[2]Anggraeni M.S., Owens L.. The haemocytic origin of lymphoid organ spheroid cells in the penaeid prawn Penaeus monodon, Dis. Aquat. Organ. , 2000, 40(2):85~ 92
[2]
[3]Fragkiadakis G.A.. Isolation of lectins from hemolymph of decapod crustaceans by adsorption on formalinized erythrocytes, J. Biochem. Biophys. Methods, 2000, 44(1 2):109~ 114
[3]
[4]Gargioni R., Barracco M.A.. Hemocytes of the palaemonids Macrobrachium rosenbergii and M. acanthurus, and of the penaeid Penaeus paulensis, J. Morphol., 1998, 236(3):209~ 221
[4]
[5]Gollas Galvan T., Hernandez Lopez J., Vargas Albores F.. Prophenoloxidase from brown shrimp (Penaeus californiensis) hemocytes, Comp. Biochem. Physiol. B. Biochem. Mol. Biol., 1999, 122(1):77~ 82
[5]
[6]Johansson M.W.. Cell adhesion molecules in invertebrate immunity, Dev . Comp. Immunol., 1999, 23(4 5): 303~ 315
[6]
[7]Nagai T., Kawabata Si. A.. Link between blood coagulation and prophenoloxidase activation in arthropod host defense, J. Biol. Chem., 2000, 275(38):29 264~ 29 267
[7]
[8]Sotanaphun U., Lipipun V., Suttisri R. et al.. A new antiviral and antimicrobial sesquiterpene from Glyptopetalum sclerocarpum, Planta Med., 1999, 65(3):257~ 258
[8]
[9]Sritunyalucksana K., Cerenius L., Soderhall K.. Molecular cloning and characterization of prophenoloxidase in the black tiger shrimp, Penaeus monodon, Dev. Comp. Immunol., 1999, 23(3):179~ 186
[9]
[10]Sugumaran M., Nellaiappan K., Valivit tan K.A.. New mechanism for the control of phenoloxidase activity: inhibition and complex formation with quinone isomerase,Arch. Biochem. Biophys., 2000, 379(2):252~ 260
[10]
[11]Sung H.H., Chang H.J., Her C.H. et al.. Phenoloxidase activity of hemocytes derived from Penaeus monodon and Macrobrachium rosenbergii, J. Invertebr. Pathol., 1998, 71(1):26~ 33
[11]
[12]Tsai G.J., Su W.H.. Antibacterial activity of shrimp chitosan against Escherichia coli, J. Food Prot., 1999, 62(3):239~ 243
[12]
[13]Yeh M.S., Chen Y.L., Tsai I.H.. The hemolymph clottable proteins of tiger shrimp, Penaeus monodon, and related species, Comp. Biochem. Physiol. B. Biochem. Mol. Biol., 1998, 121(2):169~ 176
[13]
[14]Yepiz Plascencia G., Vargas Albores F., Jimenez Vega F.et al.. Shrimp plasma HDL and beta glucan binding protein (BGBP): comparison of biochemical characteristics, Comp. Biochem. Physiol. B. Biochem. Mol. Biol., 1998, 121(3): 309~ 314
[14]
[15]Destoumieux D., Bulet P., Loew D. et al.. A new family of antimicrobial peptides isolated from the shrimp Penaeus vannamei (Decapoda), J. Biol. Chem., 1997, 272(45):28 398~ 28 406
[15]
[16]Karunasagar I., Ali A., Otta S.K. et al..Immunization with bacterial antigens: infections with motile aeromonads, Dev. Biol. Stand., 1997, 90:135~ 141
[16]
[17]Perazzolo L.M., Barracco M.A.. The prophenoloxidase activating system of the shrimp Penaeus paulensis and associated factors, Dev. Comp. Immunol., 1997, 21(5):385~ 395
[17]
[18]Sequeira T., Tavares D., Arala Chaves M.. Evidence for circulating hemocyte proliferation in the shrimp Penaeus japonicus, Dev. Comp. Immunol., 1996, 20(2):97~ 104
[18]
[19]Vargas Albores F., Jimenez Vega F., Yepiz Plascencia G.M.. Purification and comparison of beta 1,3 glucan binding protein from white shrimp (Penaeus vannamei), Comp. Biochem. Physiol. B. Biochem. Mol. Biol., 1997, 116(4):453~ 458
[19]
[20]Vazquez L., Maldonado G., Agundis C.et al.. Participation of a sialic acid specific lectin from freshwater prawn Macrobrachium rosenbergii hemocytes in the recognition of non self cells, J. Exp. Zool., 1997, 279(3):265~ 272