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Biomedical subjects

M D Schreiber

Publications and source records attributed to M D Schreiber.

At least 19 recordsLinked to original sources

Approaches to end-of-life decision-making in the NICU: insights from Dostoevsky's The Grand Inquisitor.

For many parents stopping life-sustaining medical treatment on their dying infant is psychologically impossible. Dostoevsky's insights into human behavior, particularly the fact that individuals do not want the anxiety and guilt associated with responsibility for making difficult decisions, might change the way physicians approach parents for permission to withdraw life-prolonging medical interventions on dying infants.

Decision Making↗

Resuscitation of the preterm infant against parental wishes.

Over the past 40 years, the norms on who is to make treatment decisions for newborns, and on what standards, have been significantly altered and revised. Today the standard for treatment of newborns is the "best interest" of the child. A recent ruling of the Texas Supreme Court authorizing a doctor to resuscitate a potentially viable very premature newborn over the parents' objection is a challenge to that standard.

Decision Making↗

Inhaled nitric oxide and persistent pulmonary hypertension of the newborn. The Inhaled Nitric Oxide Study Group.

BACKGROUND: Persistent pulmonary hypertension of the newborn causes systemic arterial hypoxemia because of increased pulmonary vascular resistance and right-to-left shunting of deoxygenated blood. Inhaled nitric oxide decreases pulmonary vascular resistance in newborns. We studied whether inhaled nitric oxide decreases severe hypoxemia in infants with persistent pulmonary hypertension. METHODS: In a prospective, multicenter study, 58 full-term infants with severe hypoxemia and persistent pulmonary hypertension were randomly assigned to breathe either a control gas (nitrogen) or nitric oxide (80 parts per million), mixed with oxygen from a ventilator. If oxygenation increased after 20 minutes and systemic blood pressure did not decrease, the treatment was considered successful and was continued at lower concentrations. Otherwise, it was discontinued and alternative therapies, including extracorporeal membrane oxygenation, were used. RESULTS: Inhaled nitric oxide successfully doubled systemic oxygenation in 16 of 30 infants (53 percent), whereas conventional therapy without inhaled nitric oxide increased oxygenation in only 2 of 28 infants (7 percent). Long-term therapy with inhaled nitric oxide sustained systemic oxygenation in 75 percent of the infants who had initial improvement. Extracorporeal membrane oxygenation was required in 71 percent of the control group and 40 percent of the nitric oxide group (P=0.02). The number of deaths was similar in the two groups. Inhaled nitric oxide did not cause systemic hypotension or increase methemoglobin levels. CONCLUSIONS: Inhaled nitric oxide improves systemic oxygenation in infants with persistent pulmonary hypertension and may reduce the need for more invasive treatments.

Administration, Inhalation↗

Prediction of cerebral blood flow in fetal lambs by carotid artery ultrasonic flow transducer.

To determine whether common carotid artery blood flow measured with an ultrasonic flow transducer would predict brain blood flow in fetal sheep, we measured unilateral common carotid artery blood flow and compared this to simultaneous measurements of total brain blood flows made by radioisotope-labelled microsphere techniques. We studied anaesthetized, exteriorized fetal sheep with intact umbilical circulation after ligation of extracranial, extracerebral arteries and placement of a common carotid artery flow transducer; five fetuses at 120 d gestation had 19 total comparison measurements. As measured by microsphere technique, mean basal blood flow during undisturbed conditions to regional brain areas were similar to normal values reported for the exteriorized ovine fetus; these flows were highly correlated to fetal PaCO2 and successfully varied over a wide range (total brain 9.1-200.4 ml/min/100g and total cortex 6.1-153.1 ml/min/100g) in subsequent experimental conditions of hypercapnia or occluded blood flow. Blood flow as measured by flow transducer significantly correlated (P < or = 0.01) with microsphere measurements of blood flow to total brain (r = 0.56) and total cortex (r = 0.62); regional flow to cerebellum (r = 0.70) and thalamus (r = 0.60) also correlated to transducer measurements. Stronger correlations were observed at low-flow conditions to total brain (r = 0.83) and to total cortex (r = 0.90). As measured by microsphere technique, right and left cortical blood flows were highly correlated (P = 0.0001, r = 0.97), indicating that the flow transducer or surgical manipulation did not disturb the distribution of cerebral blood flow. The mean values for zero flow reference of the transducer were < 1.5% of mean basal flow values. It is concluded that the common carotid artery flow transducer technique developed in this study provides an accurate prediction of blood flow to total brain and total cortex over a wide range of values in fetal sheep. This technique provides a methodologic advantage to sequential experimental interventions and may prove advantageous to studies of fetal sheep cerebral circulation.

