Study of the capabilities of Raman spectroscopy in identifying the content of total hemoglobin in human blood
- Authors: Subekin A.Y.1,2, Pylaev T.E3, Kukushkin V.I2, Rudakova E.V4, Rudakov T.D2
-
Affiliations:
- Moscow Institute of Physics and Technology
- Osipyan Institute of Solid-State Physics of the Russian Academy of Sciences
- Razumovsky Saratov State Medical University of the Ministry of Health of the Russian Federation
- Institute of Physiologically Active Compounds at Federal Research Center of Problems of Chemical Physics and Medicinal Chemistry Russian Academy of Sciences
- Issue: Vol 89, No 2 (2025)
- Pages: 247–255
- Section: New Materials and Technologies for Security Systems
- URL: https://bakhtiniada.ru/0367-6765/article/view/296638
- DOI: https://doi.org/10.31857/S0367676525020169
- EDN: https://elibrary.ru/CWPNUW
- ID: 296638
Cite item
Abstract
Keywords
About the authors
A. Yu Subekin
Moscow Institute of Physics and Technology; Osipyan Institute of Solid-State Physics of the Russian Academy of Sciences
Email: alexey.subekin@gmail.com
Dolgoprudny, Russia; Chernogolovka, Russia
T. E Pylaev
Razumovsky Saratov State Medical University of the Ministry of Health of the Russian FederationSaratov, Russia
V. I Kukushkin
Osipyan Institute of Solid-State Physics of the Russian Academy of SciencesChernogolovka, Russia
E. V Rudakova
Institute of Physiologically Active Compounds at Federal Research Center of Problems of Chemical Physics and Medicinal Chemistry Russian Academy of SciencesChernogolovka, Russia
T. D Rudakov
Osipyan Institute of Solid-State Physics of the Russian Academy of SciencesChernogolovka, Russia
References
- Кишкун А.А. Клиническая лабораторная диагностика: учебное пособие. М.: ГЭОТАР-Медиа, 2019. 837 с.
- Лифшиц В.М., Сидельникова В.И. Биохимические анализы в клинике, Справочник. М.: Мед. информ. агент., 2001. 303 с.
- Eremina O.E., Semenova A.A., Sergeeva E.A. et al. // Russ. Chem. Rev. 2018. V. 87. No. 8. P. 741.
- Шлюкер С. Поверхностно-усиленная рамановская спектроскопия: аналитические, биофизические и биомедицинские приложения. М.: Техносфера, 2017. 332 с.
- Blazej D.C., Peticolas W.L. // J. Chem. Phys. 1980. V. 72. No. 5. P. 3134.
- Gonzales-Viveros N., Castro-Ramos J., Gomez-Gil P., Cerecedo-Nunez H.H. // Spectrochim. Acta. 2021. V. 247. No. 2. Art. No. 119077.
- Barman I., Dingari N.C., Kang J.W. et al. // Analyt. Chem. 2012. V. 84. No. 5. P. 2474.
- Wood B.R., Kochan K., Marzec K.M. // In: Vibrational spectroscopy in protein research. Acad. Press, 2020. P. 375.
- Pandey R. // PostDoc J. 2015. V. 3. No. 2. P. 8.
- Аблаев Н.Р. // Химия и жизнь. 2010. № 10. С. 19.
- Балаховский С.Д., Балаховский И.С. Методы химического анализа крови. Изд. Медгиз, 1953. 746 с.
- Leopold N., Lendl B. // J. Phys. Chem. B. 2003. V. 107. P. 5723.
- Subekin A.Y., Pylaev T.E., Kukushkin V.I. et al. // Bull. Russ. Acad. Sci. Phys. 2024. V. 88. No. 2. P. 178.
- Zheng Y., Zhong X., Li Zh., Xia Y. // Part. Part. Syst. Charact. 2014. V. 31. P. 266.
- Grabar C.R., Freeman G., Hommer M.B., Natan M.J. // Analyt. Chem. 1995. V. 67. P. 735.
- Kumar S.P., Pastoriza-Santos I., Rodrguez-Gonzа- ´ lez B. et al. // Nanotechnology. 2008. V. 19. No. 1. Art. No. 015606.
- Graf C., Vossen D.L.J., Imhof A., van Blaaderen A. // Langmuir. 2003. V. 19. P. 6693.
- Yuan H., Khoury C.G., Hwang H. et al. // Nanotechnology. 2012. V. 23. Art. No. 07510.
- Khlebtsov B.N., Khanadeev V.A., Panfilova E.V., Khlebtsov N.G. // J. Nanopart. Res. 2014. V. 16. Art. No. 2623.
- Ye X., Zheng Ch., Chen J. et al. // Nano Lett. 2013. V. 13. P. 765.
- Khlebtsov B.N., Khanadeev V.A., Ye J. et al. // Langmuir. 2014. V. 30. P. 1696.
- Лопатина Н.И., Геронимус А.Л. // Лаб. дело. 1976. № 6. С. 328.
Supplementary files
