Accumulation of Non-Transferrin-Bound Iron by Neurons, Astrocytes, and Microglia

被引:93
|
作者
Bishop, Glenda M. [1 ]
Dang, Theresa N. [1 ]
Dringen, Ralf [1 ,2 ,3 ]
Robinson, Stephen R. [1 ]
机构
[1] Monash Univ, Sch Psychol & Psychiat, Blood Brain Interact Grp, Clayton, Vic 3800, Australia
[2] Univ Bremen, Ctr Biomol Interact Bremen, Fac Biol Chem 2, Bremen, Germany
[3] Univ Bremen, Ctr Environm Res & Sustainable Technol, Bremen, Germany
基金
澳大利亚国家健康与医学研究理事会; 英国医学研究理事会;
关键词
NTBI; Neurodegeneration; Iron overload; FAC; Oxidative stress; CEREBELLAR GRANULE CELLS; CULTURED ASTROCYTES; PARKINSONS-DISEASE; ALZHEIMERS-DISEASE; OXIDATIVE STRESS; ASTROGLIAL CELLS; GLIAL-CELLS; IN-VITRO; BRAIN; FERRITIN;
D O I
10.1007/s12640-010-9195-x
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Neurodegenerative conditions such as Alzheimer's disease, Parkinson's disease, and hemorrhagic stroke are associated with increased levels of non-transferrin-bound iron (NTBI) in the brain, which can promote Fenton chemistry. While all types of brain cells can take up NTBI, their efficiency of accumulation and capacity to withstand iron-mediated toxicity has not been directly compared. The present study assessed NTBI accumulation in cultures enriched in neurons, astrocytes, or microglia after exposure to ferric ammonium citrate (FAC). Microglia were found to be the most efficient in accumulating iron, followed by astrocytes, and then neurons. Exposure to 100 mu M FAC for 24 h increased the specific iron content of cultured neurons, astrocytes, and microglial cells by 30-, 80-, and 100-fold, respectively. All cell types accumulated iron against the concentration gradient, resulting in intracellular iron concentrations that were several orders of magnitude higher than the extracellular iron concentrations. Accumulation of these large amounts of iron did not affect the viability of the cell cultures, indicating a high resistance to iron-mediated toxicity. These findings show that neurons, astrocytes and microglia cultured from neonatal mice all have the capacity to accumulate and safely store large quantities of iron, but that glial cells do this more efficiently than neurons. It is concluded that neurodegenerative conditions involving iron-mediated toxicity may be due to a failure of iron transport or storage mechanisms, rather than to the presence of high levels of NTBI.
引用
收藏
页码:443 / 451
页数:9
相关论文
共 50 条
  • [1] Accumulation of Non-Transferrin-Bound Iron by Neurons, Astrocytes, and Microglia
    Glenda M. Bishop
    Theresa N. Dang
    Ralf Dringen
    Stephen R. Robinson
    Neurotoxicity Research, 2011, 19 : 443 - 451
  • [2] Effects of carboxylic acids on the uptake of non-transferrin-bound iron by astrocytes
    Keenan, Belinda M.
    Robinson, Stephen R.
    Bishop, Glenda M.
    NEUROCHEMISTRY INTERNATIONAL, 2010, 56 (6-7) : 843 - 849
  • [3] The (Bio)Chemistry of Non-Transferrin-Bound Iron
    Silva, Andre M. N.
    Rangel, Maria
    MOLECULES, 2022, 27 (06):
  • [4] Differential accumulation of non-transferrin-bound iron by cardiac myocytes and fibroblasts
    Liu, Y
    Parkes, JG
    Templeton, DA
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2003, 35 (05) : 505 - 514
  • [5] Molecular mechanisms of non-transferrin-bound and transferring-bound iron uptake in primary hippocampal neurons
    Ji, Changyi
    Kosman, Daniel J.
    JOURNAL OF NEUROCHEMISTRY, 2015, 133 (05) : 668 - 683
  • [6] Non-transferrin-bound iron and tumor cells
    Anghileri, LJ
    Thouvenot, P
    ANTICANCER RESEARCH, 1997, 17 (4A) : 2529 - 2533
  • [7] Automated assay for non-transferrin-bound iron in serum samples
    Prezelj, Marija
    Knap, Bojan
    CLINICAL CHEMISTRY AND LABORATORY MEDICINE, 2010, 48 (10) : 1427 - 1432
  • [8] Non-transferrin-bound iron assay system utilizing a conventional automated analyzer
    Ito, Satoshi
    Ikuta, Katsuya
    Kato, Daisuke
    Shibusa, Kotoe
    Niizeki, Noriyasu
    Tanaka, Hiroki
    Addo, Lynda
    Toki, Yasumichi
    Hatayama, Mayumi
    Inamura, Junki
    Shindo, Motohiro
    Sasaki, Katsunori
    Iizuka, Naomi
    Fujiya, Mikihiro
    Torimoto, Yoshihiro
    Kohgo, Yutaka
    CLINICA CHIMICA ACTA, 2014, 437 : 129 - 135
  • [9] Sub-lethal levels of amyloid β-peptide oligomers decrease non-transferrin-bound iron uptake and do not potentiate iron toxicity in primary hippocampal neurons
    SanMartin, C. D.
    Paula-Lima, A. C.
    Hidalgo, C.
    Nunez, M. T.
    BIOMETALS, 2012, 25 (04) : 805 - 813
  • [10] Effects of intravenous polymaltose iron on oxidant stress and non-transferrin-bound iron in hemodialysis patients
    Driss, F
    Vrtovsnik, F
    Katsahian, S
    Michel, C
    Baron, G
    Kolta, A
    Sedrati, N
    Mentré, F
    Mignon, F
    Cabantchik, I
    Grandchamp, B
    NEPHRON CLINICAL PRACTICE, 2005, 99 (03): : C63 - C67