Blue light differentially alters cellular redox properties

被引:52
|
作者
Lewis, JB [1 ]
Wataha, JC [1 ]
Messer, RLW [1 ]
Caughman, GB [1 ]
Yamamoto, T [1 ]
Hsu, SD [1 ]
机构
[1] Med Coll Georgia, Sch Dent, Dept Oral Biol & Maxillofacial Pathol, Augusta, GA 30912 USA
关键词
visible light; oxidative stress; oral tumor cells; apoptosis; proteomics;
D O I
10.1002/jbm.b.30126
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Blue light (lambda = 380-500 nm) historically has been used to initiate polymerization of biomaterials and recently has been proposed as a therapeutic agent. New evidence suggests that cell-type-specific responses result from redox changes induced by exposure to blue light. Cultured cells were exposed to defined doses of blue light, equivalent to exposure times of 10 s and 2 min, to achieve energies of 5 J/cm(2) and 60 J/cm(2), respectively, after which (a) viable cell number, (b) cellular protein profiles, (c) mitochondrial succinate dehydrogenase (SDH) activity, (d) total reactive oxygen species (ROS), and (e) induction of apoptosis were compared to that of nonexposed control cultures. Results showed that blue-light exposure arrested monocyte cell growth and increased levels of peroxiredoxins. SDH activity of normal epidermal keratinocytes (NHEK) was slightly enhanced by blue light, whereas identical treatment of OSC2 oral tumor cells resulted in significant suppression of SDH activity. Blue-light exposure generally induced higher levels of total ROS in OSC2 cells than in NHEK. Finally, only OSC2 cells exhibited signs of apoptosis via Annexin V staining following exposure to blue light. These data support the central hypothesis that blue light induces an oxidative stress response in cultured cells resulting in cell-type-specific survival outcomes. The identification of oxidative stress as a mediator of the effects of blue light is a critical first step in defining its biological risks and therapeutic opportunities. (C) 2004 Wiley Periodicals, Inc.
引用
收藏
页码:223 / 229
页数:7
相关论文
共 50 条
  • [1] The Cellular Redox Environment Alters Antigen Presentation
    Trujillo, Jonathan A.
    Croft, Nathan P.
    Dudek, Nadine L.
    Channappanavar, Rudragouda
    Theodossis, Alex
    Webb, Andrew I.
    Dunstone, Michelle A.
    Illing, Patricia T.
    Butler, Noah S.
    Fett, Craig
    Tscharke, David C.
    Rossjohn, Jamie
    Perlman, Stanley
    Purcell, Anthony W.
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2014, 289 (40) : 27979 - 27991
  • [2] An uncommon redox behavior sheds light on the cellular antioxidant properties of ergothioneine
    Servillo, Luigi
    Castaldo, Domenico
    Casale, Rosario
    D'Onofrio, Nunzia
    Giovane, Alfonso
    Cautela, Domenico
    Balestrieri, Maria Luisa
    FREE RADICAL BIOLOGY AND MEDICINE, 2015, 79 : 228 - 236
  • [3] Sorting cells alters their redox state and cellular metabolome
    Llufrio, Elizabeth M.
    Wang, Lingjue
    Naser, Fuad J.
    Patti, Gary J.
    REDOX BIOLOGY, 2018, 16 : 381 - 387
  • [4] Artesunate-induced mitophagy alters cellular redox status
    Zhang, Jianbin
    Sun, Xin
    Wang, Liming
    Wong, Yin Kwan
    Lee, Yew Mun
    Zhou, Chao
    Wu, Guoqing
    Zhao, Tongwei
    Yang, Liu
    Lu, Liqin
    Zhong, Jianing
    Huang, Dongsheng
    Wang, Jigang
    REDOX BIOLOGY, 2018, 19 : 263 - 273
  • [5] Blue light differentially modulates cell survival and growth
    Wataha, JC
    Lewis, JB
    Lockwood, PE
    Hsu, S
    Messer, RL
    Rueggeberg, FA
    Bouillaguet, S
    JOURNAL OF DENTAL RESEARCH, 2004, 83 (02) : 104 - 108
  • [6] Selenium Anticancer Properties and Impact on Cellular Redox Status
    Kursvietiene, Lolita
    Mongirdiene, Ausra
    Bernatoniene, Jurga
    Sulinskiene, Jurgita
    Staneviciene, Inga
    ANTIOXIDANTS, 2020, 9 (01)
  • [7] Effect of blue light-emitting diode light and antioxidant potential in a somatic cell
    Bapary, Mohammad A. J.
    Takano, Jun-ichiro
    Soma, Shogo
    Sankai, Tadashi
    CELL BIOLOGY INTERNATIONAL, 2019, 43 (11) : 1296 - 1306
  • [8] Cellular Redox Homeostasis
    Le Gal, Kristell
    Schmidt, Edward E.
    Sayin, Volkan, I
    ANTIOXIDANTS, 2021, 10 (09)
  • [9] Redox Active α-Lipoic Acid Differentially Improves Mitochondrial Dysfunction in a Cellular Model of Alzheimer and Its Control Cells
    Dieter, Fabian
    Esselun, Carsten
    Eckert, Gunter P.
    INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2022, 23 (16)
  • [10] Methylnitrosourea, dimethylbenzanthracene and benzoapyrene differentially affect redox pathways, apoptosis and immunity in zebrafish
    Egimezer, G.
    Ustundag, U., V
    Ates, P. S.
    Unal, I
    Ustundag, F. D.
    Alturfan, A. A.
    Emekli-Alturfan, E.
    Altinoz, M. A.
    Elmaci, I
    HUMAN & EXPERIMENTAL TOXICOLOGY, 2020, 39 (07) : 920 - 929