Is Cryptosporidium a hijacker able to drive cancer cell proliferation?

Food and Waterborne Parasitology - Tập 27 - Trang e00153 - 2022
Gabriela Certad1,2
1U1019-UMR 9017-CIIL-Centre d'Infection et d'Immunité de Lille, Institut Pasteur de Lille, Université de Lille, CNRS, Inserm, CHU Lille, F-59000 Lille, France
2Délégation à la Recherche Clinique et à l'Innovation, Groupement des Hôpitaux de l'Institut Catholique de Lille, F-59462 Lomme, France

Tài liệu tham khảo

Ahsan, 2021, In silico identification and functional characterization of conserved miRNAs in the genome of Cryptosporidium parvum, Bioinform. Biol. Insights, 15, 10.1177/11779322211027665 Amadi, 2009, High dose prolonged treatment with nitazoxanide is not effective for cryptosporidiosis in HIV positive Zambian children: a randomised controlled trial, BMC Infect. Dis., 9, 195, 10.1186/1471-2334-9-195 Audebert, 2020, Genetic basis for virulence differences of various Cryptosporidium parvum carcinogenic isolates, Sci. Rep., 10, 7316, 10.1038/s41598-020-64370-0 Bañuls, 2013, Of parasites and men, Infect. Genet. Evol., 20, 61, 10.1016/j.meegid.2013.08.005 Baydoun, 2017, Three-dimensional (3D) culture of adult murine colon as an in vitro model of cryptosporidiosis: proof of concept, Sci. Rep., 7, 17288, 10.1038/s41598-017-17304-2 Benamrouz, 2012, Cryptosporidium parvum infection in SCID mice infected with only one oocyst: qPCR assessment of parasite replication in tissues and development of digestive cancer, PLoS One, 7, 10.1371/journal.pone.0051232 Benamrouz, 2014, Cryptosporidium parvum-induced ileo-caecal adenocarcinoma and Wnt signaling in a mouse model, Dis. Model. Mech., 7, 693 Bouzid, 2013, Cryptosporidium pathogenicity and virulence, Clin. Microbiol. Rev., 26, 115, 10.1128/CMR.00076-12 Bulavin, 2004, p38 MAP kinase’s emerging role as a tumor suppressor, Adv. Cancer Res., 92, 10.1016/S0065-230X(04)92005-2 Castellanos-Gonzalez, 2008, Cryptosporidium infection of human intestinal epithelial cells increases eression of osteoprotegerin: a novel mechanism for evasion of host defenses, J. Infect. Dis., 10.1086/528374 Certad, 2010, Development of Cryptosporidium parvum-induced gastrointestinal neoplasia in severe combined immunodeficiency (SCID) mice: severity of lesions is correlated with infection intensity, Am. J. Trop. Med. Hyg., 82, 10.4269/ajtmh.2010.09-0309 Certad, 2010, Fulminant cryptosporidiosis associated with digestive adenocarcinoma in SCID mice infected with Cryptosporidium parvum TUM1 strain, Int. J. Parasitol., 40, 1469, 10.1016/j.ijpara.2010.07.007 Certad, 2007, Cryptosporidium parvum, a potential cause of colic adenocarcinoma, Infect. Agents Cancer., 2, 22, 10.1186/1750-9378-2-22 Certad, 2012, Fulminant cryptosporidiosis after near-drowning: a human Cryptosporidium parvum strain implicated in invasive gastrointestinal adenocarcinoma and cholangiocarcinoma in an experimental model, Appl. Environ. Microbiol., 78, 1746, 10.1128/AEM.06457-11 Certad, 2017, Pathogenic mechanisms of Cryptosporidium and Giardia, Trends Parasitol., 33, 561, 10.1016/j.pt.2017.02.006 Cha, 2004, Hepatitis B Virus X protein is essential for the activation of Wnt/-Catenin signaling in hepatoma cells, Hepatology, 39, 1683, 10.1002/hep.20245 Cheeseman, 2016, Parasites and cancer: is there a causal link?, Med. Sci., 32 Chen, 2001, Cryptosporidium