Antidiabetic property of miracle fruit plant (Synsepalum dulcificum Shumach. & Thonn. Daniell) leaf extracts in fructose-fed streptozotocin-injected rats via anti-inflammatory activity and inhibition of carbohydrate metabolizing enzymes

被引:24
作者
Obafemi, T. Olabisi [1 ,2 ]
Olaleye, M. Tolulope [1 ]
Akinmoladun, Afolabi C. [1 ]
机构
[1] Fed Univ Technol Akure, Phytomed Biochem Pharmacol & Toxicol Unit, Dept Biochem, PMB 704, Akure, Nigeria
[2] Afe Babalola Univ, Biochem Unit, Dept Chem Sci, PMB 5454, Ado Ekiti, Nigeria
关键词
Diabetes; Flavonoids; Glucokinase; Hexokinase; Inflammation; Insulin; HOMEOSTASIS MODEL ASSESSMENT; INSULIN-RESISTANCE; HYPOGLYCEMIC AGENTS; PLASMA-GLUCOSE; GLUCOKINASE; 6-PHOSPHOFRUCTO-2-KINASE/FRUCTOSE-2,6-BISPHOSPHATASE; ASSOCIATION; ANTIOXIDANT; ACTIVATION; DOCKING;
D O I
10.1016/j.jep.2019.112124
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Ethnopharmacological relevance: Miracle fruit plant (Synsepalum dulcificum) has many applications in folk medicine. The leaves are used traditionally to treat diabetes and other diseases. The antidiabetic potential of Synsepalum dulcificum leaves in rats has been studied but the mechanisms involved are yet to be elucidated. Aim: The present study aimed to provide insight into the antidiabetic mechanisms of methanol and flavonoid-rich leaf extracts of Synsepalum dulcificum (MSD and FSD, respectively). Methods: In vivo effects of administering 30 mg/kg or 60 mg/kg MSD and FSD for 21 consecutive days to rats after type II diabetes was induced through 14 days of fructose feeding and injection of one dose of streptozotocin, were assessed. Glibenclamide (5 mg/kg) served as the reference drug. In addition, in vitro inhibitory activity of MSD and FSD on the carbohydrate metabolizing enzymes, a-amylase and glucokinase, were evaluated, with acarbose as the reference drug. Moreover, in silico analyses to elucidate the contribution of key polyphenolics to the antidiabetic activity of the extracts through docking with glucokinase were performed. Results: MSD and FSD significantly reduced HbA1c and serum levels of interleukin-6 and TNF-alpha (p < 0.05) in diabetic animals. Conversely, serum level of insulin and hepatic hexokinase activity were increased (p < 0.05) in extract treated groups. Both extracts showed alpha-amylase and alpha-glucosidase inhibitory activities. Quercetin, caffeic acid and chlorogenic acid in extracts showed strong binding affinities with glucokinase in the molecular docking analyses. Conclusion: Results from this study indicate that increased insulin synthesis, reduction of inflammation and inhibition of carbohydrate metabolizing enzymes are likely mechanisms by which MSD and FSD exert anti diabetic action in type II diabetic rats.
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页数:8
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共 46 条
[21]   AACE/ACE COMPREHENSIVE DIABETES MANAGEMENT ALGORITHM 2015 [J].
Garber, Alan J. ;
Abrahamson, Martin J. ;
Barzilay, Joshua I. ;
Blonde, Lawrence ;
Bloomgarden, Zachary T. ;
Bush, Michael A. ;
Dagogo-Jack, Samuel ;
Davidson, Michael B. ;
Einhorn, Daniel ;
Garber, Jeffrey R. ;
Garvey, W. Timothy ;
Grunberger, George ;
Handelsman, Yehuda ;
Hirsch, Irl B. ;
Jellinger, Paul S. ;
McGill, Janet B. ;
Mechanick, Jeffrey I. ;
Rosenblit, Paul D. ;
Umpierrez, Guillermo ;
Davidson, Michael H. .
ENDOCRINE PRACTICE, 2015, 21 (04) :438-447
[22]   A practical guide for induction of type-2 diabetes in rat: Incorporating a high-fat diet and streptozotocin [J].
Gheibi, Sevda ;
Kashfi, Khosrow ;
Ghasemi, Asghar .
BIOMEDICINE & PHARMACOTHERAPY, 2017, 95 :605-613
[23]   Elevated Levels of the Anti-Inflammatory Interleukin-1 Receptor Antagonist Precede the Onset of Type 2 Diabetes [J].
Herder, Christian ;
Brunner, Eric J. ;
Rathmann, Wolfgang ;
Strassburger, Klaus ;
Tabak, Adam G. ;
Schloot, Nanette C. ;
Witte, Daniel R. .
DIABETES CARE, 2009, 32 (03) :421-423
[24]   Inhibitory effect of pine extract on α-glucosidase activity and postprandial hyperglycemia [J].
Kim, YM ;
Jeong, YK ;
Wang, MH ;
Lee, WY ;
Rhee, HI .
NUTRITION, 2005, 21 (06) :756-761
[25]   Hypoglycemic agents and potential anti-inflammatory activity [J].
Kothari, Vishal ;
Galdo, John A. ;
Mathews, Suresh T. .
JOURNAL OF INFLAMMATION RESEARCH, 2016, 9 :27-38
[26]   Endogenous Activation of Glucokinase by 6-Phosphofructo-2-Kinase/Fructose-2,6-Bisphosphatase Is Glucose Dependent [J].
Langer, Sara ;
Kaminski, Martin T. ;
Lenzen, Sigurd ;
Baltrusch, Simone .
MOLECULAR ENDOCRINOLOGY, 2010, 24 (10) :1988-1997
[27]   Experimental and computational approaches to estimate solubility and permeability in drug discovery and development settings (Reprinted from Advanced Drug Delivery Reviews, vol 23, pg 3-25, 1997) [J].
Lipinski, CA ;
Lombardo, F ;
Dominy, BW ;
Feeney, PJ .
ADVANCED DRUG DELIVERY REVIEWS, 2001, 46 (1-3) :3-26
[28]   Glucokinase Activators for Diabetes Therapy May 2010 status report [J].
Matschnsky, Franz M. ;
Zelent, Bogumil ;
Doliba, Nicolai ;
Li, Changhong ;
Vanderkooi, Jane M. ;
Naji, Ali ;
Sarabu, Ramakanth ;
Grimsby, Joseph .
DIABETES CARE, 2011, 34 :S236-S243
[29]   HOMEOSTASIS MODEL ASSESSMENT - INSULIN RESISTANCE AND BETA-CELL FUNCTION FROM FASTING PLASMA-GLUCOSE AND INSULIN CONCENTRATIONS IN MAN [J].
MATTHEWS, DR ;
HOSKER, JP ;
RUDENSKI, AS ;
NAYLOR, BA ;
TREACHER, DF ;
TURNER, RC .
DIABETOLOGIA, 1985, 28 (07) :412-419
[30]  
Memon A. G, 2016, J CARDIOVASCULAR DIS, V4, DOI [10.4172/2329-9517.1000243, DOI 10.4172/2329-9517.1000243]