API

Active Pharmaceutical Ingredients (API), popularly speaking, are the raw materials of medicines, only pharmaceutical raw materials are processed into pharmaceutical preparations , can they become medicines available for clinical use, so drugs we usually eat are the finished drugs through processing. Active Pharmaceutical Ingredients based on its sources can be divided into two major categories ,including chemical synthetic drugs and natural chemical drugs. Chemical synthetic drugs can be divided into organic synthetic drugs and inorganic synthetic drugs. Inorganic synthetic drugs are inorganic compounds ( very few is element), such as aluminum hydroxide, magnesium trisilicate which are used for the treatment of gastric and duodenal ulcers ; organic synthetic drugs are mainly composed of drugs made by basic organic chemical raw materials, through a series of organic chemical reactions (such as aspirin, chloramphenicol, caffeine, etc.). Natural chemical drugs ,based on its sources,can be divided into two categories including biochemical drugs and plant chemical drugs. Antibiotics are generally made by the microbial fermentation, which belongs to the biochemistry category. A variety of semi-synthetic antibiotics occurs in recent years,which are biosynthesis and chemical synthesis combining products.Among active Pharmaceutical Ingredients, the organic synthetic drugs varieties, yields and values have the largest proportion,which are the main pillars of the chemical and pharmaceutical industries. The quality of active Pharmaceutical Ingredients decides whether the formulation is good or bad , so its quality standards are very strict ,countries in the world have developed national pharmacopoeia standards and strict quality control methods for its widely used active Pharmaceutical ingredients.

Preparation Method of 2,2-Bis[4-(4-aminophenoxy)phenyl]propane

2,2-Bis[4-(4-aminophenoxy)phenyl]propane can be prepared by reacting bisphenol A with p-chloronitrobenzene in DMAc at high temperature.

Apr 1,2026  API

Synthesis Methods and Biological Activity of L-Selenomethionine

L-Selenomethionine exhibits good bioavailability and is commonly used as a nutritional selenium supplement.

Apr 1,2026  API

Bioactivity and Usage Method of D-Luciferin potassium salt

D-Luciferin potassium salt exhibits significant advantages and it is particularly suitable for non-invasive imaging in live animal models.

Apr 1,2026  API

Structural Properties and Biological Applications of Glycylglycine

Glycylglycine can be used in research on male reproductive biology and neurodegenerative diseases.

Apr 1,2026  API

Physicochemical Properties and Synthetic Methods of 2-Fluorobenzoic acid

2-Fluorobenzoic acid has been widely applied as a preservative in food, medicine, and cosmetics.

Apr 1,2026  API

Fexofenadine Hydrochloride: Antihistamine for Allergic Diseases

Fexofenadine hydrochloride is a non-sedating second-generation antihistamine for allergic rhinitis and urticaria, safe with no minimal CNS effects.

Mar 30,2026  API

Olopatadine Hydrochloride: Antihistamine & Clinical Profile

Olopatadine hydrochloride is a second-generation antihistamine, with 5mg daily effective for chronic urticaria and bioequivalent generic formulations.

Mar 30,2026  API

Ciprofloxacin Hydrochloride: Clinical Uses & Toxicity

Ciprofloxacin hydrochloride is a broad-spectrum fluoroquinolone antibiotic whose efficacy is threatened, with rare but potentially severe liver injury.

Mar 30,2026  API

Pharmacodynamic Properties and Clinical Trial of Idarubicin Hydrochloride

The mechanism of action of Idarubicin Hydrochloride includes inhibition of DNA synthesis, interference with RNA polymerase and topoisomerase II activity.

Mar 30,2026  API
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