parvum activates nuclear factor kappaB in biliary epithelia preventing epithelial cell apoptosis, Gastroenterology, 120, 1774, 10.1053/gast.2001.24850 Chen, 2004, Cdc42 and the actin-related protein/neural Wiskott-Aldrich syndrome protein network mediate cellular invasion by Cryptosporidium parvum, Infect. Immun., 72, 3011, 10.1128/IAI.72.5.3011-3021.2004 Chen, 2004, Phosphatidylinositol 3-kinase and frabin mediate Cryptosporidium parvum cellular invasion via activation of Cdc42, J. Biol. Chem., 279, 31671, 10.1074/jbc.M401592200 Chen, 2007, A cellular micro-RNA, let-7i, regulates Toll-like receptor 4 expression and contributes to cholangiocyte immune responses against Cryptosporidium parvum infection, Int. J. Biol. Chem., 282, 28929, 10.1074/jbc.M702633200 Choudhry, 2009, Dysregulation of interferon-g-mediated signalling pathway in intestinal epithelial cells by Cryptosporidium parvum, Cell. Microbiol., 11, 1354, 10.1111/j.1462-5822.2009.01336.x Crawford, 2021, The mucosal innate immune response to Cryptosporidium parvum, a Global One Health Issue, Front. Cell. Infect. Microbiol., 2021 Crosas-Molist, 2022, Rho GTPase signaling in cancer progression and dissemination, Physiol. Rev., 102, 455, 10.1152/physrev.00045.2020 Deng, 2004, Cryptosporidium parvum regulation of human epithelial cell gene expression, Int. J. Parasitol., 34, 73, 10.1016/j.ijpara.2003.10.001 Elliott, 2000, Cryptosporidium parvum induces host cell actin accumulation at the host- parasite interface, Infect. Immun., 68, 2315, 10.1128/IAI.68.4.2315-2322.2000 Ewald, 2009, An evolutionary perspective on parasitism as a cause of cancer, Adv. Parasitol., 68, 21, 10.1016/S0065-308X(08)00602-7 Gong, 2010, Cryptosporidium parvum induces B7-H1 expression in cholangiocytes by down-rgulating microRNA-513, J. Infect. Dis., 201, 160, 10.1086/648589 Guérin, 2021, Cryptosporidium rhoptry effector protein ROP1 injected during invasion targets the host cytoskeletal modulator LMO7, Cell Host Microbe, 29, 1407, 10.1016/j.chom.2021.07.002 Guesdon, 2015, CCL20 displays antimicrobial activity against Cryptosporidium parvum, but its expression is reduced during infection in the intestine of neonatal mice, J. Infect. Dis., 212, 1332, 10.1093/infdis/jiv206 Hanahan, 2000, The hallmarks of cancer, Cell, 100, 57, 10.1016/S0092-8674(00)81683-9 Haqshenas, 2019, Targeting of host cell receptor tyrosine kinases by intracellular pathogens, Sci. Signal., 12, eaau9894, 10.1126/scisignal.aau9894 He, 2021, Cryptosporidial infection suppresses intestinal epithelial cell mapk signaling impairing host anti-parasitic defense, Microorganisms, 9, 151, 10.3390/microorganisms9010151 Hofman, 2012, Microbes-induced EMT at the crossroad of inflammation and cancer, Gut Microbes, 3, 176, 10.4161/gmic.20288 Huang, 2011, Spontaneous nonthymic tumors in SCID mice, Comp. Med., 61, 227 Hussein, 2015, Beyond RGD: virus interactions with integrins, Arch. Virol., 160, 2669, 10.1007/s00705-015-2579-8 Johnston, 2014, Relationship between Plasmodium falciparum malaria prevalence, genetic diversity and endemic Burkitt lymphoma in Malawi, Sci. Rep., 4, 3741, 10.1038/srep03741 Kalantari, 2020, Association between Cryptosporidium infection and cancer: a systematic review and meta-analysis, Parasitol. Int., 74, 10.1016/j.parint.2019.101979 Khalil, 2018, Morbidity, mortality, and long-term