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Current Pharmaceutical Biotechnology

Editor-in-Chief

ISSN (Print): 1389-2010
ISSN (Online): 1873-4316

Review Article

A Review: Underutilized Plant of Sabah and its Potential Value

Author(s): Nor Amirah Shamsudin, Lucky Poh Wah Goh, Mohd Khalizan Sabullah, Suraya Abdul Sani, Rahmath Abdulla and Jualang Azlan Gansau*

Volume 23, Issue 1, 2022

Published on: 08 February, 2021

Page: [47 - 59] Pages: 13

DOI: 10.2174/1389201022666210208201212

Price: $65

Abstract

Underutilized plants are referred to a plant species whose potential is not fully utilized yet and they are usually found abundantly in certain local areas but are globally rare. Sabah is known for high biodiversity and contains many underutilized plants. To our knowledge, this is the first review to provide overview information of the medicinal value and pharmacological properties of underutilized plants in Sabah. Extract and metabolites in different parts of several underutilized plants contain multiple beneficial bioactive compounds and the exploitation of these compounds was supported by additional data that plays various biological activities, including anti-atherosclerotic, anti-cancer antihypercholesterolemic and anti-ulcerogenic. A handful of pharmacological studies on these underutilized plants have conclusively outlined the mode of action in treatment of several diseases and in other health aspects. This paper limits its scope to review and highlight the potential of using underutilized plants in Sabah only which could serve as reliable resource for health product development in pharmaceutical and nutraceutical through continuous discovering of more active and sustainable resources as well as ingredients for food and medicine.

Keywords: Underutilized, sabah, north borneo plants, natural products, medicinal, traditional.

