Details
Stereochemistry | ACHIRAL |
Molecular Formula | C22H28N4O6 |
Molecular Weight | 444.4809 |
Optical Activity | NONE |
Defined Stereocenters | 0 / 0 |
E/Z Centers | 0 |
Charge | 0 |
SHOW SMILES / InChI
SMILES
C[N+](C)([O-])CCNC1=CC=C(NCC[N+](C)(C)[O-])C2=C1C(=O)C3=C(O)C=CC(O)=C3C2=O
InChI
InChIKey=YZBAXVICWUUHGG-UHFFFAOYSA-N
InChI=1S/C22H28N4O6/c1-25(2,31)11-9-23-13-5-6-14(24-10-12-26(3,4)32)18-17(13)21(29)19-15(27)7-8-16(28)20(19)22(18)30/h5-8,23-24,27-28H,9-12H2,1-4H3
Banoxantrone (formally known as AQ4N), a bioreductive drug that is irreversibly converted to AQ4, a stable DNA affinic cytotoxic compound. Banoxantrone is activated by haem-containing reductases such as inducible nitric oxide synthase (iNOS). In hypoxic cells, AQ4N is reduced to the topoisomerase II inhibitor AQ4. By inhibition of topoisomerase II within these hypoxic areas, AQ4N has been shown to sensitize tumors to existing chemo- and radiotherapy treatments. Novacea, the company which was responsible for clinical trials for banoxantrone had decided to scale back on its clinical development, including discontinuing the clinical trial in acute lymphoblastic leukemia and delaying the planned clinical trial in B-cell lymphoma. The company decided to continue enrollment in an ongoing Phase 1b/2a clinical trial in patients with glioblastoma multiforme. However, further information about these clinical trials are not available. Some recent experiments have shown that targeting hypoxic tumors with high levels of iNOS with a combination of AQ4N and radiotherapy could be a useful clinical therapeutic strategy.
Originator
Approval Year
Targets
Primary Target | Pharmacology | Condition | Potency |
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Target ID: CHEMBL4481 Sources: https://www.ncbi.nlm.nih.gov/pubmed/18681417 |
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Target ID: CHEMBL2094255 Sources: https://www.ncbi.nlm.nih.gov/pubmed/9054961 |
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NCI_THESAURUS |
C253
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136470-65-0
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8400
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9955116
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DTXSID90869860
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100000177189
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C79528
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DB04975
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CHEMBL117391
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ACTIVE MOIETY
METABOLITE (PARENT)
SALT/SOLVATE (PARENT)
SUBSTANCE RECORD