REFERENCES
- Abdel-Halim S. M., Ostenson C. G., Andersson A., Jansson L., Efendic S. (1995). A defective stimulus-secretion coupling rather than glucotoxicity mediates the impaired insulin secretion in the mildly diabetic F1 hybrids of GK-Wistar rats. Diabetes 44, 1280–1284. doi: 10.2337/diabetes.44.11.1280. [PubMed] [Cross Ref]
- Abeles R. H., Frey P. A., Jencks W. P. (1992). “Complex lipids,” in Biochemistry (Boston: Jones and Bartlett Publishers; ), 739–761.
- Adedapo A. A., Mogbojuri O. M., Emikpe B. O. (2009). Safety evaluations of the aqueous extract of the leaves of Moringa oleifera in rats. J. Med. Plant 3, 586–591.
- Adult Treatment Panel III. (2001). Executive summary of the third report of The National Cholesterol Education Program (NCEP) expert panel on detection, evaluation, and treatment of high blood cholesterol in adults (Adult Treatment Panel III). JAMA 285, 2486–2497. doi: 10.1001/jama.285.19.2486. [PubMed] [Cross Ref]
- Aje T. O., Miller M. (2009). Cardiovascular disease: a global problem extending into the developing world. World J. Cardiol. 1, 3–10. doi: 10.4330/wjc.v1.i1.3. [PMC free article] [PubMed][Cross Ref]
- Alberti K. G., Zimmet P. Z. (1998). Definition, diagnosis and classification of diabetes mellitus and its complications. Part 1: diagnosis and classification of diabetes mellitus provisional report of a WHO consultation. Diabet. Med. 15, 539–553. doi: 10.1002/(SICI)1096-9136(199807)15:7<539::AID-DIA668>3.0.CO;2-S. [PubMed] [Cross Ref]
- Amaglo N. K., Bennett R. N., Lo Curto R. B., Rosa E. A. S., Lo Turco V., Giuffrid A., Lo Curto A., Crea F., Timpo G. M. (2010). Profiling selected phytochemicals and nutrients in different tissues of the multipurpose tree Moringa oleifera L., grown in Ghana. Food Chem. 122, 1047–1054. doi: 10.1016/j.foodchem.2010.03.073. [Cross Ref]
- Anwar F., Latif S., Ashraf M., Gilani A. H. (2007). Moringa oleifera: a food plant with multiple medicinal uses. Phytother. Res. 21, 17–25. [PubMed]
- Aslam M., Anwar F., Nadeem R., Rashid U., Kazi T. G., Nadeem M. (2005). Mineral composition of Moringa oleifera leaves and pods from dfferent regions of Punjab, Pakistan. Asian J. Plant Sci.4, 417–421. doi: 10.3923/ajps.2005.417.421. [Cross Ref]
- Atawodi S. E., Atawodi J. C., Idakwo G. A., Pfundstein B., Haubner R., Wurtele G., Bartsch H., Owen R. W. (2010). Evaluation of the polyphenol content and antioxidant properties of methanol extracts of the leaves, stem, and root barks of Moringa oleifera Lam. J. Med. Food 13, 710–716. doi: 10.1089/jmf.2009.0057. [PubMed] [Cross Ref]
- Bennett R. N., Mellon F. A., Foidl N., Pratt J. H., Dupont M. S., Perkins L., Kroon P. A. (2003).Profiling glucosinolates and phenolics in vegetative and reproductive tissues of the multi-purpose trees Moringa oleifera L. (horseradish tree) and Moringa stenopetala L. J. Agric. Food Chem. 51, 3546–3553. doi: 10.1021/jf0211480. [PubMed] [Cross Ref]
- Bisbis S., Bailbe D., Tormo M. A., Picarel-Blanchot F., Derouet M., Simon J., Portha B. (1993).Insulin resistance in the GK rat: decreased receptor number but normal kinase activity in liver.Am. J. Physiol. 265, E807–E813. [PubMed]
- Bischoff S. C. (2008). Quercetin: potentials in the prevention and therapy of disease. Curr. Opin. Clin. Nutr. Metab. Care 11, 733–740. doi: 10.1097/MCO.0b013e32831394b8. [PubMed][Cross Ref]
- Bortolotti M., Levorato M., Lugli A., Mazzero G. (2008). Effect of a balanced mixture of dietary fibers on gastric emptying, intestinal transit and body weight. Ann. Nutr. Metab. 52, 221–226. doi: 10.1159/000138127. [PubMed] [Cross Ref]
- Bour S., Visentin V., Prevot D., Daviaud D., Saulnier-Blache J. S., Guigne C., Valet P., Carpene C. (2005). Effects of oral administration of benzylamine on glucose tolerance and lipid metabolism in rats. J. Physiol. Biochem. 61, 371–379. doi: 10.1007/BF03167054. [PubMed] [Cross Ref]
- Buraimoh A. A. (2011). Hepatoprotective effect of ethanolic leave extract of Moringa oleifera on the histology of paracetamol induced liver damage in Wistar rats. Int. J. Anim. Vet. Adv. 3, 10–13.
