Potensi Ekstrak Buah Buni (Antidesma bunius (L) Spreng) Sebagai Inhibitor Enzim α-Glukosidase
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Sunarwidhi AL, Sudarsono S, Nugroho AE. Hypoglycemic effect of combination of Azadirachta indica A. Juss. and Gynura procumbens (Lour.) Merr. ethanolic extracts standardized by rutin and quercetin in alloxan-induced hyperglycemic rats. Adv Pharm Bull. 2014;4(Suppl 2):613–8.
Şendoǧdu N, Aslan M, Deliorman Orhan D, Ergun F, Yeşilada E. Antidiabetic and antioxidant effects of Vitis vinifera L. leaves in streptozotocin-diabetic rats. Turkish J Pharm Sci. 2006;3(1):7–17.
Zatalia SR, Sanusi H. The role of antioxidants in the pathophysiology, complications, and management of diabetes mellitus. Acta Med Indones [Internet]. 2013;45(2):141–7. Available from: http://www.ncbi.nlm.nih.gov/pubmed/23770795
Oyenihi AB, Brooks NL, Oguntibeju OO, Aboua G. Antioxidant -Rich Natural Products and Diabetes Mellitus. Antioxidant-Antidiabetic Agents Hum Heal [Internet]. 2014;1–29. Available from: http://www.intechopen.com/books/antioxidant-antidiabetic-agents-and-human-health/antioxidant-rich-natural-products-and-diabetes-mellitus
Badan Penelitian dan Pengembangan Kesehatan. Riset Kesehatan Dasar (RISKESDAS) 2013. Lap Nas 2013. 2013;1–384.
Goldenberg R, Punthakee Z. Definition, Classification and Diagnosis of Diabetes, Prediabetes and Metabolic Syndrome. Can J Diabetes. 2013;37(SUPPL.1):8–11.
Ayepola OR, Brooks NL, Oguntibeju OO. Oxidative Stress and Diabetic Complications : The Role of Antioxidant Vitamins and Flavonoids.
Nugroho AE. Animal Models of Diabetes Mellitus : Pathology and Mechanism of Some Diabetogenics. Biodiversitas, J Biol Divers [Internet]. 2006;7(4):378–82. Available from: http://biodiversitas.mipa.uns.ac.id/D/D0704/D070415.pdf
Bisht, Shradha; Sisodia S. Diabetes, Dyslipidemia, Antioxidant and status of oxidative stress. Int J Res Ayurveda Pharm. 2010;1(1):33–42.
Samappito S, Butkhup L. An analysis on organic acids contents in ripe fruits of fifteen Mao Luang (Antidesma bunius) cultivars, harvested from dipterocarp forest of Phupan Valley in Northeast Thailand. Vol. 11, Pakistan Journal of Biological Sciences. 2008. p. 974–81.
Butkhup L, Samappito S. CHANGES IN PHYSICO-CHEMICAL PROPERTIES , POLYPHENOL COMPOUNDS AND ANTIRADICAL ACTIVITY DURING DEVELOPMENT AND RIPENING OF MAOLUANG ( Antidesma bunius L . Spreng ) FRUITS. J Fruit Ornam Plant Res. 2011;19(1):85–99.
Hamidu L, Ahmad AR, Najib A. Qualitative and quantitative test of total flavonoid buni fruit (Antidesma bunius (L.) Spreng) with UV-Vis spectrophotometry method. Pharmacogn J. 2018;10(1).
Van Quan N, Xuan TD, Tran HD, Thuy NTD, Trang LT, Huong CT, et al. Antioxidant, α-Amylase and α-Glucosidase Inhibitory Activities and Potential Constituents of Canarium tramdenum Bark. Molecules. 2019;24(3).
Yin Z, Zhang W, Feng F, Zhang Y, Kang W. α-Glucosidase inhibitors isolated from medicinal plants. Food Sci Hum Wellness. 2014 Sep;3(3–4):136–74.
Wilson K, Walker J. Principles and techniques of biochemistry and molecular biology. 7th ed. Wilson K, Walker J, editors. Cambridge, New York: Cambridge University Press; 2010. 744 pages.
Qurrat-ul-Ain, Ashiq U, Ara R, Saleem M. Alpha-glucosidase and carbonic anhydrase inhibition studies of Pd(II)-hydrazide complexes. Arab J Chem [Internet]. 2015; Available from: http://dx.doi.org/10.1016/j.arabjc.2015.02.024
DOI: https://doi.org/10.33096/jffi.v7i1.598
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