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Design, synthesis, and biological activity of anti-angiogenic hypoxic cell radiosensitizer haloacetylcarbamoyl-2-nitroimidazoles
- Source :
- Bioorganic & Medicinal Chemistry. 5:591-599
- Publication Year :
- 1997
- Publisher :
- Elsevier BV, 1997.
-
Abstract
- We designed, synthesized, and evaluated haloacetylcarbamoyl-2-nitroimidazoles, including chloro (KIN-1800, TX-1835, and TX-1836) and bromo derivatives (TX-1844, TX-1845, and TX-1846), as potential hypoxic cell radiosensitizers with antiangiogenic activities. To establish biological function owing to the haloacetylcarbamoyl group in the side-chain, we compared their in vitro radiosensitizing activities with those of their parent 2-nitroimidazoles without haloacetylcarbamoyl groups: misonidazole (MISO), TX-1831, and TX-1832, respectively. Both tert-butoxy substituted derivatives. TX-1835 and TX-1845, were more potent radiosensitizers than TX-1831. The p-tert-butylphenoxy-substituted derivatives, TX-1836 and TX-1846, and the methoxysubstituted derivatives, KIN-1800 and TX-1844, were stronger radiosensitizers than TX-1832 and MISO. We examined the anti-angiogenic activities of these 2-nitroimidazole derivatives containing haloacetylcarbamoyl group by the rat lung endothelial (RLE) cell proliferation assay and chick embryo chorioallantoic membrane (chick CAM) angiogenesis assay and showed that haloacetylcarbamoyl-2-nitroimidazoles were more potent angiogenic inhibitors than the corresponding desacetylcarbamoyl-2-nitroimidazoles. The in vivo chick CAM angiogenesis assay showed that the strong bromoacetylcarbamoyl-2-nitroimidazole radiosensitizers, such as TX-1845 and TX-1846, were the strongest angiogenic inhibitors among them. We concluded that the bromoacetylcarbamoyl-2-nitroimidazole radiosensitizers, such as TX-1845 and TX-1846, are promising as anti-angiogenic hypoxic cell radiosensitizers.
- Subjects :
- Radiation-Sensitizing Agents
Misonidazole
Angiogenesis
Clinical Biochemistry
Neovascularization, Physiologic
Pharmaceutical Science
Antineoplastic Agents
Chick Embryo
Pharmacology
Biochemistry
Neovascularization
chemistry.chemical_compound
Adenosine Triphosphate
In vivo
Endopeptidases
Drug Discovery
medicine
Animals
Molecular Biology
Cell growth
Chemistry
Organic Chemistry
Imidazoles
Biological activity
Cell Hypoxia
In vitro
Rats
Chorioallantoic membrane
Models, Chemical
Drug Design
Molecular Medicine
Carbamates
medicine.symptom
Subjects
Details
- ISSN :
- 09680896
- Volume :
- 5
- Database :
- OpenAIRE
- Journal :
- Bioorganic & Medicinal Chemistry
- Accession number :
- edsair.doi.dedup.....d7c93863976b211b4136f613604cd665