GPCR/G Protein

Items 6751-6800 of 6977

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  1. Lipid

    C20:4 Anandamide (AEA) is a bioactive lipid that acts as an endocannabinoid, primarily targeting cannabinoid receptors in the central nervous system. This compound is known for its involvement in pain modulation, appetite regulation, and neuroprotection. C20:4 AEA is commonly utilized in research to investigate the physiological effects of endocannabinoids and their potential therapeutic applications in various neurological and inflammatory conditions.
  2. Biochemical Assay Reagent

    CGS 21680 sodium is an adenosine A2A receptor agonist that selectively activates the A2A receptor, influencing various signaling pathways. This compound exhibits biological activities such as modulation of neurotransmission and anti-inflammatory effects, making it useful in research involving neurological and cardiovascular studies. It is commonly employed in biochemical assays to explore the roles of adenosine receptors in cellular processes and their potential therapeutic applications.
  3. Biochemical Assay Reagent

    Oleoylsulfamide is a selective inhibitor of cannabinoid receptor 1 (CB1). This compound can be utilized as a biochemical assay reagent to investigate the role of CB1 in various physiological processes. It is particularly valuable in studies related to metabolic disorders, pain modulation, and neuroprotection.
  4. Lipid

    C17:1 Anandamide is a synthetic derivative of anandamide, a significant endocannabinoid that interacts primarily with cannabinoid receptors. This compound demonstrates key biological activities, including modulation of pain perception, appetite, and mood regulation. C17:1 Anandamide is useful for studying the endocannabinoid system and its implications in various therapeutic areas, such as neurobiology and pain management. Its unique lipid structure enables investigations into lipid signaling pathways and their role in cellular processes.
  5. Lipid

    NBD AA is a fluorescent analog of anandamide that selectively targets cannabinoid receptors. This compound plays a critical role in lipid signaling pathways and is utilized in studies examining endocannabinoid system functions. Its fluorescent properties make NBD AA an effective tool for visualizing lipid distribution and activity in live cell imaging and various biochemical assays.
  6. Lipid

    N-Arachidonoyl-L-Serine sodium is a lipid compound that acts as an analog of anandamide, a well-known endocannabinoid. This reagent exhibits important biological activities, including the modulation of pain sensation, inflammation, and neuroprotection. It is utilized in research exploring cannabinoid receptor pathways and their therapeutic potential in various neurological and inflammatory disorders.
  7. Lipid

    C18:2 Anandamide phosphate sodium is a phospholipid derivative of anandamide, acting primarily on cannabinoid receptors. This compound exhibits bioactive properties that influence lipid signaling pathways and modulate neuronal communication. It is applicable in research exploring endocannabinoid system dynamics, neuroprotection, and potential therapeutic avenues for neurological disorders.
  8. Lipid

    N-Oleoyl-L-serine sodium is an analog of anandamide that primarily targets lipid signaling pathways. This compound exhibits notable biological activity as a cannabinoid receptor modulator, influencing physiological processes such as pain perception and inflammation. It is frequently used in research applications focused on neurobiology and lipid metabolism.
  9. Platelet Aggregation Inhibitor

    Cloricromen is a potent platelet aggregation inhibitor that functions by targeting the mechanisms involved in thrombus formation. Demonstrating efficacy in inhibiting platelet aggregation in both human subjects and experimental models, Cloricromen is a valuable reagent for research in cardiovascular disease and thrombotic disorders. Its application in studying platelet function and related pathologies makes it an essential tool for investigations in vascular biology.
  10. Neuroleptic Agent

    Fenaperone hydrochloride is a neuroleptic agent that primarily targets dopamine receptors in the central nervous system. It exhibits antipsychotic properties, making it relevant for research in neurological disorders and psychiatric conditions. Its mechanism includes modulation of neurotransmitter activity, contributing to its potential therapeutic effects in various mental health applications.
  11. Biochemical Assay Reagent

