Literature DB >> 29985456

Normalization of disrupted clock gene expression in males with tetraplegia: a crossover randomized placebo-controlled trial of melatonin supplementation.

Emil Kostovski1,2, Elena Frigato3, Mladen Savikj4,5, Anders Dahm5,6,7, Per Morten Sandset5,7, Marie-Christine Mowinckel7, Grethe Skretting7, Bjarne Østerud8, Cristiano Bertolucci3, Per Ole Iversen7,9.   

Abstract

STUDY
DESIGN: Crossover double blind, randomized placebo-controlled trial.
OBJECTIVES: Circadian oscillators are located both in the brain and in peripheral organs. Melatonin, the main brain-derived hormone governing circadian variations, is highly associated with daylight patterns. However, in subjects with tetraplegia the melatonin levels are blunted. Here we studied peripheral oscillators in peripheral blood mononuclear cells (PBMCs) in males with tetraplegia by examining how exogenous melatonin may influence the expression of clock gene mRNAs.
SETTING: Sunnaas Rehabilitation Hospital, Nesoddtangen, Norway.
METHODS: Six males with tetraplegia received 2 mg of melatonin or placebo 4 days before the study period. We also included six able-bodied men sleeping or kept awake during the night. Plasma samples were collected four times during a 24-h period. The mRNA expression levels of the clock genes PER1, PER2, BMAL1, and REV-ERBα were quantified in PBMCs using quantitative RT-PCR.
RESULTS: The mRNA expression levels of PER-1 and -2 and REV-ERBα were increased at 04:00 h compared with the able-bodied controls (p < 0.05). Melatonin supplementation changed mRNA peak-time toward the time of supplementation.
CONCLUSIONS: Several peripheral clock genes displayed distorted expression levels in tetraplegia. Supplementation with melatonin changed the mRNA expression levels of these genes toward those observed among able-bodied. SPONSORSHIP: Financial support was provided from the Throne Holst Foundation, Sunnaas Rehabilitation hospital and the University of Ferrara (FAR2016).

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Year:  2018        PMID: 29985456     DOI: 10.1038/s41393-018-0176-x

Source DB:  PubMed          Journal:  Spinal Cord        ISSN: 1362-4393            Impact factor:   2.772


  31 in total

1.  Analysis of relative gene expression data using real-time quantitative PCR and the 2(-Delta Delta C(T)) Method.

Authors:  K J Livak; T D Schmittgen
Journal:  Methods       Date:  2001-12       Impact factor: 3.608

2.  Circadian clock genes oscillate in human peripheral blood mononuclear cells.

Authors:  Diane B Boivin; Francine O James; Aibin Wu; Park F Cho-Park; Huabao Xiong; Zhong S Sun
Journal:  Blood       Date:  2003-07-31       Impact factor: 22.113

3.  Sleep disturbances in the spinal cord injured: an epidemiological questionnaire investigation, including a normal population.

Authors:  F Biering-Sørensen; M Biering-Sørensen
Journal:  Spinal Cord       Date:  2001-10       Impact factor: 2.772

4.  Deregulated expression of circadian clock and clock-controlled cell cycle genes in chronic lymphocytic leukemia.

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Journal:  Expert Opin Pharmacother       Date:  2012-03-19       Impact factor: 3.889

6.  Melatonin resynchronizes dysregulated circadian rhythm circuitry in human prostate cancer cells.

Authors:  Brittney Jung-Hynes; Wei Huang; Russel J Reiter; Nihal Ahmad
Journal:  J Pineal Res       Date:  2010-05-27       Impact factor: 13.007

7.  Excess risk of bladder cancer in spinal cord injury: evidence for an association between indwelling catheter use and bladder cancer.

Authors:  Suzanne L Groah; David A Weitzenkamp; Daniel P Lammertse; Gale G Whiteneck; Dennis C Lezotte; Richard F Hamman
Journal:  Arch Phys Med Rehabil       Date:  2002-03       Impact factor: 3.966

Review 8.  Rhythms in human gastrointestinal mucosa and skin.

Authors:  Georg A Bjarnason; Richard Jordan
Journal:  Chronobiol Int       Date:  2002-01       Impact factor: 2.877

9.  Reduced peak, but no diurnal variation, in thrombin generation upon melatonin supplementation in tetraplegia. A randomised, placebo-controlled study.

Authors:  Per Ole Iversen; Anders Dahm; Grethe Skretting; Marie-Christine Mowinckel; Annicke Stranda; Bjarne Østerud; Per Morten Sandset; Emil Kostovski
Journal:  Thromb Haemost       Date:  2015-07-23       Impact factor: 5.249

Review 10.  Vascular dysfunctions following spinal cord injury.

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  5 in total

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2.  The effects of a high-fat/high-carbohydrate meal on leukocyte populations in adults with chronic spinal cord injury.

Authors:  Gabriel U Dix; Garett S Jackson; Kendra R Todd; Jan W van der Scheer; Jeremy J Walsh; Kathleen A Martin Ginis; Jonathan P Little
Journal:  Spinal Cord Ser Cases       Date:  2021-06-08

3.  Impact Of Spinal Cord Injury On Sleep: Current Perspectives.

Authors:  Abdulghani Sankari; M Safwan Badr; Jennifer L Martin; Najib T Ayas; David J Berlowitz
Journal:  Nat Sci Sleep       Date:  2019-10-15

Review 4.  Future Perspectives in Spinal Cord Repair: Brain as Saviour? TSCI with Concurrent TBI: Pathophysiological Interaction and Impact on MSC Treatment.

Authors:  Paul Köhli; Ellen Otto; Denise Jahn; Marie-Jacqueline Reisener; Jessika Appelt; Adibeh Rahmani; Nima Taheri; Johannes Keller; Matthias Pumberger; Serafeim Tsitsilonis
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5.  Timeline of Changes in Biomarkers Associated with Spinal Cord Injury-Induced Polyuria.

Authors:  Jason H Gumbel; Cui Bo Yang; Charles H Hubscher
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  5 in total

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