Access the full text.
Sign up today, get DeepDyve free for 14 days.
Thomas Papouin, Jaclyn Dunphy, Michaela Tolman, Jeannine Foley, P. Haydon (2017)
Astrocytic control of synaptic functionPhilosophical Transactions of the Royal Society B: Biological Sciences, 372
David Carr, S. Sesack (1996)
Hippocampal afferents to the rat prefrontal cortex: Synaptic targets and relation to dopamine terminalsJournal of Comparative Neurology, 369
Hailong Li, K. McLaurin, C. Mactutus, R. Booze (2020)
Ballistic Labeling of Pyramidal Neurons in Brain Slices and in Primary Cell Culture.Journal of visualized experiments : JoVE, 158
V. Edara, A. Ghorpade, K. Borgmann (2020)
Insights into the Gene Expression Profiles of Active and Restricted Red/Green-HIV+ Human Astrocytes: Implications for Shock or Lock Therapies in the BrainJournal of Virology, 94
R. Paolicelli, G. Bolasco, F. Pagani, L. Maggi, M. Scianni, P. Panzanelli, M. Giustetto, Tiago Ferreira, Eva Guiducci, L. Dumas, D. Ragozzino, C. Gross (2011)
Synaptic Pruning by Microglia Is Necessary for Normal Brain DevelopmentScience, 333
Radha Raghuraman, Aparna Karthikeyan, Wong Wei, S. Dheen, Sreedharan Sajikumar (2019)
Activation of microglia in acute hippocampal slices affects activity-dependent long-term potentiation and synaptic tagging and capture in area CA1Neurobiology of Learning and Memory, 163
S. Fitting, Bogna Ignatowska-Jankowska, Cecilia Bull, R. Skoff, A. Lichtman, L. Wise, M. Fox, Jianmin Su, A. Medina, T. Krahe, P. Knapp, W. Guido, K. Hauser (2013)
Synaptic Dysfunction in the Hippocampus Accompanies Learning and Memory Deficits in Human Immunodeficiency Virus Type-1 Tat Transgenic MiceBiological Psychiatry, 73
L. Rubin, N. Sacktor, J. Creighton, Yong Du, C. Endres, M. Pomper, Jennifer Coughlin (2018)
Microglial activation is inversely associated with cognition in individuals living with HIV on effective antiretroviral therapyAIDS, 32
R. Jahn, W. Schiebler, C. Ouimet, P. Greengard (1985)
A 38,000-dalton membrane protein (p38) present in synaptic vesicles.Proceedings of the National Academy of Sciences of the United States of America, 82 12
L. Cysique, B. Brew (2019)
Comorbid depression and apathy in HIV-associated neurocognitive disorders in the era of chronic HIV infection.Handbook of clinical neurology, 165
D. Moore, E. Masliah, J. Rippeth, Raul Gonzalez, C. Carey, M. Cherner, R. Ellis, C. Achim, T. Marcotte, R. Heaton, I. Grant (2006)
Cortical and subcortical neurodegeneration is associated with HIV neurocognitive impairmentAIDS, 20
F. Kirchhoff, F. Helmchen (2013)
Axel Nimmerjahn Parenchyma in Vivo Resting Microglial Cells Are Highly Dynamic Surveillants of Brain
Hailong Li, K. McLaurin, J. Illenberger, C. Mactutus, R. Booze (2021)
Microglial HIV-1 Expression: Role in HIV-1 Associated Neurocognitive DisordersViruses, 13
B. Gelman, Trung Nguyen (2009)
Synaptic Proteins Linked to HIV-1 Infection and Immunoproteasome Induction: Proteomic Analysis of Human SynaptosomesJournal of Neuroimmune Pharmacology, 5
Martin Helm, T. Dankovich, Sunit Mandad, Burkhard Rammner, S. Jähne, Vanessa Salimi, Christina Koerbs, Richard Leibrandt, H. Urlaub, T. Schikorski, S. Rizzoli (2021)
A large-scale nanoscopy and biochemistry analysis of postsynaptic dendritic spinesNature Neuroscience, 24
Andrew Speidell, G. Asuni, Renee Wakulski, I. Mocchetti (2020)
Up-regulation of the p75 neurotrophin receptor is an essential mechanism for HIV-gp120 mediated synaptic loss in the striatumBrain, Behavior, and Immunity, 89
