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  1. Drug Impurity

    Azilsartan impurity 9, also known as Azilsartan impurity H, is a chemical reagent classified as a drug impurity of Azilsartan. It is utilized primarily for quality control and analytical applications in pharmaceutical research, particularly in the analysis of drug formulations. Understanding and quantifying impurities like Azilsartan impurity 9 is essential for ensuring the safety and efficacy of pharmaceutical products.
  2. Drug Impurity

    Roflumilast impurity 2 is a chemical byproduct associated with Roflumilast, a phosphodiesterase-4 (PDE4) inhibitor. This impurity is significant for analytical and quality control studies in pharmaceutical research, ensuring the integrity and safety of formulations containing Roflumilast. Its identification and quantification are essential for regulatory compliance and the development of therapeutic applications.
  3. Drug Impurity

    Tacrolimus impurity 5 is a known impurity of the immunosuppressant drug Tacrolimus, which targets the protein phosphatase Calcineurin. This reagent can be utilized in analytical chemistry for the characterization and quantification of Tacrolimus formulations. Its study is important for ensuring the quality and safety of pharmaceutical products involving Tacrolimus.
  4. Drug Impurity

    Canagliflozin tetraacetate is a chemical impurity associated with the SGLT2 inhibitor Canagliflozin. It is primarily used as a reference standard for analytical and quality control purposes in pharmaceutical research. The identification and quantification of this impurity are important for evaluating the purity and safety profiles of Canagliflozin in drug development and formulation studies.
  5. Drug Impurity

    Tenofovir isoproxil monoester is a drug impurity of interest primarily in the synthesis and quality control of antiviral medications. This compound serves as a critical marker in pharmacokinetic studies and can be utilized in analytical applications to ensure the integrity and safety of Tenofovir formulations. It plays a significant role in the assessment of drug purity and regulatory compliance within pharmaceutical research.
  6. Drug Impurity

    4-(2-(tert-Butylamino)ethyl)-2-methylphenol, also known as Salbutamol Impurity, is a known impurity of the bronchodilator Salbutamol. This compound serves as a critical reference standard for the identification and quantification of impurities in pharmaceutical formulations. Its detection is essential in ensuring the purity and quality of Salbutamol during analytical assessments in drug development and manufacturing processes.
  7. Drug Impurity

    Levofloxacin impurity 11 is a synthetic impurity associated with Levofloxacin. This compound serves as an important analytical standard for quality control in pharmaceutical research and development. Its characterization is critical for ensuring the purity and efficacy of Levofloxacin formulations, contributing to the overall safety profile of the drug in clinical applications.
  8. Drug Impurity

    Salbutamol impurity 8 (N-Benzyl albuterol) is a chemical impurity associated with the pharmaceutical agent Salbutamol. It serves as a reference standard for the identification and quantification of impurities during quality control processes in drug development and manufacturing. This compound is essential for ensuring the safety and efficacy of Salbutamol formulations in respiratory therapeutic applications.
  9. Drug Impurity

    Clindamycin palmitate impurity 7, also known as Clindamycin stearate, is a characterized drug impurity associated with clindamycin formulations. It is primarily relevant in the assessment of drug purity and quality control processes. This compound is utilized in pharmaceutical research and development to ensure the integrity and safety of antibiotic formulations, providing critical insights into impurity profiles and their potential impact on therapeutic efficacy.
  10. Drug Intermediate

    3-Dimethylaminooxalyl-4-acetylindole serves as an important intermediate in the synthesis of Psilocin and Psilocybin, two significant compounds in psychedelic research. This reagent enables the preparation of these psychoactive substances, facilitating studies on their biological effects and therapeutic potential. Its role as a synthetic precursor is vital for advancing research within the fields of pharmacology and neurobiology.
  11. Drug Impurity

    Budesonide impurity 85, also known as 21-Dehydro budesonide, is a drug impurity associated with the corticosteroid Budesonide. This compound serves as an important analytical standard for quality control in pharmaceutical formulations. Its examination is critical for ensuring the purity of Budesonide products and for assessing their safety and efficacy in clinical applications.
  12. Drug Impurity

    Apixaban Impurity 19 is a chemical impurity associated with the anticoagulant drug Apixaban. This compound is critical for quality control and analytical studies in pharmaceutical research, enabling researchers to assess the purity and safety of Apixaban formulations. It serves as a reference standard for method validation and impurity profiling in drug development and compliance testing.
  13. Drug Impurity

