[1] Huang YJS,Higgs S,Vanlandingham DL. Emergence and re-emergence of mosquito-borne arboviruses[J]. Curr Opin Virol,2019,34:104-109. DOI:10.1016/j.coviro.2019.01.001. [2] Yang L,Chen Y,Yan HC,et al. A survey of the 2014 dengue fever epidemic in Guangzhou,China[J]. Emerg Microbes Infect,2015,4(9):e57. DOI:10.1038/emi.2015.57. [3] Petersen LR,Jamieson DJ,Powers AM,et al. Zika virus[J]. N Engl J Med,2016,374(16):1552-1563. DOI:10.1056/NEJMra1602113. [4] Manning JE,Morens DM,Kamhawi S,et al. Mosquito saliva:the hope for a universal arbovirus vaccine?[J]. J Infect Dis,2018,218(1):7-15. DOI:10.1093/infdis/jiy179. [5] Moser LA,Lim PY,Styer LM,et al. Parameters of mosquito-enhanced West Nile virus infection[J]. J Virol,2015,90(1):292-299. DOI:10.1128/JVI.02280-15. [6] Guo CC,Zhou ZX,Wen ZH,et al. Global epidemiology of dengue outbreaks in 1990-2015:a systematic review and meta-analysis[J]. Front Cell Infect Microbiol,2017,7:317. DOI:10.3389/fcimb.2017.00317. [7] Plourde AR,Bloch EM. A literature review of Zika virus[J]. Emerg Infect Dis,2016,22(7):1185-1192. DOI:10.3201/eid2207.151990. [8] Turtle L,Solomon T. Japanese encephalitis-the prospects for new treatments[J]. Nat Rev Neurol,2018,14(5):298-313. DOI:10.1038/nrneurol.2018.30. [9] Zheng YY,Li MH,Wang HY,et al. Japanese encephalitis and Japanese encephalitis virus in mainland China[J]. Rev Med Virol,2012,22(5):301-322. DOI:10.1002/rmv.1710. [10] Ribeiro JMC,Francischetti IMB. Role of arthropod saliva in blood feeding:sialome and post-sialome perspectives[J]. Annu Rev Entomol,2003,48:73-88. DOI:10.1146/annurev.ento.48. 060402.102812. [11] Ribeiro JMC,Arcà B,Lombardo F,et al. An annotated catalogue of salivary gland transcripts in the adult female mosquito,Aedes aegypti[J]. BMC Genomics,2007,8:6. DOI:10.1186/1471-2164-8-6. [12] Sun P,Nie KX,Zhu YB,et al. A mosquito salivary protein promotes flavivirus transmission by activation of autophagy[J]. Nat Commun,2020,11(1):260. DOI:10.1038/s41467-019-14115-z. [13] Reno HE,Novak RJ. Characterization of apyrase-like activity in Ochlerotatus triseriatus,O. hendersoni,and Aedes aegypti[J]. Am J Trop Med Hyg,2005,73(3):541-545. DOI:10.4269/ajtmh.2005.73.541. [14] Martin-Martin I,Paige A,Valenzuela Leon PC,et al. ADP binding by the Culex quinquefasciatus mosquito D7 salivary protein enhances blood feeding on mammals[J]. Nat Commun,2020,11(1):2911. DOI:10.1038/s41467-020-16665-z. [15] Chagas AC,Ramirez JL,Jasinskiene N,et al. Collagen-binding protein,aegyptin,regulates probing time and blood feeding success in the dengue vector mosquito,Aedes aegypti[J]. Proc Natl Acad Sci USA,2014,111(19):6946-6951. DOI:10.1073/pnas.1404179111. [16] Ohtsuka E,Kawai S,Ichikawa T,et al. Roles of mast cells and histamine in mosquito bite-induced allergic itch-associated responses in mice[J]. Jpn J Pharmacol,2001,86(1):97-105. DOI:10.1254/jjp.86.97. [17] Demeure CE,Brahimi K,Hacini F,et al. Anopheles mosquito bites activate cutaneous mast cells leading to a local inflammatory response and lymph node hyperplasia[J]. J Immunol,2005,174(7):3932-3940. DOI:10.4049/jimmunol.174.7.3932. [18] Pingen M,Bryden SR,Pondeville E,et