ANTI-DIABETIC EFFECT OF 70% ETHANOL EXTRACT OF Anredera cordifolia (Teen) Stennis (BINAHONG) LEAVES ON GLUCOSE TRANSPORTER 4 (GLUT4) AND PEROXISOME PROLIFERATOR-ACTIVATED RECEPTOR GAMMA (PPAR-γ) GENES EXPRESSION IN 3T3-L1 ADIPOCYTE CELLS
Abstract
The evidence of Anredera cordifolia (Binahong) as anti-diabetic at molecular stage has not been elucidated. Present study, we investigate the antidiabetic potential of Binahong by evaluating its effect on two diabetic gene markers expression, Translocation of Glucose Transporter 4 (GLUT4) and Peroxisome Proliferator-Activated Receptor Gamma (PPAR-γ) in 3T3-L1 adipocytes. The investigation has been done by semi quantitative real time PCR. Our finding shown, the GLUT4 MRNA levels were dose dependent excess in adipose treated by 6.25-12.5 mg/ml of 70% Binahong ethanol extract. Though, at 50 mg/ml dose, the GLUT4 expression was up down to 1.2 fold. In addition, the pattern of PPAR-γ MRNA levels in 3T3-L1 were almost same. Every Binahong extracts gave increment on PPAR-γ MRNA levels except 3.125, 6.25, and 50 mg/ml doses. In undifferentiated adipocytes, GLUT4 and PPAR-γ mRNA were barely expressed. The up regulation of those MRNA levels probably occurred because of Binahong has an active compound. However, it is not yet known which compounds who regulate the expression and induces translocation of GLUT4. We hypothesis that it acts as ligand for the PPAR-γ transcriptional factor which activates the GLUT4 transcription and plays orchestra in glucose homeostasis at molecular level.
Keywords
Full Text:
PDFReferences
Azahari N, Khattak MMAK, Taher M, Ichwan SJA. 2015. Herbal extracts exhibit anti-diabetic activities in 3T3-L1 adipocytes model. Prog Nutr 17(4):301–10.
Cao H, Graves DJ, Anderson RA. 2010. Cinnamon extract regulates glucose transporter and insulin-signaling gene expression in mouse adipocytes. Phytomedicine 17(13):1027–32.
Djamil R, Winarti W, Zaidan S, Abdillah S. 2017. Antidiabetic Activity of Flavonoid from Binahong Leaves ( Anredera cordifolia ) Extract in Alloxan Induced Mice. Journal of Pharmacognosy and Natural Products 3(2):2–5.
Fidrianny I, Ruslan Wirasutisna K, Amanda P. 2013. Senyawa Antioksidan dari Ekstrak Etil Asetat Daun Binahong (Anredera cordifolia (Ten.) Steenis) dari Babakan Ciparay, Bandung Selatan, Indonesia. Acta Pharm Indones 26(1):26–30.
Garmana AN, Sukandar EY, Fidrianny I. 2016. Preliminary study of blood pressure lowering effect of Anredera cordifolia (Ten.) steenis) on Wistar rats. Int J Pharmacogn Phytochem Res 8(2):300–4.
Hajiaghaalipour F, Khalilpourfarshbafi M, Arya A. 2015. Modulation of Glucose Transporter Protein by Dietary Flavonoids in Type 2 Diabetes Mellitus. Int J Biol Sci 11(5):508–24.
Leliqia NPE, Sukandar EY, Fidrianny I. 2017. Overview of efficacy, safety and phytochemical study of anredera cordifolia (Ten.) steenis. Pharmacologyonline 1:124–31.
Makalalag IW, Wullur A. Uji Ekstrak Daun Binahong ( Anredera cordifolia Steen .) Terhadap kadar Gula Darah Pada Tikus Putih Jantan Galur Wistar ( Rattus norvegicus ) yang Diinduksi Sukrosa. Pharmacon 2(1):28–35.
Mulia K, Muhammad F, Krisanti E. 2017. Extraction of vitexin from binahong (Anredera cordifolia (Ten.) Steenis) leaves using betaine - 1,4 butanediol natural deep eutectic solvent (NADES). AIP Conf Proc: 1823.
