Pratanaphon R, Akesowan S, Khow O, Sriprapat S, Ratanabanangkoon K
Department of Microbiology, Faculty of Science, Mahidol University, Bangkok, Thailand.
Vaccine. 1997 Oct;15(14):1523-8. doi: 10.1016/s0264-410x(97)00098-4.
Naja kaouthia (NK) causes the highest fatality due to snake venom poisoning in Thailand. The specific antivenom produced is of low potency and in short supply. The aim of this study was to improve the antivenom potency. Bentonite and complete Freund's adjuvants (CFA) and various immunogens were compared. Six groups of three to five horses were immunized as follows: Group 1, NK venom adsorbed on bentonite; Group 2, NK venom in CFA; Group 3, NK venom in CFA in multi-emulsion formulation; Group 4, NK venom in 25% CFA; Group 5, NK neurotoxin 3 (NK3) conjugated with tetanus toxoid (NK3-TT) in CFA; Group 6, NK3 conjugated with diphtheria toxoid (NK3-DT) in CFA. Horses in Group 2-6 produced antivenom of very high neutralizing activity, up to four times higher than that of horses of Group 1. CFA (100 or 25%) or as a multi-emulsion formulation, induced comparable neutralizing antibody production with all three immunogens. All horses showed normal weight gain during the course of immunization. Group 1 horses exhibited minimal local reactions while horses in the other five groups had mild and comparable local reactions at the injection sites. No significant differences in the reactions caused by CFA in different formulations or different immunogens were observed. The production of highly potent antivenom against N. kaouthia from these horses should help solve problems associated with the currently available antivenom.
眼镜王蛇(NK)在泰国导致的蛇毒中毒致死率最高。所生产的特效抗蛇毒血清效力低且供应短缺。本研究的目的是提高抗蛇毒血清的效力。对膨润土、完全弗氏佐剂(CFA)和各种免疫原进行了比较。将六组三至五匹马按以下方式进行免疫:第1组,吸附在膨润土上的NK毒液;第2组,CFA中的NK毒液;第3组,多重乳剂配方的CFA中的NK毒液;第4组,25% CFA中的NK毒液;第5组,与破伤风类毒素结合的NK神经毒素3(NK3-TT)在CFA中;第6组,与白喉类毒素结合的NK3(NK3-DT)在CFA中。第2 - 6组的马产生了中和活性非常高的抗蛇毒血清,比第1组的马高出四倍。CFA(100%或25%)或作为多重乳剂配方,使用所有三种免疫原诱导产生了相当的中和抗体。所有马在免疫过程中体重均正常增加。第1组的马局部反应最小,而其他五组的马在注射部位有轻微且相当的局部反应。未观察到不同配方或不同免疫原的CFA所引起的反应有显著差异。用这些马生产的高效抗眼镜王蛇毒血清应有助于解决与目前可用抗蛇毒血清相关的问题。