    Alfacalciferol impurity 1 is a characterized impurity associated with the active form of vitamin D, Alfacalciferol. This compound is relevant in the assessment of drug purity and quality control in pharmaceutical formulations that contain Alfacalciferol. Its presence can be significant in understanding the pharmacokinetics and metabolic pathways of vitamin D compounds in biological research.
  14. Drug Impurity

    Betamethasone valerate impurity 2 is a drug impurity associated with Betamethasone valerate. It serves as an important marker for quality control and characterization in pharmaceutical formulations. Its identification and analysis are crucial for ensuring the purity and safety of corticosteroid products used in various therapeutic applications.
  15. Drug Impurity

    Ketoprofen Impurity 1 is a known impurity of the non-steroidal anti-inflammatory drug (NSAID) Ketoprofen. It serves as a valuable standard for quality control and analytical applications in pharmaceutical research. Studying this impurity aids in understanding the metabolic profile and potential degradation pathways of Ketoprofen, ensuring the integrity of formulations containing this compound.
  16. Drug Impurity

    Levetiracetam impurity 3 is a chemical impurity associated with the anticonvulsant drug Levetiracetam. This impurity may be utilized in analytical chemistry studies to assess the purity and stability of Levetiracetam formulations. It is valuable for researchers analyzing drug composition and conducting quality control assessments in pharmaceutical development.
  17. Drug Impurity

    Alfuzosin EP impurity 1 hydrochloride, also known as 2,3,4,5-Tetradehydro alfuzosin hydrochloride, is a recognized impurity of Alfuzosin hydrochloride. This compound is essential for evaluating the purity and stability of alfuzosin formulations in pharmaceutical development. Researchers may utilize this impurity in studies assessing drug quality, pharmacokinetics, and mechanism of action related to alpha-1 adrenergic receptor antagonism.
  18. Drug Impurity

    Imatinib impurity 21 is a known impurity related to the tyrosine kinase inhibitor Imatinib. This compound serves as an important reference standard in analytical chemistry to evaluate the purity and stability of Imatinib formulations. Its analysis is critical for ensuring compliance with regulatory standards in the pharmaceutical industry and for assessing potential biological impacts in drug safety studies.
  19. Drug Impurity

    Azilsartan impurity 31 is a known impurity associated with Azilsartan, an angiotensin II receptor antagonist. This compound is primarily used in pharmaceutical research to ensure the quality and purity of Azilsartan formulations. Its characterization is crucial for regulatory compliance and assessment of potential effects in drug safety evaluations.
  20. Drug Impurity

    Losartan impurity 19, also known as N1-Losartanyl-losartan, is a specific impurity associated with the angiotensin II receptor antagonist Losartan. This compound is used primarily for analytical purposes in quality control and characterization of Losartan formulations. It aids in the assessment of the purity and stability of Losartan products, ensuring compliance with regulatory standards in pharmaceutical research and development.
  21. Drug Impurity

    Levothyroxine impurity 14, also known as 3-Chloro-3’,5,5’-triiodo-L-thyronine, is classified as a drug impurity. This compound may arise during the synthesis or degradation of levothyroxine and is essential for assessing the purity and quality of pharmaceutical formulations. Its identification and quantification are critical in ensuring product safety and efficacy in thyroid hormone therapies.
  22. Drug Impurity

    Crizotinib impurity 1 is a noted impurity associated with the targeted therapy Crizotinib, primarily acting on the anaplastic lymphoma kinase (ALK) and c-MET pathways. This compound is essential for assessing the purity of Crizotinib formulations in pharmaceutical development and quality control. Its analysis is crucial for ensuring compliance with regulatory standards related to drug safety and efficacy.
  23. Drug Impurity

    Levofloxacin impurity 8 is a known impurity of the antibiotic Levofloxacin. It serves as a critical reference standard for assessing the purity and quality of pharmaceutical formulations containing Levofloxacin. This compound is essential for analytical studies and regulatory compliance, particularly in the development and quality control of antibacterial drugs.
  24. Drug Intermediate

    Caspofungin impurity A is a byproduct formed during the synthesis of Caspofungin, a potent antifungal agent targeting β-(1,3)-D-glucan in the fungal cell wall. This impurity serves as a valuable drug intermediate for research and analysis in antifungal drug development. Its study aids in understanding the synthesis process and the characterization of related compounds within the context of pharmaceutical applications.
  25. Drug Impurity

    Olmesartan Impurity 5 is a chemical byproduct associated with the synthesis of Olmesartan, an antihypertensive agent. This impurity serves as a reference standard for quality control and regulatory compliance in pharmaceutical research. It is critical for analytical method development and validation, ensuring the purity and safety of Olmesartan in drug formulations.
  26. Drug Impurity