G. Raivich, M. Moreno-Flores, J. Möller, G. Kreutzberg (1994)
Inhibition of Posttraumatic Microglial Proliferation in a Genetic Model of Macrophage Colony‐Stimulating Factor Deficiency in the MouseEuropean Journal of Neuroscience, 6
R. Kesner, J. Churchwell (2011)
An analysis of rat prefrontal cortex in mediating executive functionNeurobiology of Learning and Memory, 96
Allen Ko, Guobin Kang, Julian Hattler, H. Galadima, Junfeng Zhang, Qingsheng Li, Woong-Ki Kim (2018)
Macrophages but not Astrocytes Harbor HIV DNA in the Brains of HIV-1-Infected Aviremic Individuals on Suppressive Antiretroviral TherapyJournal of Neuroimmune Pharmacology, 14
H. Akiyama, Toru Nishimura, H. Kondo, K. Ikeda, Y. Hayashi, P. Mcgeer (1994)
Expression of the receptor for macrophage colony stimulating factor by brain microglia and its upregulation in brains of patients with Alzheimer's disease and amyotrophic lateral sclerosisBrain Research, 639
R. Manolov, J. Ferron (2020)
Multilevel AnalysisEncyclopedia of Behavioral Medicine
L. Weinhard, Giulia Bartolomei, G. Bolasco, P. Machado, N. Schieber, Urte Neniskyte, Melanie Exiga, Auguste Vadisiute, A. Raggioli, A. Schertel, Y. Schwab, C. Gross (2017)
Microglia remodel synapses by presynaptic trogocytosis and spine head filopodia inductionNature Communications, 9
P. Squarzoni, Guillaume Oller, G. Hoeffel, L. Pont-Lezica, P. Rostaing, Donovan Low, A. Bessis, F. Ginhoux, S. Garel (2014)
Microglia modulate wiring of the embryonic forebrain.Cell reports, 8 5
A. Miyamoto, H. Wake, A. Ishikawa, Kei Eto, Keisuke Shibata, H. Murakoshi, S. Koizumi, A. Moorhouse, Y. Yoshimura, J. Nabekura (2016)
Microglia contact induces synapse formation in developing somatosensory cortexNature Communications, 7
B. Autran, G. Carcelain, T. Li, C. Blanc, D. Mathez, R. Tubiana, C. Katlama, P. Debré, J. Leibowitch (1997)
Positive effects of combined antiretroviral therapy on CD4+ T cell homeostasis and function in advanced HIV disease.Science, 277 5322
L. Campos, M. Guimarães, R. Remien (2010)
Anxiety and Depression Symptoms as Risk Factors for Non-adherence to Antiretroviral Therapy in BrazilAIDS and Behavior, 14
A. Bergamini, C. Perno, Luciana Dini, M. Capozzi, C. Pesce, L. Ventura, L. Cappannoli, Laura Falasca, G. Milanese, R. Caliò (1994)
Macrophage colony-stimulating factor enhances the susceptibility of macrophages to infection by human immunodeficiency virus and reduces the activity of compounds that inhibit virus binding.Blood, 84 10
A. Levine, V. Soontornniyomkij, C. Achim, E. Masliah, B. Gelman, J. Sinsheimer, E. Singer, D. Moore (2016)
Multilevel analysis of neuropathogenesis of neurocognitive impairment in HIVJournal of NeuroVirology, 22
V. Murthy, P. Camilli (2003)
Cell biology of the presynaptic terminal.Annual review of neuroscience, 26
M. Tremblay, R. Lowery, A. Majewska (2010)
Microglial Interactions with Synapses Are Modulated by Visual ExperiencePLoS Biology, 8
F. Antonucci, E. Turola, Loredana Riganti, M. Caleo, M. Gabrielli, C. Perrotta, L. Novellino, E. Clementi, P. Giussani, P. Viani, M. Matteoli, C. Verderio (2012)
Microvesicles released from microglia stimulate synaptic activity via enhanced sphingolipid metabolismThe EMBO Journal, 31
K. Hauser, Y. Hahn, V. Adjan, S. Zou, S. Buch, A. Nath, A. Bruce-Keller, P. Knapp (2009)
HIV‐1 Tat and morphine have interactive effects on oligodendrocyte survival and morphologyGlia, 57
