2747914-08-3
Chemical Structure
Carbinoxamine-d6 maleate
- CAS No.: 2747914-08-3
- Formula:C20H17D6ClN2O5
- Molecular Weight:412.90
IUPAC Name: 2-((4-chlorophenyl)(pyridin-2-yl)methoxy)-N,N-bis(methyl-d3)ethan-1-amine maleate
InChIKey: GVNWHCVWDRNXAZ-QPEHKQNOSA-N
SMILES: ClC1=CC=C(C(C2=NC=CC=C2)OCCN(C([2H])([2H])[2H])C([2H])([2H])[2H])C=C1.O=C(O)/C=C\C(O)=O
Biological Activity: Carbinoxamine-d6 (maleate) is the deuterium labeled Carbinoxamine maleate salt. Carbinoxamine maleate salt is a blood-brain barrier-permeable histamine H1 receptor antagonist. Carbinoxamine maleate salt blocks the action of histamine on H1 receptors, reducing symptoms such as sneezing, rhinitis, rhinorrhea, erythema, pruritus and urticaria. Carbinoxamine maleate salt inhibits influenza virus entry into cells via endocytosis, targets the early stage of the viral life cycle, and simultaneously reduces viral replication levels in the lungs, alleviating pathological damage and inflammatory responses in lung tissues. Carbinoxamine maleate salt can be used in research on allergic rhinitis, influenza, etc.[1][2]
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Carbinoxamine-d6 maleate | Carbinoxamine-d6 (maleate) is the deuterium labeled Carbinoxamine maleate salt. Carbinoxamine maleate salt is a blood-brain barrier-permeable histamine H1 receptor antagonist. Carbinoxamine maleate salt blocks the action of histamine on H1 receptors, reducing symptoms such as sneezing, rhinitis, rhinorrhea, erythema, pruritus and urticaria. Carbinoxamine maleate salt inhibits influenza virus entry into cells via endocytosis, targets the early stage of the viral life cycle, and simultaneously reduces viral replication levels in the lungs, alleviating pathological damage and inflammatory responses in lung tissues. Carbinoxamine maleate salt can be used in research on allergic rhinitis, influenza, etc. | |||||||||||||||||||||
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Carbinoxamine maleate salt (Standard) | ≥98% | Carbinoxamine maleate salt (Standard) is the analytical standard of Carbinoxamine maleate salt (HY-B1589A). This product is intended for research and analytical applications. Carbinoxamine maleate salt is a blood-brain barrier-permeable histamine H1 receptor antagonist. Carbinoxamine maleate salt blocks the action of histamine on H1 receptors, reducing symptoms such as sneezing, rhinitis, rhinorrhea, erythema, pruritus and urticaria. Carbinoxamine maleate salt inhibits influenza virus entry into cells via endocytosis, targets the early stage of the viral life cycle, and simultaneously reduces viral replication levels in the lungs, alleviating pathological damage and inflammatory responses in lung tissues. Carbinoxamine maleate salt can be used in research on allergic rhinitis, influenza, etc. | ||||||||||||||||||||
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(±)-Carbinoxamine-d6 | (±)-Carbinoxamine-d6 is the deuterium labeled (±)-Carbinoxamine (HY-B1589). (±)-Carbinoxamine is a blood-brain barrier-permeable histamine H1 receptor antagonist. (±)-Carbinoxamine blocks the action of histamine on H1 receptors, reducing symptoms such as sneezing, rhinitis, rhinorrhea, erythema, pruritus and urticaria. (±)-Carbinoxamine inhibits influenza virus entry into cells via endocytosis, targets the early stage of the viral life cycle, and simultaneously reduces viral replication levels in the lungs, alleviating pathological damage and inflammatory responses in lung tissues. (±)-Carbinoxamine can be used in research on allergic rhinitis, influenza, etc. | |||||||||||||||||||||
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Carbinoxamine maleate salt | 98.78% | Carbinoxamine maleate salt is a blood-brain barrier-permeable histamine H1 receptor antagonist. Carbinoxamine maleate salt blocks the action of histamine on H1 receptors, reducing symptoms such as sneezing, rhinitis, rhinorrhea, erythema, pruritus and urticaria. Carbinoxamine maleate salt inhibits influenza virus entry into cells via endocytosis, targets the early stage of the viral life cycle, and simultaneously reduces viral replication levels in the lungs, alleviating pathological damage and inflammatory responses in lung tissues. Carbinoxamine maleate salt can be used in research on allergic rhinitis, influenza, etc. | ||||||||||||||||||||
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- [1]. Russak EM, et al. Impact of Deuterium Substitution on the Pharmacokinetics of Pharmaceuticals. Ann Pharmacother. 2019;53(2):211-216. [Content Brief]
- [2]. Harikrishnan A, et al. The cooperative effect of Lewis pairs in the Friedel-Crafts hydroxyalkylation reaction: a simple and effective route for the synthesis of (±)-carbinoxamine. Org Biomol Chem. 2015 Mar 28;13(12):3633-47. [Content Brief]