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Home > Pharmaceutical Intermediates > Bulk Drug Intermediates (Find 18216 items)
The quality of pharmaceutical intermediates plays a crucial role in the efficacy and safety of the final drug. Our authorized vendors offer outstanding bulk drug intermediates, the very raw materials for the pharmaceutical production. Explore specific product information, such as CAS numbers, characteristics, and technical data, to improve production efficiency during the drug production process.

Boron trifluoride etherate

(109-63-7)
Catalyst in acetylation, alkylation, polymerization, dehydration, and condensation reactions.

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2-Chlorobenzylamine

(89-97-4)
2-Chlorobenzylamine is a chlorinated derivative of benzylamine. 2-Chlorobenzylamine showed plasmin inhibitory activity as well as inhibition of bovine thrombin activity.

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3-Ethyl-5-(2-hydroxyethyl)-4-methylthiazolium bromide

(54016-70-5)
3-Ethyl-5-(2-hydroxyethyl)-4-methylthiazolium bromide is used in the novel synthesis of benzoin catalyzed by thiazolium salts.

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Boceprevir

(394730-60-0)
An NS3 serine protease inhibitor of hepatitis C virus, for the treatment of HCV infection.

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1,3-Dioxolane-4-methanol, 2-(bromomethyl)-2-(2,4-dichlorophenyl)-, 4-benzoate, (2R,4R)-rel-

(61397-56-6)
cis-[2-Bromomethyl-2-(2,4-dichlorophenyl)-1,3-dioxolan-4-yl]methyl Benzoate is an intermediate in the preparation of antifungal agents such as Ketoconazole (K186000), Itraconazole (I937500) and Terconazole.

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Phenyl J Acid

(119-40-4)
This product is a dye intermediate, used to synthesize azo dye direct copper salt green BTL, copper salt blue FBGL and copper salt purple BBL.

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2-Ethylhexyl glycidyl ether

(2461-15-6)
2-Ethylhexyl glycidyl ether is a used as a commercial reactive diluent. 2-Ethylhexyl glycidyl ether is also known to induce sister-chromatid exchanges in Chinese hamster cells.

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4-Acetoxyindole

(5585-96-6)
Reactant for preparation of:• ;Inhibitors of HIV-1 attachment1• ;Prostanoid EP3 receptor antagonist, as a novel antiplatelet agent2• ;Indolyl-nitroalkanes via N-bromosuccinimide catalyzed synthesis3• ;Psilocybin as a medicinal agent4

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Bulk drug intermediates are the drugs used as raw materials for the production of bulk drugs, or they can refer to a material produced during synthesis of an API that must undergo further molecular change or processing before it becomes an API.

More Information

Intermediates are unavoidable products of chemical reactions and are widely used in pharmaceuticals, materials, chemicals, and other industries.

In the pharmaceutical industry, an active pharmaceutical ingredient (API) is a product of a synthesis process that has been completed and is used in the manufacture of bulk drugs and intermediates are some chemical raw materials or chemical products used in the synthesis process of APIs.

The application industries of pharmaceutical intermediates mainly include antibiotics, anticancer drugs, cardiovascular drugs, neurological drugs, hormone drugs, and immunosuppression.

Functions of intermediates

Intermediates serve a variety of responsibilities in the drug production process.

● They can serve as a link between the API and the finished medicine. The drug production process can be broken down into multiple steps using intermediates, each requiring a different chemical.

● They can modify reaction conditions and synthesis pathways, increasing drug synthesis efficiency and yields.

● They can be employed to modify the purification, crystallization, and solid characteristics of medicines.

Frequently Asked Questions

What are Bulk Drug Intermediates?

Bulk Drug Intermediates are chemical compounds produced during the multi-step synthesis of Active Pharmaceutical Ingredients (APIs). They are not yet the final API but play a critical role in the manufacturing process. These intermediates must meet strict quality and purity standards to ensure the safety and efficacy of the final drug product. Understanding their function helps pharmaceutical manufacturers maintain compliance and optimize production efficiency.

How do Bulk Drug Intermediates differ from APIs?

While both Bulk Drug Intermediates and Active Pharmaceutical Ingredients (APIs) are essential in drug manufacturing, they serve different roles. Intermediates are precursor molecules formed during synthesis steps before the final API is created. APIs are the biologically active components responsible for the therapeutic effect in a medication. Intermediates typically undergo further chemical transformation, whereas APIs are formulated directly into dosage forms like tablets or injections.

What quality standards apply to Bulk Drug Intermediates?

Bulk Drug Intermediates must comply with stringent regulatory guidelines, including Good Manufacturing Practices (GMP), especially if they are used in the production of regulated pharmaceuticals. Key quality parameters include identity, purity, assay, residual solvents, and impurity profiles. Reputable suppliers provide comprehensive Certificates of Analysis (CoA) and often adhere to ICH Q7 guidelines to ensure consistency, safety, and traceability throughout the supply chain.

How to choose a reliable supplier for Bulk Drug Intermediates?

Selecting a trustworthy supplier for Bulk Drug Intermediates involves evaluating several factors:1. Regulatory compliance—verify GMP certification and audit history.2. Analytical capabilities—ensure they offer full documentation like CoA, MSDS, and stability data.3. Scalability and reliability—assess their production capacity and on-time delivery record.4. Technical support—look for suppliers with experienced chemists who can assist with process optimization or regulatory queries.Partnering with an established, audited supplier minimizes risk and ensures consistent intermediate quality.

What are common applications of Bulk Drug Intermediates in pharmaceutical manufacturing?

Bulk Drug Intermediates are primarily used in the stepwise synthesis of APIs for a wide range of medications, including antibiotics, antivirals, cardiovascular drugs, and oncology treatments. They enable modular and efficient production by allowing manufacturers to isolate and purify compounds at each reaction stage. Additionally, custom intermediates support the development of novel drug candidates during R&D and clinical trials, making them indispensable in both generic and innovative drug pipelines.

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