Phenolic bioactive-linked antioxidant, anti-hyperglycemic, and antihypertensive properties of sweet potato cultivars with different flesh color

Chintha Pradeepika1,2, Dipayan Sarkar1, Kenneth V. Pecota3, Münevver Doğramacı4, Harlene Hatterman‐Valenti1, Kalidas Shetty1
1Department of Plant Sciences, North Dakota State University, Fargo, USA
2ICAR-Central Tuber Crop Research Institute, Thiruvananthapuram, India
3Horticultural Science, North Carolina State University, Raleigh, USA
4Agricultural Research Service, Sugarbeet and Potato Research Unit, Edward T. Schafer Agricultural Research Center, United States Department of Agriculture, Fargo, USA

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Aina AJ, Falade KO, Akingbala JO, Titus P (2009) Physicochemical properties of twenty-one Caribbean sweet potato cultivars. Int J Food Sci Technol 44(9):1696–1704. https://doi.org/10.1111/j.1365-2621.2009.01941.x

Ardiansyah Shirakawa H, Koseki T, Ohinata K, Hashizume K, Komai M (2006) Rice bran fractions improve blood pressure, lipid profile, and glucose metabolism in stroke-prone spontaneously hypertensive rats. J Agri Food Chem 54(5):1914–1920. https://doi.org/10.1021/jf052561l

Arnao MB (2000) Some methodological problems in the determination of antioxidant activity using chromogen radicals: a practical case. Trend Food Sci Technol 11(11):419–421. https://doi.org/10.1016/S0924-2244(01)00027-9

Bauer F, Beulens JW, Wijmenga C, Grobbee DE, Spijkerman AM, van der Schouw YT, Onland-Moret NC (2013) Dietary patterns and the risk of type 2 diabetes in overweight and obese individuals. Eur J Nutr 52(3):1127–1134. https://doi.org/10.1007/s00394-012-0423-4

Becerra-Tomás N, Blanco Mejía S, Viguiliouk E, Khan T, Kendall CW, Kahleova H, Rahlelić D, Sievenpiper JL, Salas-Salvadó J (2020) Mediterranean diet, cardiovascular disease and mortality in diabetes: a systematic review and meta-analysis of prospective cohort studies and randomized clinical trials. Crit Rev Food Sci and Nutr 60(7):1207–1227. https://doi.org/10.1080/10408398.2019.1565281

Benáková Š, Holendová B, Plecitá-Hlavatá L (2021) Redox homeostasis in pancreatic β-cells: from development to failure. Antioxidants 10(4):526. https://doi.org/10.3390/antiox10040526

Chiasson JL, Josse RG, Gomis R, Hanefeld M, Karasik A, Laakso M (2003) Acarbose treatment and the risk of cardiovascular disease and hypertension in patients with impaired glucose tolerance: the STOP-NIDDM trial. JAMA 290(4):486–494. https://doi.org/10.1001/jama.290.4.486

Ellong EN, Billard C, Adenet S (2014) Comparison of physicochemical, organoleptic and nutritional abilities of eight sweet potato (Ipomoea batatas) varieties. Food Nutri Sci 5:196–211

Engin AB, Bukan N, Kurukahvecioglu O, Memis L, Engin A (2011) Effect of butylated hydroxytoluene (E321) pretreatment versus L-arginine on liver injury after sub-lethal dose of endotoxin administration. Envir Toxicol Pharmacol 32(3):457–464. https://doi.org/10.1016/j.etap.2011.08.014

Esatbeyoglu T, Werner MR, Schlosser A, Winterhalter P, Rimbach G (2017) Fractionation, enzyme inhibitory and cellular antioxidant activity of bioactives from purple sweet potato (Ipomoea batatas). Food Chem 221:447–546. https://doi.org/10.1016/j.foodchem.2016.10.077

Eshak ES, Iso H, Mizoue T, Noda IM, M, Tsugane S, (2013) Soft drink, 100% fruit juice, and vegetable juice intakes and risk of diabetes mellitus. Clin Nutri 32(2):300–308. https://doi.org/10.1016/j.clnu.2012.08.003

