SURGICAL ASPECT OF SHOCK AND HYPOXIA
SURGICAL ASPECT OF SHOCK AND HYPOXIA
批准号:
3354721
负责人:
ARTHUR E. BAUE
金额:
$34.05万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
1986
资助国家:
美国
项目状态:
已结题
起止时间:
1986-08-01 至 1989-07-31
关键词:
adenosine triphosphate bactericidal immunity burns calcium metabolism cardiovascular disorder chemotherapy cardiovascular surgery cell components cell membrane cellular immunity cerebral ischemia /hypoxia cyclophosphamide electron microscopy epinephrine freeze etching gamma globulin heart function heart revascularization hemorrhagic shock high energy compound humoral immunity hypoxia immunoregulation ion transport liver liver metabolism magnesium membrane permeability membrane potentials membrane structure muscle metabolism myocardial ischemia /hypoxia nicotinamide nutrition related tag peptides peritonitis phosphates potassium prostaglandins pulmonary edema radioimmunoassay renal ischemia /hypoxia shock smooth muscle sodium splenectomy suppressor T lymphocyte thyroid function tissue /cell culture
中文摘要
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英文摘要
The major thrust of this proposal is to continue our work on various
aspects of shock and hypoxia, which are of particular importance for the
surfical patient. Our prevoius observations of changes in cellular and
sub-cellular functions following shock and correction of some of those
functions will serve as the basis on which we now plan to determine: a)
the role humoral factors play in producing such changes; b) the
interrelationships and perhaps interdependence of such changes,
parricularly of cellular energetics and membrane function; c) the reason
for organ failure, partucularly muscle and liver cellular metabolic and
mitochondrial failure in late sepsis and with multiple systems failure; d)
the sequences of and reasons for remote organ failure with sepsis; e) the
reason for depressed immunocompetence following burn trauma; and f) further
therapeutic considerations aimed at improving cell function and the
mechanisms for this. Specific areas of activity include: 1) the role
epinephrine plays in producing hepatic depolarization, metabolic
depression, insluin resistance and alterations in membrane permeabilityu
with shock; 2) evaluation of the role of the thyroid in late sepsis and
organ failure and the possibility of "myxedematous mitochondria" causing
the terminal metabolic failure of muscle and liver; 3) further study of the
precise mechanism by which high energy phosphate compounds produce salutary
effects; 4) characterization, kinetics and localization of adenine
nucleotide uptake in the cell and determination of a potential transport
carrier system; 5) further studies to determine critical energy levels for
various aspects of cell function; 6) necessary background information for
clinical trials of ATP-MgC12; 7) the status of calcium regulation in low
flow conditions; 8) the nature of alterations in hepatic metabolic
capabilities in sepsis; 9) study of kidney preservation following
normothermic ischemia; 10) whether creatine phosphate or other substrates
will help prevent ischemic damage to the heart during coronary
insufficiency and to the central nervous system during and after an acute
ischemic insult; 11) study of tuftsin on increased pulmonary retention of
particulate matter following splenectomy and sepsis; and 12) whether
therapy involving ablations of precursors of suppressor-T cells would
improve the resistance to infection following burn injury.
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