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D E Cameron

Publications and source records attributed to D E Cameron.

94 records · Page 6Linked to original sources

Twelve-hour cardiopulmonary preservation using donor core cooling, leukocyte depletion, and liposomal superoxide dismutase.

Because leukocytes and oxygen radical species contribute to ischemic and reperfusion injury during organ preservation, we examined the effects of a long-acting liposomal superoxide dismutase (liposomal SOD) and mechanical filtration of leukocytes on cardiopulmonary graft function after 12 hours of static preservation. Bovine heart-lung blocks were harvested, core cooled to 15 degrees C, stored in 4 degrees C donor blood for 12 hours, and then orthotopically transplanted (control group, n = 6). In the leukocyte-depletion group (n = 6), a leukocyte filter was incorporated in the bypass circuits of the donor and recipient. In the SOD group (n = 6), liposomal SOD (5000 U/kg) was administered in the cardioplegic solution, in the prime of the bypass circuits of donor and recipient, and immediately before recipient heart-lung reperfusion. In the combination group (n = 6), both leukocyte depletion (LD) and liposomal SOD were used. Only four of six control animals survived more than 2 hours after weaning from bypass, whereas all LD, SOD, and LD + SOD animals survived to be studied at 6 hours. Pulmonary function was assessed at 6 hours by arterial oxygen tension on 100% inspired oxygen (PO2), pulmonary vascular resistance (PVR), and postmortem wet/dry lung weight ratios. Arterial pO2 values (mm Hg) were as follows: control, 102 +/- 51; LD, 437 +/- 60*; SOD, 278 +/- 83; and LD + SOD, 504 +/- 54* (*p less than 0.05 vs controls). PVR values (dynes . sec . cm5) were as follows: control, 1975 +/- 697; LD, 682 +/- 131*; SOD, 607 +/- 191*; and LD + SOD 367 +/- 87* (*p less than 0.05 vs controls).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Persistent pulmonary hypertension after heterotopic heart transplantation: a case report.

Right-sided failure occurring in the donor heart immediately after transplantation is primarily caused by increased recipient pulmonary artery pressure and resistance and represents one of the leading causes of perioperative mortality associated with orthotopic heart transplantation. After transplantation pulmonary hypertension gradually declines, returning to near normal levels within 30 days of transplantation. This article describes a case report of the persistence of pulmonary hypertension after heterotopic heart transplantation. The heterotopic position was utilized because of marked elevation of the pulmonary artery resistance (18 Wood units) calculated at the time of operation. Cardiac catheterization data-obtained during the subsequent 6 months of follow-up showed persistent elevation of pulmonary artery pressure and pulmonary vascular resistance. The patient, however, clinically continues to feel well and remains asymptomatic without signs of right-sided heart failure. Indications, suggested advantages, and demonstrated disadvantages of heterotopic heart transplantation are discussed.

Adult↗

Successful four-hour heart-lung preservation with core-cooling on cardiopulmonary bypass: a simplified model that assesses preservation.

This study was done to determine whether core-cooling could provide extended cardiopulmonary preservation and if reimplantation could be simulated and evaluated in the ex vivo autoperfused working heart-lung model. Twenty calves were divided into four groups and placed on cardiopulmonary bypass and rapidly cooled to 15 degrees C. Control heart and lungs were harvested after administration of cardioplegia through the aortic root and were subsequently resuscitated in the autoperfused working heart-lung circuit (group 1) or were orthotopically allotransplanted (group 2). Preserved heart and lungs were similarly excised but stored in a normal saline solution bath at 4 degrees C for 4 hours and then were resuscitated in the autoperfusion circuit (group 3) or were orthotopically allotransplanted (group 4). All groups received isoproterenol during explantation and reperfusion and were studied for 4 hours. Myocardial function was assessed by sonomicrometric techniques, and pulmonary preservation was evaluated by measurements of extravascular lung water, arterial oxygen tension on 100% inspired oxygen, and pulmonary vascular resistance. Cardiorespiratory function after 4-hour static preservation was similar in all four groups except that the arterial oxygen tension in group 1 was lower compared with group 3. Core-cooling on cardiopulmonary bypass without pulmonary artery flushing results in cold ischemic heart-lung preservation, comparable to other currently used modalities. In addition, reperfusion in the ex vivo autoperfusion circuit provides a simplified model to assess the adequacy of cardiopulmonary preservation techniques.

Animals↗

Use of theophylline for treatment of prolonged sinus node dysfunction in human orthotopic heart transplantation.

Sinus node dysfunction may complicate heart transplantation in over 50% of cases, leading to prolonged bradyarrhythmias in 20% of recipients. Permanent pacemaker implantation, the standard treatment for such persistent rhythm disturbances, can result in significant complications in this setting. A protocol with theophylline, a methylxanthine known to reverse the sinus node electrophysiologic abnormalities observed in transplant patients, was initiated at our institution in October 1989 to treat posttransplantation bradyarrhythmias and to reduce the need for pacemaker implantation. Patients with sinus or nodal bradycardia or sinus arrest were given theophylline orally; the drug was initiated in 15 of 38 patients (39.5%), 3 to 24 days after transplantation. Mean duration of treatment was 57.4 days (range, 20 to 105 days). Normal sinus rhythm with a rate of more than 90 beats/min was restored in 14 of 15 patients (93.3%). Permanent pacing was required in one patient. Transplant recipients before October 1989 (group 1, n = 112) were compared with subsequent transplant recipients (group 2, n = 38). These groups did not differ significantly in incidence of bradyarrhythmias or potential risk factors for posttransplantation sinus node dysfunction, though a greater preoperative use of amiodarone occurred in group 2. Permanent pacemaker requirement was significantly reduced from 16.1% in group 1 to 2.6% in group 2 (p < 0.05) with the introduction of theophylline. Theophylline is effective treatment for posttransplantation bradyarrhythmias, thereby resulting in a reduced need for pacemaker implantation.

Adult↗