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.

Zirconium Hydride: Characteristics and Applications in Enhancing Mechanical Properties

Zirconium hydride's diverse properties enhance high-temperature applications, hydrogen storage, and mechanical strength in composites, promising innovation across industries.

Apr 12,2024  API

2-Naphthylacetonitrile: Overview, Pharmaceutical Synthesis Applications and Preparation Method

2-Naphthylacetonitrile is a key compound in pharmaceutical synthesis, serving as a c-Myc protein inhibitor and can be prepared by palladium-catalyzed decarboxylative coupling method.

Apr 12,2024  API

Lactonic Sophorolipid: Nanoceria-Assisted Therapy and Preparation

Lactonic sophorolipid demonstrates anti-cancer effects. Combined with GT in nanoceria therapy, it shows promise for NSCLC treatment. Fermentation yields potent Lactonic sophorolipid.

Apr 12,2024  API

Unveiling the Potential of Fullerene C60: A Revolution in Material Science and Beyond

The discovery of Fullerene C60 has paved new avenues in nanotechnology and provided a fresh perspective on the uncharted territories of carbon-based materials.

Apr 12,2024  API

Synthesis and Toxicity of 2-Methoxy-4-nitroaniline

2-Methoxy-4-nitroaniline is an important industrial compound used in dye manufacturing and as an intermediate in the synthesis of other compounds.

Apr 12,2024  API

Exploring Hematin: Definition, Production, Applications, and Considerations in the Chemical and Medical Fields

Hematin plays a pivotal role in various sectors, particularly in medicine, biochemical engineering, and chemical research.

Apr 12,2024  API

Synthesis and Applications of 2,2',4,4'-Tetrahydroxybenzophenone

2,2',4,4'-Tetrahydroxybenzophenone is widely used in the plastic, resin, coating, synthetic rubber, photosensitive materials, and cosmetics industries.

Apr 12,2024  API

Pyrroloquinoline quinone disodium salt: Benefits and Safety

Pyrroloquinoline quinone disodium salt (PQQ) is a natural coenzyme in food that has highly efficient antioxidant activity and improves a variety of functions such as mitochondrial activation, growth,

Apr 11,2024  API

Salicylaldoxime: Applications in Solvent Extraction and Synthesis Method

Salicylaldoxime, derived from salicylaldehyde and hydroxylamine, is vital in chemistry, medicine, and metallurgy, facilitating metal complexation and extraction processes.

Apr 11,2024  API

Exploring APS-5: A Breakthrough in Material Science

APS-5 is a beacon of innovation and potential. This new material is a material for synthesizing advanced polymer structures.

Apr 11,2024  API
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