Ryohei Akiyoshi, H. Wake, D. Kato, Hiroshi Horiuchi, Riho Ono, Ako Ikegami, Koichiro Haruwaka, T. Omori, Y. Tachibana, A. Moorhouse, J. Nabekura (2018)
Microglia Enhance Synapse Activity to Promote Local Network SynchronizationeNeuro, 5
J. Rose, J. Rose, C. Woolsey, C. Woolsey (1949)
Organization of the mammalian thalamus and its relationships to the cerebral cortex.Electroencephalography and clinical neurophysiology, 1 4
J. Whitney, A. Hill, Srisowmya Sanisetty, P. Penaloza-MacMaster, Jinyan Liu, Mayuri Shetty, Lily Parenteau, Crystal Cabral, Jennifer Shields, S. Blackmore, Jeffrey Smith, Amanda Brinkman, L. Peter, Sheeba Mathew, Kaitlin Smith, E. Borducchi, Daniel Rosenbloom, M. Lewis, J. Hattersley, Bei Li, J. Hesselgesser, R. Geleziunas, M. Robb, Jerome Kim, N. Michael, D. Barouch (2014)
Rapid Seeding of the Viral Reservoir Prior to SIV Viremia in Rhesus MonkeysNature, 512
Y Wang, M Liu, Q Lu, M Farrell, JM Lappin, J Shi, L Lu, Y Bao (2020)
Global prevalence and burden of HIV-associated neurocognitive disorder: A meta-analysisNeurology, 95
R. Heaton, D. Franklin, R. Ellis, J. McCutchan, S. Letendre, S. LeBlanc, S. Corkran, Nichole Duarte, D. Clifford, S. Woods, A. Collier, C. Marra, S. Morgello, M. Mindt, Michael Taylor, T. Marcotte, J. Atkinson, T. Wolfson, B. Gelman, J. McArthur, D. Simpson, I. Abramson, A. Gamst, C. Fennema-Notestine, T. Jernigan, J. Wong, I. Grant, for Groups (2010)
HIV-associated neurocognitive disorders before and during the era of combination antiretroviral therapy: differences in rates, nature, and predictorsJournal of Neurovirology, 17
Mike Veenstra, Rosiris León-Rivera, Ming Li, L. Gama, J. Clements, J. Berman (2017)
Mechanisms of CNS Viral Seeding by HIV+ CD14+ CD16+ Monocytes: Establishment and Reseeding of Viral Reservoirs Contributing to HIV-Associated Neurocognitive DisordersmBio, 8
L. Garvey, N. Pavese, M. Politis, A. Ramlackhansingh, D. Brooks, S. Taylor-Robinson, A. Winston (2014)
Increased microglia activation in neurologically asymptomatic HIV-infected patients receiving effective ARTAIDS, 28
Fay Wang, J. Flanagan, N. Su, Li-chong Wang, S. Bui, Allissa Nielson, Xingyong Wu, Hong-Thuy Vo, Xiao-Jun Ma, Yuling Luo (2012)
RNAscope: a novel in situ RNA analysis platform for formalin-fixed, paraffin-embedded tissues.The Journal of molecular diagnostics : JMD, 14 1
M. Lentz, M. Degaonkar, M. Mohamed, Hyun Kim, K. Conant, E. Halpern, N. Sacktor, P. Barker, M. Pomper (2010)
Exploring the relationship of macrophage colony-stimulating factor levels on neuroaxonal metabolism and cognition during chronic human immunodeficiency virus infectionJournal of NeuroVirology, 16
K. Ji, Gulcan Akgul, L. Wollmuth, S. Tsirka (2013)
Microglia Actively Regulate the Number of Functional SynapsesPLoS ONE, 8
H. Uylings, H. Groenewegen, B. Kolb (2003)
Do rats have a prefrontal cortex?Behavioural Brain Research, 146
D. Giulian, Jeffrey Ingeman (1988)
Colony-stimulating factors as promoters of ameboid microglia, 8
Adarsh Kumar, J.B. Fernandez, E. Singer, D. Commins, Drenna Waldrop-Valverde, R. Ownby, Mahendra Kumar (2009)
Human immunodeficiency virus type 1 in the central nervous system leads to decreased dopamine in different regions of postmortem human brainsJournal of NeuroVirology, 15
Miae Jang, E. Gould, Jie Xu, Eun Kim, J. Kim (2019)
Oligodendrocytes regulate presynaptic properties and neurotransmission through BDNF signaling in the mouse brainstemeLife, 8
A. Nimmerjahn, F. Kirchhoff, F. Helmchen (2005)