Graphical Abstract

[1]
Jagtap, U.B.; Bapat, V.A. Artocarpus: a review of its traditional uses, phytochemistry and pharmacology. J. Ethnopharmacol., 2010, 129(2), 142-166.
[http://dx.doi.org/10.1016/j.jep.2010.03.031 ] [PMID: 20380874]
[2]
He, F.J.; Nowson, C.A.; Lucas, M.; MacGregor, G.A. Increased consumption of fruit and vegetables is related to a reduced risk of coronary heart disease: meta-analysis of cohort studies. J. Hum. Hypertens., 2007, 21(9), 717-728.
[http://dx.doi.org/10.1038/sj.jhh.1002212 ] [PMID: 17443205]
[3]
Slavin, J.L.; Lloyd, B. Health benefits of fruits and vegetables. Adv. Nutr., 2012, 3(4), 506-516.
[http://dx.doi.org/10.3945/an.112.002154 ] [PMID: 22797986]
[4]
Canter, P.H.; Thomas, H.; Ernst, E. Bringing medicinal plants into cultivation: opportunities and challenges for biotechnology. Trends Biotechnol., 2005, 23(4), 180-185.
[http://dx.doi.org/10.1016/j.tibtech.2005.02.002 ] [PMID: 15780709]
[5]
Vayalil, P.K. Date fruits (Phoenix dactylifera Linn): an emerging medicinal food. Crit. Rev. Food Sci. Nutr., 2012, 52(3), 249-271.
[http://dx.doi.org/10.1080/10408398.2010.499824 ] [PMID: 22214443]
[6]
Ikram, E.H.K.; Eng, K.H.; Jalil, A.M.M.; Ismail, A.; Idris, S.; Azlan, A.; Nazri, H.S.M.; Diton, N.A.M.; Mokhtar, R.A.M. Antioxidant capacity and total phenolic content of Malaysian underutilized fruits. J. Food Compos. Anal., 2009, 22(5), 388-393.
[http://dx.doi.org/10.1016/j.jfca.2009.04.001]
[7]
Andarwulan, N.; Kurniasih, D.; Apriady, R.A.; Rahmat, H.; Roto, A.V.; Bolling, B.W. Polyphenols, carotenoids, and ascorbic Acid in underutilized medicinal vegetables. J. Funct. Foods, 2012, 4(1), 339-347.
[http://dx.doi.org/10.1016/j.jff.2012.01.003]
[8]
Chai, C.C.; Teo, G.K.; Lau, C.Y.; Powoven, A.M.A. Conservation and Sustainable Utilization of Indigenous Vegetables of Sarawak. Agrobiodiversity in Malaysia, 1st ed; Malaysian Agriculture Research and Development Institute: Malaysia, 2008, pp. 42-55.
[9]
Bandula, A.; Jayaweera, C.; De Silva, A.; Oreiley, P.; Karunarathne, A.; Malkanthi, S.H.P. Role of underutilized crop value chains in rural food and income security in Sri Lanka. Procedia Food Sci., 2016, 6, 267-270.
[http://dx.doi.org/10.1016/j.profoo.2016.02.049]
[10]
Gruère, G.P.; Giuliani, A.; Smale, M. Marketing underutilized plant species for the benefit of the poor: A conceptual framework.Agrobiodiversity Conservation and Economic Development; Kontoleon, A.; Pasquai, U.; Smale, M., Eds.; Routledge: Abington, Oxon, United Kingdom, 2008.
[11]
Gruère, G.; Nagarajan, L.; King, E.D.I.O. The role of collective action in the marketing of underutilized plant species: Lessons from a case study on minor millets in south India. Food Policy, 2009, 34(1), 39-45.
[http://dx.doi.org/10.1016/j.foodpol.2008.10.006]
[12]
Abu Bakar, M.F.; Fry, J.R. A review on underutilized indigenous Bambangan (Mangifera pajang) fruits as potential novel source for functional food and medicine. J. Med. Plants Res., 2013, 7(45), 3292-3297.
[13]
Wong, K.C.; Siew, S.S. Volatile components of the fruits of Bambangan (Mangifera panjang Kostermans) and Binjai (Mangifera caesia Jack). Flavour Fragrance J., 1994, 9(4), 173-178.
[http://dx.doi.org/10.1002/ffj.2730090406]
[14]
Abu Bakar, M.F.; Mohamed, M.; Rahmat, A.; Fry, J. Phytochemicals and antioxidant activity of different parts of Bambangan (Mangifera pajang) and Tarap (Artocarpus odoratissimus). Food Chem., 2009, 113(2), 479-483.
[http://dx.doi.org/10.1016/j.foodchem.2008.07.081]
[15]
Barthlott, W.; Hostert, A.; Kier, G.; Kueper, W.; Kreft, H.; Mutke, J.; Rafiqpoor, M.D.; Sommer, J.H. Geographic patterns of vascular plant diversity at continental to global scales. Erdkunde, 2007, 61(4), 305-315.
[http://dx.doi.org/10.3112/erdkunde.2007.04.01]
[16]
Food and Agricultural Organization of the United Nations (FAO). Global Plan of Action for the Conservation and Sustainable Utilization of Plant Genetic Resources for Food and Agriculture; Rome, Italy, 1996.
