2. Blanks T, Brown S, Cosgrave B, Woody J, Bentley V, Sullivan ON. Mind Body and Soul: The Body Shop Book of Wellbeing. Ebury Press, London; 1998:173-92.
4. Litescu SC, Sandra AV, Eremia SAV, Diaconu M, Tache A. Biosensors applications on assessment of reactive oxygen species and antioxidants: Environmental Biosensors. Intechopen, Rijeka – Croati; 2011:95-114.
5. Molyneux, P. The use of the stable free radical diphenylpicrylhydrazyl (DPPH) for estimating antioxidant activity. Songklanakarin J Sci Tech. 2004;26:211-219.
6. Kalcher K, Svancara I, Buzuk M, Vytras K, Walcarius A. Electro-chemical sensors and biosensors based on heterogeneous carbon materials. Monatshefte für Chemie. 2009;140:861-89.10.1007/s00706-009-0131-9
7. Mena ML, Carralero V, Gonzalez-Cortes A, Yanez-Sedeno P, Pingarron JM. Bioelectrochemical evaluation of the total phenols content in olive oil mill wastewaters using a tyrosinase–colloidal gold-graphite-Teflon biosensor. Inter J Env Anal Chem. 2007;87:57-65.10.1080/03067310600833385
8. Granero AM, Fernandez H, Agostini E, Zon MA. An amperometric biosensor for trans-resveratrol determination in aqueous solutions by means of carbon paste electrodes modified with peroxidase basic isoenzymes from brassica napus. Electroanalysis. 2008;20:858-64.10.1002/elan.200704109
9. Hurrell R. Influence of vegetable protein sources on trace element and mineral bioavailability. The J Nut. 2003;133(9):2973S-77S.10.1093/jn/133.9.2973S
10. Selamoglu Z, Amin K, Ozgen S. Plant secondary metabolites with antioxidant properties and human, health the most recent studies in science and art. Gece Publishing, Ankara; 2018:75-80.
12. Kumari P, Joshi GC, Tewari LM. Diversity and status of ethno-medicinal plants of Almora district in Uttarakhand, India. Int J Biodiver Cons. 2011;3:298-26.
13. Guha G, Rajkumar V, Ashok KR, Mathew L. Antioxidant activity of Lawsonia inermis L. extracts inhibits chromium (VI)-induced cellular and DNA toxicity. Evidence Based Comp Alter Med. 2011;1-9.10.1093/ecam/nep205
16. Sharma J, Gairola S, Gaur RD, Painuli RM. The treatment of jaundice with medicinal plants in indigenous communities of the sub-himalayan region of uttarakhand, India. J Ethnopharmacol. 2012;143:262-91.10.1016/j.jep.2012.06.034
17. Nesa L, Munira S, Mollika S, Islam MM, Choin H, Chouduri AU, Naher N. Evaluation of analgesic, anti-inflammatory and CNS depressant activities of methanolic extract of Lawsonia inermis L. barks in mice. Avicenna J Phytomed. 2014;4:287-96.
19. Cetkovic G, Canadanovic BJ, Djilas S, Savatovic S, Mandic A, Tumbas V. Assessment of polyphenolic content and in vitro antiradical characteristics of apple pomace. Food Chem. 2008;109:340-7.10.1016/j.foodchem.2007.12.046
20. Zhishen J, Mengcheng T, Jianming W. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chem. 1999;64:555-9.10.1016/S0308-8146(98)00102-2
21. ISO 14502-1: 2005. Determination of substances characteristic of green and blck tea. Part 1: Content of total polyphenols in tea. Colorimetric method using Folin-Ciocalteu reagent.https://www.iso.org/standard/31356.html
22. Golwala DK, Vaidya SK. Dholwani KK, Darpini SP, Satyajit S. Antioxidant and antimutagenic (anticlastogenic) activity of alcoholic extract of Bauhinia Variegata Linn root. Euro J Med Plants. 2020;31(2):32-9.10.9734/ejmp/2020/v31i230214
23. Sharma U, Sahu RK, Roy A, Golwala DK. In vivo antidiabetic and antioxidant potential of Stephania hernandifolia in streptozotocin induced diabetic rats. J Young Pharmacist. 2010;2(3):55-60.10.4103/0975-1483.66803
24. Vaidya SK, Golwala DK, Gohil NB, Bothara SB. Antioxidant and antimutagenic potential of Ipomoea reniformis Roxb. leaf, cyclophosphamide induced bone marrow micronucleuses test in mice. Aegaeum J. 2020;8(2):262-71.
25. Palici I., Tita B, Ursica L, Tita D. Method for quantitative determination of polyphenolic compounds and tannins from vegetable products. Acta Universitatis Cibiniensis Seria F Chemia. 2005;8(2):21-32.
