Key result
Intraoperative changes in colloid oncotic pressure induced by salt poor albumin and diuretics did not correlate with changes in alveolar-arterial oxygen tension gradients.
Why the study?
Does therapy designed to change colloid oncotic pressure (albumin and diuretics) improve intraoperative pulmonary function in patients undergoing cardiopulmonary bypass?
Observational (n=26)
Does therapy designed to change colloid oncotic pressure (albumin and diuretics) improve intraoperative pulmonary function in patients undergoing cardiopulmonary bypass?
Therapies aimed at increasing colloid oncotic pressure post-cardiopulmonary bypass do not appear to improve intraoperative pulmonary function.
No support for oncotic pressure-targeted therapy to improve lung function; leaves open randomized trials of albumin-diuretics in cardiopulmonary bypass.
Twenty-six patients were subjected to large intraoperative shifts in plasma colloid oncotic pressure (COP) by dilutional cardiopulmonary bypass, salt poor albumin (SPA), and/or diuretic therapy. During bypass, COP fell 44%, to a level that leads to pulmonary edema in vitro. Intraoperative changes in COP, induced by the postbypass use of SPA and diuretics, were associated with increased COP and urine output, but did not correlate with changes in alveolar-arterial oxygen tension gradients (A-a Po2). We conclude that therapy designed to change COP has a limited role and does not affect intraoperative pulmonary function as measured by A-a Po2gradients.
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Alan T. Marty (1973) conducted an observational in Patients undergoing cardiopulmonary bypass (n=26). Salt poor albumin (SPA) and/or diuretic therapy was evaluated on Alveolar-arterial oxygen tension gradients (A-a Po2). Intraoperative changes in colloid oncotic pressure induced by salt poor albumin and diuretics did not correlate with changes in alveolar-arterial oxygen tension gradients.
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