Animals↗

Physicians' refusal to provide life-prolonging medical interventions.

The intense and ongoing debate on physicians' right to refuse requested life-prolonging medical interventions highlights one of the emerging problems in modern medicine: the limits, if any, to a patient (or proxy's) claim to requested treatment. How is the physician to respond to requests for treatment believed by the physician to be futile, ineffective, or inappropriate? Three cases, Baby L, the extracorporeal membrane oxygenation (ECMO) baby, and Baby K, help focus the ethical and legal issues in this debate.

Anencephaly↗

Parental discretion in refusal of treatment for newborns. A real but limited right.

Manslaughter charges were brought in Lansing, Michigan against Gregory Messenger, a local dermatologist, for removing his extremely premature infant son from a ventilator in a neonatal intensive care unit. The issue in the case was the degree of intervention required for the newborn for whom the parents had been counseled that there was a 50% to 70% mortality and that if the child did survive, there was a 20% to 40% chance of severe intraventricular hemorrhage and a likelihood of substantial respiratory problems. In light of those grim data, the parents requested that no aggressive measures be undertaken. The neonatologist instructed her physician's assistant to ventilate if the child was "vigorous." The homicide charge was based on Gregory Messenger's failure to provide proper medical treatment for his infant son.

Dissent and Disputes↗

Concentration-dependent effects of cocaine on monoamine-induced constriction of cannulated, pressurized cerebral arteries from fetal sheep.

Drugs, such as cocaine, which may alter monoamine neurotransmitter responsiveness, could adversely affect the regulation of cerebral vasculature. Cocaine exhibits at least two mechanisms that may alter vascular responsiveness: synaptic uptake inhibition, which may augment response to stimulation, and Na+ channel inhibition, which may attenuate response. To help elicit the concentration-dependent effects of cocaine, the effects of cocaine on monoamine neurotransmitter responsiveness were studied in vitro on fetal sheep cerebral arteries (120 days gestation). The changes in diameter of segments of cannulated, pressurized fetal sheep cerebral artery were measured with a videomicroscaler system. Cumulative concentration-response curves (10(-10) to 10(-4)M) were generated for two monoamines, norepinephrine and serotonin, alone and in the presence of cocaine (10(-5) or 10(-4)M). Cocaine caused concentration-dependent alteration of response. At 10(-4)M, cocaine attenuated mean maximal norepinephrine-induced vasoconstriction 46.2% (P < 0.05). At 10(-5)M, cocaine increased sensitivity to norepinephrine (log EC50 decreased -6.63 +/- 0.09 to -7.11 +/- 0.03) and to serotonin (log EC50 decreased -7.24 +/- 0.04 to -7.81 +/- 0.09) (P < 0.05). The higher concentration of cocaine (10(-4)M) did not significantly decrease log EC50 norepinephrine. Cocaine (10(-4)M) also attenuated the response to single doses of norepinephrine (10(-6)M) and serotonin (10(-6)M) by 26.5% and 40.0%, respectively (P < or = 0.05). It is concluded that cocaine has concentration-dependent effects on vasoconstriction of the fetal sheep cerebral artery in vitro. This cocaine-induced alteration of cerebral vascular responsiveness to monoamines may be important in the regulation of fetal cerebral blood flow.

Animals↗

Which birthweight groups contributed most to the overall reduction in the neonatal mortality rate in the United States from 1960 to 1986?

We determined the relative contributions of individual birthweight groups to the reduction in neonatal mortality rate (NMR) of US singleton livebirths from 1960 to 1986, the period during which neonatal intensive care was introduced and became established. Changes in the NMR for each race (non-white/white) and birthweight group were assessed in terms of three components of NMR (1) birthweight-specific neonatal mortality rate (BWS-NMR), (2) birthweight distribution, and (3) the interaction resulting from simultaneous changes in BWS-NMR and birthweight distribution. Overall, NMR decreased from 16.7 per 1000 livebirths in 1960 to 5.5 per 1000 livebirths in 1986. This reduction was achieved mainly by improvements in the BWS-NMRs of all birthweight groups. Neonates who weighted > 1.5 kg at birth were the major contributors to the overall reduction in the NMR; approximately two-thirds of total reduction in NMR between 1960 and 1980 and 52.6% of the total reduction between 1980 and 1986 occurred in the > 1.5 kg birthweight groups. Our study demonstrates that with the introduction of neonatal intensive care, survival of infants with birthweights > 1.5 kg improved markedly and that this improvement accounted for most of the decline in the neonatal mortality rate in the United States from 1960 to 1986. Therefore, in measuring the effectiveness of neonatal intensive care, the assessment should include not only very low birthweight (< 1.5 kg) but all birthweight groups.

