Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8276672 | Journal of the Neurological Sciences | 2014 | 9 Pages |
Abstract
Ischemia preconditioning (IPC) displays an important adaptation of the CNS to sub-lethal ischemia. In the present study, we examined the effect of IPC on immunoreactivities of VEGF-, and phospho-Flk-1 (pFlk-1) following transient cerebral ischemia in gerbils. The animals were randomly assigned to four groups (sham-operated-group, ischemia-operated-group, IPC plus (+) sham-operated-group, and IPCÂ +Â ischemia-operated-group). IPC was induced by subjecting gerbils to 2Â min of ischemia followed by 1Â day of recovery. In the ischemia-operated-group, a significant loss of neurons was observed in the stratum pyramidale (SP) of the hippocampal CA1 region (CA1) alone 5Â days after ischemia-reperfusion, however, in all the IPCÂ +Â ischemia-operated-groups, pyramidal neurons in the SP were well protected. In immunohistochemical study, VEGF immunoreactivity in the ischemia-operated-group was increased in the SP at 1Â day post-ischemia and decreased with time. Five days after ischemia-reperfusion, strong VEGF immunoreactivity was found in non-pyramidal cells, which were identified as pericytes, in the stratum oriens (SO) and radiatum (SR). In the IPCÂ +Â sham-operated- and IPCÂ +Â ischemia-operated-groups, VEGF immunoreactivity was significantly increased in the SP. pFlk-1 immunoreactivity in the sham-operated- and ischemia-operated-groups was hardly found in the SP, and, from 2Â days post-ischemia, pFlk-1 immunoreactivity was strongly increased in non-pyramidal cells, which were identified as pericytes. In the IPCÂ +Â sham-operated-group, pFlk-1 immunoreactivity was significantly increased in both pyramidal and non-pyramidal cells; in the IPCÂ +Â ischemia-operated-groups, the similar pattern of VEGF immunoreactivity was found in the ischemic CA1, although the VEGF immunoreactivity was strong in non-pyramidal cells at 5Â days post-ischemia. In brief, our findings show that IPC dramatically augmented the induction of VEGF and pFlk-1 immunoreactivity in the pyramidal cells of the CA1 after ischemia-reperfusion, and these findings suggest that the increases of VEGF and Flk-1 expressions may be necessary for neurons to survive from transient ischemic damage.
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Authors
Yoo Seok Park, Jun Hwi Cho, In Hye Kim, Geum-Sil Cho, Jeong-Hwi Cho, Joon Ha Park, Ji Hyeon Ahn, Bai Hui Chen, Bich-Na Shin, Myoung Cheol Shin, Hyun-Jin Tae, Young Shin Cho, Yun Lyul Lee, Young-Myeong Kim, Moo-Ho Won, Jae-Chul Lee,