- Cajuday L. A., Pocsidio G. L. (2010). Effects of Moringa oleifera Lam. (Moringaceae) on the reproduction of male mice (Mus musculus). J. Med. Plant Res. 4, 1115–1121.
- Chakravarti R. N. (1955). Chemical identity of moringine. Bull. Calcutta Sch. Trop. Med. 3, 162–163.
- Cheenpracha S., Park E. J., Yoshida W. Y., Barit C., Wall M., Pezzuto J. M., Chang L. C. (2010).Potential anti-inflammatory phenolic glycosides from the medicinal plant Moringa oleifera fruits.Bioorg. Med. Chem. 18, 6598–6602. doi: 10.1016/j.bmc.2010.03.057. [PubMed] [Cross Ref]
- Cho A. S., Jeon S. M., Kim M. J., Yeo J., Seo K. I., Choi M. S., Lee M. K. (2010). Chlorogenic acid exhibits anti-obesity property and improves lipid metabolism in high-fat diet-induced-obese mice.Food Chem. Toxicol. 48, 937–943. doi: 10.1016/j.fct.2010.01.003. [PubMed] [Cross Ref]
- Chumark P., Khunawat P., Sanvarinda Y., Phornchirasilp S., Morales N. P., Phivthong-Ngam L., Ratanachamnong P., Srisawat S., Pongrapeeporn K. U. (2008). The in vitro and ex vivo antioxidant properties, hypolipidaemic and antiatherosclerotic activities of water extract ofMoringa oleifera Lam. leaves. J. Ethnopharmacol. 116, 439–446. doi: 10.1016/j.jep.2007.12.010.[PubMed] [Cross Ref]
- Coppin J. (2008). A Study of the Nutritional and Medicinal Values of Moringa oleifera Leaves from sub-Saharan Africa: Ghana, Rwanda, Senegal and Zambia. M.Sc. thesis, Rutgers University-Graduate School-New Brunswick, New Brunswick.
