@article{09e1c0d20f6540659624e7f4aaf6d0a3,
title = "Melatonin successfully rescues the hippocampal molecular machinery and enhances anti-oxidative activity following early-life sleep deprivation injury",
abstract = "Early-life sleep deprivation (ESD) is a serious condition with severe cognitive sequelae. Considering hippocampus plays an essential role in cognitive regulation, the present study aims to determine whether melatonin, a neuroendocrine beard with significant anti-oxidative activity, would greatly depress the hippocampal oxidative stress, improves the molecular machinery, and consequently exerts the neuro-protective effects following ESD. Male weanling Wistar rats (postnatal day 21) were subjected to ESD for three weeks. During this period, the animals were administered normal saline or melatonin (10 mg/kg) via intraperitoneal injection between 09:00 and 09:30 daily. After three cycles of ESD, the animals were kept under normal sleep/wake cycle until they reached adulthood and were sacrificed. The results indicated that ESD causes long-term effects, such as impairment of ionic distribution, interruption of the expressions of neurotransmitters and receptors, decreases in the levels of several antioxidant enzymes, and impairment of several signaling pathways, which contribute to neuronal death in hippocampal regions. Melatonin administration during ESD prevented these effects. Quantitative evaluation of cells also revealed a higher number of neurons in the melatonin-treated animals when compared with the saline-treated animals. As the hippocampus is critical to cognitive activity, preserving or even improving the hippocampal molecular machinery by melatonin during ESD not only helps us to better understand the underlying mechanisms of ESD-induced neuronal dysfunction, but also the therapeutic use of melatonin to counteract ESD-induced neuronal deficiency.",
keywords = "Early-life sleep deprivation, Hippocampus, Melatonin, Neurochemical expression, TOF-SIMS analysis",
author = "Chang, {Hung Ming} and Lin, {Hsing Chun} and Cheng, {Hsin Lin} and Liao, {Chih Kai} and Tseng, {To Jung} and Renn, {Ting Yi} and Lan, {Chyn Tair} and Chen, {Li You}",
note = "Funding Information: FFiigguurree 88. .ScShcehmematiact idciadgiaragmra mshoshwoewd etdhetphoetepnotitaeln mtiaelchmanecishman(si)s mof(esa)rolyf-eliaferl syl-eleifpe dseleperpivadteiopnri vation (ESD) on the induction or development of neuronal deficiency. ESD would both impair the Na+/K++ + ATPase and depress the Nrf2-mediated anti-oxidative enzymes activities that consequently lead to neuronal deficiency through enhanced oxidative stress and cellular bioenergetics disruption. to neuronal deficiency through enhanced oxidative stress and cellular bioenergetics disruption. Exogenous application of melatonin could successfully preserve the neuronal function through Exogenous application of melatonin could successfully preserve the neuronal function through effectively rescuing the molecular machinery of the neurons and significantly increasing neuronal anti-oxidative activity. Author Contributions: Conceptualization, L.-Y.C., and H.-M.C.; methodology, H.-M.C.; software, T.-J.T.; investigation, H.-C.L., H.-L.C., and C.-K.L.; writing—original draft preparation, L.-Y.C.; writing—review and editing, T.-J.T., T.-Y.R., and C.-T.L.; supervision, L.-Y.C. All authors have read writing—review and editing, T.-J.T., T.-Y.R., and C.-T.L.; supervision, L.-Y.C. All authors have read and agreed to the published version of the manuscript. Funding: This study is supported by the research grants MOST-106-2314-B-040-028 to L.-Y.C. and MFuOnSdTi-n1g0:9T-2h3i2s0-sBtu-0d3y8-i0s4s6u ptpooHrt.e-dMb.Cy. thfreomresetharec hMgirnainsttrsyM oOf SSTc-i1e0n6c-e2 3a1n4d- BT-0e4c0h-n0o2l8ogtoy,L .T-Yai.Cpe.ia, nd TMaiOwSaTn-.1 09-2320-B-038-046 to H.-M.C. from the Ministry of Science and Technology, Taipei, Taiwan. Publisher Copyright: {\textcopyright} 2021 by the authors. Licensee MDPI, Basel, Switzerland.",
year = "2021",
month = may,
doi = "10.3390/antiox10050774",
language = "English",
volume = "10",
journal = "Antioxidants",
issn = "2076-3921",
publisher = "Multidisciplinary Digital Publishing Institute (MDPI)",
number = "5",
}