consequences associated with diarrhoea from Cryptosporidium infection in children younger than 5 years: a meta-analyses study, Lancet Glob. Health, 6, e758, 10.1016/S2214-109X(18)30283-3 Klöhn, 2021, Beyond the usual suspects: hepatitis e virus and its implications in hepatocellular carcinoma, Cancers, 13, 5867, 10.3390/cancers13225867 Kolářová, 2021, Hide-and-seek: a game played between parasitic protists and their hosts, Microorganisms, 9, 2434, 10.3390/microorganisms9122434 Kotloff, 2013, Burden and aetiology of diarrhoeal disease in infants and young children in developing countries (the Global Enteric Multicenter Study, GEMS): a prospective, case-control study, Lancet., 382, 209, 10.1016/S0140-6736(13)60844-2 Kumar, 2018, Cryptosporidium parvum disrupts intestinal epithelial barrier function via altering expression of key tight junction and adherens junction proteins, Cell. Microbiol., 20, 10.1111/cmi.12830 Lacroix, 2001, Cryptosporidium parvum-specific mucosal immune response in C57BL/6 neonatal and gamma interferon-deficient mice: role of tumor necrosis factor alpha in protection, Infect. Immun., 69, 1635, 10.1128/IAI.69.3.1635-1642.2001 Lantier, 2013, Intestinal CD103+ dendritic cells are key players in the innate immune control of Cryptosporidium parvum infection in neonatal mice, PLoS Pathog., 9, 10.1371/journal.ppat.1003801 Laurent, 2017, Innate immune responses play a key role in controlling infection of the intestinal epithelium by Cryptosporidium, Int. J. Parasitol., 2017, 711, 10.1016/j.ijpara.2017.08.001 Lendner, 2014, Cryptosporidium infections: molecular advances, Parasitology., 141, 1511, 10.1017/S0031182014000237 Li, 2021, Analysis of long non-coding RNA in Cryptosporidium parvum reveals significant stage-specific antisense transcription, Front. Cell. Infect. Microbiol., 10, 10.3389/fcimb.2020.608298 Liu, 2015, The role of PI3K/Akt in human herpesvirus infection: from the bench to the bedside, Vols. 479–480, 568 Liu, 2008, Inhibition of apoptosis in Cryptosporidium parvum-infected intestinal epithelial cells is dependent on survivin, Infect. Immun., 76, 3784, 10.1128/IAI.00308-08 Liu, 2009, Biphasic modulation of apoptotic pathways in Cryptosporidium parvum-infected human intestinal epithelial cells, Infect. Immun., 77, 837, 10.1128/IAI.00955-08 Martin, 2002, Integrin connections map: to infinity and beyond, Science., 296, 1652, 10.1126/science.296.5573.1652 Mead, 1991, Chronic Cryptosporidium parvum infections in congenitally immunodeficient SCID and nude mice, J. Infect. Dis., 163, 1297, 10.1093/infdis/163.6.1297 Mele, 2004, Cryptosporidium parvum at different developmental stages modulates host cell apoptosis in vitro, Infect. Immun., 72, 6061, 10.1128/IAI.72.10.6061-6067.2004 Ming, 2017, Regulation of host epithelial responses to Cryptosporidium infection by microRNAs, Parasite Immunol., 39, 10.1111/pim.12408 Mirhashemi, 2018, Transcriptome analysis of pig intestinal cell monolayers infected with Cryptosporidium parvum asexual stages, Parasit. Vectors, 11, 176, 10.1186/s13071-018-2754-3 Moore, 2010, Why do viruses cause cancer? Highlights of the first century of human tumour virology, Nat. Rev. Cancer, 10, 878, 10.1038/nrc2961 Nakamura, 2005, Transforming growth factor-β1 induces LMO7 while enhancing the invasiveness of rat ascites hepatoma cells, Cancer Lett., 