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The preparation method of cells with boron nanoparticles to determine boron by direct current arc atomic emission spectrometry

Tatiana Yakovlevna Guselnikova 1, 2
Tatiana Yakovlevna Guselnikova
Alphiya Rafael'evna Tsygankova 1, 2
Alphiya Rafael'evna Tsygankova
Polina Anatol'evna Khaptakhanova
Sergey Alekseevich Uspenskii 3, 4
Sergey Alekseevich Uspenskii
Ivan A Rasumov 2, 5
Ivan A Rasumov
Olga Igorevna Solovieva 2, 5
Olga Igorevna Solovieva
Vladimir Vladimirovich Kanygin
Dmitrii Yuryevich Troitskii 1
Dmitrii Yuryevich Troitskii
1 A.V. Nikolaev Institute of Inorganic Chemistry, Siberian Branch of the Russian Academy of Sciences, Novosibirsk, Russian Federation
3 N.S. Enikolopov Institute of Synthetic Polymeric Materials, Russian Academy of Sciences, Moscow, Russian Federation
4 Moscow Institute of Physics and Technology (National Research University), Dolgoprudny, Moscow Region, Russian Federation
5 Institute of Cytology and Genetics, Siberian Branch of the Russian Academy of Sciences, Novosibirsk, Russian Federation
Published 2024-10-22
CommunicationVolume 34, Issue 6, 896-898
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Guselnikova T. Y. et al. The preparation method of cells with boron nanoparticles to determine boron by direct current arc atomic emission spectrometry // Mendeleev Communications. 2024. Vol. 34. No. 6. pp. 896-898.
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Guselnikova T. Y., Tsygankova A. R., Khaptakhanova P. A., Uspenskii S. A., Rasumov I. A., Solovieva O. I., Kanygin V. V., Troitskii D. Y. The preparation method of cells with boron nanoparticles to determine boron by direct current arc atomic emission spectrometry // Mendeleev Communications. 2024. Vol. 34. No. 6. pp. 896-898.
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TY - JOUR
DO - 10.1016/j.mencom.2024.10.040
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.10.040
TI - The preparation method of cells with boron nanoparticles to determine boron by direct current arc atomic emission spectrometry
T2 - Mendeleev Communications
AU - Guselnikova, Tatiana Yakovlevna
AU - Tsygankova, Alphiya Rafael'evna
AU - Khaptakhanova, Polina Anatol'evna
AU - Uspenskii, Sergey Alekseevich
AU - Rasumov, Ivan A
AU - Solovieva, Olga Igorevna
AU - Kanygin, Vladimir Vladimirovich
AU - Troitskii, Dmitrii Yuryevich
PY - 2024
DA - 2024/10/22
PB - Mendeleev Communications
SP - 896-898
IS - 6
VL - 34
ER -
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@article{2024_Guselnikova,
author = {Tatiana Yakovlevna Guselnikova and Alphiya Rafael'evna Tsygankova and Polina Anatol'evna Khaptakhanova and Sergey Alekseevich Uspenskii and Ivan A Rasumov and Olga Igorevna Solovieva and Vladimir Vladimirovich Kanygin and Dmitrii Yuryevich Troitskii},
title = {The preparation method of cells with boron nanoparticles to determine boron by direct current arc atomic emission spectrometry},
journal = {Mendeleev Communications},
year = {2024},
volume = {34},
publisher = {Mendeleev Communications},
month = {Oct},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.10.040},
number = {6},
pages = {896--898},
doi = {10.1016/j.mencom.2024.10.040}
}
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Guselnikova, Tatiana Yakovlevna, et al. “The preparation method of cells with boron nanoparticles to determine boron by direct current arc atomic emission spectrometry.” Mendeleev Communications, vol. 34, no. 6, Oct. 2024, pp. 896-898. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.10.040.

Keywords

atomic emission spectrometry
BNCT
boron determination
boron nanoparticles
glioblastoma cells
sample treatment.

Abstract

An approach to quantify boron in cells after administration of boron nanoparticles (BNPs) stabilized in hydroxyethyl cellulose (HEC) was developed. In vitro experiments with human glioblastoma cells and BNPs stabilized in HEC were carried out. Cell samples with BNPs were dried on graphite powder under an infrared lamp and analyzed by direct current arc atomic emission spectrometry (DCA AES).