al. Host inflammatory response to mosquito bites enhances the severity of arbovirus infection[J]. Immunity,2016,44(6):1455-1469. DOI:10.1016/j.immuni.2016.06.002. [19] Garcia M,Alout H,Diop F,et al. Innate immune response of primary human keratinocytes to West Nile virus infection and its modulation by mosquito saliva[J]. Front Cell Infect Microbiol,2018,8:387. DOI:10.3389/fcimb.2018.00387. [20] Schneider BS,Soong L,Coffey LL,et al. Aedes aegypti saliva alters leukocyte recruitment and cytokine signaling by antigen-presenting cells during West Nile virus infection[J]. PLoS One,2010,5(7):e11704. DOI:10.1371/journal.pone. 0011704. [21] Agarwal A,Joshi G,Nagar DP,et al. Mosquito saliva induced cutaneous events augment Chikungunya virus replication and disease progression[J]. Infect Genet Evol,2016,40:126-135. DOI:10.1016/j.meegid.2016.02.033. [22] Cheng LE,Hartmann K,Roers A,et al. Perivascular mast cells dynamically probe cutaneous blood vessels to capture immunoglobulin E[J]. Immunity,2013,38(1):166-175. DOI:10.1016/j.immuni.2012.09.022. [23] Depinay N,Hacini F,Beghdadi W,et al. Mast cell-dependent down-regulation of antigen-specific immune responses by mosquito bites[J]. J Immunol,2006,176(7):4141-4146. DOI:10.4049/jimmunol.176.7.4141. [24] Vogt MB,Lahon A,Arya RP,et al. Mosquito saliva alone has profound effects on the human immune system[J]. PLoS Negl Trop Dis,2018,12(5):e0006439. DOI:10.1371/journal.pntd. 0006439. [25] Peng ZK,Simons FER. Advances in mosquito allergy[J]. Curr Opin Allergy Clin Immunol,2007,7(4):350-354. DOI:10.1097/ACI.0b013e328259c313. [26] Peng ZK,Simons FER. Mosquito allergy:immune mechanisms and recombinant salivary allergens[J]. Int Arch Allergy Immunol,2004,133(2):198-209. DOI:10.1159/000076787. [27] Henrique MO,Neto LS,Assis JB,et al. Evaluation of inflammatory skin infiltrate following Aedes aegypti bites in sensitized and non-sensitized mice reveals saliva-dependent and immune-dependent phenotypes[J]. Immunology,2019,158(1):47-59. DOI:10.1111/imm.13096. [28] Styer LM,Lim PY,Louie KL,et al. Mosquito saliva causes enhancement of West Nile virus infection in mice[J]. J Virol,2011,85(4):1517-1527. DOI:10.1128/JVI.01112-10. [29] Hastings AK,Uraki R,Gaitsch H,et al. Aedes aegypti NeSt1 protein enhances Zika virus pathogenesis by activating neutrophils[J]. J Virol,2019,93(13):e00395-19. DOI:10.1128/JVI.00395-19. [30] Uraki R,Hastings AK,Marin-Lopez A,et al. Aedes aegypti AgBR1 antibodies modulate early Zika virus infection of mice[J]. Nat Microbiol,2019,4(6):948-955. DOI:10.1038/s41564-019-0385-x. [31] Le Coupanec A,Babin D,Fiette L,et al. Aedes mosquito saliva modulates Rift Valley fever virus pathogenicity[J]. PLoS Negl Trop Dis,2013,7(6):e2237. DOI:10.1371/journal.pntd.0002237. [32] Jin L,Guo XM,Shen CB,et al. Salivary factor LTRIN from Aedes aegypti facilitates the transmission of Zika virus by interfering with the lymphotoxin-β receptor[J]. Nat Immunol,2018,19(4):342-353. DOI:10.1038/s41590-018-0063-9. [33] Conway MJ,Watson AM,Colpitts TM,et al. Mosquito saliva serine protease enhances dissemination of dengue virus into the mammalian host[J]. J