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Biomedical subjects

R L Gibson

Publications and source records attributed to R L Gibson.

11 recordsLinked to original sources

Group B streptococcus has no effect on piglet diaphragmatic force generation.

Recent studies indicate that diaphragmatic contractility is adversely affected by bacterial infection. Using transdiaphragmatic pressure (Pdi) with phrenic nerve stimulation, the effect of continuous Group B Streptococcus (GBS) infusion on diaphragmatic force output was studied in seven anesthetized, spontaneously breathing 1-month old piglets. Pdi was measured under baseline condition (50% O2/50% N2) and at 1, 2, and 4 h of GBS infusion. The GBS was infused at a level that caused a doubling of the pulmonary artery pressure and a 32% decrease in cardiac output but which avoided hypotension or acidosis--both of which can decrease diaphragmatic contractility. In addition, the piglets were kept hyperoxic (PaO2 greater than 100) and no piglet with hypercapnia (PaCO2 greater than 65) was studied, as hypoxia and hypercapnia also can cause respiratory muscle dysfunction. Pdi in response to phrenic nerve stimulation did not change during GBS infusion. We conclude that GBS infusion, in the absence of hypotension, hypercapnia, hypoxia, or acidosis, has no effect on diaphragmatic force generation in the piglet.

Animals

Effect of pentoxifylline on cytokine- and eicosanoid-induced acute pulmonary hypertension in piglets.

The methylxanthine derivative pentoxifylline (PTF) demonstrates vasodilatory properties in vivo. We tested the hypothesis that PTF infusion would blunt or inhibit tumor necrosis factor-alpha (TNF alpha)-induced and U46,619-induced increases in mean pulmonary artery pressure and pulmonary vascular resistance (PVR) in the neonatal piglet and would do so by altering production of eicosanoid vasoactive mediators. Anesthetized, paralyzed piglets (age 10-29 d) were randomized and treated with a 30-min infusion of TNF alpha alone (n = 13 animals), with a combination of TNF alpha plus pretreatment and continuous infusion with PTF (n = 6), or with a combination of U46,619 for 30 min plus pretreatment and continuous infusion of PTF (n = 5). There was no difference in pulmonary or systemic hemodynamic indices between the three groups at baseline. PVR was significantly elevated at 15 min and at 2 h in the TNF alpha-only group. The TNF alpha-induced rise in mean pulmonary artery pressure and PVR was inhibited by the PTF until 2 h, by which time PVR was elevated above baseline and was comparable to the value found in animals treated with only TNF alpha. PTF produced no inhibition in the U46,619-induced elevation of PVR during the 30-min simultaneous treatment. In the PTF + TNF alpha group, mean systemic blood pressure declined to 50% of baseline value (p less than 0.02) by 2 h of age. No significant decline was noted in mean systemic arterial pressure of the TNF alpha-only or the U46,619-treated group.(ABSTRACT TRUNCATED AT 250 WORDS)

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5

Group B streptococcal sepsis in piglets: effect of combined pentoxifylline and indomethacin pretreatment.

Group B streptococcus (GBS), a common neonatal gram-positive pathogen, causes similar pathophysiology in human newborns and neonatal animal models of sepsis. Animal models of GBS sepsis demonstrate a two-phase response: 1) an acute phase (less than 1 h) of increased pulmonary artery pressure (Ppa) and reduced arterial oxygen pressure (PaO2) that is associated with increased serum thromboxane B2 (TxB2) and 2) a late phase (2-4 h) of persistently increased Ppa and reduced PaO2, reduced systemic arterial pressure, and progressive fall in cardiac output that is associated with increased serum TxB2, 6-keto-prostaglandin F1 alpha (6-keto-PGF1 alpha), and tumor necrosis factor-alpha (TNF alpha). We hypothesized that pretreatment of piglets with both pentoxifylline (PTF), an inhibitor of TNF alpha production and activity, and indomethacin (INDO) would 1) inhibit GBS-induced TxB2, 6-keto-PGF1 alpha, and TNF alpha and 2) prevent both the acute- and late-phase physiologic responses of GBS sepsis. Combined PTF and INDO pretreatment of anesthetized, mechanically ventilated piglets infused with GBS (1.25 x 10(9) colony forming units/kg/h) for 4 h prevented GBS-induced increases in Ppa at 1 h (GBS + PTF + INDO: 1.8 +/- 0.07 kPa versus GBS alone: 4.7 +/- 0.1 kPa) and markedly attenuated increases in Ppa at 4 h (GBS + PTF + INDO: 2.1 +/- 0.1 kPa versus GBS alone: 4.4 +/- 0.1 kPa).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Respiratory mechanics of the piglet during the first month of life.

