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Articles

Development of an ic-ELISA and an immunochromatographic strip assay for the detection of aconitine

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Pages 243-254 | Received 30 Oct 2019, Accepted 31 Dec 2019, Published online: 06 Feb 2020

References

  • Berlina, A. N., Zherdev, A. V., Xu, C., Eremin, S. A., & Dzantiev, B. B. (2017). Development of lateral flow immunoassay for rapid control and quantification of the presence of the colorant Sudan I in spices and seafood. Food Control, 73, 247–253. doi: 10.1016/j.foodcont.2016.08.011
  • Chen, Y., Liu, L., Cui, G., Wu, X., Kuang, H., & Xu, C. (2019). Development of an immunochromatographic strip for the detection of rosiglitazone in functional foods based on monoclonal antibodies. Analytical Methods, 11(38), 4910–4916. doi: 10.1039/C9AY01534E
  • Clara, A., Rauch, S., Überbacher, C. A., Felgenhauer, N., & Drüge, G. (2015). High-dose magnesium sulfate in the treatment of aconite poisoning. Anaesthesist, 64(5), 381–384. doi: 10.1007/s00101-015-0013-y
  • Gao, S. S., Li, J. R., Wu, F. B., Wei, X. M., Bian, J. H., Chen, J. B., Cheng, S. Q., Sun, S. Q., & Lv, G. H. (2016). [Development of FTIR fingerprint for identification of armand clematis stem (Chuanmutong) and related herbs]. China Journal of Chinese Materia Medica, 153(3), 737–743.
  • Gao, X., Zhang, X., Hu, J., Xu, X., Zuo, Y., Wang, Y., Ding, J., Xu, H., & Zhu, S. (2017). Aconitine induces apoptosis in H9c2 cardiac cells via mitochondria-mediated pathway. Molecular Medicine Reports, 17(1), 284–292.
  • Isanga, J., Mukunzi, D., Chen, Y., Suryoprabowo, S., Liu, L., Hua, K., & Xu, C. (2017). Development of a monoclonal antibody assay and a lateral flow strip test for the detection of paromomycin residues in food matrices. Food & Agricultural Immunology, 28(3), 355–373. doi: 10.1080/09540105.2016.1272551
  • Jablonski, J. E., Schlesser, J. E., & Mariappagoudar, P. (2006). HPLC-UV Method for Nicotine, Strychnine, and aconitine in Dairy Products. Journal of Agricultural and Food Chemistry, 54(20), 7460–7465. doi: 10.1021/jf061115a
  • Kong, D., Liu, L., Song, S., Kuang, H., & Xu, C. (2017). Development of sensitive, rapid, and effective immunoassays for the detection of vitamin B12 in fortified food and nutritional supplements. Food Analytical Methods, 10(1), 10–18. doi: 10.1007/s12161-016-0543-1
  • Lei, X., Song, S., Hong, T., Liu, L., Zheng, Q., Xu, C., & Hua, K. (2018). Development of indirect competitive enzyme-linked immunosorbent and immunochromatographic strip assays for tiamulin detection in chicken. ACS Omega, 3(3), 3581–3586. doi: 10.1021/acsomega.8b00289
  • Li, X., Gu, L., Yang, L., Zhang, D., & Shen, J. (2017). Aconitine: A potential novel treatment for systemic lupus erythematosus. Journal of Pharmacological Sciences, 133(3), 115–121. doi: 10.1016/j.jphs.2017.01.007
  • Li, X., Liu, J., Pan, F., Shi, D., Wen, Z., & Yang, P. (2018). Quercetin and aconitine synergistically induces the human cervical carcinoma HeLa cell apoptosis via endoplasmic reticulum (ER) stress pathway. PLOS ONE, 13(1), e0191062. doi: 10.1371/journal.pone.0191062
  • Li, Y., Liu, L., Kuang, H., & Xu, C. (2019). Development of a lateral flow immunoassay for the simultaneous detection of four dipyrone metabolites in milk. Analytical Methods, 11(23), 3041–3052. doi: 10.1039/C9AY00774A
  • Liu, Y., Zhao, W. W., Ding, K. N., Jin, Z. J. Y., Li, Z. X., & Li, F. Z. (2019). Synthesis of “lotus root”-like mesoporous titanium dioxide and its effects on UV response to aconitine release. Journal of Alloys and Compounds, 777, 285–293. doi: 10.1016/j.jallcom.2018.10.388
  • Lou, J., Wu, H., Wang, L., Zhao, L., Li, X., Kang, Y., Wen, K., & Yin, Y. (2018). Taurine-magnesium coordination compound, a potential anti-arrhythmic complex, improves aconitine-induced arrhythmias through regulation of multiple ion channels. Toxicology and Applied Pharmacology, 356, 182–190. doi: 10.1016/j.taap.2018.08.008
