Literature DB >> 14671188

Molecular changes underlying reduced pineal melatonin levels in Alzheimer disease: alterations in preclinical and clinical stages.

Ying-Hui Wu1, Matthijs G P Feenstra, Jiang-Ning Zhou, Rong-Yu Liu, Javier Sastre Toranõ, Hendrikus J M Van Kan, David F Fischer, Rivka Ravid, Dick F Swaab.   

Abstract

A disturbed sleep-wake rhythm is common in Alzheimer disease (AD) patients and correlated with decreased melatonin levels and a disrupted circadian melatonin rhythm. Melatonin levels in the cerebrospinal fluid are decreased during the progression of AD neuropathology (as determined by the Braak stages), already in cognitively intact subjects with the earliest AD neuropathology (Braak stages I-II) (preclinical AD). To investigate the molecular mechanisms behind the decreased melatonin levels, we measured monoamines and mRNA levels of enzymes of the melatonin synthesis and its noradrenergic regulation in pineal glands from 18 controls, 33 preclinical AD subjects, and 25 definite AD patients. Pineal melatonin levels were highly correlated with cerebrospinal fluid melatonin levels. The circadian melatonin rhythm disappeared because of decreased nocturnal melatonin levels in both the preclinical AD and AD patients. Also the circadian rhythm of beta(1)-adrenergic receptor mRNA disappeared in both patient groups. The precursor of melatonin, serotonin was stepwise depleted during the course of AD, as indicated by the up-regulated monoamine oxidase A mRNA and activity (5-hydroxyindoleacetic acid:serotonin ratio). We conclude that a dysfunction of noradrenergic regulation and the depletion of serotonin by increased monoamine oxidase A result in the loss of melatonin rhythm already in preclinical AD.

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Year:  2003        PMID: 14671188     DOI: 10.1210/jc.2003-030833

Source DB:  PubMed          Journal:  J Clin Endocrinol Metab        ISSN: 0021-972X            Impact factor:   5.958


  68 in total

Review 1.  Melatonin antioxidative defense: therapeutical implications for aging and neurodegenerative processes.

Authors:  Seithikurippu R Pandi-Perumal; Ahmed S BaHammam; Gregory M Brown; D Warren Spence; Vijay K Bharti; Charanjit Kaur; Rüdiger Hardeland; Daniel P Cardinali
Journal:  Neurotox Res       Date:  2012-06-28       Impact factor: 3.911

2.  Inhibition of melatonin biosynthesis induces neurofilament hyperphosphorylation with activation of cyclin-dependent kinase 5.

Authors:  Shaohui Wang; Lingqiang Zhu; Hairong Shi; Hongyun Zheng; Qing Tian; Qun Wang; Rong Liu; Jian-Zhi Wang
Journal:  Neurochem Res       Date:  2007-03-31       Impact factor: 3.996

Review 3.  The management of sleep and circadian disturbance in patients with dementia.

Authors:  Qiuping Pearl Zhou; Lorena Jung; Kathy C Richards
Journal:  Curr Neurol Neurosci Rep       Date:  2012-04       Impact factor: 5.081

Review 4.  Deciphering the Interacting Mechanisms of Circadian Disruption and Alzheimer's Disease.

Authors:  Md Sahab Uddin; Dewan Md Sumsuzzman; Philippe Jeandet; Tapan Behl; Abdur Rauf; Md Shah Amran; Ghulam Md Ashraf
Journal:  Neurochem Res       Date:  2021-04-19       Impact factor: 3.996

Review 5.  'The clocks that time us'--circadian rhythms in neurodegenerative disorders.

Authors:  Aleksandar Videnovic; Alpar S Lazar; Roger A Barker; Sebastiaan Overeem
Journal:  Nat Rev Neurol       Date:  2014-11-11       Impact factor: 42.937

Review 6.  The aging clock: circadian rhythms and later life.

Authors:  Suzanne Hood; Shimon Amir
Journal:  J Clin Invest       Date:  2017-02-01       Impact factor: 14.808

Review 7.  Melatonin in Alzheimer's Disease: A Latent Endogenous Regulator of Neurogenesis to Mitigate Alzheimer's Neuropathology.

Authors:  Md Farhad Hossain; Md Sahab Uddin; G M Sala Uddin; Dewan Md Sumsuzzman; Md Siddiqul Islam; George E Barreto; Bijo Mathew; Ghulam Md Ashraf
Journal:  Mol Neurobiol       Date:  2019-06-17       Impact factor: 5.590

8.  Microtubules modulate melatonin receptors involved in phase-shifting circadian activity rhythms: in vitro and in vivo evidence.

Authors:  Michael J Jarzynka; Deepshikha K Passey; David A Johnson; Nagarjun V Konduru; Nicholas F Fitz; Nicholas M Radio; Mark Rasenick; Susan Benloucif; Melissa A Melan; Paula A Witt-Enderby
Journal:  J Pineal Res       Date:  2008-10-28       Impact factor: 13.007

9.  Therapeutic application of melatonin in mild cognitive impairment.

Authors:  Daniel P Cardinali; Daniel E Vigo; Natividad Olivar; María F Vidal; Analía M Furio; Luis I Brusco
Journal:  Am J Neurodegener Dis       Date:  2012-11-18

10.  Melatonin and bright-light treatment for rest-activity disruption in institutionalized patients with Alzheimer's disease.

Authors:  Glenna A Dowling; Robert L Burr; Eus J W Van Someren; Erin M Hubbard; Jay S Luxenberg; Judy Mastick; Bruce A Cooper
Journal:  J Am Geriatr Soc       Date:  2007-12-07       Impact factor: 5.562

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