Cytoprotective Activity of Natural and Synthetic Antioxidants

. 2020 Aug 06 ; 9 (8) : . [epub] 20200806

Status PubMed-not-MEDLINE Jazyk angličtina Země Švýcarsko Médium electronic

Typ dokumentu úvodníky

Perzistentní odkaz   https://www.medvik.cz/link/pmid32781685

Grantová podpora
LTC18003 Ministerstvo Školství, Mládeže a Tělovýchovy
CA16112 European Cooperation in Science and Technology

Numerous chronic diseases including cancer, cardiovascular, chronic respiratory or neurodegenerative diseases, diabetes mellitus, retinal damage, and others are associated with oxidative stress [...].

Zobrazit více v PubMed

Tan B.L., Norhaizan M.E., Liew W.-P.-P., Sulaiman Rahman H. Antioxidant and oxidative stress: A mutual interplay in age-related diseases. Front. Pharmacol. 2018;9:1162. doi: 10.3389/fphar.2018.01162. PubMed DOI PMC

Jung K.-A., Kwak M.-K. The Nrf2 system as a potential target for the development of indirect antioxidants. Molecules. 2010;15:7266–7291. doi: 10.3390/molecules15107266. PubMed DOI PMC

Kurutas E.B. The importance of antioxidants which play the role in cellular response against oxidative/nitrosative stress: Current state. Nutr. J. 2016;15:71. doi: 10.1186/s12937-016-0186-5. PubMed DOI PMC

Dinkova-Kostova A.T., Talalay P. Direct and indirect antioxidant properties of inducers of cytoprotective proteins. Mol. Nutr. Food Res. 2008;52:S128–S138. doi: 10.1002/mnfr.200700195. PubMed DOI

Egea J., Fabregat I., Frapart Y.M., Ghezzi P., Görlach A., Kietzmann T., Kubaichuk K., Knaus U.G., Lopez M.G., Olaso-Gonzalez G., et al. European contribution to the study of ROS: A summary of the findings and prospects for the future from the COST action BM1203 (EU-ROS) Redox Biol. 2017;13:94–162. doi: 10.1016/j.redox.2017.05.007. PubMed DOI PMC

Liguori I., Russo G., Curcio F., Bulli G., Aran L., Della-Morte D., Gargiulo G., Testa G., Cacciatore F., Bonaduce D., et al. Oxidative stress, aging, and diseases. Clin. Interv. Aging. 2018;13:757–772. doi: 10.2147/CIA.S158513. PubMed DOI PMC

Sarangarajan R., Meera S., Rukkumani R., Sankar P., Anuradha G. Antioxidants: Friend or foe? Asian Pac. J. Tropic. Med. 2017;10:1111–1116. doi: 10.1016/j.apjtm.2017.10.017. PubMed DOI

Senoner T., Dichtl W. Oxidative Stress in Cardiovascular Diseases: Still a Therapeutic Target? Nutrients. 2019;11:2090. doi: 10.3390/nu11092090. PubMed DOI PMC

Paunkov A., Chartoumpekis D.V., Ziros P.G., Sykiotis G.P. A bibliometric review of the Keap1/Nrf2 pathway and its related antioxidant compounds. Antioxidants. 2019;8:353. doi: 10.3390/antiox8090353. PubMed DOI PMC

Martínez-Sánchez G., Schwartz A., Di Donna V. Potential cytoprotective activity of ozone therapy in SARS-CoV-2/COVID-19. Antioxidants. 2020;9:389. doi: 10.3390/antiox9050389. PubMed DOI PMC

Gironde C., Rigal M., Dufour C., Furger C. AOP1, a new live cell assay for the direct and quantitative measure of intracellular antioxidant effects. Antioxidants. 2020;9:471. doi: 10.3390/antiox9060471. PubMed DOI PMC

Oun R., Moussa Y.E., Wheate N.J. The side effects of platinum-based chemotherapy drugs: A review for chemists. Dalton Trans. 2018;47:6645–6653. doi: 10.1039/C8DT00838H. PubMed DOI

Ahmad S., Hussain A., Hussain A., Abdullah I., Ali M.S., Froeyen M., Mirza M.U. Quantification of berberine in Berberis vulgaris L. root extract and its curative and prophylactic role in cisplatin-induced in vivo toxicity and in vitro cytotoxicity. Antioxidants. 2019;8:185. doi: 10.3390/antiox8060185. PubMed DOI PMC