Resting Microglial Cells Are Highly Dynamic Surveillants of Brain Parenchyma in VivoScience, 308
Journal of NeuroVirology (2023) 29:460–471 and auditory cortices
Stella Panos, A. Re, A. Thames, T. Arentsen, Sapna Patel, S. Castellon, E. Singer, C. Hinkin (2014)
The impact of neurobehavioral features on medication adherence in HIV: Evidence from longitudinal modelsAIDS Care, 26
Audrey Knight, Samuel Brill, S. Queen, P. Tarwater, J. Mankowski (2018)
Increased Microglial CSF1R Expression in the SIV/Macaque Model of HIV CNS DiseaseJournal of Neuropathology & Experimental Neurology, 77
E. Stanley, M. Cifone, P Heard, V. Defendi (1976)
Factors regulating macrophage production and growth: identity of colony- stimulating factor and macrophage growth factorThe Journal of Experimental Medicine, 143
ER Stanley, PM Heard (1977)
Factors regulating macrophage production and growth. Purification and some properties of the colony stimulating factor from medium conditioned by mouse L cellsJ Biol Chem, 252
Derek Irons, Timothy Meinhardt, C. Allers, M. Kuroda, Woong-Ki Kim (2019)
Overexpression and activation of colony‐stimulating factor 1 receptor in the SIV/macaque model of HIV infection and neuroHIVBrain Pathology, 29
R. Kamat, E. Morgan, T. Marcotte, Jayraan Badiee, Ingrid Maich, M. Cherner, S. Almeida, A. Pereira, C. Ribeiro, F. Barbosa, J. Atkinson, R. Ellis (2013)
Implications of apathy and depression for everyday functioning in HIV/AIDS in Brazil.Journal of affective disorders, 150 3
Paula Desplats, Wilmar Dumaop, David Smith, A. Adame, I. Everall, S. Letendre, R. Ellis, M. Cherner, I. Grant, E. Masliah (2013)
Molecular and pathologic insights from latent HIV-1 infection in the human brainNeurology, 80
M. Tremblay, M. Zettel, J. Ison, P. Allen, A. Majewska (2012)
Effects of aging and sensory loss on glial cells in mouse visual and auditory corticesGlia, 60
Hailong Li, K. McLaurin, C. Mactutus, R. Booze (2021)
A Rat Model of EcoHIV Brain Infection.Journal of visualized experiments : JoVE, 167
D. Schaeffer, Y. Hori, K. Gilbert, J. Gati, Ravi Menon, S. Everling (2020)
Divergence of rodent and primate medial frontal cortex functional connectivityProceedings of the National Academy of Sciences, 117
B. Wiedenmann, W. Franke (1985)
Identification and localization of synaptophysin, an integral membrane glycoprotein of Mr 38,000 characteristic of presynaptic vesiclesCell, 41
3 Publisher's Note
(2019)
What's happening in Neurology® Neuroimmunology & NeuroinflammationNeurology, 92
T. Lim, E. Ruthazer (2020)
Microglial trogocytosis and the complement system regulate axonal pruning in vivoeLife, 10
K. McLaurin, Hailong Li, C. Mactutus, S. Harrod, R. Booze (2022)
Disrupted Decision-Making: EcoHIV Inoculation in Cocaine Dependent RatsInternational Journal of Molecular Sciences, 23
D. Walker, Tiffany Tang, L. Lue (2017)
Studies on Colony Stimulating Factor Receptor-1 and Ligands Colony Stimulating Factor-1 and Interleukin-34 in Alzheimer's Disease Brains and Human MicrogliaFrontiers in Aging Neuroscience, 9
E. Polazzi, Barbara Monti (2010)
Microglia and neuroprotection: From in vitro studies to therapeutic applicationsProgress in Neurobiology, 92
Luisa Torres, Joan Danver, K. Ji, J. Miyauchi, Danling Chen, Maria Anderson, B. West, John Robinson, S. Tsirka (2016)
Dynamic microglial modulation of spatial learning and social behaviorBrain, Behavior, and Immunity, 55
R. Roscoe, C. Mactutus, R. Booze (2014)
