Pa ge 1 Pa ge 13 American Journal of Environmental Economics (AJEE) Comparative Study of Phytochemical Properties of Some Bio-Material (African Yam Bean, Pigeon Pea, Pawpaw Leaf Powder, Moringa Seed and Pawpaw Seed) Ibiam Prince Amauche1*, Amadi Chiubeze1, Ezeamama Liliam1, Ain Grace1, Ifegbo Arinze N1 Volume 1 Issue 1, Year 2022 ISSN: 2833-7905 (Online) DOI: https://doi.org/10.54536/ajee.v1i1.347 https://journals.e-palli.com/home/index.php/ajee Article Information ABSTRACT Received: June 24, 2022 Accepted: June 30, 2022 Published: July 02, 2022 The study was carried out to compare the phytochemical properties of Africa yam bean, pi- geon pea, moringa seed, pawpaw leaf and pawpaw seed powder and the Significance of the phytochemicals in respect to the treatment of diseases were discussed. Phytochemicals were qualitatively analyzed from the plants ethanol extracts and the practical were done in Bro. Mike researchers Lab. Umuerim Extension Umudibia Nekede and the Standard phytochem- ical analysis methods were adopted. Preliminary screening of the Africa yam bean, pigeon pea, moringa seed, Pawpaw leaf and pawpaw seed powder revealed the presence of alka- loids, tannins, flavonoids, saponins, steroids, and in all the plants ethanol extracts. Africa yam bean contained all the phytochemicals except tannin, while there was absence of flavonoid, and Glycoside in pigeon pea. Tannins were also absent in the pawpaw seed and pawpaw seed extracts. There was also the absence of steroid and ncardiac glycosides in moringa. The quantitative analysis of the six selected phytochemicals revealed that there was a significant difference in the mean values of alkaloids and flavonoids contents of African yam bean plants. However, at Africa yam bean had the highest Alkaloids content while moringa seed had the highest flavonoids content. The Pawpaw leaf contained the highest tannins and Sa- ponins was found highest in pawpaw leaf and pawpaw seed. Finally, the results justified the medicinal potentials of these plants in the treatment of diseases. Keywords Phytochemical Properties, African Yam Bean, Pigeon Pea, Pawpaw Leaf Powder, Moringa Seed and Pawpaw Seed 1 College of Engineering, Gregory University of Uturu, Achara Uture, Abia State, Nigeria. * Corresponding author’s e-mail: ibiamprince72@gmail.com INTRODUCTION The comparative method is often used in the early stages of the development of a branch of a science. It can help their search to ascend from the initial level of exploratory case studies to a more advance level of general theoretical mode invariances, such as causality or evolution. In comparative study you are examining two or more cases specimens, biomaterials event. On the basis of the target of your study you have to decide which are the interesting aspects, properties or attributes that you will have to note and record for each of the cases.[1] The final goal of research is usually to removal the systematic structure that is true not only for were studies but for the entire group where the cases came from. In other words, the goal is to generalize the finding.[2] Phytochemicals (phyto means plant) are chemical compounds that occur naturally in the plants. These compounds are responsible for colour and other organoleptic properties. They have antioxidants, anti- cancer, anti-Inflammatory and pain-relieving properties. SalicinTexol, etc. Antioxidants are chemical compounds are substance that inhibit oxidation or that retards deterioration by oxidation, especially of fat, oils, and foods. Some examples of antioxidants are vitamins A, C and E, β-carotene, enzymes catalase, superoxide, dismutase and various peroxidases. Antimicrobials are agents that kill microorganism or suppress their multiplication or growth, e.g. penicillin (Natural), Sulphonamides, nitroglerine, etc. Antimicrobi alagents are used to treat infectious disease. [3,4,5] This work is therefore focused on the evaluation and comparative of phytochemical contents of underutilized edible and non-edible. The emergence and re-emergence of diseases has left researchers with no Option than to focus spot-light on the discovery of bioactive metabolites from medicinal plants to compliment synthetic orthodox drugs in the fight against diseases caused by infectious agents. The