    Donepezil impurity 13 is a chemical impurity associated with Donepezil, a reversible inhibitor of acetylcholinesterase. It serves as an important reference standard in analytical chemistry for the assessment of pharmaceutical purity. This compound is utilized in the quality control and stability testing of Donepezil formulations, ensuring compliance with regulatory standards in drug development and manufacturing processes.
  27. Drug Impurity

    Grazoprevir impurity 1 is a structural variant of Grazoprevir, a direct-acting antiviral agent targeting the hepatitis C virus (HCV) protease. This impurity is utilized in analytical chemistry for impurity profiling and quality control in pharmaceutical development. Its characterization is essential for ensuring the purity and safety of Grazoprevir formulations in research and clinical applications.
  28. Drug Impurity

    Abacavir impurity 6 is a metabolite of Abacavir, primarily identified as a drug impurity. This compound may be of interest during the quality control and analytical assessment of Abacavir formulations. Its presence can provide insights into the stability and degradation pathways of the active pharmaceutical ingredient in biological and pharmaceutical research.
  29. Drug Impurity

    Candesartan impurity 18 is a known impurity associated with the angiotensin II receptor antagonist, Candesartan. This compound serves as a reference standard for quality control and analytical studies in pharmaceutical development. It is essential for ensuring the integrity and compliance of Candesartan formulations in research and development settings.
  30. Drug Impurity

    Simvastatin impurity 3 is a chemical impurity associated with the cholesterol-lowering agent Simvastatin. This compound is primarily utilized in drug formulation analysis to identify and quantify impurities in the synthesis of Simvastatin. Its presence is critical for ensuring the quality and safety of pharmaceutical products, making it an essential reagent for regulatory compliance and formulation development in the pharmaceutical industry.
  31. Drug Impurity

    Trazodone impurity 19 is a known impurity associated with the antidepressant trazodone. It plays a significant role in quality control and assessment within pharmaceutical development, helping to ensure the purity and safety of drug formulations. This compound can be utilized in research applications to study trazodone's stability and degradation pathways, facilitating the development of more effective antidepressant therapies.
  32. Drug Impurity

    Azilsartan impurity 20, also known as Azilsartan amidoxime, is a chemical impurity associated with the pharmaceutical compound Azilsartan. Its presence is important for ensuring the quality and safety of pharmaceutical formulations. This compound is primarily utilized in quality control and analytical research to assess the purity of Azilsartan and evaluate its synthesis processes.
  33. Drug Impurity

    Sofosbuvir impurity 5 is a known impurity of the antiviral drug Sofosbuvir, which targets the RNA-dependent RNA polymerase of hepatitis C virus. This compound is essential for analytical research and quality control in the development of Sofosbuvir formulations. Its characterization and quantification are important for ensuring the purity and efficacy of the final pharmaceutical product.
  34. Drug Impurity

    Irbesartan impurity 1 is a byproduct associated with the synthesis of Irbesartan, an angiotensin II receptor blocker. This chemical is essential for quality control and method validation in pharmaceutical research and development. Its characterization is crucial for ensuring the safety and efficacy of the final drug product, supporting regulatory compliance and analytical assessments.
  35. Drug Impurity

    Amlodipine impurity 3 is a specific impurity associated with the calcium channel blocker Amlodipine. This compound is significant for drug quality assessments and regulatory compliance in pharmaceutical research. It is utilized in the development and validation of analytical methods for the quantification and characterization of impurities in drug formulations.
  36. Drug Impurity

    Aripiprazole impurity 26, also known as N-(Chloroacetyl)-m-anisidide, is identified as a drug impurity associated with Aripiprazole. This compound is of interest for analytical chemistry and quality control in pharmaceutical research, assisting in the characterization and validation of drug substances. Its presence may be relevant in studying the purity and stability of Aripiprazole formulations.
  37. Drug Impurity

    Candesartan impurity 10 is a structural impurity related to Candesartan, an angiotensin II receptor blocker. This compound is primarily utilized for quality control and analytical purposes in the development and production of Candesartan pharmaceuticals. Its identification and quantification are essential for ensuring the purity and regulatory compliance of Candesartan formulations in drug development.
  38. Drug Impurity

    Salmeterol impurity 4, also known as Salmeterol impurity G, is a known impurity associated with the beta-2 adrenergic agonist Salmeterol. Its presence is important for quality control and analytical studies of Salmeterol formulations. Researchers can utilize this impurity to assess the purity and stability of Salmeterol during drug development processes.
  39. Drug Impurity