Muzaffar M, Khan A, Taher M, Jauhari S, Ichwan A, Azahari N. 2013. Selected Herbal Extracts Improve Diabetes Associated Factors in 3T3-L1 Adipocytes. Procedia - Soc Behav Sci 91:357–75.
Nugent C, Prins JB, Whitehead JP, Savage D, Wentworth JM, Chatterjee VK, et al. 2001. Potentiation of glucose uptake in 3T3-L1 adipocytes by PPAR gamma agonists is maintained in cells expressing a PPAR gamma dominant-negative mutant: evidence for selectivity in the downstream responses to PPAR gamma activation. Mol Endocrinol 15(10):1729–38.
Nugroho AE, Andrie M, Warditiani NK, Siswanto E, Pramono S. 2012. Antidiabetic and antihiperlipidemic effect of Andrographis paniculata ( Burm . f .) Nees and andrographolide in high-fructose-fat-fed rats. Indian Journal of Pharmacology 44(3):377–82.
Ratna D, Wahyudi P, Wahono S, Heri A. 2008. Phytochemical and Biological Screening of Anredera cordifolia ( Ten ) Steenis Leaves using Artemia salina ( Brine Shrimp Test ). The 2nd Penang International Conference For Young Chemists:18–20.
Seabi IM, Motaung SCKM, Ssemakalu CC, Mokgotho MP, Mogale AM, Shai LJ. 2016. Effects of Cassia abbreviata Oliv and Helinus integrifolius ( Lam .) Kuntze on Glucose Uptake , GLUT-4 Expression and Translocation in Muscle ( C2C12 Mouse Myoblasts ) Cells. International Journal of Pharmacognosy and Phytochemical Research 8(6):1003–9.
Sukandar EY, Fidrianny I, Adiwibowo LF. 2011. Efficacy of ethanol extract of anredera cordifolia (ten) steenis leaves on improving kidney failure in rats. Int J Pharmacol 7(8):850–5.
Sukandar EY, Kurniati NF, Nurdianti AN. 2016. Antiobesity effect of ethanol extract of Anredera cordifolia (Ten) steenis leaves on obese male wistar rats induced by high-carbohydrate diet. Int J Pharm Pharm Sci 8(4):171–3.
Sukandar EY, Qowiyyah A, Larasari, Lady. 2011. Effect of Methanol Extract Hearthleaf Madeiravine ( Anredera cordifolia ( Ten .) Steenis ) Leaves on Blood Sugar in Diabetes mellitus Model Mice. Jurnal Medikal Planta 1(4):1–10.
Vinayagam R, Xu B. 2015. Antidiabetic properties of dietary flavonoids : a cellular mechanism review. Nutr Metab 12(60):1–20.
Vishnu Prasad CN, Anjana T, Banerji A, Gopalakrishnapillai A. 2010. Gallic acid induces GLUT4 translocation and glucose uptake activity in 3T3-L1 cells. FEBS Letters 584(3):531–6.
Yang Z, Hong LK, Follett J, Wabitsch M, Hamilton NA, Collins BM, et al. 2016. Functional characterization of retromer in GLUT4 storage vesicle formation and adipocyte differentiation. FASEB J 30(3):1037–50.
Zebisch K, Voigt V, Wabitsch M, Brandsch M. 2012. Protocol for effective differentiation of 3T3-L1 cells to adipocytes. Anal Biochem 425(1):88–90.
Zhang J, Tang H, Zhang Y, Deng R, Shao LI, Liu YUN, et al. 2014. Identification of suitable reference genes for quantitative RT-PCR during 3T3-L1 adipocyte differentiation. Int J Mol Med 33:1209–18.
DOI: http://dx.doi.org/10.14203/ann.bogor.2021.v25.n1.1-7
Refbacks
- There are currently no refbacks.
Copyright (c) 2022 ANNALES BOGORIENSES

This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
Annales Bogorienses Indexed by :
Statistic Visitors



