ENHANCED GLYCOLYSIS FOR HYPOTHERMIC HEART PRESERVATION
ENHANCED GLYCOLYSIS FOR HYPOTHERMIC HEART PRESERVATION
批准号:
6402791
负责人:
Sufan Chien
金额:
$34.7万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-09-01 至 2004-07-31
关键词:
adenosine monophosphate adenosine triphosphate bioenergetics cell membrane dichloroacetate dogs enzyme activity fatty acid biosynthesis fructose biphosphatase glucose metabolism glycolysis heart function heart preservation heart transplantation hypothermia insulin laboratory rabbit laboratory rat lactates mitochondria myocardial ischemia /hypoxia myocardium pyruvate dehydrogenase tissue /cell culture
中文摘要
点击翻译按钮获取中文摘要
英文摘要
The ultimate goal of this project is to develop a safe and
effective technique for long-term organ preservation. The specific aim of this
study is to enhance glycolytic energy production during hypothermic heart
storage.
Despite more than three decades of extensive research, safe preservation times
for the heart remain very short. This is the result of two major deficiencies:
1) the critical energy requirement for the heart during ischemia has been
mostly ignored, and 2) little attention has been paid to the fact that there
are many rate-limiting factors in glycolysis, and, therefore, the use of a
single chemical may not be effective.
The investigators propose a new approach for improving heart protection. Their
general hypothesis is that hypothermic heart preservation times can be extended
by enhancing glycolytic energy production. This goal is achieved by using a
glycolytic intermediate, fructose-1,6-diphosphate (FDP), to bypass two
ATP-consuming steps, by adding AMP precursors to facilitate ATP re-synthesis,
and by using insulin to reduce lactate production. They have evidence that
adding FDP to Euro-Collins or St. Thomas solution can substantially enhance
hypothermic heart preservation in rats and rabbits, and that FDP can cross the
cell membrane in a dose-dependent fashion. Although FDP has been used in tissue
ischemia with impressive results, it has not been used in heart preservation,
and studies on its mechanism of action are surprisingly superficial and scarce.
The hypothesis will be evaluated using three different approaches: 1) in
cardiomyocytes in normoxia and hypoxia at normal temperature and during
hypothermia, 2) in hypothermic rabbit heart preservation, and 3) in rabbit and
dog heart transplantation. Cardiomyocyte function, FDP uptake and metabolism,
pyruvate dehydrogenase (PDH) activity, pyruvate and lactate production, and
membrane and mitochondrial integrity will be examined in cardiomyocyte culture.
Mechanical performance, tissue biochemical integrity, enzyme release, adenine
nucleotide production and consumption, pyruvate and lactate production, and
histological changes will be quantified in heart preservation.
This project will greatly enhance our understanding of ischemia and tissue
protection, and provide a mechanism that could significantly increase heart
preservation times for transplantation. These glycolytic modulators might
produce a synergistic effect and serve potentially as effective
tissue-protective agents during ischemia, not only in heart preservation and
cardioplegia, but also in other ischemic conditions, such as shock, stroke,
coronary heart disease, and cardiopulmonary bypass.
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财政年份:2007
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财政年份:2006
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ENHANCED GLYCOLYSIS FOR HYPOTHERMIC HEART PRESERVATION
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批准号:6650874
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项目类别:
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资助金额:$36.81万
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财政年份:2000
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依托单位:
ENHANCED GLYCOLYSIS FOR HYPOTHERMIC HEART PRESERVATION
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依托单位:
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依托单位:
LONG-TERM ORGAN PRESERVATION FOR TRANPLANTATION
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批准号:3303002
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项目类别:
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财政年份:1992
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依托单位:
LONG-TERM ORGAN PRESERVATION FOR TRANPLANTATION
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项目类别:
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财政年份:1992
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依托单位:
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-
财政年份:1992
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依托单位:
海外基金