  • Lu, Z., Wei, J., Liu, L., Song, S., & Hua, K. (2018). Development of ic-ELISA and lateral-flow immunochromatographic strip for detection of vitamin B2 in an energy drink and vitamin tablets. Food & Agricultural Immunology, 28(1), 121–132.
  • Ma, L., Gu, R., Tang, L., Chen, Z. E., Di, R., & Long, C. (2015). Important poisonous plants in tibetan ethnomedicine. Toxins, 7(1), 138–155. doi: 10.3390/toxins7010138
  • Tarbe, M., De Pomyers, H., Mugnier, L., Bertin, D., Ibragimov, T., Gigmes, D., & Mabrouk, K. (2017). Gram-scale purification of aconitine and identification of lappaconitine in Aconitum karacolicum. Fitoterapia, 120, 85–92. doi: 10.1016/j.fitote.2017.05.008
  • Wada, K., Bando, H., Kawahara, N., Mori, T., & Murayama, M. (1994). Determination and quantitative analysis of alkaloids in Aconitum japonicum by liquid chromatography atmospheric pressure chemical ionization mass spectrometry. Biological Mass Spectrometry, 23(2), 97–102. doi: 10.1002/bms.1200230209
  • Wang, Z. H., He, Y., Zhang, J. Z., Hu, C. H., & Guo, D. A. (1987). Detection of aconitine in biological samples by GC/MS. Journal of Forensic Medicine, 3, 25–30.
  • Wang, Z., Wu, X., Liu, L., Xu, L., Kuang, H., & Xu, C. (2019). An immunochromatographic strip sensor for sildenafil and its analogues. Journal of Materials Chemistry B, 7(14), 6383–6389. doi: 10.1039/C9TB00280D
  • Wei, S., Zhang, H., Li, B., Ji, J., & Shao, X. (2019). Insecticidal effect of aconitine on the rice brown planthoppers. PLOS ONE, 14(8), e0221090. doi: 10.1371/journal.pone.0221090
  • Xu, Y., Huang, Z. B., He, Q. H., Deng, S. Z., Li, L. S., & Li, Y. P. (2010). Development of an immunochromatographic strip test for the rapid detection of deoxynivalenol in wheat and maize. Food Chemistry, 119(2), 834–839. doi: 10.1016/j.foodchem.2009.08.049
  • Yang, H., Wang, H., Liu, Y., Yang, L., Sun, L., Tian, Y., Zhao, B., & Lu, H. (2019). The PI3K/Akt/mTOR signaling pathway plays a role in regulating aconitine-induced autophagy in mouse liver. Research in Veterinary Science, 124, 317–320. doi: 10.1016/j.rvsc.2019.04.016
  • Yin, J., Guo, W., Du, Y., & Wang, E. (2006). Facile separation and determination of aconitine alkaloids in traditional Chinese medicines by CE with tris(2,2′-bipyridyl) ruthenium(II)-based electrochemiluminescence detection. Electrophoresis, 27(23), 4836–4841. doi: 10.1002/elps.200600288
  • Yue, L., Liu, L., Song, S., & Hua, K. (2017). Development of a gold nanoparticle immunochromatographic assay for the on-site analysis of 6-benzylaminopurine residues in bean sprouts. Food & Agricultural Immunology, 29(1), 14–26.
  • Zhang, F., Cai, L., Zhang, J., Qi, X., & Lu, C. (2018). Aconitine-induced cardiac arrhythmia in human induced pluripotent stem cell-derived cardiomyocytes. Experimental and Therapeutic Medicine, 16(4), 3497–3503.
  • Zhao, D., Yong, S., Shi, Y., Shi, X., Qin, Q., Zi, S., Zhao, E., Yu, D., & Kennelly, E. J. (2018). Probing the transcriptome of Aconitum carmichaelii reveals the candidate genes associated with the biosynthesis of the toxic aconitine-type C 19 -diterpenoid alkaloids. Phytochemistry, 152, 113–124. doi: 10.1016/j.phytochem.2018.04.022
  • Zhou, R., Dai, G., Zhou, X., Zhang, M., Wu, P., Zhang, D., Song, H., Liu, X., & Qin, Y. (2019). Progress towards the synthesis of aconitine: Construction of the AE fragment and attempts to access the pentacyclic core. Organic Chemistry Frontiers, 6(3), 377–382. doi: 10.1039/C8QO01228H
  • Zong, X., Yan, X., Wu, J., Liu, Z., Zhou, H., Li, N., & Liu, L. (2019). Potentially cardiotoxic diterpenoid alkaloids from the roots of aconitum carmichaelii. Journal of Natural Products, 82(4), 980–989. doi: 10.1021/acs.jnatprod.8b01039