- Coskun O., Kanter M., Korkmaz A., Oter S. (2005). Quercetin, a flavonoid antioxidant, prevents and protects streptozotocin-induced oxidative stress and beta-cell damage in rat pancreas.Pharmacol. Res. 51, 117–123. doi: 10.1016/j.phrs.2004.06.002. [PubMed] [Cross Ref]
- Dhalla N. S., Temsah R. M., Netticadan T. (2000). Role of oxidative stress in cardiovascular diseases. J. Hypertens. 18, 655–673. doi: 10.1097/00004872-200018060-00002. [PubMed][Cross Ref]
- Dieye A. M., Sarr A., Diop S. N., Ndiaye M., Sy G. Y., Diarra M., Rajraji Gaffary I., Ndiaye Sy A., Faye B. (2008). Medicinal plants and the treatment of diabetes in Senegal: survey with patients.Fundam. Clin. Pharmacol. 22, 211–216. doi: 10.1111/j.1472-8206.2007.00563.x. [PubMed][Cross Ref]
- Dokken B. B. (2008). The pathophysiology of cardiovascular disease and diabetes: beyond blood pressure and lipids. Diabetes Spectr. 21, 160–165. doi: 10.2337/diaspect.21.3.160. [Cross Ref]
- Edwards R. L., Lyon T., Litwin S. E., Rabovsky A., Symons J. D., Jalili T. (2007). Quercetin reduces blood pressure in hypertensive subjects. J. Nutr. 137, 2405–2411. [PubMed]
- Faizi S., Siddiqui B. S., Saleem R., Aftab K., Shaheen F., Gilani A. H. (1998). Hypotensive constituents from the pods of Moringa oleifera. Planta Med. 64, 225–228. doi: 10.1055/s-2006-957414. [PubMed] [Cross Ref]
- Faizi S., Siddiqui B. S., Saleem R., Siddiqui S., Aftab K. (1992). Isolation and structure elucidation of novel hypotensive agents, niazinin A, niazinin B, niazimicin and niaziminin A
+
B fromMoringa oleifera: the first naturally occurring thiocarbamates. J. Chem. Soc. 1, 3237–3241.
- Faizi S., Siddiqui B. S., Saleem R., Siddiqui S., Aftab K., Gilani A. H. (1994). Isolation and structure elucidation of new nitrile and mustard oil glycosides from Moringa oleifera and their effect on blood pressure. J. Nat. Prod. 57, 1256–1261. doi: 10.1021/np50111a011. [PubMed] [Cross Ref]
- Fakurazi S., Hairuszah I., Nanthini U. (2008). Moringa oleifera Lam prevents acetaminophen induced liver injury through restoration of glutathione level. Food Chem. Toxicol. 46, 2611–2615. doi: 10.1016/j.fct.2008.04.018. [PubMed] [Cross Ref]
- Gerich J. E. (2000). Physiology of glucose homeostasis. Diabetes Obes. Metab. 2, 345–350. doi: 10.1046/j.1463-1326.2000.00085.x. [PubMed] [Cross Ref]
- Ghasi S., Nwobodo E., Ofili J. O. (2000). Hypocholesterolemic effects of crude extract of leaf ofMoringa oleifera Lam in high-fat diet fed Wistar rats. J. Ethnopharmacol. 69, 21–25. doi: 10.1016/S0378-8741(99)00106-3. [PubMed] [Cross Ref]
- Ghiridhari V. V. A., Malhati D., Geetha K. (2011). Anti-diabetic properties of drumstick (Moringa oleifera) leaf tablets. Int. J. Health Nutr. 2, 1–5.
- Ghosh S., Chopra N. R., Dutt A. (1935). Chemical examination of bark of Moringa pterygosperma. Indian J. Med. Res. 22, 789.
- Gowrishankar R., Kumar M., Menon V., Divi S. M., Saravanan M., Magudapathy P., Panigrahi B. K., Nair K. G., Venkataramaniah K. (2010). Trace element studies on Tinospora cordifolia(Menispermaceae), Ocimum sanctum (Lamiaceae), Moringa oleifera (Moringaceae), andPhyllanthus niruri (Euphorbiaceae) using PIXE. Biol. Trace Elem. Res. 133, 357–363. doi: 10.1007/s12011-009-8439-1. [PubMed] [Cross Ref]
- Gupta A., Gautam M. K., Singh R. K., Kumar M. V., Rao Ch V., Goel R. K., Anupurba S. (2010).Immunomodulatory effect of Moringa oleifera Lam. extract on cyclophosphamide induced toxicity in mice. Indian J. Exp. Biol. 48, 1157–1160. [PubMed]
- Havel R. J., Kane J. P. (2001). “Tructure and metabolism of plasma lipoproteins,” in The Metabolic and Molecular Basis of Inherited Disease, eds Scriver C. R., Beaudet A. L., Sly W. S., Valle M. D., Childs B., Kinzler K. W., Vogelstein B., editors. (New York: McGraw-Hill; ), 2705–2716.
