Registration of the penetration of enzymatically modified nanocomposites containing maghemite nanoparticles through lipid membranes

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详细

A visual registration of the penetration of enzymatically modified nanocomposites containing maghemite nanoparticles through planar model bilayer asolectin membranes was conducted. Transmembrane current traces were obtained at the moment the nanocomposites passed through the membrane. Transmembrane current spikes were detected, arising during the translocation of nanostructures through the membrane. The measured transmembrane current magnitude allowed estimation of the size of the transmembrane pore to be approximately 10 nm. This pore size closely matched the average diameter of the maghemite nanoparticles comprising the original nanocomposite.

作者简介

V. Cherepenin

V.A. Kotelnikov Institute of Radioengineering and Electronics, Russian Academy of Sciences

Mokhovaya Str., 11, bldg. 7, Moscow, 125009 Russian Federation

E. Efimova

Sechenov First Moscow State Medical University of the Ministry of Health of Russia

Trubetskaya Str., 8, bldg. 2, Moscow, 119048 Russian Federation

M. Grigorieva

Sechenov First Moscow State Medical University of the Ministry of Health of Russia

Trubetskaya Str., 8, bldg. 2, Moscow, 119048 Russian Federation

A. Kuandykova

Sechenov First Moscow State Medical University of the Ministry of Health of Russia

Trubetskaya Str., 8, bldg. 2, Moscow, 119048 Russian Federation

V. Spiridonov

Faculty of Chemistry, Lomonosov Moscow State University

Leninskie gory, 1, bldg. 3, Moscow, 119992 Russian Federation

I. Taranov

V.A. Kotelnikov Institute of Radioengineering and Electronics, Russian Academy of Sciences

Email: ivt@cplire.ru
Mokhovaya Str., 11, bldg. 7, Moscow, 125009 Russian Federation

G. Khomutov

V.A. Kotelnikov Institute of Radioengineering and Electronics, Russian Academy of Sciences; Faculty of Physics, Lomonosov Moscow State University

Mokhovaya Str., 11, bldg. 7, Moscow, 125009 Russian Federation; Leninskie gory, 1, bldg. 2, Moscow, 119992 Russian Federation

E. Borisova

Sechenov First Moscow State Medical University of the Ministry of Health of Russia

Trubetskaya Str., 8, bldg. 2, Moscow, 119048 Russian Federation

K. Kalinycheva

Sechenov First Moscow State Medical University of the Ministry of Health of Russia

Trubetskaya Str., 8, bldg. 2, Moscow, 119048 Russian Federation

K. Svinina

Sechenov First Moscow State Medical University of the Ministry of Health of Russia

Trubetskaya Str., 8, bldg. 2, Moscow, 119048 Russian Federation

A. Anosov

V.A. Kotelnikov Institute of Radioengineering and Electronics, Russian Academy of Sciences; Sechenov First Moscow State Medical University of the Ministry of Health of Russia

Mokhovaya Str., 11, bldg. 7, Moscow, 125009 Russian Federation; Trubetskaya Str., 8, bldg. 2, Moscow, 119048 Russian Federation

