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¾ËÄÚ¿ÃÀ» Åõ¿©ÇÑ ÈòÁãÀÇ ¾ËÄÚ¿Ã ´ë»ç¿¡ ¹ÌÄ¡´Â ÇѾàÀç È¥ÇÕÃßÃâ¹°ÀÇ ¿µÇâ The effect of herbal mixture on alcohol metabolism in Sprague Dawley rats

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Á¤¹ÌÁø ( Jeong Mi-Jin ) 
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±è¼Ò¿µ ( Kim So-Young ) 
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µµÀºÁÖ ( Do Eun-Ju ) 
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À±Á¾±¹ ( Yun Jong-Kuk ) 
(Àç)´ë±¸Å×Å©³ëÆÄÅ© Çѹæ»ê¾÷Áö¿ø¼¾ÅÍ
±è´ëÀÍ ( Kim Dae-Ik ) 
(Àç)´ë±¸Å×Å©³ëÆÄÅ©¹ÙÀÌ¿À»ê¾÷Áö¿ø¼¾ÅÍ
ÇÑ°æ¼ö ( Han Kyung-Soo ) 
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±è¹Ì·Á ( Kim Mi-Ryeo ) 
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Abstract


Objectives : Alcohol hangover is a common phenomenon which basically occurs after heavy drinking. Moreover, heavy alcohol consumption leads to acute and chronic diseases. We investigated the effect of herbal mixture (SJ) on alcohol metabolism in serum or/and liver.

Methods : 5W-old Sprague Dawley rats were used for the study. To overnight fasted rats, 0.9% saline or SJ extract was administrated per os before alcohol treatment. Then, 40% alcohol was orally administrated to all rats in 30 mins. Ethanol, acetaldehyde concentrations, alcohol dehydrogenase (ADH), acetaldehyde dehydrogenase (ALDH) activities were measured by assay kits. Aspartate aminotransferase (AST) and alanine transaminase (ALT) were measured by analyzer.

Results : Ethanol and acetaldehyde concentrations lowered in SJ groups compared with CON group. Especially, acetaldehyde concentration significantly decreased in SJ groups compared with CON group. AST and ALT levels tended to increase in SJ groups compared with CON group but there was no significant difference between CON group and SJ groups. ADH activity in serum was higher in SJ groups than CON group but no significant difference in liver. ALDH activity in both serum and liver showed significantly increased in SJ groups compared with CON group.

Conclusions : Treatment of SJ extract showed not only reducing concentration of alcohol and acetaldehyde but also increasing activities of ADH and ALDH. These results suggest SJ may influence in alcohol metabolism via control of metabolic enzyme activities and metabolite. Therefore, SJ, herbal mixture, might have a function of preventing hangover after drinking alcohol.

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Alcohol metabolism; ethanol; acetaldehyde; ADH; ALDH

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