- Hemmerle H., Burger H. J., Below P., Schubert G., Rippel R., Schindler P. W., Paulus E., Herling A. W. (1997). Chlorogenic acid and synthetic chlorogenic acid derivatives: novel inhibitors of hepatic glucose-6-phosphate translocase. J. Med. Chem. 40, 137–145. doi: 10.1021/jm9607360.[PubMed] [Cross Ref]
- Horton J. D. (2002). Sterol regulatory element-binding proteins: transcriptional activators of lipid synthesis. Biochem. Soc. Trans. 30, 1091–1095. doi: 10.1042/BST0301091. [PubMed] [Cross Ref]
- Horton J. D., Cohen J. C., Hobbs H. H. (2009). PCSK9: a convertase that coordinates LDL catabolism. J. Lipid Res. 50(Suppl.), S172–S177. doi: 10.1194/jlr.R800091-JLR200.[PMC free article] [PubMed] [Cross Ref]
- Hossain P., Kawar B., El Nahas M. (2007). Obesity and diabetes in the developing world – a growing challenge. N. Engl. J. Med. 356, 213–215. doi: 10.1056/NEJMp068177. [PubMed][Cross Ref]
- Iffiu-Soltesz Z., Wanecq E., Lomba A., Portillo M. P., Pellati F., Szoko E., Bour S., Woodley J., Milagro F. I., Alfredo Martinez J., Valet P., Carpene C. (2010). Chronic benzylamine administration in the drinking water improves glucose tolerance, reduces body weight gain and circulating cholesterol in high-fat diet-fed mice. Pharmacol. Res. 61, 355–363. doi: 10.1016/j.phrs.2009.12.014. [PubMed] [Cross Ref]
- Iqbal S., Bhanger M. I. (2006). Effect of season and production location on antioxidant activity ofMoringa oleifera leaves grown in Pakistan. J. Food Compost. Anal. 19, 544–551. doi: 10.1016/j.jfca.2005.05.001. [Cross Ref]
- Jain P. J., Patil S. D., Haswani N. G., Girase M. V., Surana S. J. (2010). Hypolipidemic activity ofMoringa oleifera Lam., Moringaceae, on high fat died-induced hyperlipidemia in albino rats. Braz. J. Pharmacogn. 20, 969–973.
- Jaiswal D., Kumar Rai P., Kumar A., Mehta S., Watal G. (2009). Effect of Moringa oleifera Lam. leaves aqueous extract therapy on hyperglycemic rats. J. Ethnopharmacol. 123, 392–396. doi: 10.1016/j.jep.2009.03.036. [PubMed] [Cross Ref]
- Joshi P., Mehta D. (2010). Effect of dehydration on the nutritive value of drumstick leaves.Metabolomics 1, 5–9.
- Juliani H. R., Yudy Fonseca Y., Dan Acquaye A., Halimu Malumo H., Malainy D., Simon J. E. (2009). “Nutritional assessment of Moringa (Moringa spp.) from Ghana, Senegal and Zambia,” inAfrican Natural Plant Products: New Discoveries and Challenges in Chemistry and Quality, eds Juliani H. R., Simon J. E., Ho C. T., editors. (Washington: American Chemical Society; ), 469–484.
