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Home > Active Pharmaceutical Ingredients > Blood System Drugs (Find 10 items)

Blood System Drugs

Cobalt chloride (CoCl2)

(7646-79-9)
The vapor-phase co-reductions with other metal halides by hydrogen results in finely divided intermetallics with applications as structural materials or compounds with useful thermoelectric, magnetic, and oxidation-resistance properties.

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Caffeic acid

(331-39-5)
Caffeic Acid is a constituent of plants, probably occurs in plants only in conjugated forms. Caffeic acid is found in all plants because it is a key intermediate in the biosynthesis of lignin, one of the principal sources of biomass. Caffeic acid is one of the main natural phenols in argan oi.

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Cilostazol

(73963-72-1)
A potent phosphodiesterase III A (PDE3A) inhibitor (IC50=0.2uM) and inhibitor of adenosine uptake.Has antimitogeni, antithrombotic, vasodilatory and cardiotonic properties in vivo.Also affects lipid levels in vivo

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Carbazochrome

(69-81-8)
This product can reduce the permeability of capillaries and promote the retraction of damaged capillaries to stop bleeding. Mainly used for bleeding caused by increased capillary permeability, such as idiopathic purpura, retinal hemorrhage, chronic pulmonary hemorrhage, gastrointestinal bleeding, epistaxis, hemoptysis, hematuria, hemorrhoidal bleeding, uterine bleeding, cerebral hemorrhage, etc. It is less effective for massive bleeding and arterial bleeding. Hemostatic drug, used for persistent

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Calcium alginate

(9005-35-0)
Calcium alginate is a water-insoluble, gelatinous, cream-coloured substance that can be created through the addition of aqueous calcium chloride to aqueous sodium alginate. Calcium alginate is also used for entrapment of enzymes and forming artificial seeds in plant tissue culture."Alginate" is the term usually used for the salts of alginic acid, but it can also refer to all the derivatives of alginic acid and alginic acid itself; in some publications the term "algin" is used instead of alginate

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Carbazochrome sodium sulfonate

(51460-26-5)
Carbazochrome is an antihemorrhagic for use in the treatment of hemorrhoids.

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Cloricromen

(68206-94-0)
Coronary dilatation and antithrombotic drugs. It can enhance the production of prostacyclin in the vascular endothelium and enhance the inhibition of polymorphonuclear leukocytes in inhibiting platelet aggregation. Can significantly improve exercise tolerance and reduce the use of nitrate in patients with angina. Used for anticoagulation.

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Coagulase

(9001-13-2)
Batroxobin for injection is mainly used clinically for bleeding before and after surgery, bleeding in the stomach and intestines, bleeding in various cancers and tumors, bleeding caused by drugs, bleeding from teeth extraction, and bleeding in newborns. But patients with a history of thrombosis or embolism are banned. Except for emergency bleeding, pregnant women should not use this product during the first 3 months of pregnancy. Intravenous injection, intramuscular injection or subcutaneous inj

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Hematological diseases refer to diseases that are primary (such as leukemia) or mainly involve blood (such as iron deficiency anemia) and hematopoietic organs. Classification: red blood cell diseases, such as various types of anemia and polycythemia, etc .; granulocyte diseases, such as leukopenia and agranulocytosis, neutrophil lobular insufficiency, inert leukocyte syndrome, and leukemia-like reactions. Blood system drugs mainly include: anti-anemic drugs, leukocyte-raising drugs, antiplatelet drugs, procoagulant drugs, anticoagulant drugs and thrombolytic drugs, blood volume expansion agents, leukocyte-raising drugs, antiplatelet drugs and other drugs. The "Blood System Drugs" on ECHEMI classification list mainly supplies APIs for these drugs.

Frequently Asked Questions

What are Blood System Drugs and what conditions do they treat?

Blood System Drugs are pharmaceutical agents designed to affect the components or functions of the blood. They are commonly used to treat conditions such as anemia, hemophilia, thrombosis, and other coagulation disorders. These drugs may include anticoagulants, antiplatelet agents, hemostatics, and erythropoiesis-stimulating agents. Understanding their mechanisms helps healthcare providers select the most appropriate therapy for specific hematologic conditions.

How do anticoagulant medications work in the blood system?

Anticoagulant medications prevent the formation of blood clots by interfering with the clotting cascade—either by inhibiting thrombin, blocking vitamin K-dependent clotting factors, or targeting specific coagulation proteins like Factor Xa. Common examples include warfarin, heparin, and direct oral anticoagulants (DOACs) such as rivaroxaban and apixaban. These drugs are essential in managing and preventing conditions like deep vein thrombosis (DVT), pulmonary embolism (PE), and stroke in atrial fibrillation.

What are the common side effects of Blood System Drugs?

Common side effects of Blood System Drugs vary depending on the drug class. Anticoagulants and antiplatelet agents may increase the risk of bleeding or bruising. Erythropoiesis-stimulating agents can cause hypertension or thrombotic events. Iron supplements used for anemia might lead to gastrointestinal discomfort. Patients should always be monitored for adverse reactions, and dosing should be adjusted based on clinical response and laboratory parameters such as INR or hemoglobin levels.

How are Blood System Drugs regulated for quality and safety?

Blood System Drugs are subject to stringent regulatory oversight by agencies such as the U.S. FDA, EMA, and other national health authorities. Manufacturers must comply with Good Manufacturing Practices (GMP), conduct rigorous preclinical and clinical trials, and ensure batch-to-batch consistency. Quality control includes testing for purity, potency, sterility (for injectables), and stability. Regulatory compliance ensures these critical medications meet high safety and efficacy standards before reaching patients.

What factors should be considered when sourcing Blood System Drug APIs or intermediates?

When sourcing Active Pharmaceutical Ingredients (APIs) or intermediates for Blood System Drugs, key considerations include:1. Supplier certification (e.g., GMP, ISO, FDA/EMA inspection history).2. Analytical documentation such as Certificate of Analysis (CoA) and impurity profiles.3. Supply chain reliability and scalability for commercial production.4. Regulatory support including DMFs or CEPs.5. Technical expertise in complex syntheses (e.g., for heparin derivatives or recombinant clotting factors).Selecting a qualified partner minimizes risk and ensures consistent drug performance and patient safety.

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