[1] Sonenshine DE. Biology of ticks[M]. Oxford:Oxford University Press,1993:320-332. [2] Gillespie RD, Mbow ML, Titus RG. The immunomodulatory factors of bloodfeeding arthropod saliva[J]. Parasite Immunol, 2000,22(7):319-331. [3] Chmelar J, Calvo E, Pedra JHF, et al. Tick salivary secretion as a source of antihemostatics[J]. J Proteomics,2012,75(13):3842-3854. [4] Champagne DE. Antihemostatic molecules from saliva of blood-feeding arthropods[J]. Pathophysiol Haemost Thromb,2005,34(4/5):221-227. [5] Francischetti IM,Sa-Nunes A, Mans BJ, et al. The role of saliva in tick feeding[J]. Front Biosci,2009,14:2051-2088. [6] Ribeiro JM, Makoul GT, Levine J, et al. Antihemostatic, antiinflammatory, and immunosuppressive properties of the saliva of a tick, Ixodes dammini[J]. J Exp Med,1985,161(2):332-344. [7] Mans BJ, Andersen JF, Schwan TG, et al. Characterization of anti-hemostatic factors in the argasid, Argas monolakensis:Implications for the evolution of blood-feeding in the soft tick family[J]. Insect Biochem Mol Biol,2008,38(1):22-41. [8] Ribeiro JM, Endris TM, Endris R. Saliva of the soft tick, Ornithodoros moubata, contains anti-platelet and apyrase activities[J]. Comp Biochem Physiol A Physiol,1991,100(1):109-112. [9] Mans BJ, Gaspar ARMD, Louw AI, et al. Apyrase activity and platelet aggregation inhibitors in the tick Ornithodoros savignyi (Acari:Argasidae)[J]. Exp Appl Acarol,1998,22(6):353-366. [10] 程远国,吴厚永,李德昌,等. 长角血蜱唾液腺Apyrase的生物学特性和功能的研究[J]. 寄生虫与医学昆虫学报,2000,7(3):175-182. [11] 刘勇厚,徐春花,刘至刚,等. 中华硬蜱血小板集聚抑制剂的分离纯化与活性研究[J]. 中国寄生虫学与寄生虫病杂志, 2005,23(6):424-427. [12] Waxman L, Connolly TM. Isolation of an inhibitor selective for collagen-stimulated platelet aggregation from the soft tick Ornithodoros moubata[J]. J Biol Chem,1993,268(8):5445-5449. [13] Karczewski J, Waxman L, Endris RG, et al. An inhibitor from the argasid tick Ornithodoros moubata of cell adhesion to collagen[J]. Biochem Biophys Res Commun,1995,208(2):532-541. [14] Cheng YG, Wu HY, Li DC. An inhibitor selective for collagen-stimulated platelet aggregation from the salivary glands of hard tick Haemaphysalis longicornis and its mechanism of action[J]. Sci China Ser C Life Sci,1999,42(5):457-464. [15] Chmelar J,Oliveira CJ,Rezacova P, et al. A tick salivary protein targets cathepsin G and chymase and inhibits host inflammation and platelet aggregation[J]. Blood,2011,117(2):736-744. [16] Karczewski J,Endris R, Connolly TM. Disagregin is a fibrinogen receptor antagonist lacking the Arg-Gly-Asp sequence from the tick,Ornithodoros moubata[J]. J Biol Chem,1994,269(9):6702-6708. [17] Mans BJ, Louw AI, Neitz AWH. Disaggregation of aggregated platelets by savignygrin, a αⅡbβ3 antagonist from Ornithodoros savignyi[J]. Exp Appl Acarol,2002,27(3):231-239. [18] Mans BJ, Louw AI, Neitz AWH. Savignygrin, a platelet aggregation inhibitor from the soft tick Ornithodoros savignyi, presents the RGD integrin recognition motif on the Kunitz-BPTI fold[J]. J Biol Chem,2002,277(24):21371-21378. [19] Wang XN, Coons LB, Taylor DB, et al. Variabilin, a novel RGD-containing antagonist of glycoprotein Ⅱb-Ⅲa and platelet aggregation inhibitor from the hard tick Dermacentor variabilis[J]. J Biol Chem,1996,271(30):17785-17790. [20] Inokuma H,Kemp DH,Willadsen P. Comparison of prostaglandin E2(PGE2) in salivary gland of Boophilus microplus, Haemaphysalis longicornis and Ixodes holocyclus,and quantification of PGE2 in saliva, hemolymph, ovary and gut of B. microplus[J]. J Vet Med Sci,1994,56(6):1217-1218. [21] Sá-Nunes A, Bafica A, Lucas DA, et al. Prostaglandin E2 is a major inhibitor of dendritic cell maturation and function in Ixodes scapularis saliva[J]. J Immunol,2007,179(3):1497-1505. [22] Ribeiro JM, Evans PM, MacSwain JL, et al. Amblyomma americanum:characterization of salivary prostaglandins