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Biomedical subjects

H Feingold

Publications and source records attributed to H Feingold.

11 recordsLinked to original sources

Effect of skin temperature on platelet function in patients undergoing extracorporeal bypass.

Thirty-seven patients undergoing cardiopulmonary bypass operations were studied to assess the effect of skin temperature on platelet function. Differences in skin temperature between the two arms were created during bypass, at the completion of bypass, and at 2 and 24 hours after the completion of bypass. In each of 37 patients the temperature of one arm was increased with a water-filled blanket set at 40 degrees C. In 11 of these patients the other arm was allowed to equilibrate with the environment, and in the other 26 patients the arm was cooled with ice. Except for the differences in local skin temperature between the two arms, all factors known to affect the patient's bleeding time were similar. Measurements were made of bleeding times and the levels of thromboxane B2 and 6-keto-prostaglandin F1 alpha in shed blood obtained at the template bleeding time site. In the 33 patients not treated with aspirin, local hypothermia produced an increased bleeding time and a significant reduction in the thromboxane B2 level at the bleeding time site, but no reduction in 6-keto-prostaglandin F1 alpha level. Local rewarming produced a significant increase in the shed blood thromboxane B2 level. In the four patients treated with aspirin, local hypothermia produced no differences in bleeding times or shed blood levels of thromboxane B2 or 6-keto-prostaglandin F1 alpha. These data show the benefits of rewarming patients with hypothermia who have nonsurgical blood loss to restore to normal both core and peripheral temperatures before resorting to the transfusion of homologous blood products.

6-Ketoprostaglandin F1 alpha↗

Pulmonary edema after aneurysm surgery is modified by mannitol.

Abdominal aortic aneurysmectomy (AAA) results in thromboxane (Tx)A2 generation, a rise in mean pulmonary artery pressure (MPAP), leukopenia, and noncardiogenic pulmonary edema. This study tests whether mannitol, a hydroxyl radical scavenger, modifies these events. Patients received mannitol 0.2 g/kg (n = 14) or saline (n = 12) intravenously before infrarenal aortic clamping. With saline, 30 minutes after clamping, plasma TxB2 levels rose from 124 to 290 pg/mL (p less than 0.01), and MPAP rose from 19 to 27 mmHg (p less than 0.01). Aortic clamp release led to further increases in plasma TxB2 to 378 pg/mL (p less than 0.01) and MPAP to 34 mmHg (p less than 0.01). The white blood count (WBC) fell from 9800 to 4400/mm3 (p less than 0.01). Four to eight hours after surgery, physiologic shunting (Q[sc]S[xsc]/Q[sc]T[xsc]) rose from 9% to 20% (p less than 0.01) and peak inspiratory pressure (PIP) increased from 22 to 32 cmH2O (p less than 0.01). Chest radiography demonstrated pulmonary edema while the pulmonary wedge pressure was 12 mmHg, excluding left ventricular failure. By 24 hours pulmonary edema resolved and the PIP and PaO2 returned to baseline. Mannitol treatment relative to saline, during and after aortic clamping reduced plasma TxB2 levels to 155 and 198 pg/mL, respectively (p less than 0.01); MPAP to 21 and 26 mmHg (p less than 0.01); minimized the decline in WBC to 5850/mm3 (p less than 0.01), and the postoperative rise in Q[sc]S[xsc]/Q[sc]T[xsc] to 12%, and PIP to 28 cmH2O (both p less than 0.01). Chest radiography showed no pulmonary edema. Finally in vitro studies documented that mannitol 1 to 10(-4)M, but not dextrose, in a dose-dependent manner inhibited Tx synthesis by ADP-activated platelets. These data indicate that mannitol maintains pulmonary function after AAA by limiting ischemia-induced thromboxane synthesis.

Aged↗

Inhibition of thromboxane (Tx) synthesis by free radical scavengers.

