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Leukotriene C4
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Looking for Leukotriene C4 API 72025-60-6?
- Description:
- Here you will find a list of producers, manufacturers and distributors of Leukotriene C4. You can filter on certificates such as GMP, FDA, CEP, Written Confirmation and more. Send inquiries for free and get in direct contact with the supplier of your choice.
- API | Excipient name:
- Leukotriene C4
- Synonyms:
- (R-(R*,S*-(E,E,Z,Z)))-N-(S-(1-(4-Carboxy-1-hydroxybutyl)-2,4,6,9-pentadecatetraenyl)-N-L-gamma-glutamyl-L-cysteinyl)glycine , L-γ-glutamyl-S-[(1R,2E,4E,6Z,9Z)-1-[(1S)-4-carboxy-1-hydroxybutyl]pentadeca-2,4,6,9-tetraen-1-yl]-L-cysteinylglycine , LTC (sub 4) , LTC4
- Cas Number:
- 72025-60-6
- DrugBank number:
- DB08855
- Unique Ingredient Identifier:
- 2CU6TT9V48
General Description:
Leukotriene C4, identified by CAS number 72025-60-6, is a notable compound with significant therapeutic applications. The conjugation product of LEUKOTRIENE A4 and glutathione. It is the major arachidonic acid metabolite in macrophages and human mast cells as well as in antigen-sensitized lung tissue. It stimulates mucus secretion in the lung, and produces contractions of nonvascular and some vascular smooth muscle. (From Dictionary of Prostaglandins and Related Compounds, 1990)
Classification:
Leukotriene C4 belongs to the class of organic compounds known as oligopeptides. These are organic compounds containing a sequence of between three and ten alpha-amino acids joined by peptide bonds, classified under the direct parent group Oligopeptides. This compound is a part of the Organic compounds, falling under the Organic acids and derivatives superclass, and categorized within the Carboxylic acids and derivatives class, specifically within the Amino acids, peptides, and analogues subclass.
Categories:
Leukotriene C4 is categorized under the following therapeutic classes: Arachidonic Acids, Autacoids, Biological Factors, Eicosanoids, Fatty Acids, Fatty Acids, Essential, Fatty Acids, Unsaturated, Inflammation Mediators, Leukotrienes, Lipids, SRS-A. These classifications highlight the drug's diverse therapeutic applications and its importance in treating various conditions.
Leukotriene C4 is a type of Other substances
The pharmaceutical industry encompasses a diverse range of active pharmaceutical ingredients (APIs) that are used in the production of various medications. One category of APIs is known as other substances. This category includes substances that do not fall under the conventional classifications such as antibiotics, analgesics, or antihypertensives.
Other substances in pharmaceutical APIs consist of a broad array of chemical compounds with unique properties and applications. These substances play a crucial role in the formulation and development of specialized medications, catering to specific therapeutic needs. The category encompasses various substances like excipients, solvents, stabilizers, and pH adjusters.
Excipients are inert substances that aid in the manufacturing process and enhance the stability, bioavailability, and patient acceptability of pharmaceutical formulations. Solvents are used to dissolve other ingredients and facilitate their incorporation into the final product. Stabilizers ensure the integrity and shelf life of medications by preventing degradation or chemical changes. pH adjusters help maintain the desired pH level of a formulation, which can influence the drug's efficacy and stability.
Pharmaceutical manufacturers carefully select and incorporate specific other substances into their formulations, adhering to regulatory guidelines and quality standards. These substances undergo rigorous testing and evaluation to ensure their safety, efficacy, and compatibility with the desired pharmaceutical product. By employing other substances in API formulations, pharmaceutical companies can optimize drug delivery, improve patient compliance, and enhance therapeutic outcomes.
In summary, the other substances category of pharmaceutical APIs comprises a diverse range of chemicals, including excipients, solvents, stabilizers, and pH adjusters. These substances contribute to the formulation, stability, and performance of medications, enabling pharmaceutical manufacturers to develop specialized products that meet specific therapeutic requirements.