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식이지방산 종류가 운동 시 조직 내 pro-및 macro-glycogen의 동원 및 재합성에 미치는 영향
이 논문은 한국연구재단(NRF, National Research Foundation of Korea)이 지원한 연구과제( 식이 지방산 섭취형태에 따른 운동시 근내 pro- 및 macro-glycogen의 동원 및 재합성에 미치는 영향 | 2003 년 박사후연수과정지원 신청요강 다운로드 PDF다운로드 | 이종삼(전북대학교) ) 연구결과물 로 제출된 자료입니다.
한국연구재단 인문사회연구지원사업을 통해 연구비를 지원받은 연구자는 연구기간 종료 후 2년 이내에 최종연구결과물로 학술논문 또는 저역서를 해당 사업 신청요강에서 요구하는 수량 이상 제출하여야 합니다.(*사업유형에 따라 최종연구결과물 제출 조건이 다를 수 있음.)
  • 연구자가 한국연구재단 연구지원시스템에 직접 입력한 정보입니다.
저널명 한국영양학회지 - 등재 (ISSN : 0367-6463) 외부링크
발행정보 2007년 04월 01일 / Vol.40 No.3 / pp. 211 ~ 220
발행처/학회 한국영양학회
주저자 이종삼
이종삼
교신저자 이종삼
공저자 이정필
이장규
윤정수
김재철
권영우
저자수 6
초록
  • 국문
  • Abstract
    The purpose of this study was to investigate that the effect of dietary fatty acid composition on pro- and macro-glycogen utilization and resynthesis. The analyses were further extended for different muscle fibers (type I, type II, & type IIb) as well as tissues (i.e., liver & heart). Total one hundred sixty Sprague-Dawley rats were used, and rats were randomly allocated into four experimental groups: animals fed standard chow diet (n=40), animals fed saturated fatty acid diet (n=40), animals fed monounsaturated fatty acid (n=40), and animals fed polyunsaturated fatty acid (n=40). Animals in each groups were further divided into five subgroups: sacrificed at REST (n=8), sacrificed at immediately after 3hr swim exercise (P-0HR, n=8), sacrificed at one hour after 3hr swim exercise (P-1HR, n=8), sacrificed at four hour after 3hr swim exercise (P-4HR, n=8), and sacrificed at twenty-four hour after 3hr swim exercise (P-24HR, n=8). Soleus (type I), red gastrocnemius (type IIa), white gastrocnemius (type IIb), liver, and heart were dissected out at appropriated time point from all animals, and were used for analyses of pro- & macro-glycogen concentrations. After 8 weeks of dietary interventions, there was no significant difference in body mass in any of dietary conditions (p>.05). After 3hr swim exercise, blood lactate level was higher compared to resting conditions in all groups, but it was returned to resting value after 1hr rest (p<.05). Free fatty acid concentration was higher in all high fat fed groups (regardless of fatty acid composition) than CHOW consumed group. At rest, pro- & macro-glycogen concentration was not different from any of experimental groups (p>.05). Regardless of forms of glycogen, the highest level was observed in liver (P<.01), and most cases of supercompensation after 3hr exercise observed in this study were occurred in CHOW fed tissues. Except heart muscle, all tissues used in this study showed that pro- and macro-glycogen concentration was significantly decreased after 3hr exercise. Based on these results, two conclusions were made: first, there is no different level of glycogen content in various tissues regardless of types of fatty acids consumed and second, the highest mobilization rate would be demonstrated from CHOW fed animals compare to animals that consumed any kinds of fatty acid diet if prolonged exercise is applied.
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