151. Radioprotective effect of ursolic acid in radiation-induced impairment of neurogenesis, learning and memory in adolescent BALB/c mouse
- Author
-
Peiyan Wong, Boo Cheong Khoo, Feng Ru Tang, and W.K. Loke
- Subjects
Doublecortin Domain Proteins ,medicine.medical_specialty ,BALB/c Mouse ,Neurogenesis ,Neuropeptide ,Hippocampus ,Nerve Tissue Proteins ,Experimental and Cognitive Psychology ,Subgranular zone ,Mice ,03 medical and health sciences ,Behavioral Neuroscience ,chemistry.chemical_compound ,0302 clinical medicine ,Ursolic acid ,Internal medicine ,Conditioning, Psychological ,Basic Helix-Loop-Helix Transcription Factors ,medicine ,Animals ,Cyclooxygenase Inhibitors ,Irradiation ,Swimming ,Mice, Inbred BALB C ,Learning Disabilities ,business.industry ,Dentate gyrus ,Neuropeptides ,Recognition, Psychology ,Fear ,Triterpenes ,Disease Models, Animal ,Radiation Injuries, Experimental ,Ki-67 Antigen ,Endocrinology ,medicine.anatomical_structure ,Animals, Newborn ,Hindlimb Suspension ,chemistry ,030220 oncology & carcinogenesis ,Immunology ,business ,Microtubule-Associated Proteins ,Locomotion ,030217 neurology & neurosurgery - Abstract
The effect of acute irradiation with 5Gy or fractionated exposure with 0.5Gy continuously for 10days (a total dose of 5Gy) was evaluated in an immature BALB/c mouse model. Radioprotective effect of ursolic acid (at 25mg/kg/daily administered 1h after acute or each of fractionated irradiations, and continuously for 30days) was also investigated. We found that both acute and fractionated irradiation at a total dose of 5Gy did not induce any mortality within 30days after exposure to postnatal day 26 (P26) BALB/c mice, but reduced animal weigh gain in the first few weeks. At 90days after irradiation, the weight of animals with acute irradiation was still significantly lower than the control group; no significant difference though was observed for those fractionatedly exposed mice compared to the control group. Behavioral tests indicated that acute irradiation at 5Gy induced deficits in learning and memory in the contextual fear conditioning test. The memory for novel object recognition was also impaired. Similar changes were not observed in mice with fractionated irradiation. Immunohistochemical study demonstrated clearly that acute and fractionated irradiations induced impairment of neurogenesis in the subgranular zone (SGZ) of the dentate gyrus although fractionated exposure induced much lesser loss of newly generated neurons. Ursolic acid administered at 25mg/kg/daily for 30days after irradiation greatly improved acute irradiation-induced deficits in contextual learning and memory and in novel object recognition memory although it exacerbated radiation-induced reduction of neurogenesis in SGZ.
- Published
- 2017
- Full Text
- View/download PDF