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Russian Chemical Reviews, 1993, Volume 62, Issue 7, Pages 683–691
DOI: https://doi.org/10.1070/RC1993v062n07ABEH000040
(Mi rcr1115)
 

This article is cited in 13 scientific papers (total in 13 papers)

Mechanisms of interaction of pesticides with the lipid bilayer in cell membranes

V. N. Golubev

Moscow State Correspondence Institute of Food Industry
Abstract: The available information about the mechanisms of the interaction of pesticides having different chemical structures with the lipid bilayer in cell membranes is presented. It is shown that, depending on the degree of lipophilicity, the molecular dipole moment, and certain other characteristics of the pesticide compound, its interaction with the lipid bilayer generally takes place via one of the three main mechanisms involving the incorporation of the pesticide molecules in the hydrocarbon region within the bilayer, the adsorption of these molecules in the zone of the polar membrane phospholipids, or the incorporation of the amphiphilic pesticide compounds in both the non-polar and polar regions of the membrane. The bibliography includes 109 references.
Received: 03.03.1993
Bibliographic databases:
Document Type: Article
UDC: 62.95.025:576.345
Language: English
Original paper language: Russian


Citation: V. N. Golubev, “Mechanisms of interaction of pesticides with the lipid bilayer in cell membranes”, Usp. Khim., 62:7 (1993), 726–734; Russian Chem. Reviews, 62:7 (1993), 683–691
Linking options:
  • https://www.mathnet.ru/eng/rcr1115
  • https://doi.org/10.1070/RC1993v062n07ABEH000040
  • https://www.mathnet.ru/eng/rcr/v62/i7/p726
  • This publication is cited in the following 13 articles:
    1. Shuoqi Jiang, Zhuangwei Zhang, Qiuya Gu, Jian-Xin Li, Xiaobin Yu, International Journal of Biological Macromolecules, 2024, 138001  crossref
    2. Murat YOLCU, Elif İpek SATAR, Comm. J. Biol., 7:2 (2023), 152  crossref
    3. Francesco Trenti, Tommaso Sandron, Graziano Guella, Valeria Lencioni, Cryobiology, 106 (2022), 84  crossref
    4. Kurban E. Magomedov, Ruslan Z. Zeynalov, Sagim I. Suleymanov, Sarizhat D. Tataeva, Viktoriya S. Magomedova, Membranes, 12:6 (2022), 632  crossref
    5. Hayat Kh., Afzal M., Aqueel M.A., Ali S., Khan Q.M., Ashfaq U., Ecotox. Environ. Safe., 163 (2018), 382–390  crossref  isi
    6. Balkrishna Tiwari, Sindhunath Chakraborty, Alok Kumar Srivastava, Arun Kumar Mishra, Algal Research, 25 (2017), 285  crossref
    7. Elif Ipek Cengiz, Ahmet Serhat Bayar, Veysi Kizmaz, Chemosphere, 147 (2016), 138  crossref
    8. Elif Ipek Cengiz, Yeter Kan, Veysi Kizmaz, Mehmet Başhan, Mahmut Yanar, Ecotoxicology and Environmental Safety, 80 (2012), 381  crossref
    9. Elena A. Saratovskikh, Boris L. Psikha, JEP, 01:04 (2010), 410  crossref
    10. Agnieszka Mech, Zulfiya Orynbayeva, Kaiyr Irgebayev, Sofiya Kolusheva, Raz Jelinek, Chem. Res. Toxicol., 22:1 (2009), 90  crossref
    11. Gina La Sala, Donatella Farini, Massimo De Felici, Toxicological Sciences, 108:2 (2009), 445  crossref
    12. E. A. Saratovskikh, B. L. Psikha, R. I. Gvozdev, Yu. I. Skurlatov, Russ. J. Phys. Chem. B, 2:4 (2008), 555  crossref
    13. R. S. Nasibullin, M. H. Zeieev, L. V. Spirikhin, D. I. Kosareva, Biopolym. Cell, 14:5 (1998), 428  crossref
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