E2 and F2α by RP-HPLC/bioassay and gas chromatography-mass spectrometry[J]. Exp Parasitol,1992,74(1):112-116. [23] Ribeiro JMC, Makoul GT, Robinson DR. Ixodes dammini:evidence for salivary prostacyclin secretion[J]. J Parasitol, 1988,74(6):1068-1069. [24] Waxman L, Smith DE, Arcuri KE, et al. Tick anticoagulant peptide (TAP) is a novel inhibitor of blood coagulation factor Xa[J]. Science,1990,248(4955):593-596. [25] Anastopoulos P, Thurn MJ, Broady KW. Anticoagulant in the tick Ixodes holocyclus[J]. Aust Vet J,1991,68(11):366-367. [26] Narasimhan S, Koski RA, Beaulieu B, et al. A novel family of anticoagulants from the saliva of Ixodes scapularis[J]. Insect Mol Biol,2002,11(6):641-650. [27] Joubert AM, Louw AI, Joubert F, et al. Cloning, nucleotide sequence and expression of the gene encoding factor Xa inhibitor from the salivary glands of the tick, Ornithodoros savignyi[J]. Exp Appl Acarol,1998,22(10):603-619. [28] Joubert AM, Crause JC, Gaspar ARM, et al. Isolation and characterization of an anticoagulant present in the salivary glands of the bont-legged tick, Hyalomma truncatum[J]. Exp Appl Acarol,1995,19(2):79-92. [29] Ibrahim MA, Ghazy AH, Maharem TM, et al. Factor Xa (FXa) inhibitor from the nymphs of the camel tick Hyalomma dromedarii[J]. Comp Biochem Physiol B Biochem Mol Biol, 2001,130(4):501-512. [30] Limo MK, Voigt WP, Tumbo-Oeri AG, et al. Purification and characterization of an anticoagulant from the salivary glands of the ixodid tick Rhipicephalus appendiculatus[J]. Exp Parasitol, 1991,72(4):418-429. [31] Kim TK, Tirloni L, Radulovic Z, et al. Conserved Amblyomma americanum tick Serpin19, an inhibitor of blood clotting factors Xa and XIa, trypsin and plasmin, has anti-haemostatic functions[J]. Int J Parasitol,2015,45(9/10):613-627. [32] Batista IFC, Ramos OHP, Ventura JS, et al. A new Factor Xa inhibitor from Amblyomma cajennense with a unique domain composition[J]. Arch Biochem Biophys,2010,493(2):151-156. [33] Hoffmann A, Walsmann P, Riesener G, et al. Isolation and characterization of a thrombin inhibitor from the tick Ixodes ricinus[J]. Pharmazie,1991,46(3):209-212. [34] 王利菊,高国富,柏士平,等. 中华硬蜱凝血酶抑制剂的分离纯化与活性[J]. 动物学研究,2005,26(3):328-331. [35] Iwanaga S, Okada M, Isawa H, et al. Identification and characterization of novel salivary thrombin inhibitors from the ixodidae tick, Haemaphysalis longicornis[J]. Eur J Biochem, 2003,270(9):1926-1934. [36] Ibrahim MA, Ghazy AH, Maharem T, et al. Isolation and properties of two forms of thrombin inhibitor from the nymphs of the camel tick Hyalomma dromedarii (Acari:Ixodidae)[J]. Exp Appl Acarol,2001,25(8):675-698. [37] Jablonka W, Kotsyfakis M, Mizurini DM, et al. Identification and mechanistic analysis of a novel tick-derived inhibitor of thrombin[J]. PLoS One,2015,10(8):e0133991. [38] Koh CY, Kazimirova M, Trimnell A, et al. Variegin, a novel fast and tight binding thrombin inhibitor from the tropical bont tick[J]. J Biol Chem,2007,282(40):29101-29113. [39] Zhu KC, Bowman AS, Brigham DL, et al. Isolation and characterization of americanin, a specific inhibitor of thrombin, from the salivary glands of the lone star tick Amblyomma americanum (L.)[J]. Exp Parasitol,1997,87(1):30-38. [40] van de Locht A, Stubbs MT, Bode W, et al. The ornithodorin-thrombin crystal structure, a key to the TAP enigma?