Aim To study the effects of tetrodotoxin (TTX) combined with acetylsalicylic acid (ASA) on nociceptive stimulus in mice. Methods To assess the antinociceptive effects of TTX, ASA or TTX plus ASA, the acetic acid-i...Aim To study the effects of tetrodotoxin (TTX) combined with acetylsalicylic acid (ASA) on nociceptive stimulus in mice. Methods To assess the antinociceptive effects of TTX, ASA or TTX plus ASA, the acetic acid-induced abdominal constriction test and formalin pain test were used. Results TTX (0.5 - 4.0 μg· kg^-1 ) or ASA (25 - 200 mg· kg^-1 ) im produced a significant inhibition of acetic acid-induced abdominal constriction. The median inhibitory doses (ID508) were 2.1 μg· kg^-1 for TTX( and 64 mg· kg^-1 for ASA. TTX and ASA also showed a dose-dependent inhibition of the second phase response in the formalin pain model, the ID508, being 2.3μg·kg^-1 and 74.2 mg· kg^-1, respectively. The ihteraction between TTX and ASA was synergistic, as evidenced by the fact that (1) when ASA alone compared with the combination of TTX (0.79 μg · kg^-1 or 0.39μg· kg^-1 ) and ASA, the ID508, of ASA reduced from 64.0 mg· kg^-1 to 5.8 mg· kg^-1 or 12.6 mg· kg^-1, and from 74.2 mg· kg^-1 to 7.4 mg· kg^-1 or 13.0 mg· kg^-1 on tile two models of nociceptive tests, respectively; and that (2) synergism in the analgesic effects was shown by isobiolographic analysis. Conclusion TTX, ASA and the combination of the two drags produce analgesic effects in acetic acid-induced abdominal constriction test and formalin-induced pain test. The interactions between TTX and ASA may be useful in developing novel analgesic agents.展开更多
目的研制河豚毒素中和性单抗,建立基于河豚毒素单抗的河豚毒素检测方法。方法用TTX-KLH免疫Balb/c小鼠,用TTX-BSA间接ELISA筛选,建立杂交瘤细胞系,腹腔接种Balb/c小鼠诱生腹水,Protein A Sepharose CL4B亲和柱纯化,SDS-PAGE、间接ELISA...目的研制河豚毒素中和性单抗,建立基于河豚毒素单抗的河豚毒素检测方法。方法用TTX-KLH免疫Balb/c小鼠,用TTX-BSA间接ELISA筛选,建立杂交瘤细胞系,腹腔接种Balb/c小鼠诱生腹水,Protein A Sepharose CL4B亲和柱纯化,SDS-PAGE、间接ELISA鉴定;用常规法确定TTX对昆明小鼠的LD50;将单抗和TTX混合物注入小鼠腹腔,检测单抗对TTX的中和能力;建立检测TTX的竞争ELISA法。结果获得了2株TTX中和性单抗,腹水用Protein A Sepharose CL 4B纯化后抗体纯度大于95%;常规间接ELISA检测,显示单抗5E7的结合能力高于5E4。单抗对2 LD50 TTX攻击昆明小鼠的保护率为50%,建立了基于中和性单抗的TTX检测方法,TTX的最小检出浓度为1.56μg/mL。结论获得了TTX中和性单抗,对致死剂量TTX攻击昆明小鼠的保护率为50%,建立了基于中和性单抗的TTX检测方法,TTX的最小检出浓度为1.56μg/mL。展开更多
文摘Aim To study the effects of tetrodotoxin (TTX) combined with acetylsalicylic acid (ASA) on nociceptive stimulus in mice. Methods To assess the antinociceptive effects of TTX, ASA or TTX plus ASA, the acetic acid-induced abdominal constriction test and formalin pain test were used. Results TTX (0.5 - 4.0 μg· kg^-1 ) or ASA (25 - 200 mg· kg^-1 ) im produced a significant inhibition of acetic acid-induced abdominal constriction. The median inhibitory doses (ID508) were 2.1 μg· kg^-1 for TTX( and 64 mg· kg^-1 for ASA. TTX and ASA also showed a dose-dependent inhibition of the second phase response in the formalin pain model, the ID508, being 2.3μg·kg^-1 and 74.2 mg· kg^-1, respectively. The ihteraction between TTX and ASA was synergistic, as evidenced by the fact that (1) when ASA alone compared with the combination of TTX (0.79 μg · kg^-1 or 0.39μg· kg^-1 ) and ASA, the ID508, of ASA reduced from 64.0 mg· kg^-1 to 5.8 mg· kg^-1 or 12.6 mg· kg^-1, and from 74.2 mg· kg^-1 to 7.4 mg· kg^-1 or 13.0 mg· kg^-1 on tile two models of nociceptive tests, respectively; and that (2) synergism in the analgesic effects was shown by isobiolographic analysis. Conclusion TTX, ASA and the combination of the two drags produce analgesic effects in acetic acid-induced abdominal constriction test and formalin-induced pain test. The interactions between TTX and ASA may be useful in developing novel analgesic agents.
文摘目的研制河豚毒素中和性单抗,建立基于河豚毒素单抗的河豚毒素检测方法。方法用TTX-KLH免疫Balb/c小鼠,用TTX-BSA间接ELISA筛选,建立杂交瘤细胞系,腹腔接种Balb/c小鼠诱生腹水,Protein A Sepharose CL4B亲和柱纯化,SDS-PAGE、间接ELISA鉴定;用常规法确定TTX对昆明小鼠的LD50;将单抗和TTX混合物注入小鼠腹腔,检测单抗对TTX的中和能力;建立检测TTX的竞争ELISA法。结果获得了2株TTX中和性单抗,腹水用Protein A Sepharose CL 4B纯化后抗体纯度大于95%;常规间接ELISA检测,显示单抗5E7的结合能力高于5E4。单抗对2 LD50 TTX攻击昆明小鼠的保护率为50%,建立了基于中和性单抗的TTX检测方法,TTX的最小检出浓度为1.56μg/mL。结论获得了TTX中和性单抗,对致死剂量TTX攻击昆明小鼠的保护率为50%,建立了基于中和性单抗的TTX检测方法,TTX的最小检出浓度为1.56μg/mL。