INFORMAZIONI SU QUESTO ARTICOLO

Cita

Ahmedov, I. D., Melnikova, N. E., Salachova, A. Z., Akhmedov, V. M. (2012). Nanocomposites of silver based on natural polysaccharide. Chem. Price, No. 2, 30–36. Search in Google Scholar

Berthold, H. K., Sudhop, T., von Bergman, K. (1998). Effect of garlic oil preparation on serum lipoproteins and cholesterol metabolism: A randomized, controlled trial. JAMA, 279, 1900–1902. https://books.google.az/books?id=t22vBQAAQBAJ&pg=PA3. Search in Google Scholar

Blagitko, E. M., Burmisterov, V. A., Kolesov, A. (2004). Silver in Medicine. Science-Center, Novosibirsk. 251 pp. Search in Google Scholar

Davila, J., Lenher, A., Acosta, D. (1989). Protective effect of flavonoids on drug-induced hepatotoxicity in vitro. Toxicology, 57, 267–286.10.1016/0300-483X(89)90116-92756528 Search in Google Scholar

Directive 210/63/EU of the European Parliament and of the Council of 22 September 2010 on the protection of animals used for scientific purposes. ETS N 123, Strasbourg, 18 March 1986. Search in Google Scholar

Dychman, L. A., Khlebtsov, N. G. (2010). Golden nanoparticles. Synthesis, properties, biomedical application. Acta Naturae, T3, 2 (9), 37–58. Search in Google Scholar

Elbagory, A. A., Hussein, A. A., Meyer, M. (2019). The in vitro immunomodulatory effects of gold nanoparticles synthesised from hypoxis hemerocallidea aqueous extract and hypoxoside on macrophage and natural killer cells. Int. Janomed., 14, 9007–9018. DOI: 10.2147/IJN.S216972.687551031819415 Open DOISearch in Google Scholar

Ejilarasi, A. A., Vijaya, J. J., Kaviyarasu, K., Kennedy, L. J., Ramalingam, R. J., Al-Lohedan, H. A. (2018). Green synthesis of NiO nanoparticles using Aegle marmelos leaf extract for in vitro evaluation of cytotoxicity, antibacterial and photocatalytic properties. J. Photochem. Photobiol. B Biol., 180, 39–50. https://faculty.ksu.edu.sa/sites/default/files/34_page_numbers_accepted_copy_j_photobiology_b.pdf. Search in Google Scholar

Goupy, P., Vian, M. A., Chemat, F., Caris-Veyrat, C. (2013). Identification and quantification of flavonols, anthocyanins and lutein diesters in tepals of Crocus sativus by ultra performance liquid chromatography coupled to diode array and ion trap mass spectrometry detections. Ind. Crops Prod., 44, 496–510.10.1016/j.indcrop.2012.10.004 Search in Google Scholar

Horwat, D., Zakharov, D. I., Endrino, J. L., Soldera, F., Vernoux, P., Pierson, J.-F., Anders, A., Migot, S., Karoum, R. (2011). Chemistry, phase force, and catalytic activity of thin palladium containing oxide films synthesized by plasma-assisted physical vapor deposition. Surf. Coat. Technol., 205 (2), 171–177.10.1016/j.surfcoat.2010.12.021 Search in Google Scholar

Jeong, D. M., Jung, H. A., Choi, J. S. (2008). Compatative antioxidant activity and HPLC profiles of some selected selected quorean Thysleles. Arch. Pharm. Res., 31 (1), 28–33.10.1007/s12272-008-1116-718277604 Search in Google Scholar

Kasumov, F. Yu., Shamilov, E. N., Abdullaev, A. S., Kuliev, G. N. (2010). Investigation of the component composition of the saffron extract (Crocus sativus L.) and its anti-radiation effect [effect [ Касумов, Ф. Ю., Шамилов, Э. H., Рзаев, А. А., Абдуллаев, А. С., Касумова, Н. И., Кулиев, Г. Н. Исследавание компонентного состава экстракта шафрана (Crocus sativus L.) и его противолучевое действие]. In: Russian Phytotherapeutic Congress. Collection of scientific papers. Appendix to the journal Traditional Medicine [Сборник научных трудов. Журнал традиационный медицины]. ¹ 3 (22), Moscow, pp. 140–146 (in Russian). Search in Google Scholar

Kren, V., Walterova, D. (2005). Silybin and silmarin — new effects and applications. Bimed. Papers, 149 (1), 29–41. http://biomed.papers.upol.cz/pdfs/bio/2005/01/02.pdf. Search in Google Scholar

Kurkin, V. A. et al. (2003). Antioxidant properties of flavolitan fruits Silybum marianum (L.) Gaertn. Faithful Resources, 1, 89–94. Search in Google Scholar