    1,3-Dipropyl-7-methylxanthine is a selective antagonist of adenosine receptors, primarily targeting the A1 subtype. It exhibits potent inhibitory effects on adenosine-mediated signaling pathways, making it valuable in biochemical assays for studying adenosine receptor functions. This compound is commonly utilized in research examining cellular processes influenced by adenosine, such as neurotransmission, inflammation, and metabolic regulation.
  12. Biochemical Assay Reagent

    5'-Ethylcarboxamido-2',3'-isopropylidene adenosine is a selective agonist targeting A2B adenosine receptors. This compound enhances A2B receptor activity, making it valuable for investigating the physiological roles of adenosine signaling in various biological processes. It serves as a pertinent tool in biochemical assays and research applications aimed at understanding adenosine's effects and its potential as a therapeutic target in drug development.
  13. Biochemical Reagent

    Nestifylline is a biochemical reagent that functions primarily as an antagonist of adenosine receptors. It exhibits significant activity in modulating airway constriction, making it a valuable tool for studying respiratory diseases, particularly bronchospasm. Researchers can utilize Nestifylline to explore mechanisms underlying airway responsiveness and potential therapies for respiratory disorders.
  14. PGF2α Analog

    Fenprostalene is a potent analog of prostaglandin F2α (PGF2α) that primarily targets the prostaglandin pathway. This compound is effective in veterinary medicine for inducing corpus luteum regression and lowering blood progesterone levels in dogs. Its primary applications include the treatment of pyometra and the induction of abortion, making it a critical reagent in reproductive health studies and veterinary practices.
  15. Amino Acid Derivatives

    H-Lys(Fmoc)-OH hydrochloride is an amino acid derivative featuring an Fmoc protecting group. This compound serves as a key intermediate for the synthesis of diacylated GLP-1 derivatives, which possess antidiabetic properties. Its utility in peptide synthesis makes it an important reagent in chemical biology and drug development.
  16. Amino Acid Derivatives

    Boc-Leu-OH hydrate (N-Boc-L-leucine monohydrate) is a protected form of the amino acid leucine, featuring a Boc protecting group. It serves as a useful intermediate in peptide synthesis, particularly for the generation of L-prolyl-L-leucyl-glycinamide, a peptide mimetic known for its modulatory effects on dopamine receptors. This compound is valuable in research focused on neuropharmacology and peptide therapeutics.
  17. Stable Isotope

    Atenolol-d6 is a deuterium-labeled variant of the cardioselective β1-adrenergic receptor blocker, Atenolol. It exhibits a Ki of 697 nM at the β1-adrenoceptor in guinea pig left ventricle membranes. This stable isotope is instrumental in pharmacokinetic studies and research focused on hypertension and angina pectoris, allowing for improved metabolic tracing and analytical characterization in various biological assays.
  18. Stable Isotope

    Desloratadine-d5 hydrochloride is a stable isotope-labeled derivative of Desloratadine hydrochloride, designed for use in quantitative mass spectrometry applications. This compound retains the pharmacological properties of the parent drug while providing a valuable tool for understanding drug metabolism and pharmacokinetics. It is particularly suitable for research in allergology and histamine receptor studies, facilitating the assessment of drug interactions and efficacy in various biological systems.
  19. Lipid

    (−)-11-hydroxy-Δ8-THC is a phytocannabinoid that acts primarily as a cannabinoid receptor inhibitor. This compound exhibits significant biological activity in modulating lipid signaling pathways. It is utilized in research applications focused on neuropharmacology and the therapeutic potential of cannabinoids in various medical conditions.

