• 中文核心期刊要目总览
  • 中国科技核心期刊
  • 中国科学引文数据库(CSCD)
  • 中国科技论文与引文数据库(CSTPCD)
  • 中国学术期刊文摘数据库(CSAD)
  • 中国学术期刊(网络版)(CNKI)
  • 中文科技期刊数据库
  • 万方数据知识服务平台
  • 中国超星期刊域出版平台
  • 国家科技学术期刊开放平台
  • 荷兰文摘与引文数据库(SCOPUS)
  • 日本科学技术振兴机构数据库(JST)

Toxic effects of strychnine and strychnine N-oxide on zebrafish embryos

Toxic effects of strychnine and strychnine N-oxide on zebrafish embryos

  • 摘要: AIM:The application of strychnine(S) is limited due to its toxicity;strychnine N-oxide(SNO) is a derivative of strychnine.The aim was to employ zebrafish embryos to investigate and compare the developmental toxicity induced by S and SNO.METHODS:The toxicity of S and SNO was examined through the hatching rate and survival rate.Morphological changes of the zebrafish were observed with a dissecting microscope.Apoptosis was detected through acridine orange(AO) staining and flow cytometry.Apoptotic genes were measured by RT-PCR.RESULTS:Embryo malformation was observed in the embryos exposed to S at 200 molL-1.When SNO concentration was increased to 1 mmolL-1,scoliolosis,and pericardial edema could be seen in some embryos.Results from fluorescence microscopy and flow cytometry analysis showed that S at 200 molL-1 induced apoptosis,whereas the apoptotic rate in the SNO-treated group(200 molL-1) was much lower than that in the S group.RT-PCR analysis showed that p53 mRNA expression and the ratio of Bax/Bcl-2 in the S group were significantly altered compared with the control group(*P0.05).Moreover,Bax mRNA expression in both S and SNO group were significantly different from that in the control group(**P0.01).CONCLUSION:These results lead to the conclusion that SNO has significantly lower toxicity than S in zebrafish embryos.

     

    Abstract: AIM:The application of strychnine(S) is limited due to its toxicity;strychnine N-oxide(SNO) is a derivative of strychnine.The aim was to employ zebrafish embryos to investigate and compare the developmental toxicity induced by S and SNO.METHODS:The toxicity of S and SNO was examined through the hatching rate and survival rate.Morphological changes of the zebrafish were observed with a dissecting microscope.Apoptosis was detected through acridine orange(AO) staining and flow cytometry.Apoptotic genes were measured by RT-PCR.RESULTS:Embryo malformation was observed in the embryos exposed to S at 200 molL-1.When SNO concentration was increased to 1 mmolL-1,scoliolosis,and pericardial edema could be seen in some embryos.Results from fluorescence microscopy and flow cytometry analysis showed that S at 200 molL-1 induced apoptosis,whereas the apoptotic rate in the SNO-treated group(200 molL-1) was much lower than that in the S group.RT-PCR analysis showed that p53 mRNA expression and the ratio of Bax/Bcl-2 in the S group were significantly altered compared with the control group(*P0.05).Moreover,Bax mRNA expression in both S and SNO group were significantly different from that in the control group(**P0.01).CONCLUSION:These results lead to the conclusion that SNO has significantly lower toxicity than S in zebrafish embryos.

     

/

返回文章
返回