EARLY AND REMOTE RESPONSE OF HIF-1Α PROTEIN IN THE HIPPOCAMPUS FIELDS TO ISCHEMIA-REPERFUSION IN RATS WITH DIABETES MELLITUS

Introduction. The role of the transcription factor Hif-1α in pathogenesis of hypoxic lesions and diabetes mellitus (DM) has been confirmed, though molecular mechanisms underlying dysfunctions of the factor in the association of DM with ischemic-reperfusion lesion of the brain remain unknown. Obje...

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Main Authors: O. M. Nika, O. V. Zaliavska, O. V. Kaushanska
Format: Article
Language:English
Published: Sumy State University 2021-03-01
Series:Східноукраїнський медичний журнал
Subjects:
Online Access:https://eumj.med.sumdu.edu.ua/index.php/journal/article/view/168
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author O. M. Nika
O. V. Zaliavska
O. V. Kaushanska
author_facet O. M. Nika
O. V. Zaliavska
O. V. Kaushanska
author_sort O. M. Nika
collection DOAJ
description Introduction. The role of the transcription factor Hif-1α in pathogenesis of hypoxic lesions and diabetes mellitus (DM) has been confirmed, though molecular mechanisms underlying dysfunctions of the factor in the association of DM with ischemic-reperfusion lesion of the brain remain unknown. Objective: the investigation of Hif-1α protein content in the neurons of the hippocampus fields of rats with experimental DM in the dynamics of ischemic-reperfusion lesion of the brain. Materials and methods. The study was conducted on 60 6-month rats with DM simulated at the age of 2 months by means of a single administration of streptozotocin (60 mg/kg of the body weight) (Sigma, USA). Disorders of the cerebral circulation were simulated by means of occlusion of both carotid arteries for 20 minutes. The content of Hif1-α protein was determined by means of fluoroimmunoassay after 20-minute ischemia with one hour reperfusion, and on the 12th day of the post-ischemic period in the hippocampus fields: СА1, СА2, СА3, СА4. Results. In rats without DM 20-minute ischemia with one hour reperfusion increases the content of Hif-1α protein in all the hippocampus fields. On the 12th day of ischemic-reperfusion period in СА2-СА4 hippocampus fields the values of certain examined activity indices of the transcription factor Hif-1α continue to increase, and in СА1 field they are normalized or come closer to the values of animals from the control group. In rats with DM at the early post-ischemic period changes of Hif-1α protein content are lacking in СА1 field, the signs of its reduced activity are found in СА2 field, in СА3 field they are limited by the response of one index, and in СА4 field they are similar to those of the control rats under the experimental conditions. On the 12th day of ischemic-reperfusion period all the activity indices of the transcription factor Hif-1α increase in СА1 filed. They are higher than the corresponding indices in animals from the control group by absolute values under similar experimental conditions; changes of the examined parameters are limited in СА2 and СА3 fields in comparison with those from the control group; the parameters, which increased in the control group of animals, decreased in СА4 field. Conclusion. DM restricts Hif-1α protein response to ischemia-reperfusion in the neurons of СА1-СА3 field at the early ischemic-reperfusion period and in the neurons of СА2-СА4 fields — on the 12th day of the observation.