  20. Drug Intermediate

    Fmoc-Lys(tBuO-Ara-Glu(AEEA-AEEA)-OtBu)-OH is a key drug intermediate in the synthesis of Tirzepatide, which functions as a dual agonist of the glucose-dependent insulinotropic peptide (GIP) and the glucagon-like peptide-1 receptor (GLP-1R). This compound is essential for research and development in diabetes therapeutics, as Tirzepatide enhances insulin secretion and improves glycemic control. Its structural features facilitate the exploration of peptide-based treatments for metabolic disorders.
  21. Piperazine

    1-Benzyl-3-methylpiperazine is a piperazine derivative that primarily functions as a monoamine receptor ligand. It exhibits significant activity at various serotonin and dopamine receptors, making it a valuable compound for research in neuropharmacology. This reagent is often utilized in studies exploring the effects of psychoactive substances and the mechanisms underlying mood regulation.
  22. Piperazine

    MDBP hydrochloride is a piperazine derivative that acts as a central nervous system modulator. It demonstrates significant biological activity by influencing serotonin and dopamine receptors, making it a valuable tool for neuroscience research. This compound is useful for investigating psychiatric disorders and exploring the pharmacological effects of piperazine analogs.
  23. Derivative of Clonidine

    Acetylclonidine is a derivative of Clonidine that targets imidazoline and adrenergic receptors. It exhibits biological activity in reducing intraocular pressure, making it a valuable reagent for research into ocular antihypertensive agents for the treatment of glaucoma. Its unique profile may provide insights into novel therapeutic approaches in ocular health.
  24. Amisulpride Photodegradation Product

    Amisulpride N-oxide is a photodegradation product of Amisulpride, which acts as a dopamine D2/D3 receptor antagonist. This compound may be relevant for studies investigating the stability and degradation pathways of Amisulpride under light exposure. Its characterization can aid researchers in understanding the pharmacokinetics and metabolic processes associated with dopamine receptor modulation.
  25. Aminoalkylindole Derivative

    7'-Methoxy NABUTIE is a derivative of aminoalkylindole that primarily targets cannabinoid receptors. This compound is recognized for its potential biological activity in modulating the effects associated with alcohol consumption. Research applications include investigations into the pathways of alcohol abuse and the exploration of therapeutic strategies for addiction.
  26. Platelet Aggregation Inhibitor

    4-Trifluoromethylsalicylic acid, also known as Desacetyl triflusal, functions as a platelet aggregation inhibitor. This compound is instrumental in research related to cardiovascular disorders, particularly in the study of thrombus formation and prevention. Its ability to modulate platelet activity makes it a valuable tool for investigating hematological processes and developing antithrombotic therapies.
  27. Tetrahydrocannabinol Analogues

    8-Oxo-Δ9-THC is an oxygenated analog of tetrahydrocannabinol that exhibits significant interaction with cannabinoid receptors in the endocannabinoid system. This compound demonstrates notable biological activity, which may influence various cellular signaling pathways involved in pain modulation, inflammation, and neuroprotection. Its potential applications include research into therapeutic effects associated with cannabinoid compounds as well as studies investigating the pharmacological properties of cannabis-derived substances.
  28. Desfluorinated Nebivolol Isomer

    Desfluoro nebivolol is a desfluorinated isomer of the antihypertensive agent nebivolol, primarily acting as a beta-adrenergic receptor blocker. This compound exhibits pharmacological activity related to cardiovascular regulation, making it relevant for research in hypertension and heart failure therapies. Its unique chemical structure allows for exploration of β-blockade mechanisms and potential therapeutic benefits, providing valuable insights for the development of cardiovascular treatments.
  29. Piperazine

    2-BZP is a piperazine compound that functions as a central nervous system stimulant by targeting serotonin and dopamine receptors. Its primary biological activity includes modulation of neurotransmitter release, making it useful in research related to neuropharmacology and behavioral studies. 2-BZP serves as a valuable tool for elucidating the mechanisms of psychostimulant effects and exploring potential therapeutic applications.
  30. Drug Derivative

    Cetamolol is a drug derivative that primarily targets beta-adrenergic receptors. It exhibits significant cardioprotective effects and is utilized in research focusing on cardiovascular pharmacology. Its ability to modulate heart rate and blood pressure makes it valuable for investigating hypertension and related cardiovascular disorders.
  31. Piperazine