References

.
Tsygankova A.R., Gruzdev D.A., Kanygin V.V., Ya. Guselnikova T., Telegina A.A., Kasatova A.I., Kichigin A.I., Levit G.L., Mechetina L.V., Mukhamadiyarov R.A., Razumov I.A., Solovieva O.I., Yu. Volkova O., Ponomarev A.A., Krasnov V.P., et. al.
Mendeleev Communications, 2021
.
Evaluation of a Novel Boron-Containing α-d-Mannopyranoside for BNCT
Tsurubuchi T., Shirakawa M., Kurosawa W., Matsumoto K., Ubagai R., Umishio H., Suga Y., Yamazaki J., Arakawa A., Maruyama Y., Seki T., Shibui Y., Yoshida F., Zaboronok A., Suzuki M., et. al.
Cells, 2020
.
Functionalized Boron Nanoparticles as Potential Promising Antimalarial Agents
Zhu Y., Prommana P., Hosmane N.S., Coghi P., Uthaipibull C., Zhang Y.
ACS Omega, 2022
.
Polymer-Stabilized Elemental Boron Nanoparticles for Boron Neutron Capture Therapy: Initial Irradiation Experiments
Zaboronok A., Khaptakhanova P., Uspenskii S., Bekarevich R., Mechetina L., Volkova O., Mathis B.J., Kanygin V., Ishikawa E., Kasatova A., Kasatov D., Shchudlo I., Sycheva T., Taskaev S., Matsumura A., et. al.
Pharmaceutics, 2022
.
Biocompatible Iron–Boron Nanoparticles Designed for Neutron Capture Therapy Guided by Magnetic Resonance Imaging
Torresan V., Guadagnini A., Badocco D., Pastore P., Muñoz Medina G.A., Fernàndez van Raap M.B., Postuma I., Bortolussi S., Bekić M., Čolić M., Gerosa M., Busato A., Marzola P., Amendola V.
Advanced healthcare materials, 2020
.
Determination of boron by inductively coupled plasma atomic emission spectroscopy. Biodistribution of 10B in tumor-bearing mice
Tsygankova A.R., Kanygin V.V., Kasatova A.I., Zav’yalov E.L., Gusel’nikova T.Y., Kichigin A.I., Mukhamadiyarov R.A.
Russian Chemical Bulletin, 2020
.
Determination of trace elements in bone by two-jet plasma atomic emission spectrometry
Zaksas N.P., Sultangazieva T.T., Gerasimov V.A.
Analytical and Bioanalytical Chemistry, 2008
.
Laser-ablative aqueous synthesis and characterization of elemental boron nanoparticles for biomedical applications
Pastukhov A.I., Belyaev I.B., Bulmahn J.C., Zelepukin I.V., Popov A.A., Zavestovskaya I.N., Klimentov S.M., Deyev S.M., Prasad P.N., Kabashin A.V.
Scientific Reports, 2022
.
Elemental Boron Nanoparticles: Production by Ultrasonication in Aqueous Medium and Application in Boron Neutron Capture Therapy
Uspenskii S.A., Khaptakhanova P.A., Zaboronok A.A., Kurkin T.S., Volkova O.Y., Mechetina L.V., Taranin A.V., Kanygin V.V., Akira M., Taskaev S.Y.
Doklady Chemistry, 2020
.
Pharmacokinetic study of BSH and BPA in simultaneous use for BNCT
Yokoyama K., Miyatake S., Kajimoto Y., Kawabata S., Doi A., Yoshida T., Asano T., Kirihata M., Ono K., Kuroiwa T.
Journal of Neuro-Oncology, 2006
.
Biocompatibility of functionalized boron phosphate (BPO4) nanoparticles for boron neutron capture therapy (BNCT) application
Achilli C., Grandi S., Ciana A., Guidetti G.F., Malara A., Abbonante V., Cansolino L., Tomasi C., Balduini A., Fagnoni M., Merli D., Mustarelli P., Canobbio I., Balduini C., Minetti G., et. al.
Nanomedicine: Nanotechnology, Biology, and Medicine, 2014
.
Synthesis and evaluation of a novel liposome containing BPA–peptide conjugate for BNCT
Shirakawa M., Yamamto T., Nakai K., Aburai K., Kawatobi S., Tsurubuchi T., Yamamoto Y., Yokoyama Y., Okuno H., Matsumura A.
Applied Radiation and Isotopes, 2009
.
Fructose-functionalized polymers to enhance therapeutic potential of p-boronophenylalanine for neutron capture therapy
Nomoto T., Yao Y., Inoue Y., Suzuki M., Kanamori K., Takemoto H., Matsui M., Tomoda K., Nishiyama N.
Journal of Controlled Release, 2021
.
Aqueous solutions of AOT as a dispersion medium for stabilization of SiO2 nanoparticles
Shaparenko N.O., Demidova M.G., Kompan'kov N.B., Guselnikova T.Y., Bulavchenko A.I.
Journal of Molecular Liquids, 2021
.
Intracellular targeting of sodium mercaptoundecahydrododecaborate (BSH) to solid tumors by transferrin-PEG liposomes, for boron neutron-capture therapy (BNCT)
Maruyama K., Ishida O., Kasaoka S., Takizawa T., Utoguchi N., Shinohara A., Chiba M., Kobayashi H., Eriguchi M., Yanagie H.
Journal of Controlled Release, 2004
.
Akan Z., Demiroglu H., Avcibasi U., Oto G., Ozdemir H., Deniz S., Basak A.S.
2014