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미토콘드리아와 건강

  • 작성자주현
  • 작성일2005-01-30 19:07:47
  • 조회수1836
  • 첨부파일첨부파일
Association between fitness and survival suggests a link between impaired oxygen metabolism and disease Posted By: News-Medical in Medical Research News Published: Wednesday, 26-Jan-2005 Research published in the current issue of Science magazine reinforces the belief that aerobic capacity is an important determinant in the continuum between health and disease. "Our data clearly show that the some of the major health problems of today, namely obesity, hypertension, and insulin resistance, are strongly influenced by our genes," said Steven Swoap, associate professor of biology at Williams Colleges, a member of the research team. "Coupled with our current environment of physical inactivity and over-abundance of food, this "metabolic syndrome" will become the primary health issue of the 21st century" The research paper is titled "Cardiovascular Risk Factors from Artificial Selection for Low Aerobic Capacity in Rats." Along with researchers from the Norwegian University of Science and Technology; St. Olav's Hospital in Trondhelm, Norway; the Medical College of Ohio; and the University of Michigan, Swoap examined rats that had been genetically selected for high or low proficiency in endurance running. "In humans, the strong statistical association between fitness and survival suggests a link between impaired oxygen metabolism and disease," the article reports. "[Indeed,] after 11 generations, rats with low aerobic capacity scored high on cardiovascular risk factors that constitute the metabolic syndrome." Swoap's research "supports the notion that impaired regulation of oxidative pathways in mitochondria may be a common factor liking reduced total-body aerobic capacity to cardiovascular and metabolic disease." His research has been published in the American Journal of Physiology, the Journal of Experimental Biology and the Journal of Applied Physiology and is supported through multi-year grants from the National Institutes of Health (NIH) and the National Science Foundation (NSF). The NIH awarded him nearly $100,000 to determine why skeletal muscle becomes more fatigable after disuse, and the NSF has funded his research on the mechanism of how restricting caloric intake lowers blood pressure, with grants totaling more than $700,000. In 2001, Swoap won the Arthur C. Guyton Award for Excellence in Integrative Physiology from the American Physiological Society, for demonstrating outstanding promise in his research program in physiology. He was also invited to give a lecture on "Molecular Biology in Skeletal Muscles" at the 2001 meeting of the New England American College of Sports Medicine and was the winner of the American College of Sports Medicine New Investigator Award in 2000. Swoap is the chair of the biochemistry and molecular biology program at Williams College, where he has taught since 1996. His research has focused on the molecular bases of changes in muscle physiology, and how muscle fibers change as a result of exercise. In addition to courses on physiology, Swoap teaches the popular "Biology of Exercise and Nutrition" class, which attracted over 10 percent of the student body its first year offered. He earned his B.S. in biology from Trinity University in 1990 and his Ph.D. in physiology and biophysics from the University of California at Irvine in 1994. He did post-doctoral work at the University of Texas Southwestern Medical Center in Dallas. Science is published by the American Association for the Advancement of Science, an international non-profit organization with a mission to "advance science and serve society" through initiatives in science policy, international programs, science education and the publication of scientific newsletters, books and reports. http://www.williams.edu/
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No. 제목 작성자 작성일 조회수
16 "old" mice가 노화에서 key로서 작용한다. 2005.01.26 문혜진 2005.01.26 2,080
15 프로테오믹스 연구의 최신동향과 활용 첨부파일 2005.01.25 주현 2005.01.25 2,021
14 연구와 마켓 - nanobiotechnmologes applications, 마켓 그리고 회사들 2005.01.25 이현숙 2005.01.25 2,000
13 스웨덴 과학자들이 부분적으로 노화의 미스테리를 풀었다. 2005.01.25 이현숙 2005.01.25 2,121
12 STKE : the mitochondria으로부터의 칼슘 신호전달 2005.01.25 이현숙 2005.01.25 2,436
11 drug의 힘 2005.01.25 이현숙 2005.01.25 2,034
10 MFIC의 microfluidizer procesor는 thechnion에서 Mitochondrial 연구를 운행한다. 2005.01.25 이현숙 2005.01.25 3,049
9 Primagen은 과학적인 연구 사용을 위한 Retina Mitox Mitochondrial(TM) DNA Blood Test로 진단하는 탐색법을 제공한다. 2005.01.25 이현숙 2005.01.25 2,082
8 노화에서 유전자 손상의 중요 인자 첨부파일 2005.01.25 김현주 2005.01.25 1,707
7 미토콘드리아와 장수 첨부파일 2005.01.25 김현주 2005.01.25 1,740
6 미토콘드리아와 당뇨병의 관계 첨부파일 2005.01.25 김현주 2005.01.25 1,695
5 새로운 과학 분야는 세상에서 가장 치명적인 퇴행성 질환의 치료에 주력하고 있다. 첨부파일 2005.01.25 김현주 2005.01.25 1,819
4 apoptosis에 있어서 세포의 mitochondria의 역할 첨부파일 2005.01.25 이영숙 2005.01.25 2,814
3 mitochondrial DNA mutation이 혈압과 콜레스테롤 수치에 직접적으로 영향을 미친다. 2005.01.25 이영숙 2005.01.25 2,516
2 미토콘드리아 DNA변이와 노호의 관계 2005.01.25 이영숙 2005.01.25 1,951
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