    1-(3-Chloro-4-fluorophenyl)piperazine hydrochloride is a piperazine derivative that acts as a potent and selective modulator of various neurotransmitter systems. This compound is primarily utilized in neuroscience research to investigate its effects on serotonin and dopamine receptors, contributing to the understanding of mood disorders and psychotropic drug action. Its unique chemical structure makes it valuable for studies related to pharmacology and medicinal chemistry.
  32. Drug Derivative

    1(R)-Tetrahydrocannabidiol is a drug derivative known for its interaction with cannabinoid receptors. It exhibits potential neuroprotective activity, making it a valuable tool for investigating neurological diseases and disorders. This compound facilitates research into the therapeutic effects of cannabinoids in various neurobiological contexts.
  33. Antiplatelet Aggregation Agent

    Imolamine is a potent antiplatelet aggregation agent that functions through the modulation of platelet activation pathways. As a phenyl aminoxidiazole derivative, it demonstrates significant anti-thrombotic activity, making it a valuable tool for studying platelet biology and associated disorders. This compound is relevant for research into coronary heart disease and other cardiovascular conditions where platelet aggregation plays a critical role.
  34. α1 Adrenergic Receptor Agonist

    Phenylephrine hydrochloride is an α1 adrenergic receptor agonist primarily used as a sympathomimetic agent. It induces vasoconstriction and increases perfusion pressure, making it valuable in clinical settings for managing hypotension and as a decongestant. Researchers utilize Phenylephrine hydrochloride to study cardiovascular responses and the pharmacological effects of adrenergic activation in various biological systems.
  35. Drug Intermediate

    1-epi-Regadenoson ethyl ester is a key intermediate in the synthesis of the α-isomer impurity of Regadenoson, a highly selective agonist for the adenosine A2A receptor. This compound is essential for research involving adenosine receptor biology and contributes to the understanding of cardiovascular function and cellular signaling pathways. Its application extends to the development and analysis of therapeutic agents targeting adenosine receptors.
  36. Synthetic Cannabinoid

    5-Fluoropentylindole serves as a synthetic cannabinoid that primarily targets cannabinoid receptors in the central nervous system. This compound exhibits significant affinity for CB1 receptors, making it a valuable tool for studying the endocannabinoid system and its associated signaling pathways. 5-Fluoropentylindole is applicable in pharmacological research and may aid in investigating the effects of synthetic cannabinoids on physiological processes and potential therapeutic outcomes.
  37. Drug Intermediate

    1-epi-Regadenoson hydrazone serves as a crucial intermediate in the synthesis of the α-isomer impurity of Regadenoson, a selective adenosine A2A receptor agonist. Its role in the development of this compound is significant for research in cardiovascular pharmacology and adenosine receptor modulation. This reagent is essential for investigations into therapeutic applications targeting the A2A receptor pathway.
  38. Drug Impurity

    Mirabegron impurity 10 is a known impurity associated with the pharmacological agent Mirabegron, a selective beta-3 adrenergic receptor agonist. It is crucial for studies focused on drug purity and stability, as well as for understanding the synthesis and degradation pathways of Mirabegron. This impurity serves as a reference standard for analytical methods and quality control processes in pharmaceutical development and research applications.
  39. Drug Impurity

    Salbutamol impurity 7 is a known impurity of the bronchodilator Salbutamol, which primarily targets beta-2 adrenergic receptors. This compound is important for analytical research and quality control in pharmaceutical development to ensure the purity and safety of Salbutamol formulations. Its presence can influence pharmacokinetics and therapeutic efficacy, making it relevant for studies focused on drug metabolism and impurities.
  40. Drug Impurity

    Paliperidone impurity 3 is a known impurity of the antipsychotic agent Paliperidone, which primarily targets dopamine receptors. This compound is utilized in pharmaceutical research for quality control and to assess the purity of Paliperidone formulations. It serves as a crucial reference standard in the development and validation of analytical methods, ensuring compliance with regulatory standards in drug production.
  41. Drug Intermediate

