ORIGINAL ARTICLEPharmacognosy ResearchVol. 6 | Issue 4 | 2014 | pp. 292–296Open access
Amelioration of insulin resistance by Rk1 + Rg5 complex under endoplasmic reticulum stress conditions
- 1,
- 1,
- 1,
- 1,
- 1,
- 1,
- 1*
- 1 Department of Oriental Medicinal Materials and Processing, Kyung Hee University, Suwon, Korea
Published in Pharmacognosy Research
Correspondence: Deok-Chun Yang
Department of Oriental Medicinal Materials and Processing, Kyung Hee University, Suwon, Korea
Email: deokchunyang@yahoo.co.kr
Copyright: © 2014 Manuscript Technomedia. This is an open access article.
- Published:
- Jan 1, 2014
How to cite
Ponnuraj, S. P., Siraj, F., Kang, S., Noh, H. Y., Min, J. W., Kim, Y. J., & Yang, D. C. (2014). Amelioration of insulin resistance by Rk1 + Rg5 complex under endoplasmic reticulum stress conditions. Pharmacognosy Research, 6(4), 292–296. https://doi.org/10.4103/0974-8490.138257
Abstract
Background
Diabetes mellitus is a metabolic syndrome exaggerated by stress conditions. Endoplasmic reticulum stress (ERS) impairs the insulin signaling pathway making the diabetic conditions worsen. Pharmacological agents are supplied externally to overcome this malfunction. Ginsenosides from Panax ginseng C.A Meyer possesses many pharmacological properties and are used for the treatment of diabetes.
Objective
To investigate the effects of the Rk1+Rg5 complex on the amelioration of insulin resistance in 3T3-L1 cells under endoplasmic reticulum stress conditions.
Materials and Methods
Heat-processed ginseng extracts are found to contain many pharmacologically active ginsenosides. Among them Rk1+Rg5 is found to be present in higher concentrations than the other minor ginsenosides. The Rk1+Rg5 complex was tested for its effect in the 3T3-L1 insulin-resistant model and subjected to the MTT assay, glucose oxidase assay and gene expression studies using RT-PCR and real-time PCR under endoplasmic reticulum stress conditions.
Results
Rk1+Rg5 treatment is found to increase the glucose uptake into the cells when compared to that of a positive control (tunicamycin treatment group, TM). Further we have analyzed the role at gene expression level. The Rk1+Rg5 complex was found to show an effect on the IGF 2R receptor, CHOP-10, and C/EBP gene at a particular treated concentration (50 μM). Moreover, stress condition (about 50% decreases) was overcome by the ginsenoside treatments at 50 μM.
Conclusion
The present results showed that under endoplasmic reticulum stress conditions Rk1+Rg5 complex exhibits a potential protective role in insulin-resistant 3T3-L1 cells.
Keywords
Subject
Article metadata
| Title | Amelioration of insulin resistance by Rk1 + Rg5 complex under endoplasmic reticulum stress conditions |
|---|---|
| Authors | Shree Priya Ponnuraj; Fayeza Siraj; Sera Kang; Hae Yong Noh; Jin-Woo Min; Yeon-Ju Kim; Deok-Chun Yang |
| Affiliations | Department of Oriental Medicinal Materials and Processing, Kyung Hee University, Suwon, Korea |
| Corresponding author | deokchunyang@yahoo.co.kr |
| Journal | Pharmacognosy Research |
| Volume / Issue | Vol. 6, Issue 4 (2014) |
Also in this issue
- Antihyperlipidemic potential of Albizia amara (Roxb) Boiv. bark against Triton X-100 induced hyperlipidemic condition in ratspp. 267–273
- Antiallergic effect of an aqueous leaf extract of Pistia stratiotes in murine model of ovalbumin-induced allergic conjunctivitispp. 274–279
- Antimalarial activity of Malaysian Plectranthus amboinicus against Plasmodium bergheipp. 280–284
- A Study of the Protective Effect of Triticum aestivum L. in an Experimental Animal Model of Chronic Fatigue Syndromepp. 285–291
- Effects of L-citrulline diet on stress-induced cold hypersensitivity in micepp. 297–302
Readers Also Viewed
Development and Validation of UV/visible Spectrophotometric Method for Estimation of Piroxicam from Bulk and Formulation
Sandip Mohan Honmane, Kunal Rajaram Yadav, Yuvraj Dilip Dange
Apr 23, 2025
Effects of Artificial Intelligence on Academic Performance of Library and Information Science University Students: A Meta-Analysis (2023-2025)
Kayode Sunday John Dada
Aug 6, 2026
Bridging Innovation and Impact: A Multidisciplinary Approach to Contemporary Research Challenges
Mueen Ahmed KK
Aug 11, 2026