[17]
Consultative Group on International Agricultural Research (CGIAR) Innovation in Agricultural Research Annual Report; CGIAR Secretariat, United Nations: Washington, DC, 2004.
[18]
International Plant Genetic Resources Institute (IPGRI) Neglected and Underutilized Plant Species: Strategic Action Plan of the International Plant Genetic Resources Institute; International Plant Genetic Resources Institute: Rome, Italy, 2002.
[19]
Padulosi, S.; Amaya, K.; Jäger, M.; Gotor, E.; Rojas, W.; Valdivia, R. A holistic approach to enhance the use of neglected and underutilized species: The case of Andean Grains in Bolivia and Peru. Sustainability, 2014, 6(3), 1283-1312.
[http://dx.doi.org/10.3390/su6031283]
[20]
Okeke, E.C.; Eneobong, H.N.; Uzuegbunam, A.O.; Ozioko, A.O.; Kuhnlein, H. Igbo traditional food system: Documentation, uses and research needs. Pak. J. Nutr., 2008, 7(2), 365-376.
[http://dx.doi.org/10.3923/pjn.2008.365.376]
[21]
Nnamani, C.V.; Oselebe, H.O.; Agbatutu, A. Assessment of nutritional values of three underutilized indigenous leafy vegetables of ebonyi state, Nigeria. Afr. J. Biotechnol., 2009, 8, 2321-2324.
[22]
Nnamani, C.V. Nourishing the malnourished. University, Institute for Natural Resources in Africa (UNU-INRA). United Nations. Africa; Lond, 2014.
[23]
Osewa, S.O.; Alamu, O.; Adetiloye, I.S.; Olubiyi, M.R.; Abidogun, E.A. Use of some neglected and underutilized plants species among rural dwellers in Akinyele local government area of Oyo State. Greener J. Agri. Sci, 2013, 3(12), 817-822. Padulosi, S.; Hodgkin, T.; Williams, J.T.; Haq, N. Underutilized crops: Trends, challenges and opportunities in the 21st century. Managing plant genetic resources; CABI: Wallingford, UK, 2002.,
[24]
Osewa, S.O.; Alamu, O.; Adetiloye, I.S.; Olubiyi, M.R.; Abidogun, E.A. Use of some neglected and underutilized plants species among rural dwellers in Akinyele local gov-ernment area of Oyo State. Greener J. Agri. Sci., 2013, 3(12), 817-822.
[http://dx.doi.org/10.15580/GJAS.2013.3.060913821]
[25]
Shin, O.M.; Yuan, C.Z.; Isa, D. Methodology for underutilized crop in order to increase rural economic growth thru economic value chain production. Asia Pac. J. Contemp. Edu. Comm. Tech., 2015, 1(1), 193-202.
[26]
Milow, P.; Malek, S.B.; Edo, J.; Ong, H-C. Malaysian species of plants with edible fruits or seeds and their valuation. Int. J. Fruit Sci., 2013, 14(1), 1-27.
[http://dx.doi.org/10.1080/15538362.2013.801698]
[27]
Chin, H.F.; Yong, H.S. Malaysian fruits in colour; tropical press: Kuala Lumpur, Malaysia, 1980;
[28]
Kueh, H.S. Indigenous Fruit of Sarawak. Sarawak Forestry Department, Sarawak; Lee Miing Press Sdn Bhd: Kuching, Sarawak, Malaysia, 2003.
[29]
Lim, T.K. Edible Medicinal and Non-Medicinal Plants; Springer: Netherlands, 2012. a
[30]
Lim, T.K. Edible Medicinal and Non-Medicinal Plants; Springer: Netherlands, 2012.
[http://dx.doi.org/10.1007/978-94-007-1764-0.]
[31]
Lim, T.K. Edible Medicinal and Non Medicinal Plants; Springer: Netherlands,; , 2012. d
[32]
Lim, T.K. Edible Medicinal and Non Medicinal Plants; Springer: Netherlands,; , 2012. d
[33]
Lim, T.K. Edible Medicinal and Non Medicinal Plants; Springer: Netherlands,; , 2013. d
[34]
Lim, T.K. Edible Medicinal and Non Medicinal Plants; Springer: Netherlands,; , 2013. d
[35]
Khoo, H.E., Jr; Ismail, A. Determination of daidzein and genistein contents in mangifera fruit. Malays. J. Nutr., 2008, 14(2), 189-198.
[PMID: 22691775]
[36]
Ahmad, F.B.; Mohd Sallehuddin, N.K.N.; Assim, Z. Chemical constituents and antiviral study of Goniothalamus velutinus. Mal. J. Fund. Appl. Sci, 2014, 6(1),
[http://dx.doi.org/10.11113/mjfas.v6n1.180]
[37]
Galappathie, S.; Palombo, E.A.; Yeo, T.C.; Ley, D.L.S.; Tu, C.L.; Malherbe, F.M.; Mahon, P.J. Comparative antimicrobial activity of south east Asian plants used in Bornean Folkloric Medicine. J. Herb. Med., 2014, 4(2), 96-105.
[http://dx.doi.org/10.1016/j.hermed.2014.03.001]
[38]
