[1] WHO expert consultation. Report of the expert committee on the diagnosis and classification of diabetes mellitus. Diabetes Care 2002; 25: 5–20.
[2] Newman B., Selby J. V., King M. C., Slemenda C., Fabsitz, R., Friedman, G. D. Concordance for type 2 (non-insulin-dependent) diabetes mellitus in male twins. Diabetology 1987; 30: 763–768. Doi: 10.1007/BF00275741.
[3] Kaprio J., Tuomilehto J., Koskenvuo M., Romanov K., Reunanen A., Eriksson J. et al. Concordance for type 1 (insulin-dependent) and type 2 (non-insulin dependent) diabetes mellitus in a population-based cohort of twins in Finland. Diabetology 1992; 35: 1060–1067. Doi: 10.1007/BF02221682.
[4] Bellamy L., Casas J. P. Hingorani, A. D. Williams D. Type 2 diabetes mellitus after gestational diabetes: a systematic review and meta-analysis. Lancet 2009; 373: 1773–1779. Doi: 10.1016/S0140-6736(09)60731-5.
[5] WHO. Global report on diabetes 2016; Geneva: WHO.
[6] Ceriello A. Oxidative stress and glycemic regulation. Metabolism 2000; 49: 27–29. Doi: 10.1016/S0026-0495(00)80082-7.
[7] Maritim A. C., Sanders R. A., Watkins, J. B. Diabetes, oxidative stress, and antioxidants: a review. Journal of Biochemical and Molecular Toxicology 2003; 17: 24–38. Doi: 10.1002/jbt.10058.
[8] Vos T., Flaxman A. D., Naghavi M., Lozano R., Michaud C., Ezzati M. et al. Years lived with disability (YLDs) for 1160 sequelae of 289 diseases and injuries 1990-2010: a systematic analysis for the global burden of disease study 2010. Lancet 2012; 380: 2163–2196. Doi: 10.1016/S0140-6736(12)61729-2.
[9] Inzucchi SE, Bergenstal RM, Buse JB et al. Management of hyperglycemia in type 2 diabetes, 2015: A patient-centered approach: Update to a position statement of the American Diabetes Association and the European Association for the study of diabetes. Diabetes Care 2015; 38(1): 140-149.
[10] Alarcon-Aguilara FJ, Roman-Ramos R, Perez-Gutierrez S, Aguilar-Contreras A, Contreras-Weber CC, Flores-Saenz JL. Study of the anti-hyperglycemic effect of plants used as antidiabetics. Journal of Ethnopharmacology 1998; 61: 101-110.
[11] Narayan S, Devi RS and Devi CSS. Role of Pterocarpus santalinus against mitochondrial dysfunction and membrane lipid changes induced by ulcerogens in rat gastric mucosa. Chemico Biological Interactions 2007; 170: 67-75.
[12] Yoganarasimhan SN. Medicinal Plants of India 2nd edition. New Delhi (India): Cyber media; 2000. p.449.
[13] Nagaraju N, Rao KN. Folk-medicine for diabetes from Rayalaseema of Andhra Pradesh. Ancient Science of Life 1989; 9: 31–35.
[14] Nagaraju N, Prasad M, Gopalakrishna G, Rao KN. Blood sugar lowering effect of Pterocarpus santalinus (Red Sanders) wood extract in different rat models. International Journal of Pharmacognosy 1991; 29: 141–144.
[15] Kameswara Rao B, Giri R, Kesavulu MM, Apparao C. Effect of oral administration of bark extracts of Pterocarpus santalinus on blood glucose level in experimental animals. Journal of Ethnopharmacology 2001; 74: 69–74.
[16] Halim ME, Misra A. The effect of aqueous extract of Pterocarus santalinus heartwood and vitamin E supplementation in streptozotocin-induced diabetic rats. Journal of Medicinal Plants Research. 2011; 5: 398–409.
[17] Parikh H, Khanna A. Pharmacognosy and phytoanalysis of B. juncea seeds. Pharmacognosy Journal 2014; 6(5): 47-54.
[18] Thirumalai T, Therasa VS, Elumalai EK, David E. Hypoglycemic effect of Brassica juncea (seeds) on streptozotocin induced diabetic male albino rat. Asian Pacific Journal of Tropical Biomedicine 2011; 4: 323-325.
[19] Goutam Brahmachari, Sadhan Mondal, Arindam Gangopadhyay, Dilip Gorai, Bodhiswatta Mukhopadhyay, Shamal Saha et al. Swertia (Gentianaceae): Chemical and Pharmacological Aspects. Chemistry and Biodiversity 2004; 1: 1627-1651.
[20] Pen F, Fang C.S. Effect of Swertia punicea Hemsl. on protection of experimental diabetic mice. Chinese Journal of Traditional Medical Science and Technol 2003; 10: 96–97.
[21] Wen L., Chen J.C. Hypoglycemic activity of Swertia punicea Hemsl extracts in streptozotocin induced hyperglycemic mice. China Pharmacy 2007; 10: 140–142.
[22] L.Y. Tian, X. Bai, X.-H. Chen, J.-B. Fang, S.-H. Liu, J.-C. Chen. Anti-diabetic effect of methylswertianin and bellidifolin from Swertia punicea Hemsl. and its potential mechanism. Phytomedicine 2010; 17: 533-539.
