Literature DB >> 8853378

Circadian rhythm and response to light of extracellular glutamate and aspartate in rat suprachiasmatic nucleus.

S Honma1, Y Katsuno, K Shinohara, H Abe, K Honma.   

Abstract

Extracellular concentrations of glutamate and aspartate were measured in the vicinity of rat suprachiasmatic nucleus (SCN) by means of in vivo microdialysis. The concentrations of both excitatory amino acids (EAAs) were higher during the dark phase than during the light under the light-dark cycle, showing pulsatile fluctuations throughout the day. When rats were released into the complete darkness, the 24-h pattern in the aspartate continued for at least one cycle, whereas that in the glutamate disappeared. The nocturnal increases in the EAA levels were not due to the increase of locomotor activity during the nighttime, because the 24-h rhythms were also detected in animals under urethan anesthesia. The patterns of extracellular EAA levels were changed when rats were released into the continuous light. Circadian rhythm was not detected in the glutamate, whereas the 24-h pattern was maintained in the aspartate with the levels increased to various extents. A 30-min light pulse given either at zeitgber time (ZT) 1 or ZT 13 elevated the EAA levels during the latter half of the light pulse, except glutamate by a pulse at ZT 1. The extracellular EAA levels in the vicinity of the rat SCN showed the circadian rhythm with a nocturnal peak and increased in response to the continuous light and a brief light pulse. The aspartate level is considered to be regulated by the endogenous circadian rhythm, but the glutamate levels seems to be modified by the light-dark cycle.

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Year:  1996        PMID: 8853378     DOI: 10.1152/ajpregu.1996.271.3.R579

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  7 in total

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Authors:  David E Featherstone
Journal:  ACS Chem Neurosci       Date:  2009-10-09       Impact factor: 4.418

2.  Effects of time-of-day on the concentration of defined excitatory and inhibitory amino acids in the cerebrospinal fluid of rats: a microdialysis study.

Authors:  Francisco Estrada-Rojo; Liliana Carmona-Aparicio; Virginia Arriaga-Avila; Elvia Coballase-Urrutia; Adán Pérez-Arredondo; Rosalinda Guevara-Guzmán; Noemi Cárdenas-Rodríguez; Luz Navarro
Journal:  Amino Acids       Date:  2021-08-30       Impact factor: 3.520

3.  Constant Light in Critical Postnatal Days Affects Circadian Rhythms in Locomotion and Gene Expression in the Suprachiasmatic Nucleus, Retina, and Pineal Gland Later in Life.

Authors:  Aneta Kubištová; Veronika Spišská; Lucie Petrželková; Leona Hrubcová; Simona Moravcová; Lenka Maierová; Zdeňka Bendová
Journal:  Biomedicines       Date:  2020-12-07

Review 4.  Human circadian rhythm studies: Practical guidelines for inclusion/exclusion criteria and protocol.

Authors:  Yashar Yousefzadehfard; Bennett Wechsler; Christine DeLorenzo
Journal:  Neurobiol Sleep Circadian Rhythms       Date:  2022-08-08

5.  NMDA and PACAP receptor signaling interact to mediate retinal-induced scn cellular rhythmicity in the absence of light.

Authors:  Ian C Webb; Lique M Coolen; Michael N Lehman
Journal:  PLoS One       Date:  2013-10-01       Impact factor: 3.240

Review 6.  A Systematic Search and Mapping Review of Studies on Intracerebral Microdialysis of Amino Acids, and Systematized Review of Studies on Circadian Rhythms.

Authors:  Cathalijn H C Leenaars; Jennifer Freymann; Koen Jakobs; Julia M L Menon; Thomas J Van Ee; Janneke Elzinga; Rosalie W M Kempkes; Bea Zoer; Pim W H I M Drinkenburg
Journal:  J Circadian Rhythms       Date:  2018-10-09

7.  Day-Night Variations in the Concentration of Neurotransmitters in the Rat Lumbar Spinal Cord.

Authors:  Beatriz Shantal Jiménez-Zárate; Celia Piña-Leyva; Marina Rodríguez-Sánchez; Benjamín Florán-Garduño; Luis Antonio Jiménez-Zamudio; Ismael Jiménez-Estrada
Journal:  J Circadian Rhythms       Date:  2021-07-19
  7 in total

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