embryonic chick ciliary parasympathetic neurons in culture. Furthermore, the protein is also a potent survival factor for neurons and oligodendrocytes and may be relevant in reducing tissue destruction during inflammatory attacks. In addition, CNTF is useful for treatment of motor neuron disease and it could reduce food intake without causing hunger or stress. Recombinant murine CNTF containing 198 amino acids and it shares 82 % and 95 % a.a. sequence identity with human and rat CNTF.
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CNTF, Rat
Ciliary Neurotrophic Factor (CNTF) is a polypeptide hormone which acts within the nervous system where it promotes neurotransmitter synthesis and neurite outgrowth in certain neuronal populations. CNTF is a potent survival factor for neurons and oligodendrocytes and may play a role in reducing tissue damage during increased inflammation. A mutation in this gene, which results in aberrant splicing, leads to ciliary neurotrophic factor deficiency, however this phenotype is not causally related to neurologic disease.
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CNTF, Rat
Ciliary Neurotrophic Factor (CNTF) is a polypeptide hormone which acts within the nervous system where it promotes neurotransmitter synthesis and neurite outgrowth in certain neuronal populations. CNTF is a potent survival factor for neurons and oligodendrocytes and may play a role in reducing tissue damage during increased inflammation. A mutation in this gene, which results in aberrant splicing, leads to ciliary neurotrophic factor deficiency, however this phenotype is not causally related to neurologic disease.
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CNTF, Rat
Ciliary Neurotrophic Factor (CNTF) is a polypeptide hormone which acts within the nervous system where it promotes neurotransmitter synthesis and neurite outgrowth in certain neuronal populations. CNTF is a potent survival factor for neurons and oligodendrocytes and may play a role in reducing tissue damage during increased inflammation. A mutation in this gene, which results in aberrant splicing, leads to ciliary neurotrophic factor deficiency, however this phenotype is not causally related to neurologic disease.
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CO 1686
Molecular Formula : C27H28F3N7O3
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CO 1686
Molecular Formula : C27H28F3N7O3
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CO 1686
Molecular Formula : C27H28F3N7O3
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Cobalt (II) Chloride
Cobalt (II) Chloride
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Cobalt Bromide, Anhydrous
Cobalt Bromide, Anhydrous
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Cobalt Carbonyl (Stabilized with 1-5% Hexane)
Molecular Formula : C8Co2O8
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Cobalt Carbonyl (Stabilized with 1-5% Hexane)
Molecular Formula : C8Co2O8
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Cobalt Carbonyl (Stabilized with 1-5% Hexane)
Molecular Formula : C8Co2O8
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Cobalt Chloride Hexahydrate, ACS
Cobalt Chloride Hexahydrate
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Cobalt Chloride Hexahydrate, ACS
Cobalt Chloride Hexahydrate
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Cobalt Chloride Hexahydrate, ACS
Cobalt Chloride Hexahydrate
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Cobalt chloride hexahydrate, ACS
Cobalt Chloride Hexahydrate
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Cobalt chloride hexahydrate, ACS
Cobalt Chloride Hexahydrate
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Cobalt chloride hexahydrate, ACS
Cobalt Chloride Hexahydrate
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Cobalt Chloride Hexahydrate, cell culture reagent
Cobalt Chloride, Hexahydrate
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Cobalt Chloride Hexahydrate, cell culture reagent
Cobalt Chloride, Hexahydrate
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Cobalt Chloride Hexahydrate, cell culture reagent
Cobalt Chloride, Hexahydrate
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Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
Cobalt Chloride, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Gluconate, Anhydrous
Cobalt Gluconate, Anhydrous
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Cobalt Gluconate, Anhydrous
Cobalt Gluconate, Anhydrous
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Cobalt Gluconate, Anhydrous
Cobalt Gluconate, Anhydrous
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Cobalt Metal, 400 Mesh, Powder
Cobalt Metal, 400 Mesh, Powder
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Cobalt Metal, 400 Mesh, Powder
Cobalt Metal, 400 Mesh, Powder
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Cobalt Metal, 400 Mesh, Powder
Cobalt Metal, 400 Mesh, Powder
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Cobalt Nitrate Hexahydrate
Molecular Formula : Co(NO3)2 . 6H2O
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Cobalt Nitrate Hexahydrate
Molecular Formula : Co(NO3)2 . 6H2O
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Cobalt Nitrate Hexahydrate
Molecular Formula : Co(NO3)2 . 6H2O
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Cobalt Nitrate, Hexahydrate, Crystal, Reagent, ACS
Cobalt Nitrate, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Nitrate, Hexahydrate, Crystal, Reagent, ACS
Cobalt Nitrate, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Nitrate, Hexahydrate, Crystal, Reagent, ACS
Cobalt Nitrate, Hexahydrate, Crystal, Reagent, ACS
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Cobalt Nitrate, Hexahydrate, Crystal, Reagent, ACS
Cobalt Nitrate, Hexahydrate, Crystal, Reagent, ACS