References
- Korulkin DY, Abilov ZHA, Muzychkina RA, Tolstikov GA. Natural flavonoids. Novosibirsk: Academic Publishing House “Geo”; 2007. 232 p.
- Harborne JB. The flavonoids: advances in research since 1980. New York: Springer; 2013. 621 p.
- Kongsui R, Promsrisuk T, Klimaschewski L. Pinostrobin mitigates neurodegeneration through an up-regulation of antioxidants and GDNF in a rat model of Parkinson’s disease [version 2; peer review: 2 approved, 1 approved with reservations. Research. 2023; 12:846. https://doi.org/10.12688/f1000research.134891.2 PMid:38434672 PMCid:PMC10904945
- Maslennikov PV, Chupakhina GN, Skrypnik LN, Maltseva EY, Poltavskaya RL Content of low molecular weight antioxidants in medicinal plants of the Kaliningrad region // Chemistry of plant materials. 2012;3:127-133.2.
- Chupakhina GN, Maslennikov PV, Skrypnik LN Natural antioxidants (ecological aspect): monograph. Kaliningrad: IKBFU Publishing House I. Kanta, 2011. 111 p.
- Gonzalez AS, Tellini VHS, Gutierrez DMB Study of the dermal anti-inflammatory, antioxidant, and analgesic activity of pinostrobin // Heliyon. 2022:8 e10413. https://doi.org/10.1016/j.heliyon.2022.e10413 PMid:36097473 PMCid:PMC9463643
- Patel NK, Jaiswal G, Bhutani KK A review on biological sources, chemistry and pharmacological activities of pinostrobin. Natural Product Research. 2015;30(18):2017-2027. https://doi.org/10.1080/14786419.2015.1107556 PMid:26653796
- Suphachai Ch, Charatda P, Wilart P, Umnat M, Rawiwan W. Toxicological and clastogenic evaluation of pinocembrin and pinostrobin isolated from Boesenbergia pandurata in Wistar rats. Thai J Toxicology. 2010;25(1):29-40.
- Athapaththu AMGK, Sanjaya SS, Lee KT, Karunarathne WAHM, Choi YH, et.al. Pinostrobin suppresses the α-melanocyte-stimulating hormone-induced melanogenic signaling pathway. Int. J Mol. Sci. 2023; 24 (1):821. https://doi.org/10.3390/ijms24010821 PMid:36614262 PMCid:PMC9821324
- Hidajati N, Tukiran T, Setiabudi D, Wardana A. Antioxidant activity of palmitic acid and pinostrobin from methanol extract of Syzygium litoralle ( Myrtaceae ). Atlantis Highlights in Engineering (AHE). 2018;1:183-187. https://doi.org/10.2991/icst-18.2018.39
- Suhayla HS, Morteta HAM, Ahmed S. Al R, Peshawa YA, Mahmood AA. Hepatoprotective effect of pinostrobin against thioacetamide-induced liver cirrhosis in rats. Saudi Journal of Biological Sciences. 2023;30(1): 103506. https://doi.org/10.1016/j.sjbs.2022.103506 PMid:36458098 PMCid:PMC9706172
- González AS, Tellini VHS, Gutiérrez DMB. Study of the dermal anti-inflammatory, antioxidant, and analgesic activity of pinostrobin. Heliyon. 2022;8(9). https://doi.org/10.1016/j.heliyon.2022.e10413 PMid:36097473 PMCid:PMC9463643
- Kicuntod J, Sangpheak K, Mueller M, Wolschann P, Viernstein H, Yanaka S, et al. Theoretical and experimental studies on inclusion complexes of pinostrobin and β-cyclodextrins. Sci. Pharm. 2018; 86 (5). https://doi.org/10.3390/scipharm86010005 PMid:29385698 PMCid:PMC5874535
- Zhao L, Yao L, Chen R, He J, Lin T, Qiu S, et al. Pinostrobin from plants and propolis against human coronavirus HCoV-OC43 by modulating host AHR/CYP1A1 pathway and lipid metabolism. Antiviral Research. 2023;212:105570. https://doi.org/10.1016/j.antiviral.2023.105570 PMid:36863496 PMCid:PMC9974210
- Sun X, Liu X, Chen S. The pharmacokinetics, tissue distribution, metabolism, and excretion of pinostrobin in rats: ultra-high-performance liquid chromatography coupled with linear trap quadrupole orbitrap mass spectrometry studies. Frontiers in Pharmacology. 2020;11. https://doi.org/10.3389/fphar.2020.574638 PMid:33324207 PMCid:PMC7725875
- Adekenov SM, Baysarov GM, Khabarov IA, Polyakov BB . Flavonoids of balsam poplar buds Populus balsamifera L. and methods for their isolation Chemistry of plant raw materials. 2020;2:181-188. https://doi.org/10.14258/jcprm.2020027602
- Kazbekova AT. Antioxidant activity of polyphenolic compounds of plant origin: monograph. NAO MUK. Karaganda: Glasir; 2013. 104 p.