Piglets at 3, 14, and 30 days of age were studied to assess the postnatal changes in lung, chestwall, and total respiratory system compliance associated with normal growth. Static deflation compliance of the lung and total respiratory system increased significantly with age; there was no change in chestwall compliance. When normalized for body weight or lung volume, all measures of compliance tended to decrease with postnatal age. Measures of lung and chestwall compliance obtained with an end-inspiratory occlusion technique were less than the static compliance measures, but demonstrated the same relative changes with postnatal maturation. Chestwall compliance at 3 days of age was only 1.3 times greater than lung compliance and there was no significant change in this ratio with postnatal age. In contrast to the trend for the human infant, the piglet's chestwall at 3 days of age is stiff relative to the lung and does not become stiffer with age over the first 4 weeks of life.

Animals

Group B streptococcus induces tumor necrosis factor in neonatal piglets. Effect of the tumor necrosis factor inhibitor pentoxifylline on hemodynamics and gas exchange.

Group B streptococcus (GBS), a common neonatal gram-positive pathogen, causes similar pathophysiologic features in human newborns and neonatal animal models of sepsis. Previous reports suggest that mediators in addition to TxA2 and PGI2 contribute to the late effects of GBS infusion (2 to 4 h), which include persistent increases in Ppa, hypoxemia, systemic hypotension, and a progressive fall in CO. Tumor necrosis factor (TNF) infusion in animals produces several of the late GBS effects. We hypothesized that GBS causes increased serum TNF levels 2 to 4 h into infusion in neonatal piglets. We also postulated that the TNF inhibitor, pentoxifylline (PTF), would attenuate both GBS-induced TNF production and late GBS effects. In piglets infused with 1.25 x 10(9) cfu/kg/h of GBS, serum TNF levels (pg/ml, ELISA assay) significantly increased at 2 h (231 +/- 41) and at 4 h (1,047 +/- 290, n = 9). In piglets infused with concomitant GBS + PTF, serum TNF levels at 4 h (208 +/- 39, n = 8) were reduced compared to GBS alone piglets (p less than 0.02). Control piglets infused with 0.9% saline or PTF alone for 4 h had no detectable serum TNF (less than 35). GBS alone and GBS + PTF infusion caused similar increases in serum TxB2 levels at 1, 2, and 4 h. Serum 6-keto-PGF1 alpha levels (pg/0.1 ml) significantly increased at 4 h (85 +/- 18) with GBS alone, and were more elevated at 4 h (306 +/- 75) with GBS + PTF infusion.(ABSTRACT TRUNCATED AT 250 WORDS)

6-Ketoprostaglandin F1 alpha

Emergency percutaneous transtracheal ventilation (PTV).

Ventilation through a percutaneous needle catheter inserted into the trachea has been advocated for resuscitation in acute upper airway obstruction. However, the customized, prefabricated equipment proposed by others for that use is not always available. We describe a device for percutaneous transtracheal ventilation (PTV) that can be rapidly assembled using available, inexpensive hospital supplies. With this device, moderate inflation pressures and flow rates of oxygen resulted in arterial PaO2 of greater than 300 torr and PaCO2 values of approximately 40 torr in dogs. PTV may be used as a life-saving measure in cases of acute upper airway obstruction when conventional airway management is unsuccessful.

Airway Obstruction

Airway maintenance in patients with long-term endotracheal intubation.

Long-term endotracheal intubation in seriously ill patients is frequently complicated by nosocomial infection of the tracheobronchial tree, especially with aerobic gram negative bacilli. A further complication is drying of pulmonary secretions unless the medical gases given are humidified. The performance characteristics of humidifying system used in spontaneously breathing, intubated patients is described. This system possesses the potential to decrease infection, provides physiologic humidification without nebulization, and, by avoiding air dilution, allows the administration of a precisely regulated FIO2.

Cross Infection

Pulmonary angiography via an indwelling four-channel Swan-Ganz catheter.

An indwelling Swan-Ganz catheter was utilized for pulmonary angiography in an extremely ill patient without the necessity for a further invasive procedure. The procedure allowed prompt exclusion of pulmonary embolism as a cause of her deteriorating condition, and confirmed the diagnosis of adult respiratory distress syndrome (ARDS).

Adult