- Juzwiak S., Wojcicki J., Mokrzycki K., Marchlewicz M., Bialecka M., Wenda-Rozewicka L., Gawronska-Szklarz B., Drozdzik M. (2005). Effect of quercetin on experimental hyperlipidemia and atherosclerosis in rabbits. Pharmacol. Rep. 57, 604–609. [PubMed]
- Kamada C., da Silva E. L., Ohnishi-Kameyama M., Moon J. H., Terao J. (2005). Attenuation of lipid peroxidation and hyperlipidemia by quercetin glucoside in the aorta of high cholesterol-fed rabbit. Free Radic. Res. 39, 185–194. doi: 10.1080/10715760400019638. [PubMed] [Cross Ref]
- Kaneto H., Katakami N., Kawamori D., Miyatsuka T., Sakamoto K., Matsuoka T. A., Matsuhisa M., Yamasaki Y. (2007). Involvement of oxidative stress in the pathogenesis of diabetes. Antioxid. Redox Signal. 9, 355–366. doi: 10.1089/ars.2006.1465. [PubMed] [Cross Ref]
- Karthikesan K., Pari L., Menon V. P. (2010a). Antihyperlipidemic effect of chlorogenic acid and tetrahydrocurcumin in rats subjected to diabetogenic agents. Chem. Biol. Interact. 188, 643–650. doi: 10.1016/j.cbi.2010.07.026. [PubMed] [Cross Ref]
- Karthikesan K., Pari L., Menon V. P. (2010b). Combined treatment of tetrahydrocurcumin and chlorogenic acid exerts potential antihyperglycemic effect on streptozotocin-nicotinamide-induced diabetic rats. Gen. Physiol. Biophys. 29, 23–30. doi: 10.4149/gpb_2010_01_23. [PubMed][Cross Ref]
- Kasolo J. N., Bimenya G. S., Ojok L., Ochleng J., Ogwal-Okeng J. W. (2010). Phyochemicals and uses of Moringa oleifera leaves in Ugandan rural communities. J. Med. Plant Res. 4, 753–757.
- Kumar P. S., Mishra D., Ghosh G., Panda G. S. (2010). Medicinal uses and pharmacological properties of Moringa oleifera. Int. J. Phytomed. 2, 210–216. doi: 10.5138/ijpm.2010.0975.0185.02017. [Cross Ref]
- Kumari D. J. (2010). Hypoglycemic effect of Moringa oleifera and Azadirachta indica in type-2 diabetes. Bioscan 5, 211–214.
- Lako J., Trenerry V. C., Wahlqvist M., Wattanapenpaiboon N., Sotheeswaran S., Premier R. (2007). Phytochemical flavonols, carotenoids and the antioxidant properties of a wide selection of Fijian fruit, vegetables and other readily available foods. Food Chem. 101, 1727–1741. doi: 10.1016/j.foodchem.2006.01.031. [Cross Ref]
- Libby P., Ridker P. M., Hansson G. K. (2011). Progress and challenges in translating the biology of atherosclerosis. Nature 473, 317–325. doi: 10.1038/nature10146. [PubMed] [Cross Ref]
- Like A. A., Rossini A. A. (1976). Streptozotocin-induced pancreatic insulitis: new model of diabetes mellitus. Science 193, 415–417. doi: 10.1126/science.180605. [PubMed] [Cross Ref]
- Limon-Pacheco J., Gonsebatt M. E. (2009). The role of antioxidants and antioxidant-related enzymes in protective responses to environmentally induced oxidative stress. Mutat. Res. 674, 137–147. [PubMed]
- Lin X., Racette S. B., Lefevre M., Spearie C. A., Most M., Ma L., Ostlund R. E., Jr. (2010). The effects of phytosterols present in natural food matrices on cholesterol metabolism and LDL-cholesterol: a controlled feeding trial. Eur. J. Clin. Nutr. 64, 1481–1487. doi: 10.1038/ejcn.2010.180. [PubMed] [Cross Ref]
- Mahajan S., Mehta A. (2009). Curative effect of hydroalcoholic extract of leaves of Moringa oleifera lam. against adjuvant induced established arthritis in rats. Niger. J. Nat. Prod. Med. 13, 13–22.
