Approaches to compiling a list of medicines and their metabolites for which state rationing is carried out



如何引用文章

全文:

详细

The main sources of entry of pharmaceutical drugs and their active metabolites into drinking water are the pharmaceutical products consumed by the population, which are discharged through the sewage system, the effluents from pharmaceutical and medical organizations, as well as the by-products of agriculture, which ultimately form wastewater that passes through insufficiently effective treatment systems. The study is devoted to the development of approaches to the formation of a list of pharmaceutical products and their metabolites subject to state regulation. The importance of strengthening control over the use of such substances and conducting additional assessments of their negative impact on the environment is emphasized. In the course of the work, a comparative analysis of the active components in the top 20 best-selling pharmaceutical products on the Russian market was carried out using Russian and international literature sources. Regulatory legal acts regulating the classification of antibiotics and hormones by the degree of danger have been studied. Based on this, a preliminary list of medicinal substances that can potentially have a negative impact on the environment has been formed, mainly in accordance with the requirements of SanPiN 1.2.3685-21. The results of the study can be used for further assessments of the harmful effects of these substances and the development of measures for their regulation

作者简介

Arkady Shpachuk

Saint Petersburg State Chemical Pharmaceutical University of the Ministry of Health of the Russian Federation

编辑信件的主要联系方式.
Email: arkadij.shpachuk@spcpu.ru
ORCID iD: 0009-0009-1658-9802

Студент 3 курса

俄罗斯联邦, Санкт-Петербург

Maria Vilisova

Saint Petersburg State Chemical Pharmaceutical University of the Ministry of Health of the Russian Federation

Email: mariya.vilisova@spcpu.ru
ORCID iD: 0009-0005-1089-580X

Студент 3 курса

俄罗斯联邦, Санкт-Петербург

Nataliya Sklyarova

Saint Petersburg State Chemical Pharmaceutical University of the Ministry of Health of the Russian Federation

Email: natalia.sklyarova@pharminnotech.com
ORCID iD: 0000-0002-8545-8170
SPIN 代码: 9473-6506

Ph.D. in Engineering Sciences, Associate Professor at the Industrial Ecology Department