Omar, S.; Chee, C.L.; Ahmad, F.; Ni, J.X.; Jaber, H.; Huang, J.; Nakatsu, T. Phenanthrene lactams from Goniothalamus velutinus. Phytochemistry, 1992, 31(12), 4395-4397.
[http://dx.doi.org/10.1016/0031-9422(92)80493-X]
[39]
Kumar, K.A.; Gousia, S.K.; Anupama, M.; Latha, J.N.L. A review on phytochemical constituents and biological assays of Averrhoa bilimbi. Int. J. Phar. Pharm. Sci. Res., 2013, 3(4), 136-139.
[40]
Provasi, M.; Oliveira, C.E.; Martinho, M.C.; Pessini, L.G.; Bazotte, R.B.; Cortez, D.A.G. Avaliação da toxicidade e do potencial anti-hiperglicemiante da Averrhoa carambola L. (Oxalidaceae). Acta Scientiarum, 2001, 23(3), 665-669. [In Portuguese]
[41]
Kostermans, A.J.G.H. The genus Durio Adans. (Bombac.). Reinwardtia, 1985, 4(3), 357-460.
[42]
Muhtadi; Primarianti, A. U.; Sujono, T. A. Antidiabetic activity of durian (Durio zibethinus Murr.) and Rambutan (Nephelium lappaceum L.) fruit peels in alloxan diabetic rats. Procedia Food Sci., 2015, 3, 255-261.
[http://dx.doi.org/10.1016/j.profoo.2015.01.028]
[43]
Ahmed, I.A.; Mikail, M.A.; Bin Ibrahim, M.; Bin Hazali, N.; Rasad, M.S.; Ghani, R.A.; Wahab, R.A.; Arief, S.J.; Yahya, M.N. Antioxidant activity and phenolic profile of various morphological parts of underutilised Baccaurea angulata fruit. Food Chem., 2015, 172, 778-787.
[http://dx.doi.org/10.1016/j.foodchem.2014.09.122 ] [PMID: 25442620]
[44]
Chong, K.Y.; Tan, H.T.W.; Corlett, R.T. A Checklist of The Total Vascular Plant Flora of Singapore: Native, Naturalised and Cultivated Species; Raffles Museum of Biodiversity Research and Department of Biological Sciences, Faculty of Sciences; National University of Singapore, 2009.
[45]
Kulip, J. Ethnobotany of Murut, Sabah. Telopea (Syd.), 2003, 10(1), 81-98.
[http://dx.doi.org/10.7751/telopea20035608]
[46]
Ong, H.C.; Norzalina, J. Malay herbal medicine in Gemencheh, Negri Sembilan, Malaysia. Fitoterapia, 1999, 70(1), 10-14.
[http://dx.doi.org/10.1016/S0367-326X(98)00023-9]
[47]
Azliza, M.A.; Ong, H.C.; Vikineswary, S.; Noorlidah, A.; Haron, N.W. Ethno-medicinal resources used by the Temuan in Ulu Kuang Village. Stud. Ethno-Med., 2012, 6(1), 17-22.
[http://dx.doi.org/10.1080/09735070.2012.11886415]
[48]
Ong, H.C.; Zuki, R.M.; Milow, P. Traditional Knowledge of Medicinal Plants among the Malay Villagers in Kampung Mak Kemas, Terengganu, Malaysia. Stud. Ethno-Med., 2011, 5(3), 175-185.
[http://dx.doi.org/10.1080/09735070.2011.11886407]
[49]
Shukri, R.; Mohamed, S.; Mustapha, N.M.; Hamid, A.A. Evaluating the toxic and beneficial effects of jering beans (Archidendron jiringa) in normal and diabetic rats. J. Sci. Food Agric., 2011, 91(14), 2697-2706.
[http://dx.doi.org/10.1002/jsfa.4516 ] [PMID: 21744354]
[50]
Hassan, M.H.; Nor, M.M.; Ravi, M.N.; Maskam, N.; Lean, H.T.B. Phytochemical screening, antioxidant activity and frying quality as affected by aqueous extract of Malaysian Serikayu (Eugina polyantha). Int. J. Res. Appl., 2015, 3(10), 89-98.
[51]
Prajapati, N. D.; Purohit, S.S.; Sharma, A. K. A Handbook of Medicinal Plants: A Complete Source; Agrobios Publisher: Jodhpur, India, 2003.
[52]
Jackie, T.; Haleagrahara, N.; Chakravarthi, S. Antioxidant effects of Etlingera elatior flower extract against lead acetate - induced perturbations in free radical scavenging enzymes and lipid peroxidation in rats. BMC Res. Notes, 2011, 4(1), 67.
[http://dx.doi.org/10.1186/1756-0500-4-67 ] [PMID: 21414212]
[53]
Priyadi, H.; Takao, G.; Rahmawati, I. Five Hundred Plant Species in Gunung Halimun Salak National Park West Java: A Checklist Including Sundanese Names, Distribution and Use; cifor, 2010.,
[http://dx.doi.org/10.13140/2.1.2823.5845.]
[54]
Kaneda, N.; Pezzuto, J.M.; Kinghorn, A.D.; Farnsworth, N.R.; Santisuk, T.; Tuchinda, P.; Udchachon, J.; Reutrakul, V. Plant anticancer agents, L. cytotoxic triterpenes from Sandoricum koetjape stems. J. Nat. Prod., 1992, 55(5), 654-659.
[http://dx.doi.org/10.1021/np50083a016 ] [PMID: 1517737]
[55]
