Araştırma Makalesi

Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats

Cilt: 16 Sayı: 1 18 Ocak 2021
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Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats

Öz

Epilepsy is one of the neurological diseases that is commonly seen in the world. It is characterized by excessive activation of neurons that can not be controlled by the central nervous system. ATP dependent potassium (KATP) channel modulation is related with the epilepsy. This study is intended to research the physiological role of mitochondrial KATP channels in epilepsy in electrophysiological perspective. And bepridil has been used for this purpose. Wistar albino rats have been used. Animals have been divided into three main groups; Control, bepridil applied groups in pre-seizure, and during seizure. As a result, bepridil once applied prior to seizure in 0.1 and 1mg/kg doses increased the latency period of the seizure. Bepridil showed anticonvulsant effect at doses of 0.1 and 1 mg/kg before and during seizure groups. Closure of sarcoplasmic channels and opening of mitochondrial channels may be important to decrease the convultion occurred during epilepy.

Anahtar Kelimeler

Destekleyen Kurum

Bolu Abant İzzet Baysal Üniversitesi BAP birimi

Proje Numarası

2012.03.01.521

Teşekkür

Bolu Abant İzzet Baysal Üniversitesi BAP birimine bu çalışmayı desteklediğinden dolayı teşekkür ederiz.

Kaynakça

  1. Megiddo, I., Colson, A., Chisholm, D., Dua, T., Nandi, A., and Laxminarayan, R., (2016). Health and Economic Benefits of Public Financing of Epilepsy Treatment in India: An Agent-Based Simulation Model. Epilepsia, 57(3):464-474.
  2. Ngugi, A.K., Bottomley, C., Kleinschmidt, I., Sander, J.W., and Newton, C.R., (2010). Estimation of the Burden of Active and Life-time Epilepsy: A Meta-analytic Approach. Epilepsia, 51(5):883-890.
  3. Lasoń, W., Chlebicka, M., and Rejdak, K., (2013). Research Advances in Basic Mechanisms of Seizures and Antiepileptic Drug Action. Pharmacol Rep, 65(4):787-801.
  4. Dhopeshwarkar, A. and Mackie, K., (2014). CB2 Cannabinoid Receptors as a Therapeutic Target-what does the Future Hold?. Mol Pharmacol, 86(4):430-437.
  5. Noma, A., (1983). ATP-regulated K+ Channels in Cardiac Muscle. Nature, 305(5930):147-148.
  6. Ashcroft, F.M., Harrison, D.E., and Ashcroft, S.J., (1984). Glucose Induces Closure of Single Potassium Channels in Isolated Rat Pancreatic Beta-Cells. Nature, 312(5993):446-448.
  7. Bennett, K., James, C., and Hussain, K., (2010). Pancreatic β-Cell KATP Channels: Hypoglycaemia and Hyperglycaemia. Rev Endocr Metab Disord, 11(3):157-163.
  8. Flanagan, S.E., Clauin, S., Bellanné-Chantelot, C., de Lonlay, P., Harries, L.W., Gloyn, A.L., et al., (2009). Update of Mutations in the Genes Encoding the Pancreatic Beta-cell K(ATP) channel Subunits Kir6.2 (KCNJ11) and Sulfonylurea Receptor 1 (ABCC8) in Diabetes Mellitus and Hyperinsulinism. Hum Mutat, 30(2):170-180.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Sağlık Kurumları Yönetimi

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

18 Ocak 2021

Gönderilme Tarihi

31 Ağustos 2020

Kabul Tarihi

1 Kasım 2020

Yayımlandığı Sayı

Yıl 2021 Cilt: 16 Sayı: 1

Kaynak Göster

APA
Soytürk, H., Demir, S., & Bozdoğan, Ö. (2021). Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats. Medical Sciences, 16(1), 19-29. https://izlik.org/JA47LC44XK
AMA
1.Soytürk H, Demir S, Bozdoğan Ö. Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats. Medical Sciences. 2021;16(1):19-29. https://izlik.org/JA47LC44XK
Chicago
Soytürk, Hayriye, Serif Demir, ve Ömer Bozdoğan. 2021. “Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats”. Medical Sciences 16 (1): 19-29. https://izlik.org/JA47LC44XK.
EndNote
Soytürk H, Demir S, Bozdoğan Ö (01 Ocak 2021) Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats. Medical Sciences 16 1 19–29.
IEEE
[1]H. Soytürk, S. Demir, ve Ö. Bozdoğan, “Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats”, Medical Sciences, c. 16, sy 1, ss. 19–29, Oca. 2021, [çevrimiçi]. Erişim adresi: https://izlik.org/JA47LC44XK
ISNAD
Soytürk, Hayriye - Demir, Serif - Bozdoğan, Ömer. “Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats”. Medical Sciences 16/1 (01 Ocak 2021): 19-29. https://izlik.org/JA47LC44XK.
JAMA
1.Soytürk H, Demir S, Bozdoğan Ö. Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats. Medical Sciences. 2021;16:19–29.
MLA
Soytürk, Hayriye, vd. “Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats”. Medical Sciences, c. 16, sy 1, Ocak 2021, ss. 19-29, https://izlik.org/JA47LC44XK.
Vancouver
1.Hayriye Soytürk, Serif Demir, Ömer Bozdoğan. Investigation of Physiological Role of Mitochondrial KATP Channel’s on Penicillin G Induced Experimental Epilepsy Model in Rats. Medical Sciences [Internet]. 01 Ocak 2021;16(1):19-2. Erişim adresi: https://izlik.org/JA47LC44XK