Crosstalk Between Aging, Circadian Rhythm, and Melatonin

被引:8
|
作者
Verma, Avnish Kumar [1 ]
Khan, Mohammad Idreesh [2 ]
Ashfaq, Fauzia [3 ]
Rizvi, Syed Ibrahim [1 ,4 ]
机构
[1] Univ Allahabad, Dept Biochem, Allahabad, India
[2] Qassim Univ, Coll Appl Hlth Sci Ar Rass, Dept Clin Nutr, Ar Rass, Saudi Arabia
[3] Jazan Univ, Appl Med Sci Coll, Clin Nutr Dept, Jazan, Saudi Arabia
[4] Univ Allahabad, Dept Biochem, Allahabad 211002, India
关键词
circadian clock; aging; oxidative stress; circadian rhythm disruption; melatonin; CLOCK GENE-EXPRESSION; AGE-RELATED-CHANGES; OXIDATIVE STRESS; SUPRACHIASMATIC NUCLEUS; SLEEP DISORDERS; MESSENGER-RNA; PINEAL-GLAND; ANTIOXIDANT; MICE; MITOCHONDRIA;
D O I
10.1089/rej.2023.0047
中图分类号
R592 [老年病学]; C [社会科学总论];
学科分类号
03 ; 0303 ; 100203 ;
摘要
Circadian rhythms (CRs) are 24-hour periodic oscillations governed by an endogenous circadian pacemaker located in the suprachiasmatic nucleus (SCN), which organizes the physiology and behavior of organisms. Circadian rhythm disruption (CRD) is also indicative of the aging process. In mammals, melatonin is primarily synthesized in the pineal gland and participates in a variety of multifaceted intracellular signaling networks and has been shown to synchronize CRs. Endogenous melatonin synthesis and its release tend to decrease progressively with advancing age. Older individuals experience frequent CR disruption, which hastens the process of aging. A profound understanding of the relationship between CRs and aging has the potential to improve existing treatments and facilitate development of novel chronotherapies that target age-related disorders. This review article aims to examine the circadian regulatory mechanisms in which melatonin plays a key role in signaling. We describe the basic architecture of the molecular circadian clock and its functional decline with age in detail. Furthermore, we discuss the role of melatonin in regulation of the circadian pacemaker and redox homeostasis during aging. Moreover, we also discuss the protective effect of exogenous melatonin supplementation in age-dependent CR disruption, which sheds light on this pleiotropic molecule and how it can be used as an effective chronotherapeutic medicine.
引用
收藏
页码:229 / 241
页数:13
相关论文
共 50 条
  • [21] Circadian rhythm in salivary melatonin in narcoleptic patients
    Blazejova, Katerina
    Illnerova, Helena
    Hajek, Ivan
    Nevsimalova, Sona
    NEUROSCIENCE LETTERS, 2008, 437 (02) : 162 - 164
  • [22] MELATONIN CIRCADIAN-RHYTHM IN CHILDHOOD DEPRESSION
    CAVALLO, A
    HOLT, KG
    HEJAZI, MS
    RICHARDS, GE
    MEYER, WJ
    JOURNAL OF THE AMERICAN ACADEMY OF CHILD AND ADOLESCENT PSYCHIATRY, 1987, 26 (03): : 395 - 399
  • [23] Possible Role of Melatonin Circadian Rhythm in Crayfish
    Solas-Chagoyain, Hactor
    ENDOCRINE REVIEWS, 2014, 35 (03)
  • [24] SOME PERTURBATIONS THAT DISTURB THE CIRCADIAN MELATONIN RHYTHM
    REITER, RJ
    RICHARDSON, BA
    CHRONOBIOLOGY INTERNATIONAL, 1992, 9 (04) : 314 - 321
  • [25] THE CIRCADIAN-RHYTHM OF MELATONIN IN HYPOTHYROIDISM AND HYPERTHYROIDISM
    SOSZYNSKI, P
    ZGLICZYNSKI, S
    PUCILOWSKA, J
    ACTA ENDOCRINOLOGICA, 1988, 119 (02): : 240 - 244
  • [26] Emergence and evolution of the circadian rhythm of melatonin in children
    Ardura, J
    Gutierrez, R
    Andres, J
    Agapito, T
    HORMONE RESEARCH, 2003, 59 (02) : 66 - 72
  • [27] Use of melatonin for sleep and circadian rhythm disorders
    Sack, RL
    Lewy, AJ
    Hughes, RJ
    ANNALS OF MEDICINE, 1998, 30 (01) : 115 - 121
  • [28] Circadian Rhythm Dysregulation and Restoration: The Role of Melatonin
    Vasey, Clayton
    McBride, Jennifer
    Penta, Kayla
    NUTRIENTS, 2021, 13 (10)
  • [29] CIRCADIAN MELATONIN RHYTHM IN WOMEN WITH HYPOTHALAMIC AMENORRHEA
    BARANOWSKA, B
    SOSZYNSKI, P
    MISIOROWSKI, W
    DOROBEK, W
    WITKOWSKI, M
    NEUROENDOCRINOLOGY LETTERS, 1986, 8 (06) : 295 - 300
  • [30] Melatonin modulates the ERG circadian rhythm in crayfish
    Solis-Chagoyan, Hector
    Mendoza-Vargas, Leonor
    Fuentes-Pardo, Beatriz
    COMPARATIVE BIOCHEMISTRY AND PHYSIOLOGY A-MOLECULAR & INTEGRATIVE PHYSIOLOGY, 2008, 149 (04): : 373 - 379