Abdul Maji, A.M.S.; Aisha, A.F.A.; Alrokayan, S.A.; Abu-Salah, K.M.; Darwis, Y. In vitro cytotoxic and apoptotic properties of the stem bark extract of Sandoricum koetjape on breast cancer cells. Int. J. Canc. Res, 2009, 5(3), 123-129.
[http://dx.doi.org/10.3923/ijcr.2009.123.129]
[56]
Morbidelli, L.; Chang, C.H.; Douglas, J.G.; Granger, H.J.; Ledda, F.; Ziche, M. Nitric oxide mediates mitogenic effect of VEGF on coronary venular endothelium. Am. J. Physiol., 1996, 270(1 Pt 2), H411-H415.
[http://dx.doi.org/10.1152/ajpheart.1996.270.1.h411 ] [PMID: 8769777]
[57]
Nassar, Z.D.; Aisha, A.F.; Ahamed, M.B.; Ismail, Z.; Abu-Salah, K.M.; Alrokayan, S.A.; Abdul Majid, A.M. Antiangiogenic properties of Koetjapic acid, a natural triterpene isolated from Sandoricum koetjaoe Merr. Cancer Cell Int., 2011, 11(1), 12.
[http://dx.doi.org/10.1186/1475-2867-11-12 ] [PMID: 21524294]
[58]
Abdul Maj, A.M.S.; Aisha, A.F.A.; Sahib, H.B.; Abu-Salah, K.M.; Darwis, Y. Cytotoxic and anti-angiogenic properties of the stem bark extract of Sandoricum koetjape. Int. J. Canc. Res, 2009, 5(3), 105-114.b.
[http://dx.doi.org/10.3923/ijcr.2009.105.114]
[59]
Abu Bakar, M.F.; Mohamad, M.; Rahmat, A.; Burr, S.A.; Fry, J.R. Cytotoxicity, cell cycle arrest, and apoptosis in breast cancer cell lines exposed to an extract of the seed kernel of Mangifera pajang (bambangan). Food Chem. Toxicol., 2010, 48(6), 1688-1697.
[http://dx.doi.org/10.1016/j.fct.2010.03.046 ] [PMID: 20363279]
[60]
Zhang, S-Y.; Zheng, C-G.; Yan, X-Y.; Tian, W-X. Low concentration of condensed tannins from catechu significantly inhibits fatty acid synthase and growth of MCF-7 cells. Biochem. Biophys. Res. Commun., 2008, 371(4), 654-658.
[http://dx.doi.org/10.1016/j.bbrc.2008.04.062 ] [PMID: 18435908]
[61]
Achmad, S.A.; Hakim, E.H.; Juliawaty, L.D.; Makmur, L. Suyatno; A.N.; Ghisalberti, E.L. A new prenylated flavone from Artocarpus champeden. J. Nat. Prod., 1996, 59(9), 878-879.
[http://dx.doi.org/10.1021/np960330q]
[62]
Syah, Y.M.; Achmad, S.A.; Ghisalberti, E.L.; Hakim, E.H.; Mujahidin, D. Two new cytotoxic isoprenylated flavones, artoindonesianins U and V, from the heartwood of Artocarpus champeden. Fitoterapia, 2004, 75(2), 134-140.
[http://dx.doi.org/10.1016/j.fitote.2003.11.005 ] [PMID: 15030917]
[63]
Pardo-Andreu, G.L.; Barrios, M.F.; Curti, C.; Hernández, I.; Merino, N.; Lemus, Y.; Martínez, I.; Riaño, A.; Delgado, R. Protective effects of Mangifera indica L extract (Vimang), and its major component mangiferin, on iron-induced oxidative damage to rat serum and liver. Pharmacol. Res., 2008, 57(1), 79-86.
[http://dx.doi.org/10.1016/j.phrs.2007.12.004 ] [PMID: 18243014]
[64]
Nurulhuda, M.H.; Azlan, A.; Ismail, A.; Amom, Z.; Shakirin, F.H. Cholesterol-lowering and artherosclerosis inhibitory effect of sibu olive in cholesterol fed-rabbit. Asian J. Biochem., 2012, 7(2), 80-89.
[http://dx.doi.org/10.3923/ajb.2012.80.89]
[65]
Chew, L.Y.; Khoo, H.E.; Amin, I.; Azrina, A.; Lau, C.Y. Analysis of phenolic compounds of Dabai (Canarium odontophyllum Miq.) fruits by high-performance liquid chromatography. Food Anal. Methods, 2011, 5(1), 126-137.
[http://dx.doi.org/10.1007/s12161-011-9217-1]
[66]
Lima, Z.P.; Severi, J.A.; Pellizzon, C.H.; Brito, A.R.M.S.; Solis, P.N.; Cáceres, A.; Girón, L.M.; Vilegas, W.; Hiruma-Lima, C.A. Can the aqueous decoction of mango flowers be used as an antiulcer agent? J. Ethnopharmacol., 2006, 106(1), 29-37.
[http://dx.doi.org/10.1016/j.jep.2005.11.032 ] [PMID: 16500058]
[67]
Severi, J.A.; Lima, Z.P.; Kushima, H.; Brito, A.R.; Santos, L.C.; Vilegas, W.; Hiruma-Lima, C.A. Polyphenols with antiulcerogenic action from aqueous decoction of mango leaves (Mangifera indica L.). Molecules, 2009, 14(3), 1098-1110.
[http://dx.doi.org/10.3390/molecules14031098 ] [PMID: 19305363]
[68]
Gonçalves, S.T.; Baroni, S.; Bersani-Amado, F.A.; Melo, G.A.N.; Cortez, D.A.G.; Bersani-Amado, C.A.; Cuman, R.K.N. preliminary studies on gastric anti-ulcerogenic effect of Averrhoa carambola in Rats. Lat. Am. J. Pharm., 2006, 25(2), 245-247.