26. Ghorai N, Chakraborty S, Gucchait SK, Saha SK, Biswas S. Estimation of total terpenoids concentration in plant tissues using a monoterpene, Linalool as standard reagent. Protocol Exchange. 2012;1-6. DOI: 10.1038/protex.2012.055.10.1038/protex.2012.055
27. Sanja SD, Sheth NR, Parmar G, Golwala DK. Antioxidant properties of the methanolic extract of Ipomoea reniformis. Int J Pharmacol Bio Sci. 2009;3(3):85-3.
28. Ahmad B, Khan MR, Shah NA, Khan RA. In vitro antioxidant potential of Dicliptera roxburghiana. BMC Compl Alter Med. 2013;13:140-50.10.1186/1472-6882-13-140
30. Philip JP, Madhumitha G, Mary SA. Free radical scavenging and reducing power of Lawsonia inermis L. seeds. Asian Pac J Trop Med. 2011;4(6):457-61.10.1016/S1995-7645(11)60125-9
37. Soni A, Sosa S. Phytochemical analysis and free radical scavenging potential of herbal and medicinal plant extracts. J Pharmacog Phytochem. 2013;2(4):22-9.
39. El-Gazayerly ON, Makhlouf AIA, Soelm AMA, Mohmoud MA. Antioxidant and hepatoprotective effects of silymarin phytosomes compared to milk thistle extract in CCl4 induced hepatotoxicity in rats. J Microencaps. 2014;31:23-30.10.3109/02652048.2013.805836
42. Coruh N, Celep AGS, Ozgokce F. Antioxidant properties of Prangos ferulacea (L) Lindl, Chaerophyllum macropodum Boiss and Heracleum persicum Desf. from apiaceae family used as food in eastern anatolia and their inhibitory effects on glutathione-S-transferase. Food Chem. 2007;100:1237-42.10.1016/j.foodchem.2005.12.006
43. Bahar E, Ara J, Alam M, Nath B, Bhowmik U, Runi N. In vitro antioxidant and thrombolytic activity of methanol extract of Sida acuta. J Pharmacog Phytochem. 2013;2(2):125-33.
44. Yazdanparast R, Ardestani A. In vitro antioxidant and free radical scavenging activity of Cyperus rotundus. J Med Food. 2007;10:667-74.10.1089/jmf.2006.090
47. Derese S, Guantai EM, Souaibou Y, Kuete V. Therapeutic potential against metabolic, inflammatory, infectious and systemic diseases. Medicinal spices and vegetables from Africa. University of Dschang, Dschang, Academic Press, Cameroon; 2017:451-8310.1016/B978-0-12-809286-6.00021-2
50. Wojdyło A, Oszmiański J, Czemerys R. Antioxidant activity and phenolic compounds in 32 selected herbs. Food Chem. 2007; 105(3):940-9.10.1016/j.foodchem.2007.04.038
51. Escarpa A, González MC. Approach to the content of total extractable phenolic compounds from different food samples by comparison of chromatographic and spectrophotometric methods. Anal Chimica Acta. 2001;427:119-27.10.1016/S0003-2670(00)01188-0
53. Qianqian H, Xiuli L, Guoqi Z, Tianming H, Yuxi W. Potential and challenges of tannins as an alternative to in-feed antibiotics for farm animal production Anim Nutr. 2018;4(2):137-50.
56. Rodrigues KA, Amorim LV, Dias CN, Moraes DFC, Carneiro SM, Carvalho FA. Syzygium cumini (L.) Skeels essential oil and its major constituent α-pinene exhibit anti-Leishmania activity through immunomodulation in vitro. J Ethnopharmacol. 2015;160:32-40.10.1016/j.jep.2014.11.024
57. Li XJ, Yang YJ, Li YS, Zhang WK, Tang HB. α-Pinene, linalool and 1-octanol contribute to the topical anti-inflammatory and analgesic activities of frankincense by inhibiting COX-2. J Ethnopharmacol. 2016;179:22-6.10.1016/j.jep.2015.12.039
61. Ramchoun M, Sellam K, Harnafi H, Alem C, Benlyas M, Khallouki F, Amrani S. Investigation of antioxidant and antihemolytic properties of Thymus satureioides collected from tafilalet region, southeast of morocco. Asian Pac J Trop Biomed. 2015;5(2):93-100.10.1016/S2221-1691(15)30151-9
62. Beauchamp C, Fridovich I. Superoxide dismutase: Improved assays and an assay applicable to acrylamide gels. Anal Biochem. 1971;44:276-7.10.1016/0003-2697(71)90370-8
63. Zago MP, Verstraeten SV, Oteiza PI. Zinc in the prevention of Fe2+-initiated lipid and protein oxidation. Biol Res. 2000;33:143-50.10.4067/S0716-97602000000200014
64. Oboh G, Akinyemi AJ, Ademiluyi AO. Antioxidant and inhibitory effect of red ginger (Zingiber officinale var. rubra) and white ginger (Zingiber officinale Roscoe) on Fe(2+) induced lipid peroxidation in rat brain in vitro. Exp Toxicol Path. 2012;64:31-6.10.1016/j.etp.2010.06.00220598871