| Literature DB >> 24093976 |
Samidha A Kalekar1, Renuka P Munshi, Urmila M Thatte.
Abstract
BACKGROUND: Both experimental and clinical studies suggest that oxidative stress plays a major role in the pathogenesis of both types of diabetes mellitus. This oxidative stress leads to β-cell destruction by apoptosis. Hence exploring agents modulating oxidative stress is an effective strategy in the treatment of both Type I and Type II diabetes. Plants are a major source of anti-oxidants and exert protective effects against oxidative stress in biological systems. Phyllanthus emblica, Curcuma longa and Tinospora cordifolia are three such plants widely used in Ayurveda for their anti-hyperglycemic activity. Additionally their anti-oxidant properties have been scientifically validated in various experimental in vitro and in vivo models. Hence the present in vitro study was planned to assess whether the anti-hyperglycemic effects of the hydro-alcoholic extracts of Phyllanthus emblica (Pe) and Curcuma longa (Cl) and aqueous extract of Tinospora cordifolia (Tc) are mediated through their antioxidant and/or anti-apoptotic property in a streptozotocin induced stress model.Entities:
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Year: 2013 PMID: 24093976 PMCID: PMC3852064 DOI: 10.1186/1472-6882-13-257
Source DB: PubMed Journal: BMC Complement Altern Med ISSN: 1472-6882 Impact factor: 3.659
Figure 1Effect of selected medicinal plants on MDA release from RINm5F cells in the absence (A,B,C) and presence (D,E,F) of STZ.
Effect of selected medicinal plants on apoptosis induced by STZ in RINm5F cells
| Cell control | 8.18 ± 1.41 | 52.46 ±6.99 | 26.419 ±2.56 |
| Cells + | 11.81 ±2.98 | 52.03 ±17.41 | 27.51 ± 9.19 |
| Cells + | 11.51 ±2.98 | 51.25 ±3.22 | 27.75 ±3.53 |
| Cells + | 16.03 ±4.52* | 48.01 ±8.50 | 25.60 ±4.66 |
| Cells + | 17.39 ±1.82 | 49.05 ±5.53 | 25.97 ±1.96 |
| Cells + | 18.33 ±1.62* | 45.79 ±3.17 | 28.47 ±1.99 |
| Cells + | 20.63 ±1.60*** | 44.01 ±2.35 | 26.29 ±1.58 |
| Cells + STZ | 25.48 ± 3.77*** | 39.13 ±6.69* | 36.18 ±8.48 |
| Cells + | 19.25 ±3.45 | 41.25 ±6.69 | 31.02 ±8.75 |
| Cells + | 15.29 ±4.05$$$ | 37.86 ±6.77 | 34.75 ±8.34 |
| Cells + | 11.77 ±2.31$$$ | 45.28 ±5.61 | 29.13 ±7.98 |
| Cells + | 16.04 ±1.42$$$ | 38.65 ±3.43 | 35.40 ±2.99 |
| Cells + | 18.34 ±1.23$ | 36.89 ±4.33 | 29.86 ±5.26 |
| Cells + | 23.35 ±1.80 | 36.90 ±4.15 | 30.29 ±4.29 |
| Cell control | 9.58 ± 2.48 | 56.03 ± 2.65 | 25.51 ± 2.05 |
| Cells + | 11.05 ± 2.89 | 51.28 ± 3.32 | 26.82 ± 4.27 |
| Cells + | 10.36 ± 3.94 | 51.24 ± 2.88 | 28.41 ± 3.41 |
| Cells + | 10.94 ± 3.78 | 51.75 ± 5.09 | 28.81 ± 4.81 |
| Cells + | 12.98 ± 2.72 | 46.02 ± 7.77 | 30.61 ± 1.71 |
| Cells + | 14.7 ± 2.06 | 48.61 ± 4.63 | 31.94 ± 2.61 |
