Mito-Tempo suppresses autophagic flux via the PI3K/Akt/mTOR signaling pathway in neuroblastoma SH-SY5Y cells

被引:6
作者
Mukem, Sirirak [1 ]
Thongbuakaew, Tipsuda [1 ]
Khornchatri, Kanjana [2 ]
机构
[1] Walailak Univ, Sch Med, Nakhon Si Thammarat 80160, Thailand
[2] Thammasat Univ, Chulabhorn Int Coll Med, Rangsit Campus, Pathum Thani 12120, Thailand
关键词
Mito-Tempo; Glutamate; Oxidative stress; Excitotoxicity; Mitochondrial dysfunction; Autophagy; MITOCHONDRIAL DYSFUNCTION; OXIDATIVE STRESS; GLUTAMATE; SUPEROXIDE; DEATH; APOPTOSIS; NECROSIS; INHIBITION; MODULATION; MECHANISM;
D O I
10.1016/j.heliyon.2021.e07310
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The generation of excessive mitochondrial reactive oxygen species (mtROS) is associated with glutamatestimulated neurotoxicity and pathogenesis of Alzheimer's disease (AD). Impaired mitochondrial function is accompanied with oxidative stress that is a significant contributor to initiate autophagy, but the underlying mechanisms are not fully understood. The present study aimed to investigate the neuroprotective effects of MitoTempo on glutamate-induced neuroblastoma SH-SY5Y cell toxicity. SH-SY5Y cells were treated with 100 mu M glutamate in the presence or absence of 50 and 100 mu M Mito-Tempo for 24 h. Changes in cell viability were measured by MTT assay. Cytotoxicity and intracellular ROS accumulation were also evaluated using lactate dehydrogenase (LDH) activity assay and 2,7-dichlorofluorescein diacetate (DCFDA) Reactive Oxygen Species Assay kit, respectively. Mitochondrial membrane potential was analyzed by tetraethylbenzimidazoly-lcarbocyanine iodide (JC-1) staining. Expression of PI3K/AKT/mTOR pathway and autophagy markers, including LC3 (LC3I/-II) and p62 (SQSTM1) were performed using Western blot analysis. Our results demonstrated that glutamateexposed cells significantly increased cellular oxidative stress by enhancing ROS production. Glutamate treatment also increased LDH release follows the loss of mitochondrial membrane potential, caused cell viability loss. Treatment with Mito-Tempo not only attenuated the generation of ROS and improved mitochondrial membrane potential but also reduced the neurotoxicity of glutamate in a concentration-dependent manner, which leads to increased cell viability and decreased LDH release. Mito-Tempo has a greater protective effect by enhancing superoxide dismutase (SOD) activity and PI3K/AKT/mTOR phosphorylation. Moreover, Mito-Tempo treatment altered the autophagy process resulting in the decline in the ratio of the autophagy markers LC3-I/-II and p62 (SQSTM1). We propose that Mito-Tempo can improve neuronal properties against glutamate cytotoxicity through its direct free radical scavenging activity and inhibit excessive autophagy signaling pathway, therefore, allow for further studies to investigate the therapeutic potentials of Mito-Tempo in animal disease models and human.
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页数:9
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共 57 条
  • [1] Role of mitochondrial ROS in the brain: from physiology to neurodegeneration
    Angelova, Plamena R.
    Abramov, Andrey Y.
    [J]. FEBS LETTERS, 2018, 592 (05) : 692 - 702
  • [2] Cysteine-mediated redox signalling in the mitochondria
    Bak, D. W.
    Weerapana, E.
    [J]. MOLECULAR BIOSYSTEMS, 2015, 11 (03) : 678 - 697
  • [3] Neuroprotective effects of 20(S)-protopanaxadiol against glutamate-induced mitochondrial dysfunction in PC12 cells
    Bak, Dong-Ho
    Kim, Hyung Don
    Kim, Young Ock
    Park, Chun Geun
    Han, Seung-Yun
    Kim, Jwa-Jin
    [J]. INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE, 2016, 37 (02) : 378 - 386
  • [4] Effect of valproic acid on oxidative stress parameters of glutamate-induced excitotoxicity in SH-SY5Y cells
    Bebitoglu, Berna Terzioglu
    Oguz, Elif
    Gokce, Acet
    [J]. EXPERIMENTAL AND THERAPEUTIC MEDICINE, 2020, 20 (02) : 1321 - 1328
  • [5] APOPTOSIS AND NECROSIS - 2 DISTINCT EVENTS INDUCED, RESPECTIVELY, BY MILD AND INTENSE INSULTS WITH N-METHYL-D-ASPARTATE OR NITRIC-OXIDE SUPEROXIDE IN CORTICAL CELL-CULTURES
    BONFOCO, E
    KRAINC, D
    ANKARCRONA, M
    NICOTERA, P
    LIPTON, SA
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (16) : 7162 - 7166
  • [6] Superoxide is the major reactive oxygen species regulating autophagy
    Chen, Y.
    Azad, M. B.
    Gibson, S. B.
    [J]. CELL DEATH AND DIFFERENTIATION, 2009, 16 (07) : 1040 - 1052
  • [7] Therapeutic Targeting of Mitochondrial Superoxide in Hypertension
    Dikalova, Anna E.
    Bikineyeva, Alfiya T.
    Budzyn, Klaudia
    Nazarewicz, Rafal R.
    McCann, Louise
    Lewis, William
    Harrison, David G.
    Dikalov, Sergey I.
    [J]. CIRCULATION RESEARCH, 2010, 107 (01) : 106 - U221
  • [8] Brain Metal Distribution and Neuro-Inflammatory Profiles after Chronic Vanadium Administration and Withdrawal in Mice
    Folarin, Oluwabusayo R.
    Snyder, Amanda M.
    Peters, Douglas G.
    Olopade, Funmilayo
    Connor, James R.
    Olopade, James O.
    [J]. FRONTIERS IN NEUROANATOMY, 2017, 11
  • [9] Fulda Simone, 2010, Int J Cell Biol, V2010, P370835, DOI 10.1155/2010/370835
  • [10] Neurotoxicity Linked to Dysfunctional Metal Ion Homeostasis and Xenobiotic Metal Exposure: Redox Signaling and Oxidative Stress
    Garza-Lombo, Carla
    Posadas, Yanahi
    Quintanar, Liliana
    Gonsebatt, Maria E.
    Franco, Rodrigo
    [J]. ANTIOXIDANTS & REDOX SIGNALING, 2018, 28 (18) : 1669 - 1703