    Telmisartan impurity 6 is a synthetic byproduct of Telmisartan, functioning primarily as a drug impurity. It is important for quality control and analytical studies in pharmacological research, assisting in the assessment of pharmaceutical formulations and safety profiles. This impurity is useful in understanding the stability and degradation pathways of Telmisartan, contributing to the overall evaluation of drug quality and efficacy.
  40. Drug Impurity

    Ketoprofen Impurity 7 is a chemical impurity associated with the nonsteroidal anti-inflammatory drug, Ketoprofen. It serves as an important reference standard for method development and validation in pharmaceutical research and quality control. Investigating this impurity facilitates a better understanding of Ketoprofen’s chemical profile, stability, and potential effects on drug performance and safety.
  41. Drug Impurity

    Edoxaban impurity 14, known as (1R,2S,5S)-2-Amino edoxaban, is a chemical impurity of the anticoagulant Edoxaban. This compound is utilized primarily for quality control and analytical purposes in pharmaceutical research. Its characterization and analysis are essential for ensuring the purity and safety of Edoxaban formulations in drug development and regulatory compliance.
  42. Drug Derivative

    SKF 83692 is a potent derivative that primarily targets dopamine receptors, specifically D1-like receptors. This compound exhibits notable biological activity in modulating dopaminergic signaling, making it valuable for research in neuropharmacology and the study of dopamine-related disorders. SKF 83692 serves as an important tool for investigating receptor pharmacology and the potential therapeutic effects of dopamine modulation in various neurological conditions.
  43. Drug Derivative

    N-Cyclohexanecarbonyltetradecylamine is an analog of N-cyclohexanecarbonyl-pentadecylamine that functions as a selective inhibitor of acidic phosphoethanolaminease (PEAase). This compound exhibits significant biological activity in modulating lipid metabolism and has applications in biochemical research focusing on enzyme inhibition and metabolic regulation. Its use may provide insights into the therapeutic potential for disorders related to lipid homeostasis.
  44. Drug Derivative

    Triazamate is a drug derivative that interacts with various biological targets to exhibit pharmacological activity. It demonstrates potential applications in the study of drug metabolism and pharmacokinetics, offering insights into therapeutic mechanisms and efficacy. This compound serves as a valuable tool for researchers investigating drug action and development in the field of medicinal chemistry.
  45. Drug Derivative

    Haptamide B is a novel drug derivative with demonstrated biological activity. This compound primarily functions as an active ingredient in pharmacological applications, exhibiting potential in various therapeutic domains. Its unique structure and mechanism of action make it a valuable tool for research pertaining to drug development and optimization.
  46. Drug Derivative

    8-iso Prostaglandin F1α is a prostaglandin derivative that exhibits potent biological activity by modulating various receptor pathways. It has been shown to play a role in inflammatory responses and may affect vascular function. This compound is utilized in research applications involving cardiovascular biology and inflammation studies, providing insights into the physiological effects of prostaglandins in disease models.
  47. Drug Derivative

    Lopirazepam is a benzodiazepine derivative that primarily acts as a positive allosteric modulator of GABA-A receptors. It exhibits anxiolytic and sedative properties, making it valuable for research into anxiety disorders and sleep regulation. This compound is useful for studying the pharmacological effects of benzodiazepines and their potential therapeutic applications in neuropharmacology.
  48. Drug Derivative

    Ascrolimus is a drug derivative that acts primarily as an immunosuppressant by inhibiting the mechanistic target of rapamycin (mTOR). This compound demonstrates significant biological activity in modulating immune responses, making it valuable for research in transplantation and autoimmune disease therapies. Its application extends to studying cell proliferation, growth regulation, and the underlying mechanisms of various diseases linked to mTOR signaling pathways.
  49. Drug Derivative

    3,4-Methylenedioxy PV8 hydrochloride is a synthetic drug derivative featuring a pyrrolidine structure. This compound exhibits biological activity relevant for pharmacological research, particularly in studies aimed at understanding its effects on neurotransmitter systems. It serves as a valuable tool for investigating the mechanisms of action of related compounds and contributes to the development of novel therapeutic agents.
  50. Drug Derivative

    N-Methoxy mephedrone hydrochloride is a derivative of mephedrone, primarily targeting monoamine transporters. This compound exhibits stimulant properties and can influence serotonin and dopamine release, making it valuable for research in neuropharmacology. Its applications extend to studies investigating psychostimulant effects and the development of new therapeutic strategies for mood disorders.

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