Determine the necessary mass, volume, or concentration for preparing a solution.
Activity Type | Activity Value -log(M) | Mechanism of Action | Activity Reference | Publications (PubMed IDs) |
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SKU | Size | Availability | Price | Qty |
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C586514-250mg | 250mg | Available within 4-8 weeks(?) Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience! | $12.90 | |
C586514-1g | 1g | Available within 4-8 weeks(?) Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience! | $43.90 | |
C586514-5g | 5g | Available within 4-8 weeks(?) Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience! | $62.90 | |
C586514-25g | 25g | Available within 4-8 weeks(?) Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience! | $279.90 | |
C586514-100g | 100g | Available within 4-8 weeks(?) Items will be manufactured post-order and can take 4-8 weeks. Thank you for your patience! | $1,003.90 |
Synonyms | hydroxychloroquine | 118-42-3 | Oxichloroquine | Oxychlorochin | Oxychloroquine | Plaquenil | Oxichlorochinum | Polirreumin | Hidroxicloroquina | Hydroxychloroquinum | oxichlorochine | Idrossiclorochina | WIN 1258 | 2-((4-((7-Chloroquinolin-4-yl)amino)pentyl)(ethyl)amino)ethanol | H |
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Specifications & Purity | Moligand™, ≥98% |
Storage Temp | Store at 2-8°C,Protected from light,Desiccated |
Shipped In | Wet ice |
Grade | Moligand™ |
Action Type | ANTAGONIST |
Mechanism of action | Antagonist of TLR7;Antagonist of TLR9 |
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IUPAC Name | 2-[4-[(7-chloroquinolin-4-yl)amino]pentyl-ethylamino]ethanol |
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INCHI | InChI=1S/C18H26ClN3O/c1-3-22(11-12-23)10-4-5-14(2)21-17-8-9-20-18-13-15(19)6-7-16(17)18/h6-9,13-14,23H,3-5,10-12H2,1-2H3,(H,20,21) |
InChi Key | XXSMGPRMXLTPCZ-UHFFFAOYSA-N |
Canonical SMILES | CCN(CCCC(C)NC1=C2C=CC(=CC2=NC=C1)Cl)CCO |
Isomeric SMILES | CCN(CCCC(C)NC1=C2C=CC(=CC2=NC=C1)Cl)CCO |
PubChem CID | 3652 |
Molecular Weight | 335.9 |
DrugBank Ligand | DB01611 |
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PubChem CID | 3652 |
CAS Registry No. | 118-42-3 |
ChEMBL Ligand | CHEMBL1535 |
Wikipedia | Hydroxychloroquine |
PEP | hydroxychloroquine |
ChEBI | CHEBI:5801 |
Reactome Reaction | R-HSA-9679029, R-HSA-9679045, R-HSA-9683467, R-HSA-9683478 |
Reactome Drug | R-ALL-9678628, R-ALL-9685625 |
DrugCentral Ligand | 1395 |
Enter Lot Number to search for COA:
To view the certificate results,please click on a Lot number.For Lot numbers from past orders,please use our order status section
Lot Number | Certificate Type | Date | Item |
---|---|---|---|
C2408005 | Certificate of Analysis | Aug 07, 2023 | C586514 |
G2403048 | Certificate of Analysis | Aug 07, 2023 | C586514 |
H2323626 | Certificate of Analysis | Aug 07, 2023 | C586514 |
H2323685 | Certificate of Analysis | Aug 07, 2023 | C586514 |
H2323693 | Certificate of Analysis | Aug 07, 2023 | C586514 |
H2323696 | Certificate of Analysis | Aug 07, 2023 | C586514 |
H2323708 | Certificate of Analysis | Aug 07, 2023 | C586514 |
H2415060 | Certificate of Analysis | Aug 07, 2023 | C586514 |
Pictogram(s) | GHS07 |
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Signal | Warning |
Hazard Statements | H302:Harmful if swallowed |
Precautionary Statements | P501:Dispose of contents/container to ... P264:Wash hands [and …] thoroughly after handling. P270:Do not eat, drink or smoke when using this product. P330:Rinse mouth. P301+P317:IF SWALLOWED: Get medical help. |