use of medicinal plants in the treatment of diseases has been in practice since ancient times in different parts of the world. Plants have the major advantage of still being the most effective and cheaper alternative sources of drugs [6,7] A biomaterial is essentially a material that is used and adapted for a medical application. Biomaterials can have a benign function, such as being used for a heart valve, or may be bioactive; used for a more interactive purpose such as hydroxy‐apatite coated hip implants (the Furlong Hip, by Joint Replacement instrument at Ltd, Sheffield is one such example – such implants are lasting upwards of twenty years). Biomaterials are also used every day in dental applications, surgery, and drug delivery. While a definition for the term ‘biomaterial’ has been difficult to formulate, more widely accepted working definitions include: “A biomaterial is any material, natural or man‐ made, that comprises whole or part of a living structure or biomedical device which performs, augments, or replaces a natural function. African yam bean (Sphenostylis stenocarpa) is an edible, underutilized Grain legumes widely cultivated in Africa that is used for man and animal nutrition. Like most grain legumes cultivated in Africa, African yam bean is rich in prate in, carbohydrates, fat, vitamins and minerals [8,9]. The protein is made up of over essential amino acids, with lysine and Lucien being predominant. It is also rich in antioxidant sand free- https://doi.org/10.54536/ajee.v1i1.347 https://journals.e-palli.com/home/index.php/ajee mailto:ibiamprince72%40gmail.com?subject= Pa ge 14 https://journals.e-palli.com/home/index.php/ajee Am. J. Environ Econ. 1(1) 13-18, 2022 radical scavengers. In spite of its composition, it has a low consumption rate. This is mainly due to its long cooking time about 145min. [10] Pigeon pea (Cajanus cajan) is a rich source of protein for animal and Human consumption. It also supplies a significant amount of minerals and vitamins. It is among the dry leguminous cultivated for food in Nigeria. It is also an important food legume in African and south – East Asia (11, 12). Carica papaya Linnaeus (pawpaw leaf), belongs to the family of caricaceae. Papaya is not a tree but herbaceous succulent plants that Posses self-supporting stems. [13] It is a large perennial Herb with a rapid growth rate. The plants are usually short-lived, but can produce fruit for more than 20 years. The papaya has a rather complicated Means of reproduction. Carica papaya leaf tea or extract has a reputation as a tumors-destroying agent [14]. Fresh, green pawpaw leaf is an antiseptic, whilst the brown, dried pawpaw leaf is the best as a Tonic and blood purifier.[15]. Pawpaw Seed Carica papaya is known with many other common names such as papaya, papaw, pawpaw, chichpu, mamao and melon tree. It may cultivate for its young leaves, shoots and fruits which are cooked as a vegetable or for its ripe fruit which is well known as a popular beverage. Earlier, it was reported that papaya had positive effect against bacterial in factions. It was found that treatment of wound with Carica papaya improved efficiency of phagocytic cells that destroy bacteria. In vitro studies conducted on extracts from skin, flesh, and seeds of both ripe and unripe Carica papaya gave antibacterial activities against various microorganisms including Staphylococcus aurous, Bacillus subtilize, Bacillus cereus, Escherichia coli, Enterobacter cloacae, Proteus vulgaris, Klebsiella pneumonia, Salmonella typhi, Pseudomonas aeruginosa and Shigella Flexner. Papa in which is the main enzyme found in Carica papaya is recognized as effective natural medicine in controlling both edema and inflammation associated with surgical operations. It also produced therapeutic effects in patients with inflammatory disorders of intestine, liver and eye. An aqueous extract of Carica papaya was also examined for its effect on growth of various tumor Cell lines and on human lymphocytes and have shown positive significant results. The seeds and the pulp of Carica papaya contain benzyl glucoseinolate which can be hydrolyzed by myrosinase to produce benzyl isothiocyanate. [16,17,18] Moringa Oleifera Is the most widespread species of the plant family Moringaceae. It is a