FAO (2001) Improving Nutrition through Home Gardening: A Training Package for Preparing Field Workers in Africa; FAO: Rome, Italy. e14. https://library.wur.nl/WebQuery/wurpubs/fulltext/466505/ Accessed 23 July 2021

Fetuga GO, Tomlins K, Bechoff A, Henshaw FO, Idowu MA, Westby A (2013) A survey of traditional processing of sweet potato flour for amala, consumption pattern of sweet potato amala and awareness of orange-fleshed sweet potato (OFSP) in South West Nigeria. J Food Agri Environ 11(3–4):67–71

Frank J, Kamal-Eldin A, Razdan A, Lundh T, Vessby B (2003) The dietary hydroxycinnamate caffeic acid and its conjugate chlorogenic acid increase vitamin E and cholesterol concentrations in Sprague—Dawley rats. J Agri Food Chem 51(9):2526–2531. https://doi.org/10.1021/jf026127k

Ghosh S, More P, Derle A, Patil A, Markad P, Ashok A, Kumbhar N, Shaikh ML, Ramanamurthy B, Shinde VS, Dhavale DD, Chopade BA (2014) Diosgenin from Dioscorea bulbifera: Novel hit for treatment of type II diabetes mellitus with inhibitory activity against alpha amylase and alpha glucosidase. PLoS ONE 9(9):e106039. https://doi.org/10.1371/journal.pone.0106039

Hanhineva K, Torronen R, Bondia-Pons I, Pekkinen J, Kolehmainen M, Mykkanen H, Poutanen K (2010) Impact of dietary polyphenols on carbohydrate metabolism. Int J Mol Sci 11(4):1365–1402. https://doi.org/10.3390/ijms11041365

Hou DX, Fujii M, Terahara N (2004) Yoshimoto M (2004) Molecular mechanisms behind the chemopreventive effects of anthocyanidins. J Biomed Biotech 5:321

Huang GJ, Chen HJ, Susumu K, Wu JB, Hou WC, Wu CH, Sheu Huang SS, Lin YH (2011) Sweet potato storage root thioredoxin h2 and their peptic hydrolysates exhibited angiotensin converting enzyme inhibitory activity in vitro. Bot Stud 52:15–22

Ishiguro K, Sameshima Y, Kume T, Ikeda KI, Matsumoto J, Yoshimoto M (2012) Hypotensive effect of a sweet potato protein digest in spontaneously hypertensive rats and purification of angiotensin I-converting enzyme inhibitory peptides. Food Chem 131(3):774–779. https://doi.org/10.1016/j.foodchem.2011.09.038

Jawi IM, Budiasa K (2011) Water extract of purple sweet potato lowered total cholesterol and increased total antioxidant in the blood of rabbits. J Veterinary 12(2):120–125

Ji H, Zhang H, Li H, Li Y (2015) Analysis on the nutrition composition and antioxidant activity of different types of sweet potato cultivars. Food Nutri Sci 6(01):161

Kalita D, Holm DG, LaBarbera DV, Petrash JM, Jayanty SS (2018) Inhibition pf alpha glucosidase, alpha amylase, and aldose reductase by potato polyphenolics compounds. PLoS ONE 13(1):e0191025. https://doi.org/10.1371/journal.pone.0191025

Kodama T, Miyazaki T, Kitamura I, Suzuki Y, Namba Y, Sakurai J, Torikai Y, Inoue S (2005) Effects of single and long-term admiration of wheat albumin on blood glucose control: randomized controlled clinical trials. Eur J Clin Nutri 59:384–392. https://doi.org/10.1038/sj.ejcn.1602085

Krochmal-Marczak B, Sawicka B, Słupski J, Cebulak T, Paradowska K (2014) Nutrition value of the sweet potato (Ipomoea batatas (L.) Lam) cultivated in South-Eastern Polish conditions. Int J Agron Agri Res 4(4):169–178

Kwak SY, Lew TTS, Sweeney CJ, Koman VB, Wong MH, Bohmert-Tatarev K, Snell KD, Seo JS, Chua NH, Strano MS (2019) Chloroplast-selective gene delivery and expression in planta using chitosan-complexed single-walled carbon nanotube carriers. Nat Nanotechnol 14(5):447–455. https://doi.org/10.1038/s41565-019-0375-4

