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2924 results for "Ethylenglycol-[D4]&amp"

2924 Results for: "Ethylenglycol-[D4]&amp"

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Ethylene glycol-[D₄] (98% D), Sigma-Aldrich®

Supplier: Merck

Ethylene glycol-[D₄] (98% D), Sigma-Aldrich®

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Anti-PDE4D Rabbit Polyclonal Antibody (Cy5.5®)

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (Cy3®)

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (Cy5®)

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (Cy7®)

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (HRP (Horseradish Peroxidase))

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (Alexa Fluor® 680)

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (Alexa Fluor® 555)

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (Alexa Fluor® 350)

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (Alexa Fluor® 647)

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (FITC (Fluorescein Isothiocyanate))

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (Alexa Fluor® 750)

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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Anti-PDE4D Rabbit Polyclonal Antibody (Alexa Fluor® 488)

Supplier: Bioss

Cyclic AMP-dependent phosphodiesterase type D (PDE4D) family is comprise of 5 variants (PDE4D1, D2, D3, D4 and D5). One or more PDE4D subtype variants are ubiquitously present in all mammalian cells. In CNS all five PDE4D subtype variants are expressed in varying ratios and their activity is regulated in tandem with GPCRs stimulation. Peripheral tissues also exhibit differential expression of PDE4D variants. PDE4D1/D2 mRNA levels rise in response to an increase in cAMP. Short term regulation of PDE4D variants involved PKA, MAP kinases and Erk2 phosphorylation that results in rapid change in their enzymatic activities. Other regulatory mechanism involved protein protein interactions with cytoskeletal scaffolding proteins.

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2-Ethoxyethanol ≥99%, TECHNICAL

2-Ethoxyethanol ≥99%, TECHNICAL

Supplier: VWR Chemicals

2-Ethoxyethanol ≥99%, TECHNICAL

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2-Ethoxyethanol for synthesis, Sigma-Aldrich®

Supplier: Merck

2-Ethoxyethanol for synthesis, Sigma-Aldrich®

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Ethylene glycol monomethyl ether (2-methoxyethanol), Supelco®

Supplier: Merck

Ethylene glycol monomethyl ether (2-methoxyethanol), Supelco®

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Ethylene glycol monomethyl ether (2-methoxyethanol), Millipore®

Supplier: Merck

Ethylene glycol monomethyl ether (2-methoxyethanol), Millipore®

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2-Ethoxyethanol ≥99.5%, AnalaR NORMAPUR® analytical reagent

2-Ethoxyethanol ≥99.5%, AnalaR NORMAPUR® analytical reagent

Supplier: VWR Chemicals

2-Ethoxyethanol ≥99.5%, AnalaR NORMAPUR® analytical reagent

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Ethylene glycol, Supelco®

Supplier: Merck

Ethylene glycol, Supelco®

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Ethylene glycol monomethyl ether (2-methoxyethanol) ≥99%

Supplier: Thermo Fisher Scientific

Ethylene glycol monomethyl ether (2-methoxyethanol) ≥99%

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2-Ethoxyethanol 99%, extra pure

2-Ethoxyethanol 99%, extra pure

Supplier: Thermo Fisher Scientific

2-Ethoxyethanol 99%, Extra Pure

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Ethylene glycol VLSI, Electronic Grade

Ethylene glycol VLSI, Electronic Grade

Supplier: VWR Chemicals

Ethylene glycol VLSI, Electronic Grade

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Ethylene glycol monomethyl ether (2-methoxyethanol) ≥99.5%, AnalaR NORMAPUR® Reag. Ph. Eur., ACS analytical reagent

Ethylene glycol monomethyl ether (2-methoxyethanol) ≥99.5%, AnalaR NORMAPUR® Reag. Ph. Eur., ACS analytical reagent

Supplier: VWR Chemicals

Ethylene glycol monomethyl ether (2-methoxyethanol) ≥99.5%, AnalaR NORMAPUR® Reag. Ph. Eur., ACS analytical reagent

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Ethylene glycol, BAKER ANALYZED®, Laboratory Reagent, J.T.Baker®

Supplier: Avantor

Ethylene glycol, BAKER ANALYZED®, Laboratory Reagent, J.T.Baker®

   Sustainable Options Available
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Ethylene glycol, EMPLURA®, Supelco®

Supplier: Merck

Ethylene glycol, EMPLURA®, Supelco®

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Ethylene glycol monomethyl ether (2-methoxyethanol) ≥99.3% ACS

Supplier: Thermo Fisher Scientific

Ethylene glycol monomethyl ether (2-methoxyethanol) ≥99.3% ACS

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Ethylene glycol ≥99%

Supplier: Thermo Fisher Scientific

Ethylene glycol ≥99%

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Ethylene glycol, CMOS for microelectronic, J.T.Baker®

Ethylene glycol, CMOS for microelectronic, J.T.Baker®

Supplier: Avantor

Ethylene glycol, CMOS for microelectronic, J.T.Baker®

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Ethylene glycol monomethyl ether (2-methoxyethanol) 99+%, extra pure

Ethylene glycol monomethyl ether (2-methoxyethanol) 99+%, extra pure

Supplier: Thermo Fisher Scientific

Ethylene glycol monomethyl ether (2-methoxyethanol) 99+%, Extra Pure

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