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spelling doaj.art-ecc973c586fc4694b0451700b72398a52022-12-22T04:21:07ZengSumy State UniversityСхідноукраїнський медичний журнал2663-59092664-42312021-03-019110110610.21272/eumj.2021;9(1):101-106168EARLY AND REMOTE RESPONSE OF HIF-1Α PROTEIN IN THE HIPPOCAMPUS FIELDS TO ISCHEMIA-REPERFUSION IN RATS WITH DIABETES MELLITUSO. M. Nika0O. V. Zaliavska1O. V. Kaushanska2Bukovinian State Medical University, Chernivtsi, UkraineBukovinian State Medical University, Chernivtsi, UkraineBukovinian State Medical University, Chernivtsi, UkraineIntroduction. The role of the transcription factor Hif-1α in pathogenesis of hypoxic lesions and diabetes mellitus (DM) has been confirmed, though molecular mechanisms underlying dysfunctions of the factor in the association of DM with ischemic-reperfusion lesion of the brain remain unknown. Objective: the investigation of Hif-1α protein content in the neurons of the hippocampus fields of rats with experimental DM in the dynamics of ischemic-reperfusion lesion of the brain. Materials and methods. The study was conducted on 60 6-month rats with DM simulated at the age of 2 months by means of a single administration of streptozotocin (60 mg/kg of the body weight) (Sigma, USA). Disorders of the cerebral circulation were simulated by means of occlusion of both carotid arteries for 20 minutes. The content of Hif1-α protein was determined by means of fluoroimmunoassay after 20-minute ischemia with one hour reperfusion, and on the 12th day of the post-ischemic period in the hippocampus fields: СА1, СА2, СА3, СА4. Results. In rats without DM 20-minute ischemia with one hour reperfusion increases the content of Hif-1α protein in all the hippocampus fields. On the 12th day of ischemic-reperfusion period in СА2-СА4 hippocampus fields the values of certain examined activity indices of the transcription factor Hif-1α continue to increase, and in СА1 field they are normalized or come closer to the values of animals from the control group. In rats with DM at the early post-ischemic period changes of Hif-1α protein content are lacking in СА1 field, the signs of its reduced activity are found in СА2 field, in СА3 field they are limited by the response of one index, and in СА4 field they are similar to those of the control rats under the experimental conditions. On the 12th day of ischemic-reperfusion period all the activity indices of the transcription factor Hif-1α increase in СА1 filed. They are higher than the corresponding indices in animals from the control group by absolute values under similar experimental conditions; changes of the examined parameters are limited in СА2 and СА3 fields in comparison with those from the control group; the parameters, which increased in the control group of animals, decreased in СА4 field. Conclusion. DM restricts Hif-1α protein response to ischemia-reperfusion in the neurons of СА1-СА3 field at the early ischemic-reperfusion period and in the neurons of СА2-СА4 fields — on the 12th day of the observation.https://eumj.med.sumdu.edu.ua/index.php/journal/article/view/168diabetes mellitus; cerebral ischemia-reperfusion; hif-1α protein
spellingShingle O. M. Nika
O. V. Zaliavska
O. V. Kaushanska
EARLY AND REMOTE RESPONSE OF HIF-1Α PROTEIN IN THE HIPPOCAMPUS FIELDS TO ISCHEMIA-REPERFUSION IN RATS WITH DIABETES MELLITUS
Східноукраїнський медичний журнал
diabetes mellitus; cerebral ischemia-reperfusion; hif-1α protein
title EARLY AND REMOTE RESPONSE OF HIF-1Α PROTEIN IN THE HIPPOCAMPUS FIELDS TO ISCHEMIA-REPERFUSION IN RATS WITH DIABETES MELLITUS
title_full EARLY AND REMOTE RESPONSE OF HIF-1Α PROTEIN IN THE HIPPOCAMPUS FIELDS TO ISCHEMIA-REPERFUSION IN RATS WITH DIABETES MELLITUS
title_fullStr EARLY AND REMOTE RESPONSE OF HIF-1Α PROTEIN IN THE HIPPOCAMPUS FIELDS TO ISCHEMIA-REPERFUSION IN RATS WITH DIABETES MELLITUS
title_full_unstemmed EARLY AND REMOTE RESPONSE OF HIF-1Α PROTEIN IN THE HIPPOCAMPUS FIELDS TO ISCHEMIA-REPERFUSION IN RATS WITH DIABETES MELLITUS
title_short EARLY AND REMOTE RESPONSE OF HIF-1Α PROTEIN IN THE HIPPOCAMPUS FIELDS TO ISCHEMIA-REPERFUSION IN RATS WITH DIABETES MELLITUS
title_sort early and remote response of hif 1α protein in the hippocampus fields to ischemia reperfusion in rats with diabetes mellitus
topic diabetes mellitus; cerebral ischemia-reperfusion; hif-1α protein
url https://eumj.med.sumdu.edu.ua/index.php/journal/article/view/168
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AT ovzaliavska earlyandremoteresponseofhif1aproteininthehippocampusfieldstoischemiareperfusioninratswithdiabetesmellitus
AT ovkaushanska earlyandremoteresponseofhif1aproteininthehippocampusfieldstoischemiareperfusioninratswithdiabetesmellitus