Kwon YI, Vattem DV, Shetty K (2006) Evaluation of clonal herb of Lamiaceae species for management of diabetes and hypertension. Asia Pac J Clin Nutr 15:107–118

Lee Y, Choi DS, Lee MK, Lee HYM, Park TS (2014) Comparison of acarbose and voglibose in diabetes patients who are inadequately controlled with basal insulin treatment: randomized, parallel, open-label, active-controlled study. J Korean Med Sci 29:90–97. https://doi.org/10.3346/jkms.2014.29.1.90

Li PG, Mu TH, Deng L (2013) Anticancer effects of sweet potato protein on human colorectal cancer cells. World J Gastroenterol 19:3300–3308

Mccue P, Kwon YI, Shetty K (2005) Anti-amylase, anti-glucosidase and anti-angiotensin I-converting enzyme potential of selected foods. J Food Biochem 29:278–294. https://doi.org/10.1111/j.1745-4514.2005.00020.x

O’Connor LE, Hu EA, Steffen LM, Selvin E, Rebholz CM (2020) Adherence to a mediterranean-style eating pattern and risk of diabetes in a US prospective cohort study. Nutri Diabetes 10(1):1–9. https://doi.org/10.1038/s41387-020-0113-x

Obiro WC, Zhang T, Jiang B (2008) The nutraceutical role of the Phaseolus vulgaris alpha amylase inhibitors. Brit J Nutri 100:1–12. https://doi.org/10.1017/S0007114508879135

Oboh G, Ogunsuyi OB, Ogunbadejo MD, Adefegha SA (2016) Influence of gallic acid on α-amylase and α-glucosidase inhibitory properties of acarbose. J Food Drug Anal 24(3):627–634. https://doi.org/10.1016/j.jfda.2016.03.003

Oki T, Masuda M, Furuta S, Nishiba Y, Terahara N, Suda I (2002) Involvement of anthocyanins and other phenolic compounds in radical-scavenging activity of purple fleshed sweet potato cultivars. J Food Sci 67(5):1752–1756. https://doi.org/10.1111/j.1365-2621.2002.tb08718.x

Ozcan T, Kurtuldu O (2014) Influence of dietary fiber addition on the properties of probiotic yogurt. Int J Chem Eng Appli 5(5):397

Padda MS, Picha DH (2008) Effect of style of cut and storage on phenolic composition and antioxidante activity of fresh-cut sweet potatoes. Hort Sci 43(2):431–434. https://doi.org/10.21273/HORTSCI.43.2.431

Park SY, Lee SY, Yang JW, Lee JS, Oh SD, Oh S, Lee SM, Lim MH, Park SK, Jang JS, Cho HS (2016) Comparative analysis of phytochemicals and polar metabolites from colored sweet potato (Ipomoea batatas L.) tubers. Food Sci Biotechnol 25(1):283–291

Parker L, Shaw CS, Stepto NK, Levinger I (2017) Exercise and glycemic control: focus on redox homeostasis and redox-sensitive protein signaling. Front Endocrinol 8:87. https://doi.org/10.3389/fendo.2017.00087

Petropoulos SA, Sampaio SL, Di Gioia F, Tzortzakis N, Rouphael Y, Kyriacou MC, Ferreira I (2019) Grown to be blue—Antioxidant properties and health effects of colored vegetables Part I: root vegetables. Antioxidants 8(12):617. https://doi.org/10.3390/antiox8120617

Pihlanto A, Makinen S (2013) Antihypertensive properties of plant protein derived peptides. Biactive Food Peptides in Health and Disease. In: Hernandez-Ledesma B, Hsieh, C-C (eds.) Intech Open Ebook. https://doi.org/10.5772/54565,Accessed 20 June 2021

Ramakrishna R, Sarkar D, Shetty K (2019) Metabolic stimulation of phenolic biosynthesis and antioxidant enzyme response in dark germinated barley (Hordeum vulgare L.) sprouts using bioprocessed elicitors. Food Sci Biotechnol 28(4):1093–1106. https://doi.org/10.1007/s10068-018-0535-6