220, 95, 10.1016/j.canlet.2004.07.023 Ooshio, 2004, Involvement of LMO7 in the association of two cell-cell adhesion molecules, nectin and E-cadherin, through afadin and α-actinin in epithelial cells, J. Biol. Chem., 279, 31365, 10.1074/jbc.M401957200 Osman, 2017, High association of Cryptosporidium spp. infection with colon adenocarcinoma in Lebanese patients, PLoS One, 12, 10.1371/journal.pone.0189422 Perkins, 1999, CpABC, a Cryptosporidium parvum ATP-binding cassette protein at the host-parasite boundary in intracellular, Proc. Natl. Acad. Sci. U. S. A., A. 96, 5734, 10.1073/pnas.96.10.5734 Pinto, 2021, Cryptosporidium: host-parasite interactions and pathogenesis, Curr. Clin. Microbiol. Rep., 8, 62, 10.1007/s40588-021-00159-7 Plattner, 2008, Hijacking of host cellular functions by the apicomplexa, Annu. Rev. Microbiol., 62, 471, 10.1146/annurev.micro.62.081307.162802 Ryan, 2021, An update on zoonotic Cryptosporidium species and genotypes in humans, Animals, 19, 3307, 10.3390/ani11113307 Sawant, 2020, Cryptosporidium and colon cancer: cause or consequence?, Microorganisms, 8, 1665, 10.3390/microorganisms8111665 Sawant, 2021, Persistent Cryptosporidium parvum infection leads to the development of the tumor microenvironment in an experimental mouse model: results of a microarray approach, Microorganisms, 9, 2569, 10.3390/microorganisms9122569 Scarth, 2021, The human papillomavirus oncoproteins: a review of the host pathways targeted on the road to transformation, J Gen Virol., 102, 1540, 10.1099/jgv.0.001540 Shlomai, 2014, Virus associated malignancies: the role of viral hepatitis in hepatocellular carcinoma, Semin. Cancer Biol., 26, 78, 10.1016/j.semcancer.2014.01.004 Siddiqui, 2018, Epstein-Barr virus and Human Papillomaviruses interactions and their roles in the initiation of epithelial-mesenchymal transition and cancer progression, Front. Oncol., 8, 111, 10.3389/fonc.2018.00111 Stephens, 1999, Liver and bile duct pathology following Cryptosporidium parvum infection of immunodeficient mice, Hepatology, 30, 27, 10.1002/hep.510300138 Sulżyc-Bielicka, 2018, Colorectal cancer and Cryptosporidium spp. infection, PLoS One, 13, 10.1371/journal.pone.0195834 Valigurová, 2008, Cryptosporidia: epicellular parasites embraced by the host cell membrane, Int. J. Parasitol., 38 Wang, 2017, Delivery of parasite RNA transcripts into infected epithelial cells during Cryptosporidium infection and its potential impact on host gene transcription, J. Infect. Dis., 636, 215 Wu, 2019, Herpesvirus acts with the cytoskeleton and promotes cancer progression, J. Cancer, 10, 10.7150/jca.30222 Zamaraev, 2020, Viral infections: negative regulators of apoptosis and oncogenic factors, Biochem. Mosc., 85, 10.1134/S0006297920100077 Zhang, 2012, Involvement of host cell integrin 2 in Cryptosporidium parvum, Infection Zhang, 2020, Prevalence and genotyping of Cryptosporidium parvum in gastrointestinal cancer patients, J. Cancer, 11, 3334, 10.7150/jca.42393 Zhang, 2020, Cryptosporidium parvum upregulates miR-942-5p expression in HCT-8 cells via TLR2/TLR4-NF-κB signaling, Parasit. Vectors, 13, 435, 10.1186/s13071-020-04312-x Zhou, 2009, NF-kappaB p65-dependent transactivation of miRNA genes following Cryptosporidium parvum infection stimulates epithelial cell immune responses, PLoS Pathog., 5, 10.1371/journal.ppat.1000681