year 19, Issue 75 (9-2020)                   J. Med. Plants 2020, 19(75): 312-326 | Back to browse issues page


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Khodadoust S, Ahmadvandi F, Zeraatpisheh F. Optimization of phenol and flavonoid extraction compound of Adiantum capillus-veneris L. using ultrasound assisted extraction. J. Med. Plants 2020; 19 (75) :312-326
URL: http://jmp.ir/article-1-2770-en.html
1- Department of Chemistry, Faculty of sciences, Behbahan Khatam Alanbia University of Technology.Behbahan , saeid.kh64@gmail.com
2- Department of Chemistry, Faculty of sciences, Behbahan Khatam Alanbia University of Technology.Behbahan
Abstract:   (2869 Views)
Background: Antioxidants are molecules which able to control free radicals and prevent the oxidants of other molecules considering undesirable effects of synthetic anti oxidant. In recent years using of natural anti oxidant gets the great importance. The secondary metabolisms of plants are rich sources of phenol and flavonoids considered as the most important natural antioxidant.  Objective: In this research, the optimization process of phenolic and flavonoids from Adiantum capillus-veneris L. carried out by ultrasound-assisted extraction (UAE) and central composite design (CCD). Methods: Optimization process were performed with four indepent variables including, plant powder (0.1-0.9 g), volume of solvent (5-17 ml), sonication time (5–25 min) and temperature of ultrassonic bath (20-60 ºC) on five levels including 26 test with 2 repetition on central point. The total phenolic content and total flavonoid content, respectively, were accounted by using foline-ciocalteu and aluminum chloride colorimetric method. Results: At optimum conditions values of variables set at 0.7 g of plant powder, 16 ml of extraction solvent, 20 min for ultrasound waves and 40 ºC for ultrasonic bath. Conclusion: The results show that the quadratic mathematical model has acted with high accuracy to predict the optimal values of the studied parameters. Under these conditions, the extraction efficiencies for total phenol and flavonoid compounds were 9.46 mg/g and 5.22 mg/g, respectively.
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Type of Study: Research | Subject: Pharmacognosy & Pharmaceutics
Received: 2019/12/17 | Accepted: 2020/08/21 | Published: 2020/09/6

References
1. Kunle OF, Eghareba HO and Ahmadu PO. Standardization of herbal medicines-a review. Int J Biodivers Conserv. 2012; 4(3): 101-112. [DOI:10.5897/IJBC11.163]
2. Jabernia H, Piri KH and Nazai J. Phytochemical composition and in vitro antimicrobial and antioxidant activities of some medicinal plants. Food Chem. 2013; 136: 237-244. [DOI:10.1016/j.foodchem.2012.07.084]
3. Fernando W, Rupasinghe HPV and Hoskin DW. Dietary phytochemicals with anti-oxidant and pro-oxidant activities: A double-edged sword in relation to adjuvant chemotherapy and radiotherapy? Cancer Lett. 2019; 452: 168-177. [DOI:10.1016/j.canlet.2019.03.022]
4. Dira AI, Alsaadi DHM, Wada, Mohamed MA, Watanabe and Devkota HP. Effects of extraction solvents on total phenolic and flavonoid contents and biological activities of extracts from Sudanese medicinal plants. S. Afr. J. Bot. 2019; 120: 261-267. [DOI:10.1016/j.sajb.2018.07.003]
5. Sen S, De B, Naykant D and Chakraborty R. Total phenolic, total flavonoid content and antioxidant capcity of leave of meyna spinose Roxb. J. Nat. Med. 2013; 11(2): 0144-0157. [DOI:10.1016/S1875-5364(13)60042-4]
6. Elkins AC, Deseo MA, Rochfort S, Ezernieks V and Spangenberg G. Development of a validated method for the qualitative and quantitative analysis of cannabinoids in plant biomass and medicinal cannabis resin extracts obtained by super-critical fluid extraction. J. Chromatogr. B. 2019; 1109: 76-83. [DOI:10.1016/j.jchromb.2019.01.027]
7. Fourie E, Aleixandre-Tudo JL, Mihnea M and Toit W. Partial least squares calibrations and batch statistical process control to monitor phenolic extraction in red wine fermentations under different maceration conditions. Food Control, 2020; 115: 107303. [DOI:10.1016/j.foodcont.2020.107303]
8. Wang L and Waler CL. Recent advancesin extraction of nutraceuticals from plants. Trends Food Sci. Technol., 2006; 17: 300-312. [DOI:10.1016/j.tifs.2005.12.004]
9. Liu G, Zhuang L, Song D and Lu C. Isolation, purification, and identification of the main phenolic compounds from leaves of celery (Apium graveolens L. var. dulce Mill./Pers.). J. Sep. Sci. 2017; 40(2): 472-479. [DOI:10.1002/jssc.201600995]
10. Izadian P and Hemmateenejad B. Multi-response optimization of factors affecting ultrasonic assisted extraction from Iranian basil using central composite design, Food Chem. 2016; 190: 864-870. [DOI:10.1016/j.foodchem.2015.06.036]
11. Nasirizadeh N, Dehghanizadeh H, Yazdanshenas E and Rohanimoghadam M. optimization of wool dyeinu with rutin as natural by central composite desig method. Ind. Crops Prod. 2012; 40: 367-366. [DOI:10.1016/j.indcrop.2012.03.035]
12. Pourmorad F, Hosseinimehr SJ and Shahabimajd N. Antioxidant activity, phenol and flavonoid contents of some selected Iranian medicinal plants. Afr. J. Biotechnol. 2066; 5(11): 1142-1145.
13. Dehdari S and Hajimehdipoor H. Medicinal properties of Adiantum capillus-veneris Linn. in traditional medicine and modern phytotherapy A Review Article. Iran J. Public Health. 2018; 47(2): 188-197.
14. Yaan Q, Zhang X, Liu Z, Song S, Xue P, Wang J and Raan J. Ethanol extract of Adiantum capillus-veneris L. suppresses the production of in flammatory mediators by inhibiting NF-KB activation. J. Ethnopharmacol, 2013; 147(3): 603-611. [DOI:10.1016/j.jep.2013.03.046]
15. Rawat P, Singh PK and Kumar V. Evidence based traditional anti-diarrheal medicinal plants and their phytocompounds, Biomed. Pharmacother. 2017; 96: 1453-1464. [DOI:10.1016/j.biopha.2017.11.147]
16. Verma N. Effect of adiantum capillus veneris against irradiation-induced oxidative stress in adult rats. Toxicol. Lett. 2017; 280, S96. [DOI:10.1016/j.toxlet.2017.07.265]
17. Kasabri V, Al-Hallaq EK, Bustanji YK, Abdul-Razzak KK, Abaza IF, and Afifi FU. Antiobesity and antihyperglycaemic effects of Adiantum capillus-veneris extracts: in vitro and in vivo evaluations. Pharm. Biol. 2017; 55: 164-172. [DOI:10.1080/13880209.2016.1233567]
18. Mcdonald S, Prenzler PD, Autolovich M and Robards K. Phenolic content and antioxidant activity of olive extracts. Food Chem. 2001; 73: 73-84. [DOI:10.1016/S0308-8146(00)00288-0]

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