Starting at $9.90
Starting at $162.90
1. Dai Yan, Sang Xiu-Bo, Bai Wen-Pei. (2023) N-acetylcysteine and Hydroxychloroquine Ameliorate ADMA-Induced Fetal Growth Restriction in Mice via Regulating Oxidative Stress and Autophagy. Reproductive Sciences, (1-12). [PMID:37845590] |
2. Mu Jiaxiang, Meng Zhaoxu, Liu Xinran, Guan Ping, Lian He. (2023) Implantable Nanofiber Membranes with Synergistic Photothermal and Autophagy Inhibition Effects for Enhanced Tumor Therapy Efficacy. Advanced Fiber Materials, (1-16). [PMID:] |
3. Lan-Yi Hu, Ye Yuan, Zi-Xuan Wen, Yi-Yue Hu, Miao-Miao Yin, Yan-Jun Hu. (2023) Affinity binding of COVID-19 drug candidates (chloroquine/hydroxychloroquine) and serum albumin: Based on photochemistry and molecular docking. JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY, 240 (112667). [PMID:36753782] |
4. Jingxiang Zhao, Zhiqiang Zhao, Wanting Hou, Yue Jiang, Guobin Liu, Xuelian Ren, Kun Liu, Hong Liu, Kaixian Chen, He Huang. (2022) Quantitative Proteomics Explore the Potential Targets and Action Mechanisms of Hydroxychloroquine. MOLECULES, 27 (16): (5175). [PMID:36014414] |
1. Biot C, Daher W, Chavain N, Fandeur T, Khalife J, Dive D, De Clercq E. (2006) Design and synthesis of hydroxyferroquine derivatives with antimalarial and antiviral activities.. J Med Chem, 49 (9): (2845-9). [PMID:16640347] |
2. Kawai T, Akira S. (2010) The role of pattern-recognition receptors in innate immunity: update on Toll-like receptors.. Nat Immunol, 11 (5): (373-84). [PMID:20404851] |
3. Silva JC, Mariz HA, Rocha Jr LF, Oliveira PS, Dantas AT, Duarte AL, Pitta Ida R, Galdino SL, Pitta MG. (2013) Hydroxychloroquine decreases Th17-related cytokines in systemic lupus erythematosus and rheumatoid arthritis patients.. Clinics (Sao Paulo), 68 (6): (766-71). [PMID:23778483] |
4. Gautret P, Lagier JC, Parola P, Hoang VT, Meddeb L, Mailhe M, Doudier B, Courjon J, Giordanengo V, Vieira VE et al.. (2020) Hydroxychloroquine and azithromycin as a treatment of COVID-19: results of an open-label non-randomized clinical trial.. Int J Antimicrob Agents, 56 (1): (105949). [PMID:32205204] |
5. Rosenberg ES, Dufort EM, Udo T, Wilberschied LA, Kumar J, Tesoriero J, Weinberg P, Kirkwood J, Muse A, DeHovitz J et al.. (2020) Association of Treatment With Hydroxychloroquine or Azithromycin With In-Hospital Mortality in Patients With COVID-19 in New York State.. JAMA, 323 (24): (2493-2502). [PMID:32392282] |
6. Dai Yan, Sang Xiu-Bo, Bai Wen-Pei. (2023) N-acetylcysteine and Hydroxychloroquine Ameliorate ADMA-Induced Fetal Growth Restriction in Mice via Regulating Oxidative Stress and Autophagy. Reproductive Sciences, (1-12). [PMID:37845590] |
7. Mu Jiaxiang, Meng Zhaoxu, Liu Xinran, Guan Ping, Lian He. (2023) Implantable Nanofiber Membranes with Synergistic Photothermal and Autophagy Inhibition Effects for Enhanced Tumor Therapy Efficacy. Advanced Fiber Materials, (1-16). [PMID:] |
8. Lan-Yi Hu, Ye Yuan, Zi-Xuan Wen, Yi-Yue Hu, Miao-Miao Yin, Yan-Jun Hu. (2023) Affinity binding of COVID-19 drug candidates (chloroquine/hydroxychloroquine) and serum albumin: Based on photochemistry and molecular docking. JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY, 240 (112667). [PMID:36753782] |
9. Jingxiang Zhao, Zhiqiang Zhao, Wanting Hou, Yue Jiang, Guobin Liu, Xuelian Ren, Kun Liu, Hong Liu, Kaixian Chen, He Huang. (2022) Quantitative Proteomics Explore the Potential Targets and Action Mechanisms of Hydroxychloroquine. MOLECULES, 27 (16): (5175). [PMID:36014414] |