effects of famotidine and vitamin c on low dose radiation-induced micronuclei in mice bone marrow cells
نویسندگان
چکیده
the radioprotective effects of vitamin c and famotidine were investigated using the micronucleus test for anticlastogenic and cell proliferation activity. various doses of vitamin c and famotidine were administered intraperitoneally 2 h before 2gy gamma irradiation to nmri adult male mice. frequency of micronuclei in 1000 pces (mnpces) were scored for each sample. cell proliferation ratio (pce/pce+nce) was also calculated. data were statistically evaluated using one-way anova and tukey’s hsd test. the results indicated that gamma irradiation alone caused a significant increase in the mnpces and reduced the cell proliferation ratio. administration of various doses of famotidine and vitamin c before gamma irradiation reduced mnpces and therefore clastogenic effects of radiation. famotidine didn’t change cell proliferation compared to the irradiation group but vitamin c significantly improved and increased cell proliferation to the control group’s level. the dose reduction factor (drf) calculated, shows a drf=2 for famotidine and a drf=1.7 for vitamin c which is indicative of a high radioprotective property of these compounds. the way in which these compounds reduced the clastogenic effects of radiation might be via antioxidant property and free radical scavenging mechanism.
منابع مشابه
Oral Administration of Vitamin C, Cimetidine and Famotidine on Micronuclei Induced by Low Dose Radiation in Mouse Bone Marrow Cells
 Background: In many studies, chemicals and natural materials were tested to reduce the harmful effects of radiation. It is known that Famotidine and vitamin C reduce DNA damage.Objective: The aim of this study was to evaluate the radioprotective effect of vitamin C, Cimetidine and Famotidine on gamma-radiation-induced damage on mouse bone marrow. Methods: Six-to-seven week male NMRI mice (28...
متن کاملoral administration of vitamin c, cimetidine and famotidine on micronuclei induced by low dose radiation in mouse bone marrow cells
background: in many studies, chemicals and natural materials were tested to reduce the harmful effects of radiation. it is known that famotidine and vitamin c reduce dna damage. objective: the aim of this study was to evaluate the radioprotective effect of vitamin c, cimetidine and famotidine on gamma-radiation-induced damage on mouse bone marrow. methods: six-to-seven week male nmri mice (28 ...
متن کاملOral Administration of Vitamin C, Cimetidine and Famotidine on Micronuclei Induced by Low Dose Radiation in Mouse Bone Marrow Cells
BACKGROUND In many studies, chemicals and natural materials were tested to reduce the harmful effects of radiation. It is known that Famotidine and vitamin C reduce DNA damage. OBJECTIVE The aim of this study was to evaluate the radioprotective effect of vitamin C, Cimetidine and Famotidine on gamma-radiation-induced damage on mouse bone marrow. METHODS Six-to-seven week male NMRI mice (28 ...
متن کاملEffects of Arbutin on Radiation-Induced Micronuclei in Mice Bone Marrow Cells and Its Definite Dose Reduction Factor
Introduction: Interactions of free radicals from ionizing radiation with DNA can induce DNA damage and lead to mutagenesis and carsinogenesis. With respect to radiation damage to human, it is important to protect humans from side effects induced by ionizing radiation. In the present study,the effects of arbutin were investigated by using the micronucleus test for anti- clastog...
متن کاملEffects of Arbutin on Radiation-Induced Micronuclei in Mice Bone Marrow Cells and It's Definite Dose Reduction Factor
Background: Interactions of free radicals from ionizing radiation with DNA can induce DNA damage and lead to mutagenesis and carsinogenesis. With respect to radiation damage to human, it is important to protect humans from side effects induced by ionizing radiation.In the present study, the effects of arbutin were investigated by using the micronucleus test for anti-clastogenic activity, to cal...
متن کاملeffects of arbutin on radiation-induced micronuclei in mice bone marrow cells and it's definite dose reduction factor
background: interactions of free radicals from ionizing radiation with dna can induce dna damage and lead to mutagenesis and carsinogenesis. with respect to radiation damage to human, it is important to protect humans from side effects induced by ionizing radiation. in the present study, the effects of arbutin were investigated by using the micronucleus test for anti-clastogenic activity, to ca...
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عنوان ژورنال:
journal of paramedical sciencesجلد ۵، شماره ۴، صفحات ۰-۰
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