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Differential Neurotoxic Effects Of In Utero And Lactational Exposure To Hydroxylated Polychlorinated Biphenyl (OH-PCB 106) On Spontaneous Locomotor Activity And Motor Coordination In Young Adult Male Mice

Differential Neurotoxic Effects Of In Utero And Lactational Exposure To Hydroxylated Polychlorinated Biphenyl (OH-PCB 106) On Spontaneous Locomotor Activity And Motor Coordination In Young Adult Male Mice
Asahi Haljima, Ronny Lesmana , Noriaki Shimokawa, Izuki Amano, Yusuke Takatsuru, Noriyuki Koibuchi
Universitas Padjadjaran, The Journal of Toxicological Scicnccs (J. Toxicol. Sci.) Vo1.42. No.4. 407-416. 2017
Bahasa Inggris
Universitas Padjadjaran, The Journal of Toxicological Scicnccs (J. Toxicol. Sci.) Vo1.42. No.4. 407-416. 2017
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We investigated whether in Wen, or lactational exposure to 4-hydroxy-2′,3,3′,4′,5′-pentachlorobiphenyl (OH-PCB 106) affects spontaneous locomotor activity and motor coordination in young adult male mice. For in utero exposure, pregnant C57BL/6J mice received 0.05 or 0.5 mg/kg body weight of OH-PCB 106 or corn oil vehicle via gavage every second day from gestational day 10 to 18. For lactational exposure, the different groups of dams received 0.05 or 0.5 mg/kg body weight of OH-PCB 106 or corn oil vehicle via gavage every second day from postpartum day 3 to 13. At 6-7 weeks of age, the spontaneous locomotor activities of male offspring were evaluated for a 24-hr continuous session in a home cage and in an open field for 30-min. Motor coordination function on an accelerating rotarod was also measured. Mice exposed prenatally to OH-PCB 106 showed increased spontaneous locomotor activities during the dark phase in the home cage and during the first 10-min in the open field compared with control mice. Mice exposed lactationally to OH-PCB 106, however, did not show a time-dependent decrease in locomotor activity in the open field. Instead, their locomotor activity increased significantly during the second 10-min block. In addition, mice exposed lactationally to OH-PCB 106 displayed impairments in motor coordination in the rotarod test. These results suggest that perinatal exposure to OH-PCB 106 affects motor behaviors in young adult male mice. Depending on the period of exposure, OH-PCB 106 may have different effects on neurobehavioral development.

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