俄罗斯联邦, Saint Petersburg

参考

  1. Urasova, A. A. State and prospects for the development of the pharmaceutical industry in the Perm region at the present stage / A. A. Urasova // Economics and management: problems, solutions. – 2018. – T. 4, No. 3. – P. 40-46. (In Russ.).
  2. Khalizeva, D. I. Pharmaceutical industry of the Russian Federation: state, problems and prospects / D. I. Khalizeva // Russia and Asia. – 2023. – No. 4(26). – pp. 50-59. (In Russ.).
  3. Kostin, K.B., Shanava L.A. Shaping an effective business model for a modern pharmaceutical MNC // Journal of Economics, Entrepreneurship and Law. – 2023. – Vol. 13. – N. 7. – P. 2205-2232. doi: 10.18334/epp.13.7.118408. (In Russ.).
  4. Sokolova, E. V. Pharmaceutical science as a basis for the development of pharmacy / E. V. Sokolova // Young pharmacy - the potential of the future: Collection of materials of the XII All-Russian scientific conference of students and graduate students with international participation, St. Petersburg, March 14 - 18, 2022 . – St. Petersburg: Federal State Budgetary Educational Institution of Higher Education “St. Petersburg State Chemical and Pharmaceutical University” of the Ministry of Health of the Russian Federation, 2022. – P. 1118-1224. (In Russ.).
  5. Safe management of wastes from health-care activities. Brief information. Geneva: World Health Organization; 2017 (WHO/FWC/WSH/17.05). License: CC BY-NC-SA 3.0 IGO. (In Russ.).
  6. Paramonov, S.G., Zelikova D.D., Sklyarova L.V., Alkhutova I.M. Environmental risks of the tetracycline micro pollution // Pharmacy Formulas. – 2022. – Vol. 4. – N. 1. – P. 76-88. doi: 10.17816/phf106547. (In Russ.).
  7. Vengerovich N.G., Perelygin V.V. Steroid hormones and their metabolites in water of centralized drinking water supply systems as ecopolutants // Pharmacy Formulas. - 2021. – Vol. 3. – N. 2. – P. 66-71. doi: 10.17816/phf71495. (In Russ.).
  8. Novikova, Yu. A. Main directions for minimizing public health risks caused by contamination of surface sources of drinking water supply with drugs / Yu. A. Novikova, O. L. Markova, K. B. Friedman // Hygiene and Sanitation. – 2018. – T. 97, No. 12. – P. 1166-1170. – doi: 10.18821/0016-9900-2018-97-12-1166-1170. (In Russ.).
  9. Perelygin, V.V., Sklyarova N.A., Paramonov S.G., Pyatizbyantsev T. Approaches to a comprehensive solution to the problem of medical waste management // Pharmacy Formulas. - 2019. - Vol. 1. - N. 1. - P. 78-83. doi: 10.17816/phf18618. (In Russ.).
  10. Sinitsyna, O. O. Hygienic standardization of various types of water at the present stage / O. O. Sinitsyna, Kh. Kh. Khamidulina, V. V. Turbinsky [etc.] // Hygiene and Sanitation. – 2022. – T. 101, No. 10. – P. 1151-1157. – doi: 10.47470/0016-9900-2022-101-10-1151-1157. (In Russ.).
  11. Voronina, L.P. The problem of classification of pharmaceutical waste and approaches to solution / L.P. Voronina, S.A. Pozdnyakov, L.A. Balagur, K.E. Kesler // International Journal of Applied and Fundamental Research. – 2018. – No. 12-2. – pp. 340-345. (In Russ.).
  12. Kümmerer, K. (2009). The presence of pharmaceuticals in the environment due to human use—present knowledge and future challenges. Journal of environmental management, 90(8), 2354-2366.
  13. Wilkinson, J. L., Hooda, P. S., Barker, J., Barton, S., & Swinden, J. (2016). Occurrence, fate and transformation of emerging contaminants in water: An overarching review of the field. Environmental Pollution, 231, 954-970.
  14. Van Boeckel, T. P., Brower, C., Gilbert, M., Grenfell, B. T., Levin, S. A., Robinson, T. P., ... & Laxminarayan, R. (2015). Global trends in antimicrobial use in food animals. Proceedings of the National Academy of Sciences, 112(18), 5649-5654.
  15. O'Neill, J. (2016). Tackling drug-resistant infections globally: final report and recommendations. Review on Antimicrobial Resistance, 84.
  16. The role of livestock in sustainable agriculture for food security and nutrition: a report by the High Level Panel of Experts on Food Security and Nutrition of the Committee on World Food Security. Rome: HLPE, 2016. p. 87-115.
  17. Berendonk, T.U., Manaia C.M., Merlin C., Fatta-Kassinos D., Cytryn E., Walsh F., Bürgmann H., Sørum H., Norström M., Pons M.N., Kreuzinger N., Huovinen P., Stefani S., Schwartz T., Kisand V., Baquero F., Martinez J.L. Tackling antibiotic resistance: the environmental framework. Nat Rev Microbiol. 2015 May;13(5):310-7. doi: 10.1038/nrmicro3439. Epub 2015 Mar 30. PMID: 25817583.
