| Literature DB >> 16322811 |
Youngsoo Han1, Soo-Jung Son, Medea Akhalaia, Alexander Platonov, Hyeog-Jin Son, Kee-Ho Lee, Yeon-Sook Yun, Jie-Young Song.
Abstract
There are numerous studies to indicate that irradiation induces reactive oxygen species (ROS), which play an important causative role in radiation damage of the cell. We evaluated the effects of ginsan, a polysaccharide fraction extracted from Panax ginseng, on the gamma-radiation induced alterations of some antioxidant systems in the spleen of Balb/c mice. On the 5th day after sublethal whole-body irradiation, homogenized spleen tissues of the irradiated mice expressed only marginally increased mRNA levels of Mn-SOD (superoxide dimutase) in contrast to Cu/Zn-SOD, however, catalase mRNA was decreased by approximately 50% of the control. In vivo treatment of non-irradiated mice with ginsan (100 mg kg(-1), intraperitoneal administration) had no significant effect, except for glutathione peroxidase (GPx) mRNA, which increased to 144% from the control. However, the combination of irradiation with ginsan effectively increased the SODs and GPx transcription as well as their protein expressions and enzyme activities. In addition, the expression of heme oxygenase-1 and non-protein thiol induced by irradiation was normalized by the treatment of ginsan. Evidence indicated that transforming growth factor-beta and other important cytokines such as IL-1, TNF and IFN-gamma might be involved in evoking the antioxidant enzymes. Therefore, we propose that the modulation of antioxidant enzymes by ginsan was partly responsible for protecting the animal from radiation, and could be applied as a therapeutic remedy for various ROS-related diseases.Entities:
Year: 2005 PMID: 16322811 PMCID: PMC1297496 DOI: 10.1093/ecam/neh123
Source DB: PubMed Journal: Evid Based Complement Alternat Med ISSN: 1741-427X Impact factor: 2.629

DPPH radical scavenging activity of ginsan at different concentrations. Data are shown as means ± SEM of triplicate measurements. +P < 0.05 and ★P < 0.005 with respect to normal control values.
Pairs of synthetic primers used in RT–PCR
| Oligonuleotides | Sequence | Expected size |
|---|---|---|
| IL-12 | 5′-primer 5′-ACCTCAGTTTGGCCAGGGTC-3′ | 500 |
| 3′-primer 5′-GTCACGACGCGGGTGGTGAAG-3′ | ||
| IFN-γ | 5′-primer 5′-TACTGCCACGGCACAGTCATTGAA-3′ | 405 |
| 3′-primer 5′-GCAGCGACTCCTTTTCCGCTTCCT-3′ | ||
| IL-1β | 5′-primer 5′-TGAAGGGCTGCTTCCAAACCTTTGACC-3′ | 361 |
| 3′-primer 5′-TGTCCATTGAGGTGGAGAGCTTTCAGC-3′ | ||
| TNF-α | 5′-primer 5′-GCGACGTGGAACTGGCAGAAG-3′ | 340 |
| 3′-primer 5′-TCCATGCCGTTGGCCAGGAGG-3′ | ||
| Mn-SOD | 5′-primer 5′-GCACATTAACGCGCAGATCA-3′ | 241 |
| 3′-primer 5′-AGCCTCCAGCAACTCTCCTT-3′ | ||
| Cu/Zn-SOD | 5′-primer 5′-AAGGCCGTGTGCGTGCTGAA-3′ | 246 |
| 3′-primer 5′-CAGGTCTCCAACATGCCTCT-3′ | ||
| Catalase | 5′-primer 5′-GCAGATACCTGTGAACTGTC-3′ | 229 |
| 3′-primer 5′-GTAGAATGTCCGCACCTGAG-3′ | ||
| GPx | 5′-primer 5′-CCTCAAGTACGTCCGACCTG-3′ | 197 |
| 3′-primer 5′-GTAGAATGTCCGCACCTGAG-3′ | ||
| HO-1 | 5′-primer 5′-AACAAGCAGAACCCAGTC-3′ | 375 |
| 3′-primer 5′-TGTCATCTCCAGAGTGTTC-3′ | ||
| TGF-β1 | 5′-primer 5′-GCTCACTGCTCTTGTGACAGCAAAG-3′ | 360 |
| 3′-primer 5′-CAAGGACCTTGCTGTACTGTGTGTC-3′ | ||
| β-actin | 5′-primer 5′-TGGAATCCTGTGGCATCCATGAAAC-3′ | 349 |
| 3′-primer 5′-TAAAACGCAGCTCAGTAACAGTCCG-3′ |

Transcriptional modulation of important redox enzymes by ginsan. (A) Representative RT–PCR-amplified mRNA transcripts of Mn-SOD, Cu/Zn-SOD, catalase and GPx in spleen on the 5th day after 4.5 Gy irradiation. Total tissue RNA was extracted, reverse transcribed and subjected to PCR. The products were electrophoresed on 1% agarose gel with ethidium bromide. (B) Data are represented as the percentage of normal control levels and represent mean ± SEM of values obtained from three experiments. C, control group; G, 100 mg kg−1 of ginsan-treated group; IR, irradiated froup; IR + G, group treated with 100mg kg−1 of ginsan and radiation. ★P < 0.05 and ★★P < 0.001 with respect to normal control values. ++P < 0.001 compared with irradiated controls.

Western blot analysis of redox proteins in spleen treated with or without ginsan. (A) Samples containing 30 mg of proteins of spleen lysates from indicated experimental group were assessed by western blot analysis for Mn-SOD, Cu/Zn-SOD, catalase and GPx as described in Materials and Methods. (B) Data are represented as the percentage of normal control levels and represent mean ± SEM of values obtained from three experiments. See legend to Fig. 2. ★P < 0.05 and ★★P < 0.001 with respect to normal control values. +P < 0.01, ++P < 0.001 compared with irradiated controls.

Induction of ROS scavenging enzyme activities by ginsan in irradiated mice. Activities of SOD, catalase and GPx were determined on lysates of spleen (five mice per group) as described in Materials and Methods. Results are expressed as means ± SEM of three independent experiments. See legend to Fig. 2. ★P < 0.05 and ★★P < 0.001 with respect to normal control values. +P < 0.001 compared with irradiated controls.

The modulating effect of ginsan on HO activity and NPSH content partially through downregulation of TGF-β. (A) HO-1 and TGF-β mRNA expressions are shown in each spleen indicated on 5th day after 4.5 Gy irradiation. (B) HO-1 activity and NP-SH concentration were determined as described in Materials and Methods. Five mice were used in each group. Results are represented as means ± SEM of three replicate experiments. See legend to Fig. 2. *P < 0.01, **P < 0.001 compared with controls.