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Home > Active Pharmaceutical Ingredients > Digestive System Drugs (Find 197 items)

Sodium sulfate

(7757-82-6)
It can be mainly used as the filler of synthetic detergent. Paper industry applies it for the cooking agent during the manufacture of sulfate pulp. Glass industry uses it as substitute of soda. Chemical industry applies it as the raw material for the manufacturing of sodium sulfide, sodium silicate and other chemical products. Textile industry applies it for the formulation of Vinylon spinning coagulation bath. The pharmaceutical industry applies it as laxatives. It can also be used in non-ferro

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Ursodeoxycholic acid

(128-13-2)
1. Used as an anticholelithogenic. Epimer with Chenodiol with respect to the hydroxyl group at C7.
2. Anticonvulsant
3. Anticholelithogenic; LD50(rat) 890 mg/kg ip

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Glycyrrhizic acid

(1405-86-3)
Licorice is a traditional seasoning and traditional Chinese medicine in my country with high safety. It has a special flavor, and the effect is better when combined with sucrose and saccharin. Our country stipulates that it can be used in biscuits, canned meat and poultry, seasonings, candies, candied fruit, preserved fruits and beverages. As a medicine, it has anti-inflammatory and anti-allergic reactions; as a sweetener, it is widely used in various foods Glycyrrhizic acid, also known as gly

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Cimetidine

(51481-61-9)
Competitive histamine H2-receptor antagonist which inhibits gastric acid secretion and reduces pepsin output

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Granisetron

(109889-09-0)
Anti-emetic.Launched by GSK's predecessor Britain SmithKline pharmaceutical company in the early 90s,Granisetron is an anti-nausea drug for the prevention and treatment of nausea and vomiting caused by chemotherapy and radiotherapy, with 6 ~ 11 time the anti-nausea effect of Ondansetron. Through blocking effect on the upper small intestine stomach centripetal nerve fibers and solitary nucleus or 5 - HT3 receptor in vomiting chemical feeling area, it suppresses nausea and vomiting caused by anti

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5-Aminosalicylic acid

(89-57-6)
In manufacture of light-sensitive paper, azo and sulfur dyes. Used as an intermediate for azo and sulfur dyes, and used in the manufacture of photosensitive paper. It has a significant inhibitory effect on the inflammation of the intestinal wall; Mesalazine can inhibit the synthesis of prostaglandins that cause inflammation and the formation of leukotrienes, the inflammatory mediator. Thereby significantly inhibiting the inflammation of the intestinal mucosa. It has a better effect on the conne

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Hydrogenated castor oil

(8001-78-3)
It is used to produce daily cosmetics, shoe polish, and medical ointment, and is the raw material for preparing 12-hydroxystearic acid

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Famotidine

(76824-35-6)
Use as an H2-antagonist.An anti-ulcer agent

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Domperidone

(57808-66-9)
Peripheral dopamine receptor antagonist that does not cross the blood-brain barrier; anti-emetic.

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Carnitine tartrate

(36687-82-8)
L-Carnitine L-tartrate is used in pharma and food application as dietary supplement. It founds as well an application in cosmetics.

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Digestive system drugs are currently one of the most commonly used drugs in clinic. Digestive System Drugs mainly include liver disease drugs, antacid and mucosal protective drugs, cholagogue drugs, appetite suppressants and other diet pills, gastrointestinal motility drugs, gastrointestinal antispasmodic drugs, laxatives and antidiarrheal Medicines, gastric acid Inhibitors, emetics and antiemetics, digestant drugs and other digestive system drugs. The "Digestive System Drugs" of ECHEMI classification list mainly supplies APIs for such drugs.

Frequently Asked Questions

What are Digestive System Drugs used for?

Digestive System Drugs are medications designed to treat a wide range of gastrointestinal (GI) disorders, including acid reflux, peptic ulcers, irritable bowel syndrome (IBS), constipation, diarrhea, and inflammatory bowel disease (IBD). These drugs work by regulating digestive processes, reducing inflammation, neutralizing stomach acid, or modulating gut motility. They play a critical role in improving patients’ quality of life and managing chronic GI conditions effectively.

What are the common types of Digestive System Drugs?

Common types of Digestive System Drugs include:1. Antacids and H2 receptor antagonists (e.g., ranitidine) for reducing stomach acid.2. Proton pump inhibitors (PPIs) like omeprazole for long-term acid suppression.3. Laxatives and antidiarrheals for bowel regulation.4. Prokinetic agents that enhance gastrointestinal motility.5. Anti-inflammatory drugs such as mesalamine for IBD.Each class targets specific symptoms or underlying mechanisms of digestive diseases.

How do I choose a reliable supplier for Digestive System Drugs?

When selecting a supplier for Digestive System Drugs, consider the following criteria:1. Regulatory compliance—ensure the supplier holds valid GMP, FDA, or EMA certifications.2. Quality assurance—look for documented quality control procedures and batch testing.3. Product portfolio breadth—including APIs, finished formulations, and intermediates.4. Supply chain reliability and global distribution capabilities.5. Technical support and regulatory documentation assistance.Partnering with a reputable supplier minimizes risk and ensures consistent product quality.

Are there safety concerns with long-term use of Digestive System Drugs?

Yes, prolonged use of certain Digestive System Drugs may carry risks. For example, long-term proton pump inhibitor (PPI) use has been associated with vitamin B12 deficiency, increased fracture risk, and kidney issues. Chronic laxative use can lead to electrolyte imbalances and dependency. It’s essential to use these medications under medical supervision, adhere to prescribed dosages, and periodically reassess treatment necessity to mitigate potential adverse effects.

What are the latest trends in Digestive System Drug development?

Recent trends in Digestive System Drug development include:1. Targeted biologics and small molecules for IBD, such as JAK inhibitors and anti-TNF agents.2. Microbiome-based therapies aiming to restore gut flora balance.3. Personalized medicine approaches using genetic and biomarker profiling.4. Improved drug delivery systems (e.g., pH-sensitive coatings) for site-specific action in the GI tract.These innovations reflect a shift toward more effective, safer, and patient-tailored treatments for complex digestive disorders.

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