- Mahajan S. G., Mehta A. A. (2010). Immunosuppressive activity of ethanolic extract of seeds ofMoringa oleifera Lam. in experimental immune inflammation. J. Ethnopharmacol. 130, 183–186. doi: 10.1016/j.jep.2010.04.024. [PubMed] [Cross Ref]
- Manguro L. O., Lemmen P. (2007). Phenolics of Moringa oleifera leaves. Nat. Prod. Res. 21, 56–68. doi: 10.1080/14786410601035811. [PubMed] [Cross Ref]
- Manickam P., Rathod A., Panaich S., Hari P., Veeranna V., Badheka A., Jacob S., Afonso L. (2011). Comparative prognostic utility of conventional and novel lipid parameters for cardiovascular disease risk prediction: do novel lipid parameters offer an advantage? J. Clin. Lipidol. 5, 82–90. doi: 10.1016/j.jacl.2010.12.001. [PubMed] [Cross Ref]
- Mehta K., Balaraman R., Amin A. H., Bafna P. A., Gulati O. D. (2003). Effect of fruits of Moringa oleifera on the lipid profile of normal and hypercholesterolaemic rabbits. J. Ethnopharmacol. 86, 191–195. doi: 10.1016/S0378-8741(03)00075-8. [PubMed] [Cross Ref]
- Monera T. G., Maponga C. C. (2010). Moringa oleifera supplementation by patients on antiretroviral therapy. J. Int. AIDS Soc. 13, 188. doi: 10.1186/1758-2652-13-S4-P188. [Cross Ref]
- Muangnoi C., Chingsuwanrote P., Praengamthanachoti P., Svasti S., Tuntipopipat S. (2011).Moringa oleifera pod inhibits inflammatory mediator production by lipopolysaccharide-stimulated RAW 264.7 murine macrophage cell lines. Inflammation. [Epub ahead of print]. doi: 10.1007/s10753-011-9334-4. [Cross Ref]
- Mukunzi D., Nsor-Atindana J., Xiaoming Z., Gahungu A., Karangwa E., Mukamurezi G., Al-Domi H., Princewill-Ogbonna I. L., Ogbonna P. C., Arief N. J. (2011). Comparison of volatile profile of Moringa oleifera leaves from Rwanda and China using HS-SPME. Pakistan J. Nutr. 10, 602–608. doi: 10.3923/pjn.2011.602.608. [Cross Ref]
- Nambiar V. S., Guin P., Parnami S., Daniel M. (2010). Impact of antioxidants from drumstick leaves on the lipid profile of hyperlipidemics. J. Herb. Med. Toxicol. 4, 165–172.
- Ndong M., Uehara M., Katsumata S., Sato S., Suzuki K. (2007a). Preventive effects of Moringa oleifera (Lam) on hyperlipidemia and hepatocyte ultrastructural changes in iron deficient rats.Biosci. Biotechnol. Biochem. 71, 1826–1833. doi: 10.1271/bbb.60644. [PubMed] [Cross Ref]
- Ndong M., Uehara M., Katsumata S., Suzuki K. (2007b). Effects of oral administration of Moringa oleifera Lam on glucose tolerance in Goto-Kakizaki and Wistar rats. J. Clin. Biochem. Nutr. 40, 229–233. doi: 10.3164/jcbn.40.229. [PMC free article] [PubMed] [Cross Ref]
- Olson M. E. (2002). Combining data from DNA sequences and morphology for a phylogeny of Moringaceae (Brassicales). Syst. Bot. 27, 55–73.