[69]
Lee, K-K.; Choi, J-D. The effects of areca catechu L extract on anti-inflammation and anti-melanogenesis. Int. J. Cosmet. Sci., 1999, 21(4), 275-284.
[http://dx.doi.org/10.1046/j.1467-2494.1999.196590.x ] [PMID: 18503445]
[70]
Cabrini, D.A.; Moresco, H.H.; Imazu, P.; da Silva, C.D.; Pietrovski, E.F.; Mendes, D.A.G.B.; da Silveira Prudente, A.; Pizzolatti, M.G.; Brighente, I.M.C.; Otuki, M.F. Analysis of the potential topical anti-inflammatory activity of Averrhoa carambola L. in Mice. Evid. Based Complement. Alternat. Med., 2011.2011908059
[http://dx.doi.org/10.1093/ecam/neq026 ] [PMID: 21785638]
[71]
De Young, L.M.; Kheifets, J.B.; Ballaron, S.J.; Young, J.M. Edema and cell infiltration in the phorbol ester-treated mouse ear are temporally separate and can be differentially modulated by pharmacologic agents. Agents Actions, 1989, 26(3-4), 335-341.
[http://dx.doi.org/10.1007/BF01967298 ] [PMID: 2567568]
[72]
Gábor, M. Mouse Ear Inflammation Models and Their Pharmacological Applications; Akadémiai Kiadó: Budapest, Hungary, 2000.
[73]
Rasadah, M.A.; Khozirah, S.; Aznie, A.A.; Nik, M.M. Anti-inflammatory agents from Sandoricum koetjape Merr. Phytomedicine, 2004, 11(2-3), 261-263.
[http://dx.doi.org/10.1078/0944-7113-00339 ] [PMID: 15070182]
[74]
Pithayanukul, P.; Leanpolchareanchai, J.; Saparpakorn, P. Molecular docking studies and anti-snake venom metalloproteinase activity of Thai mango seed kernel extract. Molecules, 2009, 14(9), 3198-3213.
[http://dx.doi.org/10.3390/molecules14093198 ] [PMID: 19783918]
[75]
Leanpolchareanchai, J.; Pithayanukul, P.; Bavovada, R. Anti-necrosis potential of polyphenols against snake venoms. Immunopharmacol. Immunotoxicol., 2009, 31(4), 556-562.
[http://dx.doi.org/10.3109/08923970902821702 ] [PMID: 19874222]
[76]
Jamaludin, F.; Mohamed, S. Hypoglycemic effect of extracts of petai papan (Parkia speciosa Hassk). Pertanika, J. Trop. Agric. Sci., 1993, 16(3), 161-165.
[77]
Pushparaj, P.; Tan, C.H.; Tan, B.K.H. Effects of Averrhoa bilimbi leaf extract on blood glucose and lipids in streptozotocin-diabetic rats. J. Ethnopharmacol., 2000, 72(1-2), 69-76.
[http://dx.doi.org/10.1016/S0378-8741(00)00200-2 ] [PMID: 10967456]
[78]
Pushparaj, P.N.; Tan, B.K.H.; Tan, C.H. The mechanism of hypoglycemic action of the semi-purified fractions of Averrhoa bilimbi in streptozotocin-diabetic rats. Life Sci., 2001, 70(5), 535-547.
[http://dx.doi.org/10.1016/S0024-3205(01)01423-0 ] [PMID: 11811898]
[79]
Nnamani, C.V.; Oselebe, H.O.; Igboabuchi, A.N. Bio-banking on neglected and underutilized plant genetic resources of Nigeria: Potential for nutrient and food security. Am. J. Pol. Sci., 2015, 06(04), 518-523.
[http://dx.doi.org/10.4236/ajps.2015.64056]
[80]
Cazarolli, L.H.; Folador, P.; Moresco, H.H.; Brighente, I.M.C.; Pizzolatti, M.G.; Silva, F.R.M.B. Stimulatory effect of apigenin-6-C-β-L-fucopyranoside on insulin secretion and glycogen synthesis. Eur. J. Med. Chem., 2009, 44(11), 4668-4673.
[http://dx.doi.org/10.1016/j.ejmech.2009.07.001 ] [PMID: 19625113]
[81]
Azlan, A.; Ismail, A.; Amom, Z.; Shakirin, F.H. Effect of defatted Dabai (Canarium odontophyllum Miq.) Pulp Ingestion on Lipid Peroxidation and Antioxidant Status of Hypercholesterolemic-Induced Rabbits. In IFMBE Proceedings, 2013, pp. 137-140.
[http://dx.doi.org/10.1007/978-3-642-32183-2_36.]
[82]
Ambili, S.; Subramoniam, A.; Nagarajan, N.S. Studies on the antihyperlipidemic properties of Averrhoa bilimbi fruit in rats. Planta Med., 2009, 75(1), 55-58.
[http://dx.doi.org/10.1055/s-0028-1088361 ] [PMID: 19031370]
[83]
Zhang, B.; Deng, Z.; Ramdath, D.D.; Tang, Y.; Chen, P.X.; Liu, R.; Liu, Q.; Tsao, R. Phenolic profiles of 20 Canadian lentil cultivars and their contribution to antioxidant activity and inhibitory effects on α-glucosidase and pancreatic lipase. Food Chem., 2015, 172, 862-872.
[http://dx.doi.org/10.1016/j.foodchem.2014.09.144 ] [PMID: 25442631]