rapidly growing tree native to the sub-Himalayan Regions of north-west India and indigenous to many parts of Africa, South America and Asia. Typically reaching a height of 3-4metres, flowering and Fruiting in one year from a 0.3metre seedling even in poor quality soil [19, 20]. It is known by different names around the world [21], for example in India “Drumstick” or “Horseradish” tree. The tree produces large seed pods which can either be harvested when green for food or left to dry. The dried seeds can be crushed to produce a high- quality vegetable oil and the resulting press-cake mixed with water and strained to form a coagulant for water treatment [22, 23] MATERIALS AND METHODS Beaker, Conical flask, Fehling solution, Electric heater, Pipette, Round bottom flask, Volumetric flask, Spectrophotometer, Filter paper, Test tube, Distilled water, Ferric chloride (FeCl3), Tetraoxosulphate(vi) acid (H2S04), Sodium hydroxide, Potassium iodine, Iodine crystal, Methanol, Ethyl acetate, Chloroform, Petroleum ether weighing balance. These materials were obtained from Bro. Mike Researchers Lab. Umuerim Extension Umudibia Nekede. The fresh seeds were thoroughly clean and any foreign materials and broken and immature seeds were removed and Shade dried for three (3) consecutive days to constant weight at room temperature (25–30°C). The seeds were pulverized to fine particle using the laboratory mill. Processing Techniques.[25] Boiling A set of AYB seeds (100g) was boiled in distilled water (100°C) in bean: water ratio of 1: 10 (w/v) for 3h and 48 min, which is the established time frame known for it to be ready as practiced by the locals. After boiling, the Water was drained off and the boiled sample was mashed into paste using a ceramic mortar and then stored in an airtight container at 4–6°C until it was used. [26] Africa Yam Bean The plant material was collected from the field. The seeds were dried under Shade and made into powder using pestle and mortar. The seeds were moisture for 3hours and then dried in oven at 600C overnight for circulation seed coat. The seeds coat was removed mechanically by using hand grinder. The seeds coat was made into fine powder using material. [27,28] Seeds of Cajanus Cajan (Pigeon Pea) The seeds of Cajanus cajan (pigeon pea) was collected from the field. The seeds were dried under shade and made into fine powder using pestle and mortar. The seeds were moistened for 1h and then dried in oven at 550C overnight for separation of seed coat and cotyledon. The hull or seed coat is removed mechanically by using hand grinder. The two fractions like seed coat and cotyledon are made into fine powder using grinder. [29] Pawpaw seeds The plant material was collected from the field. The seeds were dried under shade and made into powder using grinder. Pawpaw Leaves The plant material which is fresh green pawpaw leaves, fresh yellow pawpaw leaf dry brown pawpaw leafs were collected. The leaves were washed, cut into small pieces and sun dried for five days. The samples were ground https://journals.e-palli.com/home/index.php/ajee Pa ge 15 https://journals.e-palli.com/home/index.php/ajee Am. J. Environ Econ. 1(1) 13-18, 2022 into powder. Moringa seeds The plant material was collected from the field. The seeds were dried under shade and made into powder using pestle and mortar. The seeds were moistures for 2 hours and then dried in oven at 600C overnight for circulation seed coat. The seeds coat was removed mechanically by using hand grinder. The seeds coat was made into fine powder using material.[30] Phytochemical Analysis Test for alkaloid Preparation of Wagner’s reagent 1.3g of iodine crystal and 2g of potassium iodine was dissolved and makeup100ml with water. Procedure: 1ml of each sample (extract) will be added to 1ml of Wagner’s reagent. A brick red shows the presence alkaloid. Test for tannin 5% of ferric chloride (FeCL3) was dissolved and makeup to100ml with distilled water. 