Canta A., Chiorazzi A., Pozzi E., Fumagalli G., Monza L., Meregalli C., Carozzi V.A., Rodriguez-Menendez V., Oggioni N., Näsström J., et al. Calmangafodipir reduces sensory alterations and prevents intraepidermal nerve fibers loss in a mouse model of oxaliplatin induced peripheral neurotoxicity. Antioxidants. 2020;9:594. doi: 10.3390/antiox9070594. PubMed DOI PMC

Lee D.-Y., Park Y.-J., Song M.-G., Kim D.R., Zada S., Kim D.-H. Cytoprotective effects of delphinidin for human chondrocytes against oxidative stress through activation of autophagy. Antioxidants. 2020;9:83. doi: 10.3390/antiox9010083. PubMed DOI PMC

Caruso F., Rossi M., Kaur S., Garcia-Villar E., Molasky N., Belli S., Sitek J.D., Gionfra F., Pedersen J.Z., Incerpi S. Antioxidant properties of embelin in cell culture. Electrochemistry and theoretical mechanism of scavenging. Potential scavenging of superoxide radical through the cell membrane. Antioxidants. 2020;9:382. doi: 10.3390/antiox9050382. PubMed DOI PMC

Chen C.-M., Tung Y.-T., Wei C.-H., Lee P.-Y., Chen W. Anti-inflammatory and reactive oxygen species suppression through aspirin pretreatment to treat hyperoxia-induced acute lung injury in NF-κB–luciferase inducible transgenic mice. Antioxidants. 2020;9:429. doi: 10.3390/antiox9050429. PubMed DOI PMC

Smeriglio A., Denaro M., De Francesco C., Cornara L., Barreca D., Bellocco E., Ginestra G., Mandalari G., Trombetta D. Feijoa fruit peel: Micro-morphological features, evaluation of phytochemical profile, and biological properties of its essential oil. Antioxidants. 2019;8:320. doi: 10.3390/antiox8080320. PubMed DOI PMC

Moldovan M.L., Carpa R., Fizeșan I., Vlase L., Bogdan C., Iurian S.M., Benedec D., Pop A. Phytochemical profile and biological activities of tendrils and leaves extracts from a variety of Vitis vinifera L. Antioxidants. 2020;9:373. doi: 10.3390/antiox9050373. PubMed DOI PMC

Zakłos-Szyda M., Pawlik N., Polka D., Nowak A., Koziołkiewicz M., Podsędek A. Viburnum opulus fruit phenolic compounds as cytoprotective agents able to decrease free fatty acids and glucose uptake by Caco-2 Cells. Antioxidants. 2019;8:262. doi: 10.3390/antiox8080262. PubMed DOI PMC

Zakłos-Szyda M., Kowalska-Baron A., Pietrzyk N., Drzazga A., Podsędek A. Evaluation of Viburnum opulus L. fruit phenolics cytoprotective potential on insulinoma min6 cells relevant for diabetes mellitus and obesity. Antioxidants. 2020;9:433. doi: 10.3390/antiox9050433. PubMed DOI PMC

Viktorova J., Stranska-Zachariasova M., Fenclova M., Vitek L., Hajslova J., Kren V., Ruml T. Complex evaluation of antioxidant capacity of milk thistle dietary supplements. Antioxidants. 2019;8:317. doi: 10.3390/antiox8080317. PubMed DOI PMC

Dobiasová S., Řehořová K., Kučerová D., Biedermann D., Káňová K., Petrásková L., Koucká K., Václavíková R., Valentová K., Ruml T., et al. Multidrug resistance modulation activity of silybin derivatives and their anti-inflammatory potential. Antioxidants. 2020;9:455. doi: 10.3390/antiox9050455. PubMed DOI PMC

Viktorová J., Dobiasová S., Řehořová K., Biedermann D., Káňová K., Šeborová K., Václavíková R., Valentová K., Ruml T., Křen V., et al. Antioxidant, anti-inflammatory, and multidrug resistance modulation activity of silychristin derivatives. Antioxidants. 2019;8:303. doi: 10.3390/antiox8080303. PubMed DOI PMC

Diukendjieva A., Zaharieva M.M., Mori M., Alov P., Tsakovska I., Pencheva T., Najdenski H., Křen V., Felici C., Bufalieri F., et al. Dual SMO/BRAF inhibition by flavonolignans from Silybum marianum. Antioxidants. 2020;9:384. doi: 10.3390/antiox9050384. PubMed DOI PMC

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...