N6-Monobutyryladenosine 3′:5′-cyclic monophosphate sodium salt

≥97.5% (HPLC)

Reagent Code: #64965
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CAS Number 70253-67-7

science Other reagents with same CAS 70253-67-7

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 421.28 g/mol
Formula C₁₄H₁₇N₅NaO₇P
badge Registry Numbers
MDL Number MFCD00057135
inventory_2 Storage & Handling
Storage −20°C

description Product Description

N6-Monobutyryladenosine 3′:5′-cyclic monophosphate sodium salt is widely used in biochemical research as a cell-permeable analog of cyclic AMP (cAMP). It mimics the action of cAMP, making it valuable in studying intracellular signaling pathways, particularly those involving protein kinase A (PKA) activation. This compound is frequently employed in experiments to investigate cellular processes such as gene expression, metabolism, and cell proliferation. Its stability and ability to penetrate cell membranes make it a useful tool for exploring cAMP-mediated responses in various cell types, including neuronal, cardiac, and immune cells. Additionally, it is utilized in pharmacological studies to evaluate the effects of cAMP signaling in disease models, aiding in the development of therapeutic strategies.

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inventory 25mg
10-20 days ฿16,101.00

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N6-Monobutyryladenosine 3′:5′-cyclic monophosphate sodium salt
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N6-Monobutyryladenosine 3′:5′-cyclic monophosphate sodium salt is widely used in biochemical research as a cell-permeable analog of cyclic AMP (cAMP). It mimics the action of cAMP, making it valuable in studying intracellular signaling pathways, particularly those involving protein kinase A (PKA) activation. This compound is frequently employed in experiments to investigate cellular processes such as gene expression, metabolism, and cell proliferation. Its stability and ability to penetrate cell membranes m
N6-Monobutyryladenosine 3′:5′-cyclic monophosphate sodium salt is widely used in biochemical research as a cell-permeable analog of cyclic AMP (cAMP). It mimics the action of cAMP, making it valuable in studying intracellular signaling pathways, particularly those involving protein kinase A (PKA) activation. This compound is frequently employed in experiments to investigate cellular processes such as gene expression, metabolism, and cell proliferation. Its stability and ability to penetrate cell membranes make it a useful tool for exploring cAMP-mediated responses in various cell types, including neuronal, cardiac, and immune cells. Additionally, it is utilized in pharmacological studies to evaluate the effects of cAMP signaling in disease models, aiding in the development of therapeutic strategies.
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