20% of potassium hydroxide was dissolved and makeup to 100ml with water then 5ml was added to1ml of each of the extract in different test tube. Pipette 3ml of each sample and 3 drop of Fecl 3 and boil for 2 minutes. A blue black indicated the presence of tannin. Test for flavonoid Add 3ml of each extract to1ml of 10%sodium hydroxide. Yellowish colour indicates the presence of flavonoid. Test for saponin Add 3ml of each extract to 2ml of 2ml of distilled water with vigorous shaking and boil for two (2) minutes. Stable foaming indicates the presence of saponin. Test for steroid Add 5 drops of conc tetraoxosulphate (vi) (H2S04) into1ml of each of the extract red colour medicates the presence of steroid. Test of glycoside Add 5ml of each extract to 5ml of 50% H2S04 with head in water bater for 15minutes, cool for 7minutes, and then add 5ml of Fehling solution and heat for 3minutes red colour indicate the presence of glycoside. RESULT ANALYSIS Table 1: Extraction Solvent Wt of filtrate(g) Wt of residue(g) Methanol 15 21.5 Ethyl acetate 14 22.5 Petroleum ether 12 24.5 Chloroform 13 23.5 Sample Parameter Solvent Yam Beans Alkaloid Water N-Hexan Chloroform Ethanol + +++ ++ +++ Glycoside + _ _ _ Flavonoid _ +++ + + Steroid _ + _ _ Tannin _ _ _ _ Saponin + ++ + + Sample Parameter Solvent PigeonPea Alkaloid Water N-Hexan Chloroform Ethanol _ ++ _ + Glycoside _ _ _ _ Flavonoid _ _ _ _ Steroid _ ++ + _ Tannin + _ _ ++ Saponin +++ _ + + Sample Parameter Solvent Moringa seed Alkaloid Water N-Hexan Chloroform Ethanol _ ++ _ + https://journals.e-palli.com/home/index.php/ajee Pa ge 16 https://journals.e-palli.com/home/index.php/ajee Am. J. Environ Econ. 1(1) 13-18, 2022 Sample Parameter Solvent Pawpaw leaf Alkaloid Water N-Hexan Chloroform Ethanol + +++ + ++ Glycoside _ + + _ Flavonoid _ _ _ _ Steroid _ ++ + _ Tannin _ _ _ _ Saponin ++ _ + + Sample Parameter Solvent Pawpaw seed Alkaloid Water N-Hexan Chloroform Ethanol ++ +++ ++ ++ Glycoside _ + + _ Flavonoid _ + + _ Steroid _ ++ + _ Tannin _ _ _ _ Saponin +++ _ + + +++ = Highly present ++ = Moderately present + = slightly present - = Absent DISCUSSION The leaves and seeds were thoroughly washed, made into fine powder and weighed with a weighing machine; thus, the initial weight of the fine powder is 146g. The powered material (146g) was weighed into four different conical flasks macerated with four different solvents via methanol, Ethylacetate, chloroform, and petroleum ether. This was left to stand for 24 hours. Then after the filtration and concentration process, methanol extract gives the highest filtrate (15g) and leaTabsidue (21.5g), followed by the ethylacetate extract which gives filtrate (14g) and residue (22.5g). The chloroform ether extract give filtrate (13g) and residue (23.5g) and petroleum ether gives the least filtrate (12g) and highest residue (24.5g). The phytochemical analysis was carried out based on laboratory procedure Bro. Mike Researchers Lab. The preliminary photochemical screening of different solvent revealed the presence of alkaloids, flavonoids, saponins, tannins, steroids and glycosides in methanol extract, the screening further revealed the presence of glycoside in ethylacetate extract, then in petroleum etherextract, the presence of alkaloids, saponins and steroids were revealed and finally the presence of alkaloids, saponins and steroids were revealed in chloroform extract. It is automatically revealed that methanol is the best solvent for the extraction of phytochemical since it does not affect the presence of any phytochemical meanwhile, alkaloids, Saponins and steroids are not selectivity based on the solvent used for the extraction. The medical and physiological activities of the Yam Beans, pigeon pea, moringa seed, pawpaw seed and pawpaw leaves can be attributed to the presence of the secondary metabolites. It has been known that alkaloids are used for treatment of maleria, diabetes, and hypertension and also used as a tranquilizer. Saponins are also used as tranquilizer, ant- carcimogenic and anti-lipidemic agent. Hence have the ability to stimulate the heart muscle. Flavonoids have been known to be synthesized by plant in response to microbial attack hence; they are effective antimicrobial substance against a wide array of microorganism. Psychotherapeutically, tannin containing plants are used to treat nonspecific diarrhea, inflamemation of mouth, throat and slightly injured skin. The medicinal values of plant depend on the phytochemicals such as flavonoids, alkaloids, saponins, tannin. Phytochemical analysis of the pawpaw leaves showed that the leaves contained saponins, cardiac