- Pari L., Kumar N. A. (2002). Hepatoprotective activity of Moringa oleifera on antitubercular drug-induced liver damage in rats. J. Med. Food 5, 171–177. doi: 10.1089/10966200260398206.[PubMed] [Cross Ref]
- Ramachandran C., Peter K. V., Gopalakrishnan P. K. (1980). Drumstick (Moringa oleifera): a multipurpose Indian vegetable. Econ. Bot. 34, 276–283. doi: 10.1007/BF02858648. [Cross Ref]
- Rana J. S., Nieuwdorp M., Jukema J. W., Kastelein J. J. (2007). Cardiovascular metabolic syndrome – an interplay of, obesity, inflammation, diabetes and coronary heart disease. Diabetes Obes. Metab. 9, 218–232. doi: 10.1111/j.1463-1326.2006.00594.x. [PubMed] [Cross Ref]
- Rice-Evans C. (2001). Flavonoid antioxidants. Curr. Med. Chem. 8, 797–807. [PubMed]
- Rivera L., Moron R., Sanchez M., Zarzuelo A., Galisteo M. (2008). Quercetin ameliorates metabolic syndrome and improves the inflammatory status in obese Zucker rats. Obesity (Silver Spring) 16, 2081–2087. doi: 10.1038/oby.2008.315. [PubMed] [Cross Ref]
- Robertson R. P., Harmon J., Tran P. O., Poitout V. (2004). Beta-cell glucose toxicity, lipotoxicity, and chronic oxidative stress in type 2 diabetes. Diabetes 53(Suppl. 1), S119–S124. doi: 10.2337/diabetes.53.3.633. [PubMed] [Cross Ref]
- Rodrigo R., Gonzalez J., Paoletto F. (2011). The role of oxidative stress in the pathophysiology of hypertension. Hypertens. Res. 34, 431–440. doi: 10.1038/hr.2010.264. [PubMed] [Cross Ref]
- Rodriguez de Sotillo D. V., Hadley M. (2002). Chlorogenic acid modifies plasma and liver concentrations of: cholesterol, triacylglycerol, and minerals in (fa/fa) Zucker rats. J. Nutr. Biochem. 13, 717–726. doi: 10.1016/S0955-2863(02)00231-0. [PubMed] [Cross Ref]
- Ryter S. W., Kim H. P., Hoetzel A., Park J. W., Nakahira K., Wang X., Choi A. M. (2007).Mechanisms of cell death in oxidative stress. Antioxid. Redox Signal. 9, 49–89. doi: 10.1089/ars.2007.9.49. [PubMed] [Cross Ref]
- Saleem R. (1995). Study of Chemical Constituents of Moringa Oleifera Lam. Ph.D. thesis, University of Karachi, Karachi.
- Sashidhara K. V., Rosaiah J. N., Tyagi E., Shukla R., Raghubir R., Rajendran S. M. (2009). Rare dipeptide and urea derivatives from roots of Moringa oleifera as potential anti-inflammatory and antinociceptive agents. Eur. J. Med. Chem. 44, 432–436. doi: 10.1016/j.ejmech.2008.08.004.[PubMed] [Cross Ref]
- Schneider C., Segre T. (2009). Green tea: potential health benefits. Am. Fam. Physician 79, 591–594. [PubMed]
- Siddhuraju P., Becker K. (2003). Antioxidant properties of various solvent extracts of total phenolic constituents from three different agroclimatic origins of drumstick tree (Moringa oleifera Lam.) leaves. J. Agric. Food Chem. 51, 2144–2155. doi: 10.1021/jf020444+. [PubMed] [Cross Ref]
- Sniderman A., McQueen M., Contois J., Williams K., Furberg C. D. (2010). Why is non-high-density lipoprotein cholesterol a better marker of the risk of vascular disease than low-density lipoprotein cholesterol? J. Clin. Lipidol. 4, 152–155. doi: 10.1016/j.jacl.2010.01.005. [PubMed][Cross Ref]
- Sreelatha S., Padma P. R. (2009). Antioxidant activity and total phenolic content of Moringa oleifera leaves in two stages of maturity. Plant Foods Hum. Nutr. 64, 303–311. doi: 10.1007/s11130-009-0141-0. [PubMed] [Cross Ref]
- Steinberg D. (2002). Atherogenesis in perspective: hypercholesterolemia and inflammation as partners in crime. Nat. Med. 8, 1211–1217. doi: 10.1038/nm1102-1211. [PubMed] [Cross Ref]
- Stumvoll M., Goldstein B. J., van Haeften T. W. (2005). Type 2 diabetes: principles of pathogenesis and therapy. Lancet 365, 1333–1346. doi: 10.1016/S0140-6736(05)61032-X. [PubMed][Cross Ref]
- Sudha P., Asdaq S. M., Dhamingi S. S., Chandrakala G. K. (2010). Immunomodulatory activity of methanolic leaf extract of Moringa oleifera in animals. Indian J. Physiol. Pharmacol. 54, 133–140. [PubMed]
- Sulaiman M. R., Zakaria Z. A., Bujarimin A. S., Somchit M. N., Israf D. A., Moin S. (2008).Evaluation of Moringa oleifera aqueous extract for antinociceptive and anti-inflammatory activities in animal models. Pharmacol. Biol. 46, 838–845. doi: 10.1080/13880200802366710.[Cross Ref]
- Thurber M. D., Fahey J. W. (2009). Adoption of Moringa oleifera to combat under-nutrition viewed through the lens of the “diffusion of innovations” theory. Ecol. Food Nutr. 48, 212–225. doi: 10.1080/03670240902794598. [PMC free article] [PubMed] [Cross Ref]
- Torimiro D. O., Odeyinka S. M., Okorie V. O., Akinsuyi M. A. (2009). Gender analysis of socio-cultural perception of Moringa oeifera amongst farmers in southwestern Nigeria. J. Int. Womens Stud. 10, 188–202.
