Effects of carotenoids on mitochondrial dysfunction

被引:4
|
作者
Ademowo, Opeyemi Stella [1 ]
Oyebode, Olubukola [1 ]
Edward, Roshita [1 ]
Conway, Myra E. [1 ]
Griffiths, Helen R. [2 ]
Dias, Irundika H. K. [3 ]
机构
[1] Univ Derby, Sch Sci, Biomed & Clin Sci Res, Derby, England
[2] Swansea Univ, Fac Med Hlth & Life Sci, Swansea, Wales
[3] Aston Univ, Coll Hlth & Life Sci, Aston Med Sch, Birmingham, England
关键词
OXIDATIVE STRESS; COMPLEXES; DISEASE;
D O I
10.1042/BST20230193
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Oxidative stress, an imbalance between pro-oxidant and antioxidant status, favouring the pro-oxidant state is a result of increased production of reactive oxygen species (ROS) or inadequate antioxidant protection. ROS are produced through several mechanisms in cells including during mitochondrial oxidative phosphorylation. Increased mitochondrialderived ROS are associated with mitochondrial dysfunction, an early event in age-related diseases such as Alzheimer's diseases (ADs) and in metabolic disorders including diabetes. AD post-mortem investigations of affected brain regions have shown the accumulation of oxidative damage to macromolecules, and oxidative stress has been considered an important contributor to disease pathology. An increase in oxidative stress, which leads to increased levels of superoxide, hydrogen peroxide and other ROS in a potentially vicious cycle is both causative and a consequence of mitochondrial dysfunction. Mitochondrial dysfunction may be ameliorated by molecules with antioxidant capacities that accumulate in mitochondria such as carotenoids. However, the role of carotenoids in mitigating mitochondrial dysfunction is not fully understood. A better understanding of the role of antioxidants in mitochondrial function is a promising lead towards the development of novel and effective treatment strategies for age-related diseases. This review evaluates and summarises some of the latest developments and insights into the effects of carotenoids on mitochondrial dysfunction with a focus on the antioxidant properties of carotenoids. The mitochondria-protective role of carotenoids may be key in therapeutic strategies and targeting the mitochondria ROS is emerging in drug development for agerelated diseases.
引用
收藏
页码:65 / 74
页数:10
相关论文
共 50 条
  • [11] Mitochondrial Dysfunction in the Pathophysiology of Bipolar Disorder: Effects of Pharmacotherapy
    Callaly, Edward
    Walder, Ken
    Morris, Gerwyn
    Maes, Michael
    Debnath, Monojit
    Berk, Michael
    MINI-REVIEWS IN MEDICINAL CHEMISTRY, 2015, 15 (05) : 355 - 365
  • [12] Impact of mitochondrial dysfunction on the antitumor effects of immune cells
    Wang, Quan
    Yin, Xiangzhi
    Huang, Xiaotong
    Zhang, Lu
    Lu, Haijun
    FRONTIERS IN IMMUNOLOGY, 2024, 15
  • [13] Effects of hexokinase binding to the mitochondria on oxidantinduced mitochondrial dysfunction
    Ardehali, H
    Shukair, S
    Moazed, F
    Naik, TJ
    FASEB JOURNAL, 2006, 20 (05): : A1083 - A1083
  • [14] Effects of mitochondrial disease/dysfunction on pregnancy: A retrospective study
    Karaa, Amel
    Elsharkawi, Ibrahim
    Clapp, Mark A.
    Balcells, Cristy
    MITOCHONDRION, 2019, 46 : 214 - 220
  • [15] Mitochondrial Dysfunction: Effects and Therapeutic Implications in Cerebral Gliomas
    Caruso, Gerardo
    Laera, Roberta
    Ferrarotto, Rosamaria
    Moreira, Cristofer Gonzalo Garcia
    Kumar, Rajiv
    Ius, Tamara
    Lombardi, Giuseppe
    Caffo, Maria
    MEDICINA-LITHUANIA, 2024, 60 (11):
  • [16] Antioxidative Effects of Tempol on Mitochondrial Dysfunction in Diabetic Nephropathy
    Ranjbar, Akram
    Kheiripour, Nejat
    Ghasemi, Hassan
    Rabiei, Mohamad Ali Seif
    Dadras, Farahnaz
    Khoshjou, Farhad
    IRANIAN JOURNAL OF KIDNEY DISEASES, 2018, 12 (02) : 84 - 90
  • [17] THE EFFECTS OF VERAPAMIL ON MITOCHONDRIAL DYSFUNCTION ASSOCIATED WITH CORONARY REPERFUSION
    SUGIYAMA, S
    MIYAZAKI, Y
    KOTAKA, K
    OZAWA, T
    JAPANESE CIRCULATION JOURNAL-ENGLISH EDITION, 1983, 47 (07): : 830 - 836
  • [18] Effects of mitochondrial dysfunction on cellular function: Role in atherosclerosis
    Xu, Minwen
    Wang, Wenjun
    Cheng, Jingpei
    Qu, Hongen
    Xu, Minjuan
    Wang, Liefeng
    BIOMEDICINE & PHARMACOTHERAPY, 2024, 174
  • [19] MITOCHONDRIAL DYSFUNCTION
    Jandova, A.
    Pokorny, J.
    Kobilkova, J.
    Trojan, S.
    Nedbalova, M.
    Dohnalova, A.
    Cocek, A.
    Masata, J.
    Holaj, R.
    Tvrzicka, E.
    Zvolsky, P.
    Dvorakova, M.
    Cifra, M.
    NEURAL NETWORK WORLD, 2009, 19 (04) : 379 - 391
  • [20] Effects of dysfunction in defense systems toward photoinhibition on mitochondrial respiration
    Yoshida, K
    Sakamoto, W
    Shikanai, T
    Terashima, I
    Noguchi, K
    PLANT AND CELL PHYSIOLOGY, 2006, 47 : S168 - S168