Neuron-glia interactions: Molecular basis of alzheimer's disease and applications of neuroproteomics

被引:37
作者
Ibrahim, Abdallah Mohammad [1 ]
Pottoo, Faheem Hyder [2 ]
Dahiya, Ekta Singh [3 ]
Khan, Firdos Alam [4 ]
Kumar, J. B. Senthil [5 ]
机构
[1] Imam Abdulrahman Bin Faisal Univ, Fundamentals Nursing Dept, Coll Nursing, Dammam, Saudi Arabia
[2] Imam Abdulrahman Bin Faisal Univ, Dept Pharmacol, Coll Clin Pharm, POB 1982, Dammam 31441, Saudi Arabia
[3] Auckland Univ Technol, Natl Inst Stroke & Appl Neurosci NISAN, Auckland, New Zealand
[4] Imam Abdulrahman Bin Faisal Univ, Inst Res & Med Consultat, Dept Stem Cell Res, Dammam, Saudi Arabia
[5] Jawaharlal Nehru Univ, Special Ctr Mol Med, New Delhi, India
关键词
Alzheimer's disease; astrocytes; gliosis; LC-MS; microglia; neurodegeneration; neuroproteomics; neurotransmission; oligodendrocytes; CENTRAL-NERVOUS-SYSTEM; CEREBROSPINAL-FLUID; AMYLOID-BETA; STEM-CELLS; BIOMARKERS; MICROGLIA; ASTROCYTES; IDENTIFICATION; PATHOGENESIS; INFLAMMATION;
D O I
10.1111/ejn.14838
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Neurodegenerative disorders present with progressive and irreversible degeneration of the neurons. Alzheimer's disease (AD) is one of the most common neurodegenerative disorders affecting 50 million people worldwide (2017), expected to be doubled every 20 years. Primarily affected by age, AD is the cause for old-age dementia, progressive memory loss, dysfunctional thoughts, confusion, cognitive impairment and personality changes. Neuroglia formerly understood as "glue" of the brain neurons consists of macroglia (astrocytes and oligodendrocyte), microglia and progenitors NG2-glia, and constitute a large fraction of the mammalian brain. The primary functions of glial cells are to provide neurons with metabolic and structural support in the healthy brain; however, they attain a "reactive" state from the "resting" state upon challenged with a pathological insult such as a neurodegenerative cascade. Failure or defects in their homoeostatic functions (i.e. concentration of ions, neurotransmitters) ultimately jeopardize neurons with excitotoxicity and oxidative stress. Moreover, the most common clinical outcome of AD is the cognitive impairment and memory loss, which are attributed mainly by the accumulation of A beta. Failure of glial cells to remove the A beta toxic proteins accelerates the AD progression. The rapidly emerging proteomic techniques such as mass spectrometry (MS), cross-linking mass spectrometry, hydrogen deuterium trade mass spectrometry, protein foot printing and 2-DGE combined with LC-MS/MS present wide array of possibilities for the identification of differentially expressed proteins in AD.
引用
收藏
页码:2931 / 2943
页数:13
相关论文
共 87 条
[41]   Large-scale proteomic analysis of Alzheimer's disease brain and cerebrospinal fluid reveals early changes in energy metabolism associated with microglia and astrocyte activation [J].
Johnson, Erik C. B. ;
Dammer, Eric B. ;
Duong, Duc M. ;
Ping, Lingyan ;
Zhou, Maotian ;
Yin, Luming ;
Higginbotham, Lenora A. ;
Guajardo, Andrew ;
White, Bartholomew ;
Troncoso, Juan C. ;
Thambisetty, Madhav ;
Montine, Thomas J. ;
Lee, Edward B. ;
Trojanowski, John Q. ;
Beach, Thomas G. ;
Reiman, Eric M. ;
Haroutunian, Vahram ;
Wang, Minghui ;
Schadt, Eric ;
Zhang, Bin ;
Dickson, Dennis W. ;
Ertekin-Taner, Nilufer ;
Golde, Todd E. ;
Petyuk, Vladislav A. ;
De Jager, Philip L. ;
Bennett, David A. ;
Wingo, Thomas S. ;
Rangaraju, Srikant ;
Hajjar, Ihab ;
Shulman, Joshua M. ;
Lah, James J. ;
Levey, Allan I. ;
Seyfried, Nicholas T. .
NATURE MEDICINE, 2020, 26 (05) :769-+
[42]   Deep proteomic network analysis of Alzheimer's disease brain reveals alterations in RNA binding proteins and RNA splicing associated with disease [J].
Johnson, Erik C. B. ;
Dammer, Eric B. ;
Duong, Duc M. ;
Yin, Luming ;
Thambisetty, Madhav ;
Troncoso, Juan C. ;
Lah, James J. ;
Levey, Allan I. ;
Seyfried, Nicholas T. .
MOLECULAR NEURODEGENERATION, 2018, 13
[43]  
Kareem O., 2020, BECLIN 1 COMPLEX NEU
[44]   A Unique Microglia Type Associated with Restricting Development of Alzheimer's Disease [J].
Keren-Shaul, Hadas ;
Spinrad, Amit ;
Weiner, Assaf ;
Matcovitch-Natan, Orit ;
Dvir-Szternfeld, Raz ;
Ulland, Tyler K. ;
David, Eyal ;
Baruch, Kuti ;
Lara-Astaiso, David ;
Toth, Beata ;
Itzkovitz, Shalev ;
Colonna, Marco ;
Schwartz, Michal ;
Amit, Ido .
CELL, 2017, 169 (07) :1276-+
[45]   Neuroglia: the 150 years after [J].
Kettenmann, Helmut ;
Verkhratsky, Alexei .
TRENDS IN NEUROSCIENCES, 2008, 31 (12) :653-659
[46]   Diversity of astrocyte functions and phenotypes in neural circuits [J].
Khakh, Baljit S. ;
Sofroniew, Michael V. .
NATURE NEUROSCIENCE, 2015, 18 (07) :942-952
[47]  
Kim YS, 2018, ANIM CELLS SYST, V22, P213
[48]  
Kosik KS., 1991, GROWTH FACTORS ALZHE, P234
[49]   Astrocyte Regulation of Blood Flow in the Brain [J].
MacVicar, Brian A. ;
Newman, Eric A. .
COLD SPRING HARBOR PERSPECTIVES IN BIOLOGY, 2015, 7 (05) :1-15
[50]  
Mishra Supriya, 2019, Pharmaceutical Nanotechnology, V7, P206, DOI 10.2174/2211738507666190425121509