Treatment with thromboxane (Tx) synthase inhibitors or free radical scavengers has been shown to afford protection from renal ischemia. Since free radicals are closely associated with thromboxane (Tx) synthesis, this study examines the thesis that free radical scavengers inhibit formation of Tx. Anesthetized rats (n = 42) underwent right nephrectomy. By random choice, before 45 min of left renal pedicle clamping, rats received: 0.5 ml dextrose placebo IV (n = 6); the hydroxyl radical scavenger dimethyl-thiourea (DMTU), 500 mg/kg IV (n = 10); or the superoxide scavenger superoxide dismutase (SOD), 24,000 Sigma Units (SU)/kg IV (n = 12). This dose of SOD was repeated before release of the clamp. Treatment with DMTU and SOD decreased plasma TxB2 levels following 5 min of reperfusion from 2,480 pg/ml in dextrose treated controls to 1,155 pg/ml (p less than 0.01) and 1,419 pg/ml (p less than 0.03), respectively. At 24 hr, DMTU and SOD therapy decreased creatinine from 3.0 mg/dl in controls to 1.6 mg/dl (p less than 0.01) and 2.1 mg/dl (p less than 0.05), respectively. At 24 hr, DMTU but not SOD decreased left renal weight from 113 to 94% (p less than 0.0003) of the weight of the previously removed right kidney, and histologically prevented acute tubular necrosis (p less than 0.05). In nephrectomized but nonischemic sham control rats (n = 7) plasma TxB2 and 6-keto-PGF1 alpha concentrations were 757 pg/ml and 82 pg/ml, creatinine level 0.9 mg/dl and kidney weight 94% of the previously removed right kidney.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha↗

Effects of nitroprusside and ketanserin upon pulmonary edema after acid injury.

Increased hydrostatic pressure and microvascular permeability after acid aspiration as causes of pulmonary and tracheobronchial edema were studied. Eighteen dogs were anesthetized and 3.0 milliliters per kilogram of 0.1 normal hydrochloride instilled into the trachea. After one hour, the platelet count decreased 47,500 per cubic millimeter (p less than 0.05) from base line levels of 221,400 per cubic millimeter and platelet serotonin stores decreased from 2.09 to 1.65 micrograms per 10(9) platelets (p less than 0.05). Mean pulmonary arterial pressure increased progressively from a base line value of 11 to 21 millimeters of mercury four hours after acid instillation (p less than 0.05). Mean arterial pressure fluctuated from a high of 143 millimeters of mercury to the final value, at four hours, of 119 millimeters of mercury. Ketanserin, a serotonin receptor antagonist, infused one hour after acid injury did not prevent release of platelet 5 hydroxytryptamine but led to a 24 per cent decrease in mean pulmonary arterial pressure from 13 to 10 millimeters of mercury (p less than 0.05) and an 11 per cent decrease in mean arterial pressure from 135 to 120 millimeters of mercury (p less than 0.05). Nitroprusside produced a 30 per cent decrease in mean arterial pressure, but only a 20 per cent decline in mean pulmonary arterial pressure (p less than 0.05). Four hours after acid was instilled, untreated dogs produced 129 milliliters of edema fluid from the endotracheal tube. In proportion to the relative decline in mean pulmonary arterial pressure, nitroprusside therapy reduced the volume of edema to 72 milliliters (p less than 0.05) and ketanserin to 52 milliliters (p less than 0.05). These results suggest that 5 hydroxytryptamine contributes to the pulmonary hypertension associated with acid injury and that the volume of edema formed may be directly related to the increase in the hydrostatic pressure.

Animals↗

Hypothermia-induced reversible platelet dysfunction.

Baboons that were subjected to systemic hypothermia at 32 C had an arm skin temperature of 27.3 C and bleeding time of 5.8 minutes. With local warming of the arm skin to 34 C, the bleeding time was 2.4 minutes. In normothermic baboons with arm skin temperature of 34.6 C, the bleeding time was 3.1 minutes. Local cooling of the arm skin to 27.6 C produced a bleeding time of 6.9 minutes. Increasing the skin temperature of the arm in hypothermic baboons to 38.9 C and in normothermic baboons to 40.1 C reduced bleeding times to 2.1 and 2.3 minutes, respectively. In both hypothermic and normothermic baboons there was a negative and significant correlation between the bleeding time and the arm skin temperature and the thromboxane B2 level in the shed blood obtained at the template bleeding time site. There was a significant positive correlation between the thromboxane B2 level in the shed blood and the arm skin temperature. Both in-vivo and in-vitro studies have shown that the production of thromboxane B2 by platelets is temperature-dependent, and that a cooling of skin temperature produces a reversible platelet dysfunction. Data also suggest that when a hypothermic patient bleeds without surgical cause, skin and wound temperature should be restored to normal before the administration of blood products that are not only expensive but may also transmit disease.

Animals↗

Cryopreservation of dog platelets with dimethyl sulfoxide: therapeutic effectiveness of cryopreserved platelets in the treatment of thrombocytopenic dogs, and the effect of platelet storage at -80 degrees C.

