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Protective Effect of Green Tea Extract and EGCG on Ethanol-induced Cytotoxicity and DNA Damage in NIH/3T3 and HepG2 Cells

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์ตœ์ดˆ๋“ฑ๋ก์ผ 2023.04.05 ์ตœ์ข…์ ฟ’์ž‘์ผ 2016.02
7P ๋ฏธ๋้ฉ๋ณด๊ธฐ
Protective Effect of Green Tea Extract and EGCG on Ethanol-induced Cytotoxicity and DNA Damage in NIH/3T3 and HepG2 Cells
  • * ๋ณธ ๋ฌธ์„œ๋Š” ๋ฐฐํฌ์šฉ์œผ๋กœ ๋ณต์‚ฌ ๋ฐ ํŽธ์ง‘์ด ๋ถˆ๊ฐ€ํ•ฉ๋‹ˆ๋‹ค.

    ๋ฏธ๋้ฉ๋ณด๊ธฐ

    ์„œ์่ง์ •๋ต–

    ยท ๋ฐœํ–‰๊ธฐ๊ด€ : ํ•œ๊ตญ์‹ํ’ˆ์œ„์ƒ์•ˆ์ „์„ฑํ•™ํšŒ
    ยท ์ˆ˜๋ก์ง€ ์ •๋ณด : ํ•œ๊ตญ์‹ํ’ˆ์œ„์ƒ์•ˆ์ „์„ฑํ•™ํšŒ์ง€ / 31๊ถŒ / 1ํ˜ธ
    ยท ์ €์ž๋ช… : Nam Yee Kim, Hyun Pyo Kim, Moon Young Heo

    ๋ชฉ์ฐจ

    Materials and Methods
    Chemicals
    Cell culture
    Ethanol-induced cell cytotoxicity
    DNA damage (Comet assay)
    Free radical scavenging effect
    LDL oxidation
    Formation of 8-OH-2'-deoxyguanosine (8-OH-2'dG)
    Statistical analysis
    Results
    Ethanol-induced cytotoxicity and protection of GTE
    Ethanol-induced DNA damage and protection of GTE
    The anti-oxidative and anti-genotoxic effects of GTEand EGCG
    The anti-oxidative and anti-genotoxic effects of commercialgreen tea liquor
    Discussion
    ๊ตญ๋ๅฉ์š”์•ฝ
    Acknowledgements
    References

    ์ดˆ๋ก

    ๋ณธ ์—ฐ๊ตฌ์˜ ๋ชฉ์ ์€ NIH3T3์™ฟ’ HepG2 ์„ธํฌ์—์„œ ์—ํƒ„์˜ฌ์œ ๋„ ์„ธํฌ๋…์„ฑ ๋ฐ ์œ ์ „๋…์„ฑ์— ๋Œ€ํ•˜์—ฌ ๋…น์ฐจ์—‘๊ธฐ์Šค(GTE)์™ฟ’ epigallocatechin-3-gallate (EGCG)์˜ ๋ณดํ˜ธ์ž‘์šฉ์„ ํ‰๊ฐ€ํ•˜๋Š”๋ฐ ์žˆ๋‹ค. ์„ธํฌ์ƒ์กด์œจ์€ MTT assay๋ฅผ ์‹ค์‹œํ•˜์˜€์œผ๋ฉฐ DNA ์†์ƒ๋„๋Š” Comet assay๋กœ ์‹ค์‹œํ•œ ๊ฒฐ๊ณผ ์—ํƒ„์˜ฌ์€ ๋†๋„์˜์กด์ ์ธ ์„ธํฌ๋…์„ฑ๊ณผ ์œ ์ „๋…์„ฑ์„ ๋‚˜ํƒ€๋‚ด์—ˆ๋‹ค. ํ•œํŽธ GTE์™ฟ’ EGCG๋Š” ์—ํƒ„์˜ฌ ์œ ๋„ ์„ธํฌ๋…์„ฑ ๋ฐ DNA ์†์ƒ์— ๋Œ€ํ•˜์—ฌ ์œ ์˜์„ฑ ์žˆ๋Š” ์–ต์ œํšจ๊ณผ๋ฅผ ๋‚˜ํƒ€๋‚ด์—ˆ์œผ๋ฉฐ DPPH์‹œํ—˜๊ณผ LDL oxidation ๋ฐ 8OH-2``dG ์ƒ์„ฑ์‹œํ—˜์—์„œ ํ•ญ์‚ฐํ™”ํšจ๊ณผ๋ฅผ ๋‚˜ํƒ€๋‚ด์—ˆ๋‹ค. ํ•œํŽธ ๋…น์ฐจ์„ฑ๋ถ„ ํ•จ์œ  ์‹œํŒ ๋ฆฌํ๋ฅด์ฃผ๋„ ์ˆœ์ˆ˜ ์—ํƒ„์˜ฌ์— ๋น„ํ•˜์—ฌ ์„ธํฌ๋…์„ฑ์–ต์ œ ๋ฐ DNA ์†์ƒ์–ต์ œํšจ๊ณผ๋ฅผ ๋‚˜ํƒ€๋‚ด์—ˆ๋‹ค. ์ด์ƒ์˜ ์‹œํ—˜๊ฒฐ๊ณผ GTE์™ฟ’ ํ•จ์œ  EGCG๋Š” ํ•ญ์‚ฐํ™”์„ฑ ์œ ์ „๋…์„ฑ์–ต์ œ๊ธฐ์ „์„ ํ†ตํ•œ ์—ํƒ„์˜ฌ๋…์„ฑ์ €๊ฐ ๋ฌผ์งˆ๋กœ ํŒ๋‹จ๋œ๋‹ค.

    ์˜์–ด์ดˆ๋ก

    In the present study, our aim was to determine whether green tea extract (GTE) and its major constituent, epigallocatechin-3-gallate (EGCG) have a protective effect on ethanol-induced cytotoxicity and DNA damage in NIH/3T3 and HepG2 cells. The cell viability and DNA single strand breaks were examined by MTT assay and alkaline single cell gel electrophoresis (Comet assay), respectively. Ethanol decreased the cell viability and also increased DNA single strand breaks in a concentration-dependent manner. On the other hand, GTE showed the protective effect of cytotoxicity and DNA damage induced by ethanol in both cell lines. GTE and EGCG, were found to possess the anti-oxidative and anti-genotoxic activities by evaluation with DPPH test, LDL oxidation assay, oxidative DNA damage assay and 8OH-2'dG generation test. These results were also verified by the experimental results demonstrating the lower cytotoxicity and genotoxicity of commercial green tea liqueur compared to pure ethanol in same concentration. Thus it is concluded that the supplementation of GTE or EGCG may mitigate the ethanol-induced cytotoxicity and DNA damage.

    ์ฐธ๊ณ ์ž๋ฃŒ

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