[J]. EMBO J,1996,15(22):6011-6017. [41] Nienaber J, Gaspar ARM, Neitz AWH. Savignin, a potent thrombin inhibitor isolated from the salivary glands of the tick Ornithodoros savignyi (Acari:Argasidae)[J]. Exp Parasitol, 1999,93(2):82-91. [42] Motoyashiki T, Tu AT, Azimov DA, et al. Isolation of anticoagulant from the venom of tick, Boophilus calcaratus, from Uzbekistan[J]. Thromb Res,2003,110(4):235-241. [43] Horn F, dos Santos PC, Termignoni C. Boophilus microplus anticoagulant protein:an antithrombin inhibitor isolated from the cattle tick saliva[J]. Arch Biochem Biophys,2000,384(1):68-73. [44] Ciprandi A, de Oliveira SK, Masuda A, et al. Boophilus microplus:its saliva contains microphilin, a small thrombin inhibitor[J]. Exp Parasitol,2006,114(1):40-46. [45] Macedo-Ribeiro S, Almeida C, Calisto BM, et al. Isolation, cloning and structural characterisation of boophilin, a multifunctional Kunitz-type proteinase inhibitor from the cattle tick[J]. PLoS One,2008,3(2):e1624. [46] Xu T, Lew-Tabor A, Rodriguez-Valle M. Effective inhibition of thrombin by Rhipicephalus microplus serpin-15(RmS-15) obtained in the yeast Pichia pastoris[J]. Ticks Tick Borne Dis, 2016,7(1):180-187. [47] Francischetti IM, Valenzuela JG, Andersen JF, et al. Ixolaris, a novel recombinant tissue factor pathway inhibitor (TFPI) from the salivary gland of the tick, Ixodes scapularis:identification of factor X and factor Xa as scaffolds for the inhibition of factor VⅡa/tissue factor complex[J]. Blood,2002,99(10):3602-3612. [48] Francischetti IM, Mather TN, Ribeiro JM. Penthalaris, a novel recombinant five-Kunitz tissue factor pathway inhibitor (TFPI) from the salivary gland of the tick vector of Lyme disease, Ixodes scapularis[J]. Thromb Haemost,2004,91(5):886-898. [49] Schuijt TJ, Bakhtiari K, Daffre S, et al. Factor Xa activation of factor V is of paramount importance in initiating the coagulation system:lessons from a tick salivary protein[J]. Circulation, 2013,128(3):254-266. [50] Gordon JR, Allen JR. Factors V and VⅡ anticoagulant activities in the salivary glands of feeding Dermacentor andersoni ticks[J]. J Parasitol,1991,77(1):167-170. [51] Ehebauer MT, Mans BJ, Gaspar ARM, et al. Identification of extrinsic blood coagulation pathway inhibitors from the tick Ornithodoros savignyi (Acari:Argasidae)[J]. Exp Parasitol,2002,101(2/3):138-148. [52] Kato N, Iwanaga S, Okayama T, et al. Identification and characterization of the plasma kallikrein-kinin system inhibitor, haemaphysalin, from hard tick, Haemaphysalis longicornis[J]. Thromb Haemost,2005,93(2):359-367. [53] Decrem Y, Rath G, Blasioli V, et al. Ir-CPI, a coagulation contact phase inhibitor from the tick Ixodes ricinus, inhibits thrombus formation without impairing hemostasis[J]. J Exp Med,2009,206(11):2381-2395. [54] Francischetti IMB, Mather TN, Ribeiro JMC. Cloning of a salivary gland metalloprotease and characterization of gelatinase and fibrin(ogen)lytic activities in the saliva of the Lyme disease tick vector Ixodes scapularis[J]. Biochem Biophys Res Commun,2003,305(4):869-875. [55] Anisuzzaman, Islam MK, Alim MA, et al. Longistatin, a plasminogen activator, is key to the availability of blood-meals for ixodid ticks[J]. PLoS Pathog,2011,7(3):e1001312. [56] Zhang HS, Qiao RQ, Gong HY, et al. Identification and anticoagulant activity of a novel Kunitz-type protein HA11 from the salivary gland of the tick Hyalomma asiaticum[J]. Exp Appl Acarol,2017,71(1):71-85. [57] Cao J, Shi L, Zhou YZ, et al. Characterization of a new Kunitz-type serine protease inhibitor from the hard tick Rhipicephalus hemaphysaloides[J]. Arch Insect Biochem Physiol,2013,84(2):104-113. [58] Poole NM, Mamidanna G, Smith RA, et al. Prostaglandin E2 in tick saliva regulates macrophage cell migration and cytokine profile[J]. Parasit Vectors,2013,6(1):261. [59] 房兆飞,胡厚源,龚丽莎,等. 抗炎抗凝双效融合蛋白TAP-SSL5的药理学分析[J]. 中国生物制品学杂志,2014,27(3):375-377,381. [60] Barboza T, Gomes T, Mizurini DM, et al. 99mTc-ixolaris targets glioblastoma-associated tissue factor:in vitro and pre-clinical applications[J]. Thromb Res,2015,136(2):432-439. [61] Chudzinski-Tavassi AM, Morais KL, Pacheco MT, et al. Tick salivary gland as potential natural source for the discovery of promising antitumor drug candidates[J]. Biomed Pharmacother,2016,77:14-19. |