Dog platelets were frozen with 6% dimethyl sulfoxide at 2-3 degrees C per minute in a -80 degrees C mechanical freezer. The frozen platelets were stored at -80 degrees C for as long as 39 months. After storage at -80 degrees C for less than 1 year, platelet in vitro freeze-thaw-wash recovery values were 70%, and in vivo survival values 1 to 2 hr after transfusion were 40% those of fresh platelets. After 2 years or longer storage, in vitro freeze-thaw-wash recovery values were 60%, and in vivo survival values 1 to 2 hr after transfusion were 20% those of fresh platelets. These results indicate that significant deterioration of the dog platelets occurred between the first and second year of storage at -80 degrees C. Platelets that were stored frozen at -80 degrees C for less than 1 year and washed before transfusion into lethally irradiated thrombocytopenic dogs were hemostatically effective.

Animals↗

Pulmonary and systemic consequences of localized acid aspiration.

Acid aspiration may recruit a generalized inflammatory reaction that can potentiate the local injury. After surgical isolation of bronchi in a group of 15 dogs, 1 milliliter per kilogram of 0.37 normal hydrochloric acid was instilled into either side. After five minutes, platelet and white blood cell counts fell to 10,000 and 1,000 per cubic millimeter (p less than 0.05). Platelet aggregates were noted in blood smears. 111Indium-platelet activity doubled over both the aspirated and nonaspirated lung (p less than 0.05). Physiologic dead space rose from 18 to 67 per cent and to 46 per cent in the aspirated and nonaspirated lung (p less than 0.05). Physiologic shunt increased from 12 to 47 per cent and to 43 per cent (p less than 0.05) on the two sides. Plasma thromboxane B2 levels at 30 minutes rose from 0.28 to 0.93 nanograms per milliliter (p less than 0.05). Edema fluid from the aspirated lung had thromboxane B2 values of 2.87 nanograms per milliliter, indicating pulmonary synthesis. Within five minutes of aspiration, systemic effects were prominent; mean arterial pressure fell from 114 to 46 milliliters of mercury (p less than 0.05), and the cardiac index fell 24 per cent from 106 to 81 milliliters per kilogram per minute (p less than 0.05) along with an 18 per cent decrease in contractility of a rat papillary muscle bathed in plasma from the aspirated dog. Mean pulmonary arterial pressure rose from 12 to 18 millimeters of mercury (p less than 0.05). Despite fluid infusion at 36 milliliters per kilogram per hour to keep wedge pressure constant at 5.5 millimeters of mercury, and sampling of one-third the blood volume, hemoglobin concentration rose 0.9 grams per cent (p less than 0.05) indicating increased microvascular permeability. At autopsy, the aspirated and nonaspirated lung were indistinguishable with congestion, interstitial hemorrhage, and white blood cell infiltrates. Systemic organs showed vascular congestion and edema. These data demonstrate that local aspiration leads to generalized inflammatory sequelae with cardiopulmonary failure.

Animals↗

Cryopreservation of human platelets using 6% dimethyl sulfoxide and storage at -80 degrees C. Effects of 2 years of frozen storage at -80 degrees C and transportation in dry ice.

Platelet studies were done in healthy male volunteers and in thrombocytopenic patients. Some of the platelets used in the study were isolated by mechanical apheresis using either the Haemonetics blood processor 30, the IBM blood processor 2997 or the Fenwal CS-3000 blood processor before freezing. Other platelets were isolated from individual units of whole blood and pooled before freezing. The platelets were frozen with a 6% cryoprotectant (DMSO) in a polyvinylchloride (PVC) plastic bag or a polyolefin plastic bag at -80 degrees C in a mechanical freezer and stored for as long as 3 years. Some of the frozen platelets were transported in dry ice in polystyrene foam containers to determine whether they would be adversely affected by such treatment. Platelet recovery after freezing, thawing and washing was about 75%. In the healthy male volunteers, in vivo recovery of autologous platelets 1-2 h after transfusion was about 33%, and the life span was about 8 days. In the thrombocytopenic patients, in vivo recovery values were 50% of those from fresh platelets. The transfusion of previously frozen washed platelets reduced clinical bleeding in the thrombocytopenic patients with bleeding. There was no evidence of quality deterioration in platelets after storage at -80 degrees C for at least 2 years, as determined from in vivo recovery and in vivo survival values, nor was there any adverse effect as a result of shipment of the frozen platelets in dry ice in polystyrene foam containers from one facility to another.

Blood Platelets↗