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Home > Pharmaceutical Intermediates > Antineoplastics (Find 7 items)

Antineoplastics

Explore various Antineoplastic Intermediates! Browse a wide range of antineoplastic drugs intermediates products with detailed CAS NO., property data, and SDS on ECHEMI. Source certified suppliers offering raw chemical materials for antineoplastic chemotherapy and antineoplastic immunotherapy, providing comprehensive product information.

Glycine

(56-40-6)
Glycine is a non-essential amino acid for human development. Glycine is an inhibitory neurotransmitter in spinal cord, allosteric regulator of NMDA receptors.Used in the pharmaceutical industry, biochemical tests and organic synthesis.Glycine is mainly used as a nutritional additive for chicken feed.

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Glutamic acid

(617-65-2)
Glutamic Acid is non-essential amino acid. Its salt form (glutamate) is an important neurotransmitter that plays a key role in long-term potentiation and is important for learning and memory. Glutamic Acid is also a key molecule in cellular metabolism.

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Glutathione

(70-18-8)
Glutathione may decrease the concentrations of inflammatory cytokines (IL-6, IL-18), neutrophils in lung tissue and increase the level of serum Ca2+ and be useful for the treatment of ANP. Glutathione production is regulated via distinct pathways in stressed and non-stressed cortical neurons

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Gemcitabine

(95058-81-4)
Gemcitabine(Gemzar) belongs to the group of medicines called antimetabolites. It is used alone or in combination with other medicines to treat cancer of the breast, ovary, pancreas, and lung. Gemcitabine interferes with the growth of cancer cells. For advanced and metastatic pancreatic cancer. Suitable for the treatment of middle and advanced non-small cell lung cancer

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Glutaric acid

(110-94-1)
Glutaric acid is the organic compound with the formula C3H6(COOH)2 . Although the related "linear" dicarboxylic acids adipic and succinic acids are water-soluble only to a few percent at room temperature, the water-solubility of glutaric acid is over 50% (w/w).

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Glycine ethyl ester hydrochloride

(623-33-6)
A Glycine (G615990) ester used as parakeratosis inhibitor and external composition for skin.

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Genz644282

(529488-28-6)
GENZ-644282 is used in the synthesis of ARC-111 analogs in the improvement of the antitumor activity of the parent compound.

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Antineoplastics Intermediates are some key chemical raw materials or products in the synthesis process of antineoplastic drugs. You can easily find high-quality new intermediates, products and their manufacturers or suppliers on ECHEMI. ECHEMI will continue to track the research and development of new products on antineoplastic meds.

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More Information

Antineoplastics are used to inhibit or prevent the growth and spread of neoplastic or cancerous cells in the body. Neoplastic cells arise from genetic mutations or alterations in normal cells, leading to uncontrolled and abnormal growth characteristic of tumors or cancers.

The potential underlying causes of neoplastic growth include genetic predispositions, exposure to carcinogens, viral infections, and compromised immune responses.

 

Causes of neoplastic:

● Exposure to radiation or certain chemicals.

● Smoking, poor diet, or lack of physical activity.

● Hormonal imbalances or chronic inflammation contribute to neoplastic cell development.

Frequently Asked Questions

What are antineoplastics and how do they work?

Antineoplastics, also known as anticancer drugs or chemotherapeutic agents, are medications used to treat cancer by inhibiting the growth and proliferation of malignant cells. They work through various mechanisms, such as damaging DNA, interfering with cell division, or blocking specific molecular pathways involved in tumor growth. Common classes include alkylating agents, antimetabolites, anthracyclines, and targeted therapies. Understanding their mode of action is essential for effective cancer treatment planning.

What are the common side effects of antineoplastic drugs?

Antineoplastic drugs often cause side effects due to their impact on both cancerous and healthy rapidly dividing cells. Common side effects include nausea, vomiting, hair loss, fatigue, bone marrow suppression (leading to anemia or increased infection risk), and mucositis. Some newer targeted antineoplastics may have milder side effect profiles but can still cause specific toxicities like skin rashes or cardiac issues. Managing these side effects is a critical part of oncology care.

How are antineoplastics classified in pharmaceutical manufacturing?

In pharmaceutical manufacturing, antineoplastics are typically classified based on their chemical structure and mechanism of action. Major categories include alkylating agents (e.g., cyclophosphamide), antimetabolites (e.g., methotrexate), plant alkaloids (e.g., vincristine), antitumor antibiotics (e.g., doxorubicin), and newer targeted agents like tyrosine kinase inhibitors (e.g., imatinib). This classification helps manufacturers develop appropriate synthesis routes, quality controls, and safety protocols during production.

What quality standards apply to the production of antineoplastic APIs?

The production of antineoplastic active pharmaceutical ingredients (APIs) must comply with stringent international quality standards, including Good Manufacturing Practices (GMP) as defined by the FDA, EMA, and ICH guidelines. Due to their high potency and toxicity, additional containment and occupational safety measures—such as those outlined in ISPE’s Risk-Based Manufacture of Pharmaceutical Products (Risk-MaPP)—are often required. Rigorous testing for purity, identity, potency, and impurities is mandatory to ensure patient safety and therapeutic efficacy.

How do suppliers ensure the safe handling and transport of antineoplastic intermediates?

Reputable suppliers implement strict safety protocols for handling and transporting antineoplastic intermediates, which are often classified as hazardous or highly potent compounds. This includes using closed-system transfer devices, specialized containment facilities, and personnel protective equipment (PPE). For transport, materials are packaged according to IATA and UN regulations for dangerous goods, with clear labeling and documentation. Certificates of Analysis (CoA) and Safety Data Sheets (SDS) are provided to ensure regulatory compliance and end-user safety.

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