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Metabolism

Metabolism is a subcategory of signaling pathways that involves the chemical reactions and processes that occur within an organism to maintain life. These metabolic pathways play a crucial role in converting food into energy, building and repairing cells, and regulating various physiological functions.

Metabolism is a highly regulated process that is controlled by intricate signaling pathways involving enzymes, hormones, and other signaling molecules. These pathways help to coordinate the utilization and storage of nutrients, as well as regulate metabolic processes in response to changing environmental conditions.

Disruption of metabolic signaling pathways can lead to various health issues, including metabolic disorders such as diabetes, obesity, and cardiovascular disease. Understanding the intricate signaling pathways involved in metabolism is crucial for developing treatments and interventions to manage and prevent these conditions.

Overall, metabolism is a vital subcategory of signaling pathways that plays a fundamental role in maintaining homeostasis and ensuring the proper functioning of the body’s cells and tissues. By studying these pathways, researchers can gain insights into how metabolism is regulated and how it can be targeted for therapeutic purposes.

Product Search

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2,3-dihydrothieno-Thiadiazole Carboxylate, C4562, C6H4N2O2S2, CYP450 enzymes (CYP2E1 and CYP2B4) inhibitor
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N-Arachidonyl Maleimide, C4534, C24H35NO2, monoacylglycerol lipase (MGL) or MGL-like activity inhibitor
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6,7-Dimethyltetrahydropterin (hydrochloride), C4526, C8H13N5O·HCl, GTP cyclohydrolase I inhibitor
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6-Aminonicotinamide, C4497, C6H7N3O, 6-phosphogluconate dehydrogenase inhibitor
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4-phenyl-5-methyl-1,2,3-Thiadiazole, C4429, C9H8N2S, CYP2B4 and CYP2E1 inhibitor
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Simvastatin (sodium salt), C4426, C25H41NaO6, HMG-CoA reductase inhibitor
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Halopemide, C4385, C21H22ClFN4O2, phospholipase D (PLD) inhibitor
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BW 755C, C4371, C10H10F3N3, dual inhibitor of 5-lipoxygenase (5-LO) and cyclooxygenase (COX) pathways
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Adenosine-5′-diphosphate, C4341, C10H15N5O10P2, central component of energy storage, metabolism, and signal transduction in vivo;agonist of purinergic receptors
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4-(n-nonyl) Benzeneboronic Acid, C4279, C15H25BO2, FAAH and MAGL inhibitor

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