Virol,2014,88(1):164-175. DOI:10.1128/JVI.02235-13. [34] Wichit S,Diop F,Hamel R,et al. Aedes aegypti saliva enhances Chikungunya virus replication in human skin fibroblasts via inhibition of the type I interferon signaling pathway[J]. Infect Genet Evol,2017,55:68-70. DOI:10.1016/j.meegid.2017.08.032. [35] Limesand KH,Higgs S,Pearson LD,et al. Effect of mosquito salivary gland treatment on vesicular stomatitis New Jersey virus replication and interferon α/β expression in vitro[J]. J Med Entomol,2003,40(2):199-205. DOI:10.1603/0022-2585-40. 2.199. [36] Schneider BS,Soong L,Zeidner NS,et al. Aedes aegypti salivary gland extracts modulate anti-viral and TH1/TH2 cytokine responses to sindbis virus infection[J]. Viral Immunol,2004,17(4):565-573. DOI:10.1089/vim.2004.17.565. [37] Surasombatpattana P,Patramool S,Luplertlop N,et al. Aedes aegypti saliva enhances dengue virus infection of human keratinocytes by suppressing innate immune responses[J]. J Invest Dermatol,2012,132(8):2103-2105. DOI:10.1038/jid.2012.76. [38] Schmid MA,Glasner DR,Shah S,et al. Mosquito saliva increases endothelial permeability in the skin,immune cell migration,and dengue pathogenesis during antibody-dependent enhancement[J]. PLoS Pathog,2016,12(6):e1005676. DOI:10.1371/journal.ppat.1005676. [39] Conway MJ,Londono-Renteria B,Troupin A,et al. Aedes aegypti D7 saliva protein inhibits dengue virus infection[J]. PLoS Negl Trop Dis,2016,10(9):e0004941. DOI:10.1371/journal.pntd. 0004941. [40] Reagan KL,Machain-Williams C,Wang T,et al. Immunization of mice with recombinant mosquito salivary protein D7 enhances mortality from subsequent West Nile virus infection via mosquito bite[J]. PLoS Negl Trop Dis,2012,6(12):e1935. DOI:10.1371/journal.pntd.0001935. [41] McCracken MK,Christofferson RC,Grasperge BJ,et al. Aedes aegypti salivary protein "aegyptin" co-inoculation modulates dengue virus infection in the vertebrate host[J]. Virology,2014,468-470:133-139. DOI:10.1016/j.virol.2014.07.019. [42] Ader DB,Celluzzi C,Bisbing J,et al. Modulation of dengue virus infection of dendritic cells by Aedes aegypti saliva[J]. Viral Immunol,2004,17(2):252-265. DOI:10.1089/0882824041310496. [43] Schneider BS,Higgs S. The enhancement of arbovirus transmission and disease by mosquito saliva is associated with modulation of the host immune response[J]. Trans Roy Soc Trop Med Hyg,2008,102(5):400-408. DOI:10.1016/j.trstmh.2008. 01.024. [44] Conway MJ,Colpitts TM,Fikrig E. Role of the vector in arbovirus transmission[J]. Annu Rev Virol,2014,1(1):71-88. DOI:10.1146/annurev-virology-031413-085513. [45] Pingen M,Schmid MA,Harris E,et al. Mosquito biting modulates skin response to virus infection[J]. Trends Parasitol,2017,33(8):645-657. DOI:10.1016/j.pt.2017.04.003. [46] Manning JE,Oliveira F,Coutinho-Abreu IV,et al. Safety and immunogenicity of a mosquito saliva peptide-based vaccine:a randomised,placebo-controlled,double-blind,phase 1 trial[J]. Lancet,2020,395(10242):1998-2007. DOI:10.1016/S0140-6736(20)31048-5. [47] Shan C,Xie XP,Shi PY. Zika virus vaccine:progress and challenges[J]. Cell Host Microbe,2018,24(1):12-17. DOI:10.1016/j.chom.2018.05.021. |