[84]
Tadtong, S.; Wannakhot, P.; Pollsawat, W.; Athikomkulchai, S.; Ruangrungsi, N. Antimicrobial activity of essential oil from Etlingera punicea Rhizome. J. Health Res., 2009, 23(2), 77-79.
[85]
Naksang, P.; Tongchitpakdee, S.; Thumanu, K.; Oruna-Concha, M.J.; Niranjan, K.; Rachtanapun, C. Assessment of antimicrobial activity, mode of action and volatile compounds of Etlingera pavieana essential oil. Molecules, 2020, 25(14), 3245.
[http://dx.doi.org/10.3390/molecules25143245 ] [PMID: 32708709]
[86]
Pholdaeng, K.; Pongsamart, S. Studies on the immunomodulatory effect of polysaccharide gel extracted from Durio zibethinus in Penaeus monodon shrimp against Vibrio harveyi and WSSV. Fish Shellfish Immunol., 2010, 28(4), 555-561.
[http://dx.doi.org/10.1016/j.fsi.2009.12.009 ] [PMID: 20034573]
[87]
Jantan, I.; Pisar, M. Md.; Idris, M. S.; Taher, M.; Ali, R.M. In vitro inhibitory effect of rubraxanthone isolated from Garcinia parvifoliaon platelet-activating factor receptor binding. Planta Med., 2002, 68(12), 1133-1134.
[http://dx.doi.org/10.1055/s-2002-36343 ] [PMID: 12494345]
[88]
Hurst, J.S.; Bazan, H.E. Activation of the phospholipase/cyclooxygenase cascade in the rabbit cornea by platelet-activating factor is challenged by PAF receptor antagonists. J. Ocul. Pharmacol. Ther., 1995, 11(3), 329-337.
[http://dx.doi.org/10.1089/jop.1995.11.329 ] [PMID: 8590265]
[89]
Musthapa, I.; Hakim, E.H.; Juliawaty, L.D.; Syah, Y.M.; Achmad, S.A. Prenylated flavones from some Indonesian Artocarpus and their antimalarial properties. Med. Plants Int. J. Phyt. Rel. Ind, 2010, 2(2), 157.
[http://dx.doi.org/10.5958/j.0975-4261.2.2.023]
[90]
Widyawaruyanti, A. Subehan; Kalauni, S.K.; Awale, S.; Nindatu, M.; Zaini, N.C.; Syafruddin, D.; Asih, P.B.S.; Tezuka, Y.; Kadota, S. New prenylated flavones from Artocarpus champeden, and their antimalarial activity in vitro. J. Nat. Med., 2007, 61(4), 410-413.
[http://dx.doi.org/10.1007/s11418-007-0153-8]
[91]
Boonlaksiri, C.; Oonanant, W.; Kongsaeree, P.; Kittakoop, P.; Tanticharoen, M.; Thebtaranonth, Y. An antimalarial stilbene from Artocarpus integer. Phytochemistry, 2000, 54(4), 415-417.
[http://dx.doi.org/10.1016/S0031-9422(00)00074-1 ] [PMID: 10897483]
[92]
Widyawaruyanti, A.; Harwiningtias, N.; Tumewu, L.; Hafid, A.F. Soetjipto, effect of formulated Artocarpus champeden extract on parasite growth and immune response of Plasmodium berghei-infected mice. Evid. Based Complement. Alternat. Med., 2020, 20204678634
[http://dx.doi.org/10.1155/2020/4678634 ] [PMID: 32190083]
[93]
Rangkadilok, N.; Sitthimonchai, S.; Worasuttayangkurn, L.; Mahidol, C.; Ruchirawat, M.; Satayavivad, J. Evaluation of free radical scavenging and antityrosinase activities of standardized longan fruit extract. Food Chem. Toxicol., 2007, 45(2), 328-336.
[http://dx.doi.org/10.1016/j.fct.2006.08.022 ] [PMID: 17049706]
[94]
Sun, J.; Shi, J.; Jiang, Y.; Xue, S.J.; Wei, X. Identification of two polyphenolic compounds with antioxidant activities in longan pericarp tissues. J. Agric. Food Chem., 2007, 55(14), 5864-5868.
[http://dx.doi.org/10.1021/jf070839z ] [PMID: 17579438]
[95]
Iqbal, E.; Salim, K.A.; Lim, L.B.L. Phytochemical screening, total phenolics and antioxidant activities of bark and leaf extracts of Goniothalamus velutinus (Airy Shaw) from Brunei Darussalam. J. King Saud Univ. Sci., 2015, 27(3), 224-232.
[http://dx.doi.org/10.1016/j.jksus.2015.02.003]
[96]
Song, F-L.; Gan, R-Y.; Zhang, Y.; Xiao, Q.; Kuang, L.; Li, H-B. Total phenolic contents and antioxidant capacities of selected chinese medicinal plants. Int. J. Mol. Sci., 2010, 11(6), 2362-2372.
[http://dx.doi.org/10.3390/ijms11062362 ] [PMID: 20640157]
[97]
Adefegha, S.; Oboh, G. Effect of diets supplemented with Ethiopian pepper [Xylopia aethiopica (Dun.) A. Rich (Annonaceae)] and Ashanti Pepper [Piper guineense Schumach. et Thonn (Piperaceae)] on some biochemical parameters in normal rats. Asian Pac. J. Trop. Biomed., 2012, 2(2), S558-S566.