glycosides, and alkaloids. Tannin was absent in the leaves. The presence of saponins supports the fact that pawpaw leaf has cytotoxic effects such as permealization of the intestine as saponins are cytotoxic. It also gives the leaves the bitter taste. Saponin has relationship with sex hormones like oxytocin. Oxytocin is a sex hormone involved in controlling the onset of labour in women and the subsequent release of milk. Another important action of saponins is their expectorant actions through the stimulation of are flex of the upper digestive tract [31, 32]. Alkaloids are the most efficient therapeutically Glycoside _ _ _ _ Flavonoid ++ +++ + + Steroid _ _ _ _ Tannin + _ + _ Saponin +++ _ + + https://journals.e-palli.com/home/index.php/ajee Pa ge 17 https://journals.e-palli.com/home/index.php/ajee Am. J. Environ Econ. 1(1) 13-18, 2022 significant plant substance. Pure isolated alkaloids and the synthetic derivatives are used as basic medicinal agents because of their analgesic, antispasmodic and bacterial properties. [33]. They show marked physiological effects when administered to animals. The presence of alkaloids in the leaves shows that these plants can be effective anti- malaria, since alkaloids consist of quinine, which is an anti-malari. CONCLUSION The flavonoid and alkaloid maybe the potential chemo preventive and anticancer substances. Furthermore, Pigeon pea, yam bean, moringa seed Pawpaw seed and pawpaw leave have been found to contain most of the bioactive constituent spresent in plant via alkaloid, saponin, tannins, flovonbid, steroid and glycoside. Pigeon pea, moringa seed, yam bean, pawpaw seed and pawpaw leave are very good medicinal plant used in the treatment of maleria, cancer, cough hypertension etc they also aid digestion and enable the nourishment of skin. From the analysis of the phytochemical it can be concluded that methanol is the best solvent for the extraction of the phytochemical followed by the ethylacetate. It is also considered carry dry under room temperature in order not to temper the presence of the constituent. The result of this study showed that the Yam bean seeds had better nutritional profile with high level of protein, carbohydrate lipid, minerals and other nutrients as compared with the other nutrients in the legume grains. The processing of the yam bean seeds reduced its level of ant nutrients with little effect on the nutritional quality. REFERENCE Abrha B., Chaithanya Krishna K., Gopalakrishnan V.K., Hagos Z., Hiruy M., Devaki K. Phytochemical screening and in vitro antioxidants activities of ethanolic extract of Acokantheraschimperi leaves. J. Pharm. Res. 2018;12:660. Al-Rasheed N.M., Fadda L.M., Ali H.M., Abdel Baky N.A., El-Orabi N.F., Al-Rasheed N.M., Yacoub H.I. New mechanism in the modulation of carbon tetrachloride hepatotoxicity in rats using different natural antioxidants. Toxicol. Mech. Meth. 2016;26:243– 250. doi: 10.3109/15376516.2016.1159769. Ambriz-Pérez D.L., Leyva-López N., Gutierrez-Grijalva E.P., Heredia J.B. Phenolic compounds: Natural alternative in inflammation treatment. A Review. Cogent Food Agric. 2016;2:1131412. Birben E., Sahiner U.M., Sackesen C., Erzurum S., Kalayci O. Oxidative stress and antioxidant defense. World Allergy Organ. J. 2012;5:9–19. doi: 10.1097/ WOX.0b013e3182439613. Baumann J., Wurm G., Bruchhausen F.V. Prostaglandin synthetase inhibition by flavonoids and phenolic compounds in relation to their O2-scavenging properties. Arch. Pharm. Pharm. Med. Chem. 1980;313:330–337. doi: 10.1002/ardp.19803130409. Carocho M., Ferreira I.C. A review on antioxidants, prooxidants and related controversy: Natural and synthetic compounds, screening and analysis methodologies and future perspectives. Food Chem. Toxicol. 2013;51:15–25. doi: 10.1016/j.fct.2012.09.021. Gengatharan, A., Dykes, G.A., Choo, W.S. & Betalains. Natural plant pigments with potential application in functional foods. LWT Food Sci. Technol., 64, 645–649. doi: 10.1016/j.lwt.2015.06.052. Gandía-Herrero F., Escribano J., García-Carmona F. Biological activities of plant pigments betalains. Cri. Rev. Food Sci. Nutr. 2016;56:937–945. doi: 10.1080/10408398.2012.740103. Gulcin I. Antioxidants and antioxidant methods: An updated overview. Arch. Toxicol. 