HIV-1 Transgenic Female Rat: Synaptodendritic Alterations of Medium Spiny Neurons in the Nucleus AccumbensJournal of Neuroimmune Pharmacology, 9
Xiaobing Chen, C. Nelson, Xiang Li, C. Winters, R. Azzam, A. Sousa, R. Leapman, H. Gainer, M. Sheng, T. Reese (2011)
PSD-95 Is Required to Sustain the Molecular Organization of the Postsynaptic DensityThe Journal of Neuroscience, 31
D. Vance, V. Wadley, M. Crowe, J. Raper, K. Ball (2011)
Cognitive and Everyday Functioning in Older and Younger Adults With and Without HIVClinical Gerontologist, 34
S. Zou, B. Fuss, S. Fitting, Y. Hahn, K. Hauser, P. Knapp (2015)
Oligodendrocytes Are Targets of HIV-1 Tat: NMDA and AMPA Receptor-Mediated Effects on Survival and DevelopmentThe Journal of Neuroscience, 35
L. Festa, E. Irollo, B. Platt, Yuzen Tian, S. Floresco, O. Meucci (2020)
CXCL12-induced rescue of cortical dendritic spines and cognitive flexibilityeLife, 9
P. Goldman-Rakic, C. Léránth, S. Williams, Nicole MONSt, Michel GEFFARDt (1989)
Dopamine synaptic complex with pyramidal neurons in primate cerebral cortex.Proceedings of the National Academy of Sciences of the United States of America, 86 22
S. Koenig, H. Gendelman, J. Orenstein, M. Canto, G. Pezeshkpour, M. Yungbluth, F. Janotta, A. Aksamit, M. Martin, A. Fauci (1986)
Detection of AIDS virus in macrophages in brain tissue from AIDS patients with encephalopathy.Science, 233 4768
D. Kalter, M. Nakamura, Jim Turpin, L. Baca, David Hoover, C. Dieffenbach, P. Ralph, H. Gendelman, Monte Meltzer (1991)
Enhanced HIV replication in macrophage colony-stimulating factor-treated monocytes.Journal of immunology, 146 1
O. Selnes, E. Miller, J. McArthur, Barry Gordon, Alvaro Muñoz, Kathleen Sheridan, R. Fox, A. Saah (1990)
HIV‐1 infectionNeurology, 40
Julian Weiss, Rachela Calvi, M. Naganawa, T. Toyonaga, S. Farhadian, Michelle Chintanaphol, J. Chiarella, M. Zheng, J. Ropchan, Yiyun Huang, R. Pietrzak, R. Carson, S Spudich (2021)
Preliminary In Vivo Evidence of Reduced Synaptic Density in Human Immunodeficiency Virus (HIV) Despite Antiretroviral TherapyClinical Infectious Diseases: An Official Publication of the Infectious Diseases Society of America, 73
K. Brodmann (1985)
Vergleichende Lokalisationslehre der Großhirnrinde : in ihren Prinzipien dargestellt auf Grund des Zellenbaues
Mohammed Choudhury, Kazuya Miyanishi, H. Takeda, Afsana Islam, Nayu Matsuoka, M. Kubo, Shirabe Matsumoto, T. Kunieda, M. Nomoto, Hajime Yano, Junya Tanaka (2020)
Phagocytic elimination of synapses by microglia during sleepGlia, 68
K. McLaurin, Hailong Li, R. Booze, C. Mactutus (2019)
Disruption of Timing: NeuroHIV Progression in the Post-cART EraScientific Reports, 9
O. Berezovskaya, D. Maysinger, S. Fedoroff (1995)
The hematopoietic cytokine, colony-stimulating factor 1, is also a growth factor in the CNS: Congenital absence of CSF-1 in mice results in abnormal microglial response and increased neuron vulnerability to injuryInternational Journal of Developmental Neuroscience, 13
H. Wake, A. Moorhouse, S. Jinno, S. Kohsaka, J. Nabekura (2009)
Resting Microglia Directly Monitor the Functional State of Synapses In Vivo and Determine the Fate of Ischemic TerminalsThe Journal of Neuroscience, 29
(2021)
Booze RM (2021c) A rat
B. Becker, A. Thames, E. Woo, S. Castellon, C. Hinkin (2011)
Longitudinal Change in Cognitive Function and Medication Adherence in HIV-Infected AdultsAIDS and Behavior, 15