  18. Manyi-Loh C., Mamphweli S., Meyer E., Okoh A. Antibiotic Use in Agriculture and Its Consequential Resistance in Environmental Sources: Potential Public Health Implications. Molecules. 2018;23(4):795. https://doi.org/10.3390/molecules23040795.
  19. Lockwood S., Said N. Options for a strategic approach to pharmaceuticals in the environment. Final Report. Luxembourg: Publ. Office of the European Union; 2019. 289 p. https://doi.org/10.2779/87838
  20. Pruden, A., Larsson, D. J., Amézquita, A., Collignon, P., Brandt, K. K., Graham, D. W., ... & Zhu, Y. G. (2013). Management options for reducing the release of antibiotics and antibiotic resistance genes to the environment. Environmental health perspectives, 121(8), 878-885. doi: 10.1289/ehp.1206446
  21. Rasporyazhenie Pravitel'stva RF ot 20 oktyabrya 2023 goda N 2909-r [Elektronnyi resurs]. - Rezhim dostupa: http://government.ru/docs/all/156789/ (data obrashcheniya: 01.05.2023)
  22. DSM Group. Farmatsevticheskii rynok Rossii, sentyabr' 2023 goda [Elektronnyi resurs]. – Rezhim dostupa: https://www.dsm.ru/analytics/reports/2023/09/ (data obrashcheniya: 01.05.2023).
  23. Frumin, G. T. New environmental problem - pharmaceutical waste / G. T. Frumin // Geography: development of science and education: Collection of articles based on the materials of the annual international scientific and practical conference (to the 225th anniversary of Herzen University). In 2 volumes, St. Petersburg, April 20–23, 2022 / Rep. editors D.A. Subetto, A.N. Paranina. Volume II. – St. Petersburg: Russian State Pedagogical University named after. A. I. Herzen, 2022. – P. 137-140. (In Russ.).
  24. Frumin, G. T. Pharmaceutical waste - a new threat to lake ecosystems / G. T. Frumin // Proceedings of the Karelian Scientific Center of the Russian Academy of Sciences. – 2022. – No. 6. – P. 68-75. – doi: 10.17076/lim1597. (In Russ.).
  25. Meditsinskaya mikrobiologiya, virusologiya i immunologiya. V 2-kh t. ucheb. po distsipline «Mikrobiologiya, virusologiya i immunologiya» dlya studentov uchrezhdenii vyssh. prof. obrazovaniya, obuchayushchikhsya po spetsial'nostyam 060101.65 «Lecheb. delo», 060103.65 «Pediatriya», 060104.65 «Mediko-profilakt. delo» / pod red. V. V. Zvereva, M. N. Boichenko. - M. : GEOTAR-Media, 2010. – 448 s. : il. + CD. (In Russ.).
  26. SanPiN 1.2.3685-21 "Gigienicheskie normativy i trebovaniya k obespecheniyu bezopasnosti i (ili) bezvrednosti dlya cheloveka faktorov sredy obitaniya" [Elektronnyi resurs]. – Vved. 2021-01-01. – Rezhim dostupa: https://docs.cntd.ru/document/573500115 (data obrashcheniya: 01.05.2023).
  27. SanPiN 2.3.2.1078-01 "Gigienicheskie trebovaniya bezopasnosti i pishchevoi tsennosti pishchevykh produktov" [Elektronnyi resurs]. – Vved. 2001-09-14. – Rezhim dostupa: https://docs.cntd.ru/document/901806306 (data obrashcheniya: 01.05.2023).
  28. Tekhnicheskii reglament Tamozhennogo soyuza TR TS 021/2011 "O bezopasnosti pishchevoi produktsii" [Elektronnyi resurs]. – Vved. 2011-12-09. – Rezhim dostupa: https://docs.cntd.ru/document/902320560 (data obrashcheniya: 01.05.2023).
  29. Tekhnicheskii reglament Tamozhennogo soyuza TR TS 033/2013 "O bezopasnosti moloka i molochnoi produktsii" [Elektronnyi resurs]. – Vved. 2013-10-09. – Rezhim dostupa: https://docs.cntd.ru/document/499050562 (data obrashcheniya: 01.05.2023).
  30. Tekhnicheskii reglament Tamozhennogo soyuza TR TS 034/2013 "O bezopasnosti myasa i myasnoi produktsii" [Elektronnyi resurs]. – Vved. 2013-10-09. – Rezhim dostupa: https://docs.cntd.ru/document/499050562 (data obrashcheniya: 01.05.2023).
  31. Loos R., Marinov D., Sanseverino I., Napierska D., Lettieri T. Review of the 1st Watch List under the Water Framework Directive and recommendations for the 2nd Watch List. EUR 29173 EN, Publications Office of the European Union. Luxembourg; 2018. Available at: https://publications.jrc.ec.europa.eu/repository/handle/JRC111198
  32. Gomez Cortes L., Marinov D., Sanseverino I., Navarro Cuenca A., Niegowska M., Porcel Rodriguez E., et al. Selection of substances for the 3rd Watch List under the Water Framework Directive. EUR 30297 EN, Publications Office of the European Union. Luxembourg; 2020. Available at: https://publications.jrc.ec.europa.eu/repository/handle/JRC121346

补充文件

附件文件
动作
1. JATS XML

版权所有 © Eco-Vector,

Creative Commons License
此作品已接受知识共享署名-非商业性使用-禁止演绎 4.0国际许可协议的许可。

СМИ зарегистрировано Федеральной службой по надзору в сфере связи, информационных технологий и массовых коммуникаций (Роскомнадзор).
Регистрационный номер и дата принятия решения о регистрации СМИ: серия ПИ № ФС 77 - 76969 от 11.10.2019. 


##common.cookie##