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Preliminary screening of Nicotiana glauca extracts for determination of antioxidant activity by different methods Cover

Preliminary screening of Nicotiana glauca extracts for determination of antioxidant activity by different methods

Open Access
|Mar 2020

References

  1. 1. Asma R, Mejda Daami R, Faten O, Afef L, Imen R, Rabiaa H. Assessment of the antifungal activity of Nicotiana glauca Graham aqueous and organic extracts against some pathogenic and antagonistic fungi. Afr J Microbiol Res. 2012;6:4655-61.
  2. 2. Zaid N, Khaled ME, Eman K, Nouha F. Phytochemical screening and heavy metals contents of Nicotiana glauca plant. Ijppr Human. 2015;4:82-91.
  3. 3. Ntelios D, Kargakis M, Topalis T, Drouzas A, Potolidis E. Acute respiratory failure due to Nicotiana glauca ingestion. Hippokratia. 2013;2:183-4.
  4. 4. Ashenafi A, Girum F, Amare S, Edget M, Nigusse S, Manaye M, Tesfaye B. Impact and status of invasive alien plant species (IAPS), Nicotiana glauca, in Eastern and Southern Zones of Tigray regional state, Ethiopia. BIJ. 2018;2:351-5.10.15406/bij.2018.02.00086
  5. 5. Yasser MT, Saad SD, Loiy EAH, Majed Ahmed A, Mohamad T, Amin MS, et al. In vitro anti-metastatic and antioxidant activity of Nicotiana glauca fraction against breast cancer cells. Adv Biol Res. 2015;2:95-102.
  6. 6. Prakash V, Sarika S, Savita G, Ashish KS, RajkumarY, Sunil KS. Preliminary phytochemical screening and biological activities of Adina cardifolia. J Microb Biochem Technol. 2015;7:33-8.
  7. 7. Rahman G, Syed UJ, Syed F, Samiullah S, Nusrat J. Preliminary phytochemical screening, quantitative analysis of alkaloids, and antioxidant activity of crude plant extracts from Ephedra intermedia indigenous to Balochistan. Scie World J. 2017;10:1-7.
  8. 8. Sunil HG, Sevak BG. Preliminary phytochemical and TLC profiling of Lantana camara leaf extracts. J Chem Pharm Res. 2016;8:614-7.
  9. 9. Sushama Raj RV. Preliminary phytochemical screening of Lantana camara, L., a major invasive species of Kerala, using different solvents. Ann Plant Sci. 2017;6:1794-8.10.21746/aps.2017.6.11.13
  10. 10. SingletonVL, Rossi JAJ. Colorimetry of total phenolics with phosphomolybdic-phosphotungstic acid reagents. Am J Enol Viticult. 1965;16:144-58.
  11. 11. Müller L, Gnoyke S, Popken AMV, Böhm V. Antioxidant capacity and related parameters of different fruit formulations. LWT. Food Sci Tech. 2010;43:992-9.
  12. 12. Topçu G, Ay A, Bilici A, Sarıkürkcü C, Öztürk M, Ulubelen A. A new flavone from antioxidant extracts of Pistacia terebinthus. Food Chem. 2007;103:816-22.10.1016/j.foodchem.2006.09.028
  13. 13. Mohamad R, Salina F, Puji W, Irma HS, Taopik R, Sri R, Dyan MS. Total phenolics, flavonoids, and anthocyanin contents of six Vireya Rhododendron from Indonesia and evaluation of their antioxidant activities. JAPS. 2018;8:49-54.10.7324/JAPS.2018.8908
  14. 14. Kumaran A, Joel KR. In vitro antioxidant activities of methanol extracts of five Phyllanthus species from India. LWT. 2007;40:344-52.10.1016/j.lwt.2005.09.011
  15. 15. Cromwell MK, Anthony JA. Preliminary phytochemical screening and biological activities of bulbine abyssinica used in the folk medicine in the Eastern Cape Province, South Africa. Hindawi Publishing Corporation. 2015;5:1-12.
  16. 16. Blois MS. Antioxidant determinations by the use of a stable free radical. Nature. 1958;181:1119-200.10.1038/1811199a0
  17. 17. Dnyaneshwar MN, Dharmendra KK, Parikshit RJ, Archana RJ. Antioxidant activity and free radical-scavenging potential of Pithecellobium dulce Benth seed extracts. Free Radicals and Antioxidants. 2012;2:37-43.10.5530/ax.2012.2.2.7