Adam Denton, S. Samaranayake, K. Kirchner, R. Roscoe, Shane Berger, S. Harrod, C. Mactutus, P. Hashemi, R. Booze (2019)
Selective monoaminergic and histaminergic circuit dysregulation following long-term HIV-1 protein exposureJournal of NeuroVirology, 25
Hailong Li, J. Illenberger, K. McLaurin, C. Mactutus, R. Booze (2018)
Identification of Dopamine D1-Alpha Receptor Within Rodent Nucleus Accumbens by an Innovative RNA In Situ Detection Technology.Journal of visualized experiments : JoVE, 133
Publisher's Note Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations
Yosef Zenebe, Mogesie Necho, Wondwosen Yimam, Baye Akele (2022)
Worldwide Occurrence of HIV-Associated Neurocognitive Disorders and Its Associated Factors: A Systematic Review and Meta-AnalysisFrontiers in Psychiatry, 13
C. Wallet, M. Rovere, J. Assche, Fadoua Daouad, S. Wit, V. Gautier, P. Mallon, A. Marcello, C. Lint, O. Rohr, C. Schwartz (2019)
Microglial Cells: The Main HIV-1 Reservoir in the BrainFrontiers in Cellular and Infection Microbiology, 9
D. Gomez-Nicola, N. Fransen, Stefano Suzzi, V. Perry (2013)
Regulation of Microglial Proliferation during Chronic NeurodegenerationThe Journal of Neuroscience, 33
R. Kamat, S. Woods, T. Marcotte, R. Ellis, I. Grant (2012)
Implications of apathy for everyday functioning outcomes in persons living with HIV infection.Archives of clinical neuropsychology : the official journal of the National Academy of Neuropsychologists, 27 5
Microglia, which are productively infected by HIV-1, are critical for brain development and maturation, as well as synaptic plasticity. The pathophysiology of HIV-infected microglia and their role in the pathogenesis of HIV-1-associated neurocognitive and affective alterations, however, remains understudied. Three complementary aims were undertaken to critically address this knowledge gap. First, the expression of HIV-1 mRNA in the dorsolateral prefrontal cortex of postmortem HIV-1 seropositive individuals with HAND was investigated. Utilization of immunostaining and/or RNAscope multiplex fluorescent assays revealed prominent HIV-1 mRNA in microglia of postmortem HIV-1 seropositive individuals with HAND. Second, measures of microglia proliferation and neuronal damage were evaluated in chimeric HIV (EcoHIV) rats. Eight weeks after EcoHIV inoculation, enhanced microglial proliferation was observed in the medial prefrontal cortex (mPFC) of EcoHIV rats, evidenced by an increased number of cells co-localized with both Iba1 + and Ki67 + relative to control animals. Neuronal damage in EcoHIV infected rats was evidenced by pronounced decreases in both synaptophysin and postsynaptic density protein 95 (PSD-95), markers of presynaptic and postsynaptic damage, respectively. Third, regression analyses were conducted to evaluate whether microglia proliferation mechanistically underlies neuronal damage in EcoHIV and control animals. Indeed, microglia proliferation accounted for 42–68.6% of the variance in synaptic dysfunction. Collectively, microglia proliferation induced by chronic HIV-1 viral protein exposure may underlie the profound synaptodendritic alterations in HIV-1. Understanding how microglia are involved in the pathogenesis of HAND and HIV-1-associated affective disorders affords a key target for the development of novel therapeutics.
Journal of NeuroVirology – Springer Journals
Published: Aug 1, 2023
Keywords: Dendritic Spines; EcoHIV; Proliferation
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.