The effect of alpha-2 adrenergic receptors on memory retention deficit induced by rapid eye movement sleep deprivation

Publish Year: 1399
نوع سند: مقاله ژورنالی
زبان: English
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JR_IJBMS-23-12_009

تاریخ نمایه سازی: 19 دی 1399

Abstract:

Objective(s): Evidence shows that sleep deprivation (SD) disrupts the formation of hippocampus-related memories. Moreover, α2 adrenergic receptors that are wildly expressed in the CA1 hippocampal region have a significant role in modulating both sleep and memory formation. In the present research, we wanted to investigate the effect of stimulation and blockage of CA1 α2 adrenergic receptors by clonidine (an agonist of α2 adrenergic receptor) and yohimbine (an antagonist of α2 adrenergic receptor), respectively, on memory retention impairment induced by REM SD (RSD) in rats. Materials and Methods: Multiple platform apparatus were used to induce RSD, and the passive avoidance task was used to assess memory consolidation. Clonidine and yohimbine were injected intra-CA1. Results: The results showed that RSD (for 24 and 36, but not 12 hr) decreased memory retention, with no effect on locomotion. Post-training intra-CA1 infusion of a subthreshold dose of yohimbine (0.001 μg/rat) did not alter, while clonidine (0.1 μg/rat) restored memory retention impairment induced by RSD (24 and 36 hr). Also, none of the interventions did not influence locomotor activity. Conclusion: Our data strongly showed that CA1 α2 adrenergic receptors have a critical role in RSD-induced memory retention impairment.

Authors

Yaser Norozpour

Department of Cognitive Neuroscience, Institute for Cognitive Science Studies (ICSS), Tehran, Iran

Mohammad Nasehi

Cognitive and Neuroscience Research Center (CNRC), Amir-Almomenin Hospital, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran

Vahid Sabouri-Khanghah

Department of Cognitive Neuroscience, Institute for Cognitive Science Studies (ICSS), Tehran, Iran

Mohammad Nami

Department of Neuroscience, School of Advanced Medical Sciences and Technologies, Shiraz University of Medical Sciences, Shiraz, Iran

Salar Vaseghi

Department of Cognitive Neuroscience, Institute for Cognitive Science Studies (ICSS), Tehran, Iran

Mohammad-Reza Zarrindast

Department of Cognitive Neuroscience, Institute for Cognitive Science Studies (ICSS), Tehran, Iran

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  • 2. Javad-Moosavi BZ, Nasehi M, Vaseghi S, Jamaldini SH, Zarrindast ...
  • 3. Norozpour Y, Nasehi M, Sabouri-Khanghah V, Torabi-Nami M, Zarrindast ...
  • 4. Javad-Moosavi BZ, Vaezi G, Nasehi M, Haeri-Rouhani SA, Zarrindast ...
  • 5. de Bruin EJ, van Run C, Staaks J, Meijer ...
  • 6. Havekes R, Vecsey CG, Abel T. The impact of ...
  • 7. Ertugrul A, Rezaki M. The neurobiology of sleep and ...
  • 8. Landmann N, Kuhn M, Maier JG, Spiegelhalder K, Baglioni ...
  • 9. Kordestani-Moghadam P, Nasehi M, Khodagholi F, Vaseghi S, Zarrindast ...
  • 10. Kim Y, Elmenhorst D, Weisshaupt A, Wedekind F, Kroll ...
  • 11. Uschakov A, Grivel J, Cvetkovic-Lopes V, Bayer L, Bernheim ...
  • 12. Sirvio J, MacDonald E. Central alpha1-adrenoceptors: their role in ...
  • 13. Valizadegan F, Oryan S, Nasehi M, Zarrindast MR. Interaction ...
  • 14. Kim Y, Chen L, McCarley RW, Strecker RE. Sleep ...
  • 15. MacDonald E, Kobilka BK, Scheinin M. Gene targeting--homing in ...
  • 16. Kable JW, Murrin LC, Bylund DB. In vivo gene ...
  • 17. Lee MG, Hassani OK, Jones BE. Discharge of identified ...
  • 18. Paxinos G, Watson C, Pennisi M, Topple A. Bregma, ...
  • 19. Vaseghi S, Babapour V, Nasehi M, Zarrindast MR. Synergistic ...
  • 20. Machado RB, Hipolide DC, Benedito-Silva AA, Tufik S. Sleep ...
  • 21. Naseri MH, Hesami-Tackallou S, Torabi-Nami M, Zarrindast MR, Nasehi ...
  • 22. Nasehi M, Sahebgharani M, Haeri-Rohani A, Zarrindast MR. Effects ...
  • 23. Zarrindast MR, Farajzadeh Z, Rostami P, Rezayof A, Nourjah ...
  • 24. Malboosi N, Nasehi M, Hashemi M, Vaseghi S, Zarrindast ...
  • 25. Torabi-Nami M, Nasehi M, Zarrindast MR. Sleep loss and ...
  • 26. Dorokhov VB, Kozhedub RG, Arsen’ev GN, Kozhechkin SN, Ukraintseva ...
  • 27. Bridoux A, Laloux C, Derambure P, Bordet R, Monaca ...
  • 28. Ferry B, McGaugh JL. Involvement of basolateral amygdala alpha2-adrenoceptors ...
  • 29. Silva RH, Abilio VC, Takatsu AL, Kameda SR, Grassl ...
  • 30. Alzoubi KH, Rawashdeh NQ, Khabour OF, El-Elimat T, Albataineh ...
  • 31. Liu YZ, Chen JK, Li ZP, Zhao T, Ni ...
  • 32. Bridoux A, Laloux C, Derambure P, Bordet R, Monaca ...
  • 33. Beiranvand A, Nasehi M, Zarrindast MR, Moghaddasi M. Involvement ...
  • 34. Li Y, Yu M, Zhao B, Wang Y, Zha ...
  • 35. Ellenbogen JM, Payne JD, Stickgold R. The role of ...
  • 36. Ishikawa A, Kanayama Y, Matsumura H, Tsuchimochi H, Ishida ...
  • 37. Aston-Jones G, Cohen JD. Adaptive gain and the role ...
  • 38. Gibbs ME, Summers RJ. Role of adrenoceptor subtypes in ...
  • 39. Roozendaal B, McEwen BS, Chattarji S. Stress, memory and ...
  • 40. Izquierdo I, Medina JH, Izquierdo LA, Barros DM, de ...
  • 41. Bear MF, Singer W. Modulation of visual cortical plasticity ...
  • 42. Frey S, Bergado-Rosado J, Seidenbecher T, Pape HC, Frey ...
  • 43. Berridge CW, Waterhouse BD. The locus coeruleus-noradrenergic system: modulation ...
  • 44. Pace-Schott EF, Hobson JA. The neurobiology of sleep: genetics, ...
  • 45. Aston-Jones G, Bloom FE. Activity of norepinephrine-containing locus coeruleus ...
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