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Chronic light deprivation induces different effects on spatial and fear memory and hippocampal BDNF/TRKB expression during light and dark phases of rat diurnal rhythm. | LitMetric

AI Article Synopsis

  • Disruptions in the light/dark cycle negatively impact memory formation and retrieval in both humans and animals, particularly observed through animal studies.
  • A study involving adult male Wistar rats divided them into two groups: one with a normal light/dark cycle and another kept in constant darkness for three weeks, with performance measured using the Morris Water maze and auditory fear conditioning tests.
  • Rats in constant darkness showed impaired spatial memory retrieval and enhanced extinction of auditory fear memory during the light phase and had altered BDNF/TRKB protein levels in the hippocampus, indicating serious effects on their neural function compared to those in regular light/dark conditions.

Article Abstract

Disruptions in light/dark cycle have been associated with an altered ability to form and retrieve memory in human and animals. Animal studies have shown that chronic light deprivation disrupts the light/dark cycle and alters the neural connections that mediate hippocampal memory formation. In order to better understand how light deprivation affects the formation and retrieval of memory in adult rats, we examined the effect of total darkness on spatial and auditory fear learning and memory formation and BDNF/TRKB protein levels during the light and dark phases of the rat circadian cycle. Male Wistar rats (n = 60), were randomly divided into two main groups: normal rearing (NR, 12 h light/dark cycle for 3 weeks) and dark rearing (DR, kept in constant darkness for 3 weeks); and each of these groups had a "light (day)" and "dark (night)" sub-group. After 3 weeks, the Morris Water maze and auditory fear conditioning were used to assess spatial and fear memory acquisition and retrieval, respectively. BDNF and TRKB protein levels in the hippocampus of rats from the four sub-groups were measured by Western blot, at the completion of the 3 week constant darkness exposure and after the behavioral experiments. These studies revealed that DR for 3 weeks impaired spatial memory retrieval and enhanced extinction of auditory fear memory specifically during the light (day) phase. DR also eliminated the normal fluctuations in BDNF/TRKB levels observed in the hippocampus across the light/dark cycle.

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Source
http://dx.doi.org/10.1016/j.bbr.2021.113638DOI Listing

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