Ray RC, Tomlins KI (2009) Sweet potato: Post harvest Aspects in food, feed and industry. Nova Science Publisher Inc., New York

Re R, Pellegrini N, Proteggente A, Pannala A, Yang M, Rice-Evans C (1999) Antioxidant activity applying an improved ABTS radical cation decolorization assay. Free Radic Biol Med 26:1231–1237. https://doi.org/10.1016/S0891-5849(98)00315-3

Rekha MR, Padmaja G (2002) Alpha-amylase inhibitor changes during processing of sweet potato and taro tubers. Plant Foods Hum Nutr 57(3–4):285–294. https://doi.org/10.1023/A:1021837115267

Rumbaoa RGO, Cornago DF, Geronimo IM (2009) Phenolic content and antioxidant capacity of Philippine sweet potato (Ipomoea batatas) varieties. Food Chem 113(4):1133–1138. https://doi.org/10.1016/j.foodchem.2008.08.088

Senanayake SA, Ranaweera KKDS, Gunaratne A, Bamunuarachchi A (2013) Comparative analysis of nutritional quality of five different cultivars of sweet potatoes (Ipomea batatas L.) in Sri Lanka. Food Sci Nutri 1(4):284–291

Shahidi F, Ambigaipalan P (2015) Phenolics and polyphenolics in foods, beverages and spices: antioxidant activity and health effects—a review. J Funct Foods 18:820–897. https://doi.org/10.1016/j.jff.2015.06.018

Shetty K, Curtis OF, Levin RE, Witkowsky R, Ang W (1995) Prevention of vitrification associated with in vitro shoot culture of oregano. (Origanum vulgare) by Pseudomonas spp. J Plant Physiol 147:447–451

Sun J, Zhou B, Tang C, Gou Y, Chen H, Wang Y, Jin C, Liu J, Niu F, Kan J, Qian C (2018) Characterization, antioxidant activity and hepatoprotective effect of purple sweet potato polysaccharides. Int J Biol Macromol 115:69–76. https://doi.org/10.1016/j.ijbiomac.2018.04.033

Teow CC, Truong VD, McFeeters RF, Thompson RL, Pecota KV, Yencho GC (2007) Antioxidant activities, phenolic and b-carotene contents of sweet potato genotypes with varying flesh colors. Food Chem 103:829–838. https://doi.org/10.1016/j.foodchem.2006.09.033

Tsai CC, Chiu TH, Ho CY, Lin PP, Wu TY (2013) Effects of anti-hypertension and intestinal microflora of spontaneously hypertensive rats fed gamma-aminobutyric acid-enriched Chingshey purple sweet potato fermented milk by lactic acid bacteria. Afr J Microbiol Res 7(11):932–940

Vizzotto M, Pereira ES, Vinholes JR, Munhoz PC, Ferri NML, Castro LAS, Krolow CS (2017) Physicochemical and antioxidant capacity analysis of colored sweet potato genotypes: In Natura and thermally processed. https://doi.org/10.1590/10103-8478cr20151385/ Accessed 2 Mar 2021

WHO. 2020. https://www.who.int/health-topics/diabetes#tab=tab_1/ (Accessed on August 3rd, 2021)

Wilson LG, Averre CW, Baird JV, Beasley EO, Bonano, AR, Estes EA, Sorensen KA (1989) Growing and marketing quality sweet potatoes. North Carolina Coop. Ext Serv Bul. AG-09

Worthington V (1993a) Alpha amylase. Worthington enzyme manual; enzymes and related biochemicals. Worthington Biochemical Corp., Freehold, NJ, 36–41

Worthington V (1993b) Maltase-a-glucosidase. Worthington Enzyme Manual, Freehold, 261

Wu DM, Lu J, Zheng YL, Shan Q, Ma DF (2008) Purple sweet potato repairs D-galactose induced spatial learning and memory impairment by regulating the expression of synaptic proteins. Neurobiol Learn Mem 90:19–27. https://doi.org/10.1016/j.nlm.2008.01.010

Zakir S, Mohammad S, Allen J, Butt MS, Nisa M, Arshad U, Din I, Javid A (2008) Impact of sweet potato cultivars on blood glucose level in diabetic and healthy participants. Int J Agri Biol 10(3):316–320