- Tunnicliffe J. M., Eller L. K., Reimer R. A., Hittel D. S., Shearer J. (2011). Chlorogenic acid differentially affects postprandial glucose and glucose-dependent insulinotropic polypeptide response in rats. Appl. Physiol. Nutr. Metab. 36, 650–659. doi: 10.1139/h11-072. [PubMed][Cross Ref]
- van Dijk A. E., Olthof M. R., Meeuse J. C., Seebus E., Heine R. J., van Dam R. M. (2009). Acute effects of decaffeinated coffee and the major coffee components chlorogenic acid and trigonelline on glucose tolerance. Diabetes Care 32, 1023–1025. doi: 10.2337/dc09-0207. [PMC free article][PubMed] [Cross Ref]
- Verma A. R., Vijayakumar M., Mathela C. S., Rao C. V. (2009). In vitro and in vivo antioxidant properties of different fractions of Moringa oleifera leaves. Food Chem. Toxicol. 47, 2196–2201. doi: 10.1016/j.fct.2009.06.005. [PubMed] [Cross Ref]
- WHO. (2003). Good Agricultural and Collection Practices (Gacp) for Medicinal Plants. Geneva: World Heath Organization.
- Wild S., Roglic G., Green A., Sicree R., King H. (2004). Global prevalence of diabetes: estimates for the year 2000 and projections for 2030. Diabetes Care 27, 1047–1053. doi: 10.2337/diacare.27.5.1047. [PubMed] [Cross Ref]
- William F., Lakshminarayanan S., Chegu H. (1993). Effect of some Indian vegetables on the glucose and insulin response in diabetic subjects. Int. J. Food Sci. Nutr. 44, 191–196. doi: 10.3109/09637489309017439. [Cross Ref]
- Yusuf S., Reddy S., Ounpuu S., Anand S. (2001). Global burden of cardiovascular diseases: Part II: variations in cardiovascular disease by specific ethnic groups and geographic regions and prevention strategies. Circulation 104, 2855–2864. doi: 10.1161/hc4701.099488. [PubMed][Cross Ref]
- Zhang M., Swarts S. G., Yin L., Liu C., Tian Y., Cao Y., Swarts M., Yang S., Zhang S. B., Zhang K., Ju S., Olek D. J., Jr., Schwartz L., Keng P. C., Howell R., Zhang L., Okunieff P. (2011).Antioxidant properties of quercetin. Adv. Exp. Med. Biol. 915, 283–289. doi: 10.1007/978-1-4419-7756-4_38. [PubMed] [Cross Ref]
- Zhang X., Wang W., Xiao K. (2010). “Novel omics technologies in neutraceutics and functional food research,” in Genomics, Proteomics, and Metabolomics in Nutraceuticals and Functional Foods, eds Bagchi D., Lau F. C., Bagchi M., editors. (Ames, IA: Wiley-Blackwell; ), 11–22.
Articles from Frontiers in Pharmacology are provided here courtesy of Frontiers Media SA
sources from http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3290775/
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