  18. 18. Mathangi T, Prabhakaran P. DPPH Free radical scavenging activity of the extracts of the aquatic fern Marsilea quadrifolia Linn. Int J Curr Microbiol App Sci. 2013;2:534-6.
  19. 19. Qiao-Mei Ru, Li-Juan W, Wei-Ming L, Jing-Lu W, Yu-Ting D. In vitro antioxidant properties of flavonoids and polysaccharides extract from tobacco (Nicotiana tabacum L.) leaves. Molecule. 2012;17:11281-91.
  20. 20. Re R, Pellegrini N, Proteggente A, Pannala A, Yang M, Rice-Evans C. Antioxidant activity applying an improved ABTS radical cationdecolorization assay. Free Radical Bio Med. 1999;26:1231-7.10.1016/S0891-5849(98)00315-3
  21. 21. Packialakshmi B, Sudha G, Charumathy M. Total phenol, flavonoid and antioxidant properties of Auricularia Auricula – Judae. Int J Pharm Pharm Sci. 2015;7:233-7.
  22. 22. Elizabeth K,Rao MNA. Oxygen radical scavenging activity of curcumin. Int J Pharm. 1990;58:237-40.10.1016/0378-5173(90)90201-E
  23. 23. Ummuhan ŞH, Yasin G, Newaj K, İclal S. Radical scavenging effects of different Veronica species. Rec Nat Prod. 2011;5:100-7.
  24. 24. Vindhya K, Leelavathi S. Antioxidant properties and total phenolic content of Gardenia gummifera Linn. Int J Pharm Sci Rev Res. 2015;42:255-61.
  25. 25. Szydlowska-Czerniaka A, Dianoczki C, Recseg,K, Karlovits G, Szlyk E. Determination of antioxidant capacities of vegetable oils by ferricion spectrophotometric methods. Talanta. 2008;76:899-905.10.1016/j.talanta.2008.04.05518656676
  26. 26. Smirnoff N, Cumbes QJ. Hydroxyl radical scavenging activity of compatible solutes. Phytochemistry. 1989;28:1057-60.10.1016/0031-9422(89)80182-7
  27. 27. Oyaizu M. Studies on products of browning reactions: antioxidative activities of browning reaction prepared from glucosamine. Jpn J Nutr. 1986;44:307-15.10.5264/eiyogakuzashi.44.307
  28. 28. Ljiljana S, Mihajlo S, Vesna N, Ljubiša NĆ, Dušica R, Jasna Č-B, Vesna T. Antioxidant activity and total phenolic and flavonoid contents of Hieracium pilosella L. extracts. Sensors.2009;9:5702-14.
  29. 29. St´ephanie D, Xavier V, Philippe C, Marion W, Jean-Michel M. Comparative study of antioxidant properties and total phenolic content of 30 plant extracts of industrial interest using DPPH, ABTS, FRAP, SOD, and ORAC assays. J Agric Food Chem. 2009;57:1768-74.10.1021/jf803011r19199445
  30. 30. Öztürk M, Ermin MD, Kivrak S, Mercan-Doğan N, Türkoglu A, Özler M. In vitro antioxidant, anticholinesterase and antimicrobial activity studies on three Agaricus species with fatty acid compositions and iron contents: a comparative study on three most edible mushrooms. Food Chem Toxicol. 2011;49:53-60.10.1016/j.fct.2011.03.01921419821
  31. 31. Quan VV, Elham S, Sathira H, Chloe DG, Nicholas Z, Michael CB, et al. Phenolic compounds, antioxidant and anti-cancer properties of the Australian Maroon bush Scaevola spinescens (Goodeniaceae). J Bioanal Biomed. 2014;2(S12):1-7.
  32. 32. Labiad MH, Harhar H, Ghanimi A, Tabyaoui M.Phytochemical screening and antioxidant activity of Moroccan Thymus satureioïdes extracts. JMES. 2017;8:2132-9.
DOI: https://doi.org/10.2478/cipms-2020-0007 | Journal eISSN: 2300-6676 | Journal ISSN: 2084-980X
Language: English
Page range: 32 - 37
Submitted on: May 15, 2019
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Accepted on: Aug 12, 2019
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Published on: Mar 27, 2020
Published by: Sciendo
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2020 Warda Trifa, Salah Akkal, Mostefa Lefahal, Lotfi Benmekhebi, Seddik Khennouf, published by Sciendo
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.