| Cells + STZ | 23.37 ± 4.51*** | 41.38 ± 7.44 | 32.21 ± 6.86 |
| Cells + | 17.14 ± 4.75$$ | 41.94 ± 5.02 | 31.21 ± 8.91 |
| Cells + | 15.77 ± 5.13$$$ | 40.82 ± 2.87 | 32.73 ± 7.59 |
| Cells + | 12.74 ± 3.07$$ | 44.60 ± 3.09 | 29.62 ± 7.73 |
| Cells + | 18.74 ± 2.44 | 42.42 ± 1.93 | 35.47 ± 1.38 |
| Cells + | 19.13 ± 3.99 | 40.18 ± 3.48 | 32.40 ± 1.67 |
| Cell control | 5.87 ± 1.70 | 53.22 ± 11.81 | 26.98 ± 7.17 |
| Cells + | 7 ± 1.57 | 57.79 ± 13.81 | 23.90 ± 6.57 |
| Cells + | 5.92 ± 1.91 | 59.32 ± 13.48 | 23.98 ± 7.96 |
| Cells + | 7.12 ± 2.22 | 57.12 ± 12.35 | 24.58 ± 7.44 |
| Cells + | 7.62 ± 2.17 | 57.13 ± 3.45 | 25.73 ± 6.11 |
| Cells + | 7.07 ± 2.44 | 60.44 ± 3.89 | 20.03 ± 5.79 |
| Cells + | 10.16 ± 5.27 | 56.95 ± 2.47 | 28.68 ± 0.69 |
| Cells + STZ | 24.69 ± 2.19*** | 40.01 ± 9.17* | 26.28 ± 1.67 |
| Cells + | 26.69 ± 1.34 | 51.35 ± 6.22 | 18.73 ± 8.09 |
| Cells + | 25.86 ± 1.83 | 35.08 ± 10.81 | 34.82 ± 6.61 |
| Cells + | 21.65 ± 3.34 | 43.86 ± 9.22 | 25.21 ± 8.91 |
| Cells + | 16.77 ± 3.65$$ | 43.48 ± 2.13 | 31.36 ± 3.86 |
| Cells + | 14.16 ± 1.69$ | 42.86 ± 6.94 | 28.54 ± 6.12 |
| Cells + | 14.05 ± 1.80$$ | 48.64 ± 1.3 | 36.12 ± 1.78 |
| Cell control | 11.87 ± 3.70 | 53.22 ± 11.81 | 26.98 ± 7.17 |
| Cells + | 12.6 ± 2.39 | 49.79 ± 9.11 | 26.87 ± 6.33 |
| Cells + STZ | 28.5 ± 8.85*** | 40.24 ± 6.71* | 28.42 ± 8.30 |
| Cells + STZ + | 19.91 ± 5.05$ | 47.3 ± 5.92 | 25.84 ± 3.12 |
RINm5F cells were treated with different concentrations of plants extracts in presence and absence of STZ. Apoptosis was measured using cell cycle analysis from the DNA histograms generated on the Flow Cytometer followed by PI staining. All values are indicative of Mean ± SD. *p < 0.05;***p < 0.001 as compared to Untreated cells, $p < 0.05; $$p < 0.01; $$$p < 0.001 as compared to STZ treated cells. (ANOVA followed by post hoc test).
Figure 2DNA Histograms of RINm5F cells treated with selected plants in presence and absence of STZ. RINm5F cells were treated with different concentrations of plants extracts in presence and absence of STZ. Apoptosis was measured using cell cycle analysis from the DNA histograms generated on the Flow Cytometer followed by PI staining. All values are indicative of Mean ± SD. **p < 0.01;***p < 0.001 as compared to Untreated cells, $p < 0.05; $$p < 0.01; as compared to STZ untreated cells. (ANOVA followed by post hoc test).
Figure 3Effect of Phyllanthus emblica on Insulin release from RINm5F cells in presence and absence of STZ.
Figure 4Effect of Curcuma longa on Insulin release from RINm5F cells in presence and absence of STZ.
Figure 5Effect of Tinospora cordifolia on Insulin release from RINm5F cells in presence and absence of STZ.