[http://dx.doi.org/10.1016/S2221-1691(12)60274-3]
[98]
Dimitrios, B. Sources of natural phenolic antioxidants. Trends Food Sci. Technol., 2006, 17(9), 505-512.
[http://dx.doi.org/10.1016/j.tifs.2006.04.004]
[99]
Ling, T.L.; Palanisamy, U.D. Review: Potential antioxidants from tropical plants.Food Industrial Processes-Methods and Equipment; Valdez, B., Ed.; InTech, 2012, pp. 63-73.
[100]
Bocco, A.; Cuvelier, M-E.; Richard, H.; Berset, C. Antioxidant activity and phenolic composition of citrus peel and seed extracts. J. Agric. Food Chem., 1998, 46(6), 2123-2129.
[http://dx.doi.org/10.1021/jf9709562]
[101]
Eric Chan, W.C.; Lim, Y.Y.; Wong, S.K. Antioxidant properties of ginger leaves: An overview. Free Radic. Antioxid., 2011, 1(1), 6-16.
[http://dx.doi.org/10.5530/ax.2011.1.3]
[102]
Agati, G.; Stefano, G.; Biricolti, S.; Tattini, M. Mesophyll distribution of ‘antioxidant’ flavonoid glycosides in Ligustrum vulgare leaves under contrasting sunlight irradiance. Ann. Bot., 2009, 104(5), 853-861.
[http://dx.doi.org/10.1093/aob/mcp177 ] [PMID: 19633310]
[103]
Tadhani, M.B.; Patel, V.H.; Subhash, R. In vitro antioxidant activities of Stevia rebaudiana leaves and callus. J. Food Compos. Anal., 2007, 20(3–4), 323-329.
[http://dx.doi.org/10.1016/j.jfca.2006.08.004]
[104]
Z hang, S.-J.; Lin, Y.-M.; Zhou, H.-C.; Wei, S.-D.; Lin, G.-H.; Ye, G.-F. Antioxidant tannins from stem bark and fine root of Casuarina equisetifolia. Mol., 2010, 15(8), 5658-5670.
[http://dx.doi.org/10.3390/molecules15085658]
[105]
Chang, S-T.; Wu, J-H.; Wang, S-Y.; Kang, P-L.; Yang, N-S.; Shyur, L-F. Antioxidant activity of extracts from Acacia confusa bark and heartwood. J. Agric. Food Chem., 2001, 49(7), 3420-3424.
[http://dx.doi.org/10.1021/jf0100907 ] [PMID: 11453785]
[106]
Diouf, P.N.; Stevanovic, T.; Cloutier, A. Antioxidant properties and polyphenol contents of trembling aspen bark extracts. Wood Sci. Technol., 2009, 43(5–6), 457-470.
[http://dx.doi.org/10.1007/s00226-009-0240-y]
[107]
Dalton, D.A.; Joyner, S.L.; Becana, M.; Iturbe-Ormaetxe, I.; Chatfield, J.M. Antioxidant defenses in the peripheral cell layers of legume root nodules. Plant Physiol., 1998, 116(1), 37-43.
[http://dx.doi.org/10.1104/pp.116.1.37 ] [PMID: 9449834]
[108]
Hegde, K.; Joshi, A.B. Hepatoprotective and antioxidant effect of Carissa spinarum root extract against CCl4 and paracetamol-induced hepatic damage in rats. Bangladesh J. Pharmacol., 2010, 5(1)
[http://dx.doi.org/10.3329/bjp.v5i1.5681]
[109]
Ho, L-H.; Bhat, R. Exploring the potential nutraceutical values of durian (Durio zibethinus L.) - an exotic tropical fruit. Food Chem., 2015, 168, 80-89.
[http://dx.doi.org/10.1016/j.foodchem.2014.07.020 ] [PMID: 25172686]
[110]
Ang, H.H.; Lee, E.L.; Matsumoto, K. Analysis of lead content in herbal preparations in Malaysia. Hum. Exp. Toxicol., 2003, 22(8), 445-451.
[PMID: 12948085]
[111]
Jӓrup, L.; Berglund, M.; Elinder, C.G.; Nordberg, G.; Vahter, M. Health effects of cadmium exposure-a review of the literature and a risk estimate. Scand. J. Work Environ. Health, 1998, 24(1), 1-51.
[PMID: 9562393]
[112]
Borůvka, L.; Krištoufková, S.; Kozák, J.; Huan-Wei, Ch. Speciation of cadmium, lead and zinc in heavily polluted soils. Rostl. Výr, 1997, 43, 187-192.
[113]
Mertens-Talcott, S.U.; Rios, J.; Jilma-Stohlawetz, P.; Pacheco-Palencia, L.A.; Meibohm, B.; Talcott, S.T.; Derendorf, H. Pharmacokinetics of anthocyanins and antioxidant effects after the consumption of anthocyanin-rich acai juice and pulp (Euterpe oleracea Mart.) in human healthy volunteers. J. Agric. Food Chem., 2008, 56(17), 7796-7802.
[http://dx.doi.org/10.1021/jf8007037 ] [PMID: 18693743]
[114]
Akter, M. S.; Oh, S.; Eun, J.-B.; Ahmed, M. Nutritional compositions and health promoting phytochemicals of Camu-Camu (Myrciaria Dubia) fruit: A review. Food Res. Int., 2011, 44(7), 1728- 1732.,
[http://dx.doi.org/10.1016/j.foodres.2011.03.045]

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