Letteron, P., Labbe, G., Degott, C., Berson, A., Fromenty, B., Delaforge, M., Larrey, D., Pessayre, D. (1990). Mechanism for the protective effects of sillymarin against carbon tetrachloride-induced lipid peroxidation and hepatotoxity in mice. Biochem. Pharmacol., 39, 2027–2034. DOI: 10.1016/0006-2952(90)90625-ó. https://pubmed.ncbi.nlm.nih.gov/2353942/. Open DOISearch in Google Scholar

Mamedov, N. A., Rzayev, A. A., Shamilov, E. N., Abdullaev, A. S., Craker, L. E. (2011). Radioprotective activity of some medicinal plant extracts. Acta Hort. (ISHS), 925, 315–320. http://www.actahort.org/books/925/925_46.htm.10.17660/ActaHortic.2011.925.46 Search in Google Scholar

Muriel, P., Garciapiña, T., Perez-Alvarez, V., Mourelle, M (1992). Silymarin protects against paracetamol-induced lipid peroxidation and liver damage. J. Appl. Toxicol., 12, 439–442. DOI: 10.1002/jat.2550120613. https://pubmed.ncbi.nlm.nih.gov/1360480/.1360480 Open DOISearch in Google Scholar

Nishanti, R., Malati, S., Palani, P. (2019). Green synthesis and characterization of bioinspired silver, gold and platinum nanoparticles and evaluation of their synergistic antibacterial activity after combination with different classes of antibiotics. Mater. Sci. Eng. Mater. Biol. Appl. C, 96, 693–707.10.1016/j.msec.2018.11.05030606583 Search in Google Scholar

O’ Hara, Kiefer, D., Farrell, D., Kemper, K. (1998). A review of 12 commonly used medicinal herbs. Arch Fam. Med., 7 (6), 523–536.10.1001/archfami.7.6.5239821826 Search in Google Scholar

Pogomaylo, A. D., Rosenberg, A. S., Ufland, I. E. (2000). Nanoparticles of Metals in Polymers {Помогайло, А. Д., Розенберг, А. С., Уфлянд, И. E. Наночастицы металлов в полимерах. Chemistry, Moscow. 672 pp. Search in Google Scholar

Post-White, J., Ladas, E. J., Kelly, K. M. (2007). Advances in the use of milk thistle (Silybum marianum L.). Integr. Cancer Ther., 6 (2), 104–109. DOI: 10.1177/1534735407301632.17548789 Open DOISearch in Google Scholar

Pradhan, S. C., Girish, C. (2006). Hepatoprotective herbal drug, silymarin from experimental pharmacology to clinical medicine. Indian J. Med. Res., 124 (5), 491–504. https://citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.519.1029&rep=rep1&type=pdf. Search in Google Scholar

Rzayev, A. A., Shamilov, E. N., Abdullaev, A. S., Kasumova, N. I.,, Kuliev, G. N., Gaziev, A. G. (2009). Cytogenetic changes in irradiated rats under the influence of plant biocomplexes. Proc. Acad. Sci. Georgia, Biol. Ser. A, 35, 393–401. Search in Google Scholar

Sergeev, G. B. (2003). Nanochimya [Сергеев, Г. Б. Нанохимия]. Moscow State University, Moscow. 288 pp. http://www.chem.msu.ru/rus/books/2001-2010/sergeev-nano/welcome.html (in Russian). Search in Google Scholar

Shamilov, E. N., Abdullaev, A. S., Kuliev, G. N., Kasumova, N. I., Mamedrzaeva, E. T. (2012). Investigation of the radioprotective effect of the extract of Crocus sativus L. Descr. Ukr. Assoc. Gen. Breed., 10 (1), 95–99. Search in Google Scholar

Sukhov, B. G., Aleksandrova, G. P., Grishchenko, L. A., et al. (2007). Nanocomposites of noble metals based on arabinogalaktan: Receipt and structure. J. Ser. Himia, 48 (5), 979–984. Search in Google Scholar

Walsh, R. N., Cummins, R. A. (1976). The open-field test: A critical review. Psychol. Bull., 83, 482–504. https://drrogerwalsh.com/wp-content/uploads/2009/07/The-open-field-test.-A-critical-review.pdf. Search in Google Scholar

Ying Liu, Senghyun Kim, Yeon Ju Kim, Haribalan Perumalsamy, Seungah Lee, Eunson Hwang, Tae-Hoo Yi (2019). Green synthesis of gold nano-particles using Euphrasia officinalis leaf extract to inhibit lipopolysaccharide-induced inflammation via the NF-kappa B and JAK/STAT pathways in RAW 264.7 macrophages. Int. J. Nanomed., 14, 2945–2959. DOI: 10.2147/IJN.S199781.648789831114201 Open DOISearch in Google Scholar

eISSN:
2255-890X
Lingua:
Inglese
Frequenza di pubblicazione:
6 volte all'anno
Argomenti della rivista:
General Interest, Mathematics, General Mathematics