参考

  1. Горин Д.А., Щукин Д.Г., Михайлов А.И. и др. // Письма в ЖТФ. 2006. Т. 32. № . 2. С. 45.
  2. Гуляев Ю.В., Черепенин В.А., Вдовин В.А. и др. // РЭ. 2015. Т. 60. № . 11. С. 1207.
  3. Bal K., Gӧk M.K., Demir K., Özgümüş S. // Mater. Today Chemistry. 2025. V. 44. Article No. 102545.
  4. Baghersad M.H., Salimi A. // J. Molecular Structure. 2025. V. 1330. Article No. 141524.
  5. Li J., Loh X.J. // Advanced Drug Delivery Reviews. 2008. V. 60. № 9. P. 1000.
  6. Calzoni E., Cesaretti A., Polchi A. et al. // J. Functional Biomaterials. 2019. V. 10. № 1. Article No. 4.
  7. Soppimath K.S., Aminabhavi T.M., Kulkarni A.R., Rudzinski W.E. // J. Controlled Release. 2000. V. 70. № 1–2. P. 1.
  8. Bennett S.L., Melanson D.A., Torchiana D.F., Wiseman D.M. // J. Cardiac Surgery. 2003. V. 18. № 6. P. 494.
  9. Sung Y., Kim S. // Biomaterials Research. 2019. V. 23. Article No. 8.
  10. Elizondo E., Moreno E., Cabrera I. et al. //Progress in Molecular Biology and Translational Sci. 2011. V. 104. P. 1.
  11. Lombardo D., Kiselev M.A., Caccamo M.T. // J. Nanomaterials. 2019. № 12. P. 1.
  12. Donath E., Sukhorukov G.B., Caruso F. et al. // Angewandte Chemie Int. Edition. 1998. V. 37. № 16. P. 2202.
  13. Гуляев Ю.В., Черепенин В.А., Вдовин В.А. и др. // РЭ. 2015. Т. 60. № 10. С. 1051.
  14. Гуляев Ю.В., Черепенин В.А., Таранов И.В. и др. // РЭ. 2021. Т. 66. № 1. С. 82.
  15. Гуляев Ю.В., Черепенин В.А., Таранов И.В. и др. // РЭ. 2016. Т. 61. № 1. С. 61.
  16. Radt B., Smith T.A., Caruso F. // Advanced Mater. 2004. V. 16. № 23–24. P. 2184.
  17. Lu Z., Prouty M.D., Guo Z.et al. // Langmuir. 2005. V. 21. № 5. P. 2042
  18. Gorin D.A., Shchukin D.G., Koksharov Yu.A. et al. // Proc. SPIE. 2007. V. 6536. Article No. 653604.
  19. Gorin D.A., Shchukin D.G., Koksharov Yu.A. et al. // Progress in Biomedical Optics and Imaging. 2007. V. 6536. P. 653604.
  20. Гуляев Ю.В., Черепенин В.А., Вдовин В.А. и др. // РЭ. 2015. Т. 60. № 11. С. 1207.
  21. Gubin S.P., Gulyaev Yu.V., Khomutov G.B. et al. // Nanotechnology. 2002. V. 13. № 2. P. 185.
  22. Кислов В.В., Колесов В.В., Таранов И.В. // РЭ.2002. Т. 47. № 11. С. 1385.
  23. Khomutov G.B., Gainutdinov R.V., Gubin S.P. et al. // Appl. Surface Sci. 2004. V. 226. № . 1–3. P. 149.
  24. Кокшаров Ю.А., Губин С.П., Таранов и др. // РЭ.2022. Т. 67. № 2. С. 99.
  25. Sadat U., Usman A., Gillard J.H. // Current Opinion in Cardiology. 2017. V. 32. № 4. P. 437.
  26. Corot C., Petry K.G., Trivedi R. et al. // Investigative Radiology. 2004. V. 39. № 10. P. 619.
  27. Mahmoudi M., Sant S., Wang B. et al. // Advanced Drug Delivery Reviews. 2001. V. 63. № 1–2. P. 24. https://doi.org/10.1016/j.addr.2010.05.006
  28. Spiridonov V., Zoirova Z., Alyokhina Y. et al. // Polymers 2023. V. 15. № 17. Article No. 3644.
  29. Spiridonov V., Lukmanova A., Pozdyshev D. et al. // Carbohydrate Research. 2024. V. 546. Article No. 109310.
  30. Dinali R., Ebrahiminezhad A., Manley-Harris M. et al. // Critical Reviews in Microbiology. 2016. V. 43. № 4. P. 493.
  31. Spiridonov V.V., Panova I.G., Makarova L.A. et al. // Carbohydrate Polymers. 2017. V.177. P. 269.
  32. Spiridonov V.V., Panova I.G., Makarova L.A. et al. // Express Polymer Lett. 2018. V.12. № 5. P. 452.
  33. Yang S.-J., Huang C.-H., Yang J.-C. et al. // ACS Appl. Mater. & Interfaces. 2020. V.12. № 49. P. 54316. https://doi.org/10.1021/acsami.0c13101
  34. Anosov A.A., Borisova E.D., Smirnova E.Y. et al. // Phys. Fluids. 2024. V. 38. № 11. Article No. 112035. https://doi.org/10.1063/5.0240116
  35. Anosov A.A., Smirnova E.Yu., Sukhova V.I. et al. // Biochimica et Biophysica Acta (BBA)-Biomembranes. 2024. V. 1866. № 7. Article No. 184352.
  36. Mueller P., Rudin D., Tien H., Wescott W.C. // Nature. 1962. V. 194. № 4832. P. 979.
  37. Антонов В.Ф., Смирнова Е.А., Аносов А.А. и др. // Биофизика. 2008. Т. 53. № 5. С. 802.
  38. Weaver J.C., Chizmadzhev Y.A. // Bioelectrochemistry and bioenergetics. 1996. V. 41. № 2. Р. 135.

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