    2,6-Dichloropurine is a pharmaceutical intermediate primarily utilized in the synthesis of various drug candidates. This compound plays a key role in the development of phosphodiesterase (PDE) inhibitors, human A3 adenosine receptor antagonists, and cyclin-dependent kinase (CDK) inhibitors. Its versatile chemical structure makes it a valuable reagent in biomedical research and pharmaceutical development.
  42. Drug Derivative

    Methiomeprazine is a drug derivative primarily targeting the dopaminergic system. It exhibits significant antipsychotic and sedative properties, making it valuable in the treatment of various psychiatric disorders. Methiomeprazine is commonly used in research related to neuropharmacology and the exploration of dopamine receptor interactions. Its efficacy in managing behavioral symptoms also positions it as a candidate for studies on mental health therapies.
  43. Biochemical Assay Reagent Control

    N-Formyl desloratadine is an inhibitor targeting the H1 histamine receptor, primarily utilized as a biochemical assay reagent control. This compound demonstrates significant antihistamine activity, making it an essential tool for research related to allergic responses and histamine receptor activity. Its use in pharmacological studies allows for the assessment of H1 receptor modulation and the investigation of allergic conditions.
  44. Biochemical Assay Reagent

    Duoperone is a neuroleptic agent that acts primarily by antagonizing dopamine receptors. This compound exhibits significant antiemetic properties in various animal models, making it valuable for studies related to nausea and psychotic disorders. Its applications extend to biochemical assays that investigate neurotransmitter dynamics and the pharmacological evaluation of antipsychotic drugs.
  45. Biochemical Assay Reagent Control

    Clenhexerol is a selective beta-adrenergic agonist that primarily targets beta-2 adrenergic receptors. This compound exhibits biological activity by stimulating smooth muscle relaxation and inducing bronchodilation. It is commonly used as a biochemical assay reagent control in research focused on respiratory diseases, pharmacological studies, and the exploration of adrenergic signaling pathways.
  46. Ester Product

    (9Z,11E)-Octadecadien ethanolamide is an ester product that serves as a bioactive lipid mediator. It is known to modulate endocannabinoid receptor activity and influences various physiological processes, including pain perception and inflammation. This compound is primarily utilized in research focused on lipid signaling pathways, cannabinoid receptor studies, and neurobiology.
  47. Biochemical Assay Reagent

    NBD AEA is a fluorescent derivative of anandamide (arachidonoylethanolamide) designed for use as a biochemical assay reagent. This compound serves as a valuable tool for studying cannabinoid receptors and endocannabinoid signaling pathways. It enables the visualization and quantification of AEA interactions in various biological systems, facilitating research in pharmacology and neurobiology.
  48. Drug Impurity

    Mirabegron impurity 6 is a recognized impurity of the pharmaceutical compound Mirabegron, which primarily acts as a β3-adrenergic receptor agonist. It serves as an important reference standard for quality control in the synthesis and analysis of Mirabegron and is crucial in ensuring the purity and efficacy of the drug. This impurity can assist in research applications involving pharmacokinetics, safety assessments, and metabolic studies of β3-adrenergic modulators.
  49. Drug Impurity

    Tamsulosin impurity 15 is a chemical impurity associated with the pharmaceutical compound Tamsulosin, which primarily targets alpha-1 adrenergic receptors. This impurity is relevant for quality control and characterization in the development and analysis of Tamsulosin formulations. Research applications include assessing the purity and safety profiles of Tamsulosin in pharmaceutical formulations.
  50. Drug Impurity

    (S)-Tamsulosin hydrochloride is a chiral impurity associated with the pharmaceutical compound tamsulosin, primarily targeting alpha-1 adrenergic receptors. This reagent may serve a critical role in the analytical characterization and quality control of tamsulosin formulations. Its presence can impact the pharmacological profile and efficacy of the drug, making it an essential component for research and development in pharmaceutical sciences.

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