The role and place of the nurse in personalized nanomedicine

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详细

Personalized nanomedicine is an innovative direction in the field of healthcare that successfully combines the advanced achievements of nanotechnology with the principles of an individualized approach to patient treatment. This direction involves the use of nanomaterials and nanostructures to create targeted therapeutic agents that can be adapted to the specific genetic, physiological and biochemical characteristics of each patient. For nurses, this means the need to adapt to new protocols for the care of patients receiving nanomedical treatment, the development of new methods for monitoring the condition of patients, prescribing medications and evaluating the effectiveness of therapy. In this article, we will look at the main aspects of personalized nanomedicine and their significance for the practice of nursing.

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作者简介

Kristina Zhilinskaya

Federal State Budgetary Educational Institution of Higher Education “Samara State Medical University” of the Ministry of Health of the Russian Federation

编辑信件的主要联系方式.
Email: kristizhilinskay@gmail.com
ORCID iD: 0000-0003-4209-3025

Resident at the Department of Phthisiology and Pulmonology

 

俄罗斯联邦, Samara

Elizaveta Vdoushkina

Federal State Budgetary Educational Institution of Higher Education “Samara State Medical University” of the Ministry of Health of the Russian Federation

Email: chumanovaliza@mail.ru
ORCID iD: 0000-0003-0039-6829

Candidate of Medical Sciences, Associate Professor of the Department of Phthisiology and Pulmonology

俄罗斯联邦, Samara

Egor Povalyaev

Medical university «Reaviz»

Email: egor_63_crazy@mail.ru
ORCID iD: 0009-0004-1259-3269

6th year student, Faculty “General Medicine”

俄罗斯联邦, Samara

参考

  1. Шахид А. Мицеллярные препараты, содержащие водорастворимое противоопухолевое средство. Горизонты биофармацевтики : сборник научных трудов по материалам VIII Международной научно-практической молодежной конференции, посвященной 88-летию Курского государственного медицинского университета, Курск, 26 мая 2023 года. Курск: Курский государственный медицинский университет, 2023.146–149. [Shahid A. Micellar preparations containing water-soluble antitumor agent. Horizons of biopharmaceutics : collection of scientific papers on the materials of VIII International Scientific and Practical Youth Conference dedicated to the 88th anniversary of Kursk State Medical University, Kursk, May 26, 2023. Kursk: Kursk State Medical University, 2023.146-149.]
  2. Kenchegowda M., Rahamathulla M., Hani U., et al. Smart Nanocarriers as an Emerging Platform for Cancer Therapy: A Review. Molecules. 2021; 27: 1. doi: 10.3390/molecules27010146
  3. Hong S., Choi D. W., Kim H. N. et al. Protein-Based Nanoparticles as Drug Delivery Systems. Pharmaceutics. 2020; 12 (7). doi: 10.3390/pharmaceutics12070604.
  4. Пальцев М. А. Нанотехнологии в медицине и фармации. Ремедиум. 2008; 9. [Paltsev M. A. Nanotechnologies in medicine and pharmacy. Remedium. 2008; 9.] URL: https://cyberleninka.ru/article/n/nanotehnologii-v-meditsine-i-farmatsii.
  5. Zhang Y., Yang H., Yu Y. et al. Application of nanomaterials in proteomics-driven precision medicine. Theranostics. 2022; 12 (6): 2674–2686. doi: 10.7150/thno.64325.
  6. Gupta A., Soni S., Chauhan N. et al. Nanobots-based advancement in targeted drug delivery and imaging: An update. Journal of Controlled Release. 2022; 349: 97–108. doi: 10.1016/j.jconrel.2022.06.020.
  7. Faccendini A., Vigani B., Rossi S. et al. Nanofiber Scaffolds as Drug Delivery Systems to Bridge Spinal Cord Injury. Pharmaceuticals. 2017; 10 (3). doi: 10.3390/ph10030063.
  8. Мирошникова Е. П., Сизенцов А. Н., Аринжанов А. Е. и др. Обзор метааналитических эмпирических данных использования наночастиц эссенциальных элементов в аквакультуре. Животноводство и кормопроизводство. 2023; 106 (1): 21–34. [Miroshnikova E. P., Sizentsov A. N., Arinzhanov A. E., et al. Review of meta-analytical empirical data on the use of nanoparticles of essential elements in aquaculture. Animal Husbandry and Fodder Production. 2023; 106 (1): 21–34.] doi: 10.33284/2658-3135-106-1-21.
  9. Наномедицина: преимущества и недостатки. 13.03.2024. [Nanomedicine: advantages and disadvantages. 13.03.2024.] https://www.nanoindustry.su/news/11484
  10. Murugan R., Ramakrishna S. Nano-featured scaffolds for tissue engineering: a review of spinning methodologies. Tissue Eng. 2006; 12 (3): 435–447. doi: 10.1089/ten.2006.12.435.
  11. Карачаров А. А., Карачаров А. А., Лихацкий М. Н. и др. Модификация поверхности синтетического валлериита наночастицами золота: роль специфической адсорбции и дзета-потенциала. Коллоидный журнал. 2024; 86 (1): 45–57. [Karacharov A. A., Karacharov A. A., Likhatsky M. N., et al. Surface modification of synthetic valleriite by gold nanoparticles: role of specific adsorption and zeta potential. Colloid Journal. 2024; 86 (1): 45–57] doi: 10.31857/S0023291224010064.
  12. Емельянович И. Медицина субмикронного уровня. Наука и инновации. 2024; 6: 55–59. [Emeljanovich I. Submicron-level medicine. Science and Innovation. 2024; 6: 55–59.]
  13. Комарова Ж. Большие маленькие технологии. Наука и инновации. 2024; 6: 48–54. [Komarova J. Big small technologies. Science and Innovations. 2024; 6: 48–54.]
  14. Степаненко С. Д. Применение нанотехнологий в медицине. Актуальные проблемы экспериментальной и клинической медицины. 2023; 289–289. [Stepanenko S. D. Application of nanotechnologies in medicine. Actual problems of experimental and clinical medicine. 2023; 289–289.]

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