[23] Gulab S. Thakur, Rohit Sharma, Bhagwan S. Sanodiya, Mukeshwar Pandey, GBKS Prasad, Prakash S. Bisen. Gymnema sylvestre: An Alternative Therapeutic Agent for Management of Diabetes. Journal of Applied Pharmaceutical Science 2012; 2(12): 1-6.
[24] Pitchai Daisy, James Eliza, Khanzan Abdul, Majeed Mohamed Farook. A novel dihydroxy gymnemic triacetate isolated from Gymnema sylvestre possessing normoglycemic and hypolipidemic activity on STZ-induced diabetic rats. Journal of Ethnopharmacology 2009; 126: 339–344.
[25] Liu B, Asare-Anane H, Al-Romaiyan A, Huang G, Amiel S.A., Jones P.M., Persaud S.J. Characterisation of the insulinotropic activity of an aqueous extract of Gymnema Sylvestre in mouse cells and human islets of langerhans. Cellular Physiology and Biochemistry 2009; 23: 125–132.
[26] Manoj Kumar. A Review on Phytochemical Constituents and Pharmacological Activities of Ricinus communis L. Plant. International Journal of Pharmacognosy and Phytochemical Research 2017; 9(4): 466-472.
[27] Dhar ML, Dhar MM, Dhawan BN, Mehrotra BN, Ray C. Screening of Indian plants for biological activity, Part I. Indian Journal of Experimental Biology 1968; 6: 232–247.
[28] Poonam Shokeen, Prachi Anand, Y. Krishna Murali, Vibha Tandon. Antidiabetic activity of 50% ethanolic extracts of Ricinus communis and its purified fractions. Food and Chemical Toxicology 2008; 46: 3458–3466.
[29] Nounagnon S. Martial, N’tcha Christine, Sina Haziz, Noumavo A. Pacôme, Durand Dah-Nouvlessounon, Assogba M. Fidèle. Antimicrobial activities of Combretum micranthum extracts on Staphylococcus aureus strains isolated from skin infections and some reference strains. Asian Journal of Plant Sciences and Research 2016; 6(4): 40-47.
[30] Aminu Chika, Shaibu Oricha Bello. Antihyperglycaemic activity of aqueous leaf extract of Combretum micranthum (Combretaceae) in normal and alloxan-induced diabetic rats. Journal of Ethnopharmacology 2010; 129: 34–37.
[31] Ivo Oliveira, Paula Baptista, Albino Bento, José Alberto Pereira. Arbutus unedo L. and its benefits on human health. Journal of Food and Nutrional Research 2011; 50: 73–85.
[32] Mrabti H, Sayah K, Jaradat, N. et al. (). Antidiabetic and protective effects of the aqueous extract of Arbutus unedo L. in streptozotocin-nicotinamide-induced diabetic mice. Journal of Complementive and Integrative Medicine 2018; 15(3). Doi: 10.1515/jcim-2017-016.
[33] Lima EBC, Sousa CNS, Meneses LN, Ximenes N.C., Santos Júnior M.A., Vasconcelos G.S. et al. Cocos nucifera (L.) (Arecaceae): A phytochemical and pharmacological review. Brazilian Journal of Medical and Biological Research 2015; 48(11): 953-964. Doi: 10.1590/1414-431X20154773.
[34] S. Saranya, S. Pradeepa. S, S. Subramanian. Biochemical Evaluation of Antidiabetic Activity of Cocos nucifera Flowers in STZ Induced Diabetic Rats. International Journal of Pharmaceutical Sciences Review and Research 2014; 26(1): 67-75.
[35] Nidhi Tyagi, Vikas Hooda, Anjali Hooda and Sachin Malkani. Evaluation of antidiabetic potential of ethanolic And aqueous extract of cocos nucifera endocarp. World journal of pharmacy and pharmaceutical sciences 2015; 4(7): 1112-1120.
[36] Seham S El Hawary, Abd El Rahman El Shabrawy, Shahira M Ezzat, Fatma A A El-Shibani. Evaluation of the Phenolic and Flavonoid Contents, Antimicrobial and Cytotoxic Activities of Some Plants Growing in Al Jabal Al-Akhdar in Libya. International Journal of Pharmacognosy and Phytochemical Research 2016; 8(7): 1083-1087.
[37] Dafni A., Yaniv Z., Palevitch D. Ethnobotanical survey of medicinal-plants in Northern Israel. Journal of Ethnopharmacology 1984; 10: 295–310.
[38] Polina Smirin, Dvir Taler, Guila Abitbol, Tamar Brutman-Barazani, Zohar Kerem, Sanford R. Sampson. Sarcopoterium spinosum extract as an antidiabetic agent: In vitro and in vivo study. Journal of Ethnopharmacology 2010; 129: 10–17.
[39] Mital N Manvar, T R Desai. Vernonia anthelmintica Willd: An Overview on Phytopharmacological Properties. Inventi Rapid: Ethnopharmacology 2012; 4:1-4.
[40] Shaik Sameena Fatima, Maddirala Dilip Rajasekhar, Kondeti Vinay Kumar, Mekala Thur Sampath Kumar, Kasetti Ramesh Babu, Chippada Appa Rao. Antidiabetic and antihyperlipidemic activity of ethyl acetate: Isopropanol (1:1)