2020;94:651–715. doi: 10.1007/s00204-020-02689-3. Hrelia S., Angeloni C. New Mechanisms of Action of Natural Antioxidants in Health and Disease. Antioxidants.2020;9:344. doi: 10.3390/antiox9040344. Hsu B., Coupar I.M., Ng K. Antioxidant activity of hot water extract from the fruit of the Doum palm, Hyphaene thebaica. Food Chem. 2006;98:317–328. doi: 10.1016/j.foodchem.2005.05.077. Kumar S. Free Radicals and Antioxidants: Human and Food System. Adv. Appl. Sci. Res. 2011;2:129–135. Lahbib K., Dabbou S., ELBok S., Pandino G., Lombardo S., Gazzah M.E.L. Variation of biochemical andantioxidant activity with respect to the part of Capsicum annuum fruit from Tunisian autochthonous cultivars. Ind. Crops Prod. 2017;104:164–170. doi: 10.1016/j.indcrop.2017.04.037. Lombardo S., Pandino G., Mauromicale G. The effect on tuber quality of an organic versus a conventional cultivation system in the early crop potato. J. Food Compos. Anal. 2017;62:189–196. doi: 10.1016/j. jfca.2017.05.014. Lee S., Park Y., Zuidema M.Y., Hannink M., Zhang C. Effects of interventions on oxidative stress and inflammation of cardiovascular diseases. World J. Cardiol. 2011;3:18–24. doi: 10.4330/wjc.v3.i1.18. Lobo V., Patil A., Phatak A., Chandra N. Free radicals, antioxidants and functional foods: Impact on human health. Pharmacogn. Rev. 2010;4:118–126. doi: 10.4103/0973-7847.70902. Onay Ucar E., Karagoz A., Arda N. Antioxidant activity of Viscum album ssp. album. Fitoterapia. 2006;77:556– 560. Oluwaseun A.A., Ganiyu O. Antioxidant properties of methanolic extracts of mistletoes (Viscum album) from cocoa and cashew trees in Nigeria. Afr. J. Biotech. 2008;7:17. Pohl F., Thoo Lin P.K. The potential use of plant natural products and plant extracts with antioxidant properties for the prevention/treatment of neurodegenerative diseases: In vitro, in vivo and clinical trials. Molecules. 2018;23:3283. doi: 10.3390/molecules23123283. Peschel W., Sanchez-Rabaneda F., Dn W., Plescher A., Gartzia I., Jimenez D., Lamuela-Raventos R., Buxaderas S., Condina C. An industrial approach in https://journals.e-palli.com/home/index.php/ajee Pa ge 18 https://journals.e-palli.com/home/index.php/ajee Am. J. Environ Econ. 1(1) 13-18, 2022 the search of natural antioxidants from vegetable and fruit wastes. Food Chem. 2006;97:137–150. doi: 10.1016/j.foodchem.2005.03.033. Pandino G., Meneghini M., Tavazza R., Lombardo S., Mauromicale G. Phytochemicals accumulation and antioxidant activity in callus and suspension cultures of Cynara scolymus L. Plant Cell Tissue Org. Cult. 2017;128:223–230. doi: 10.1007/s11240-016-1102-6. Pham-Huy L.A., He H., Pham-Huy C. Free Radicals, Antioxidants in Disease and Health. Int. J. Biomed. Sci. IJBS. 2008;4:89–96. Packer L., Weber S.U., Rimbach G. Molecular aspects of alpha-tocotrienol antioxidant action and cell signaling. J. Nutri. 2001;131:369S–373S. doi: 10.1093/ jn/131.2.369S. Rice-Evans, C.A., Miller, N.J., Bolwell P.G., Bramley, P.M., & Pridham, J.B. The relative antioxidant activities of plant-derived polyphenolic flavonoids. Free Radic. Res., 22, 375–383. doi: 10.3109/10715769509145649.2013. Rahman M., Islam B., Biswas M., Alam A.H.M.K. In vitro antioxidant and free radical scavenging activity of different parts of Tabebuia pallida growing in Bangladesh. BMC Res. Notes. 2015;8:621. doi: 10.1186/s13104-015-1618-6. Sultana F.B., Anwar M. Ashraf Effect of extraction solvent/ technique on the antioxidant activity of selected medicinal plant extracts. Molecules. 2009;14:2167– 2180. doi: 10.3390/molecules14062167. Urech K., Baumgartner S. Chemical constituents of Viscum album L.: Implications for the pharmaceutical preparation of mistletoe. Mistletoe: From mythology to evidence-based medicine. Transl. Res. Biomed. 2015;4:11–23. Vicas S., Prokish J., Rugina O.D., Socaciu C. Hydrophilic and Lipophilic Antioxidant Activities of Mistletoe (Viscum album) as determined by FRAP method. Not. Bot. Horti. Agrobot. Cluj-Napoca. 2009;37:112–116. Valko M., Morris H., Cronin M.T. Metals, toxicity and oxidative stress. Curr. Med. Chem. 2005;12:1161–1208. doi: 10.2174/0929867053764635. Williams R.J., Spencer J.P., Rice-Evans C. Flavonoids: Antioxidants or signallingmolecules? Free Rad. Biol. Med. 2004;36:838–849. doi: 10.1016/j. freeradbiomed.2004.01.001. https://journals.e-palli.com/home/index.php/ajee