- Silaeva SYu, Slivkin AI, Belenova AS, Chupandina EE, Krasnyuk II ( Jr ), Naryshkin SR, Krasnyuk II . Use of solid dispersion systems in pharmacy. Condensed matter and interphases. 2020; 22 (2):173-181.
- McLaughlin L. Crown Gall Tumors on Potato Discs and Brine Shrimp Lethality: Two Simple Bioassays for Higher Plant Screening and Fractionation //Methods in Plant Boichemistry. - 1991. - Vol. 6, no. 5.-P. 1-32.
- Schmidt TJ; Heilmann J. Quantitative Structure-Cytotoxicity Relationships of Sesquiterpene Lactones derived from partial charge (Q)-based fractional Accessible Surface Area Descriptors (Q_frASAs). Quant. Struct.-Act. Relat., 2002, 21(3), 276-287. https://doi.org/10.1002/1521-3838(200208)21:3<276::AIDQSAR276>3.0.CO;2-S
- Anavi S, Ni Z, Tirosh O, Fedorova M. Steatosis-induced protein adducts with lipid peroxidation products and nuclear electrophilic stress in hepatocytes. Redox biology 2015;4:158-168. https://doi.org/10.1016/j.redox.2014.12.009 PMid:25560244 PMCid:PMC4309854
- Zharkova LP, Knyazeva IR, Ivanov VV, Bolshakov MA, Kutenkov OP, Rostov VV. The influence of pulsed-periodic X-ray and microwave radiation on the level of peroxides in isolated hepatocytes. Herald Tomsk state university 2010;333:161-163.
- Golikov PP. On the method of simultaneous study of the anti-inflammatory effect in white rats with different types of inflammation. Pharmacology and toxicology . 1964. No. 6:742-473.
- Borovikov VP. A popular introduction to modern data analysis in STATISTICA . - M.: Hotline, 2014. - 181 p.
- Poerwono H, Sasaki S, Hattori Y, Higashiyama K. Efficient microwave-assisted prenylation of pinostrobin and biological evaluation of its derivatives as antitumor agents. Bioorg & Med Chem Lett.2010; 20; 2086-208. https://doi.org/10.1016/j.bmcl.2010.02.068 PMid:20219370
- Sukardiman, Darwanto A, Tanjung M, Darmadi MO. Cytotoxic mechanism of flavonoid from TemuKunci (Kaempferiapandurata) in cell culture of human mammary carcinoma. ClinHemorrheol and Microcirc.2000; 23; 185-190. https://doi.org/10.1080/14786419.2015.1107556 PMid:26653796
- Schönfeld P, Wojtczak L. Fatty acids as modulators of the cellular production of reactive oxygen species. Free Radical Biology and Medicine. 2008;45(3):231-241. https://doi.org/10.1016/j.freeradbiomed.2008.04.029 PMid:18482593
- Kim MH, Seong JB, Huh JW, Bae YC, Lee HS, Lee DS. Peroxiredoxin 5 ameliorates obesity-induced non-alcoholic fatty liver disease through the regulation of oxidative stress and AMP-activated protein kinase signaling. Redox biology 2020;28:101315. https://doi.org/10.1016/j.redox.2019.101315 PMid:31505325 PMCid:PMC6736789
- Leontyeva NV. Flavonoids - natural antioxidants // Current problems of theoretical and clinical medicine, No. 1 (43) 2024, pp. 44-50.