Birth Weight↗

Effects of cocaine, benzoylecgonine, and cocaine metabolites in cannulated pressurized fetal sheep cerebral arteries.

Prenatal cocaine exposure has been reported to cause neurovascular complications in the developing fetus. To determine the effect of cocaine on the fetal neurovasculature, we studied the in vitro response of fetal sheep cerebral arteries to cocaine and cocaine metabolites. The change in diameter of cannulated pressurized cerebral artery segments from fetal sheep was measured using a video microscaler system. Cumulative dose-response curves (10(-12)-10(-4) M) were generated for cocaine and the major cocaine metabolites in fetal sheep cerebral artery segments. Benzoylecgonine (> 10(-10) M) also caused concentration-dependent constriction, and cerebral artery segments were significantly more sensitive to benzoylecgonine than to cocaine and the other cocaine metabolites. Benzoylecgonine-induced vasoconstriction appeared to be mediated through alpha-adrenergic stimulation, predominantly through stimulation of alpha 1-adrenergic receptor subtypes. We conclude that cocaine and benzoylecgonine cause significant fetal cerebral artery vasoconstriction in vitro. Cocaine and benzoylecgonine-induced cerebral vasoconstriction may contribute to the perinatal neurovascular complications associated with prenatal cocaine exposure.

Adrenergic alpha-Antagonists↗

Hemodynamic and cerebral blood flow effects of cocaine, cocaethylene and benzoylecgonine in conscious and anesthetized fetal lambs.

We studied hemodynamic responses to cocaine and two metabolites, cocaethylene (CE) and benzoylecgonine (BE), in five conscious ewes and fetuses, which were chronically instrumented to measure maternal and fetal aortic pressures, uterine artery blood flow (Qutr) and fetal common carotid artery blood flow (Qcar) to estimate cerebral blood flow. Conscious ewes of 121 to 128 days' (mean, 124 days) gestation received 1.0 mg/kg i.v. of cocaine (n = 12 doses), CE (n = 14) or BE (n = 12) and responses were compared to seven additional ewes and fetuses at 115 to 127 days' (mean, 122 days) gestation each given one 1.0 mg/kg i.v. of cocaine dose while anesthetized with halothane. In conscious ewes, cocaine, CE and BE all caused maternal and fetal hypertension. Qutr decreased 31% after cocaine, increased 37% after CE and was unaffected by BE. Cocaine induced fetal hypoxemia; fetal arterial blood gas tensions were unaffected by CE or BE. Fetal Qcar was reduced 51% at peak effect by cocaine (57 +/- 8 to 28 +/- 6 ml/min) and 46% by CE (65 +/- 7 to 33 +/- 6 ml/min), and was unaffected by BE because of variable subject response, although all three drugs increased calculated fetal cerebral vascular resistance. The cocaine-induced changes were attenuated or abolished in anesthetized sheep. Fetal/maternal peak serum concentrations were 100% for CE and only 2% for BE; amniotic fluid concentrations of CE were 10-fold higher than both fetal and maternal serum concentrations. Cocaine and cocaine metabolites have important effects on maternal and fetal hemodynamics and fetal cerebral blood flow which, for CE and BE, are not dependent on decreased uterine blood flow or fetal hypoxemia.

Amniotic Fluid↗

Risk of intracranial hemorrhage and other adverse outcomes after cocaine exposure in a cohort of 323 very low birth weight infants.

We conducted a prospective cohort study of 323 consecutively born very low birth weight infants (< or = 1499 gm) to determine any association between prenatal cocaine exposure and (1) intracranial ultrasonographic abnormalities and (2) other adverse perinatal outcomes. The infants were assigned to either a cocaine-exposed group (n = 86) or a cocaine-nonexposed group (n = 146) on the basis of combined detection methods for prenatal maternal cocaine abuse including maternal history, maternal and infant urine immunoassay (Emit), and meconium analysis (high-performance liquid chromatography and gas chromatography-mass spectrometry). Ninety-one infants were not assigned because of early death before complete testing (n = 80) or missed tests (n = 11). The detected incidence of cocaine exposure in the assigned population was 37% (86/232). Meconium testing with high-performance liquid chromatography and gas chromatography-mass spectrometry was the sole means of detection in 30% (26/86) of cases. The cocaine-nonexposed infants did not differ from the cocaine-exposed infants in the incidence of intraventricular hemorrhage (36% vs 35%), grades III and IV intraventricular hemorrhage (14% vs 14%), or periventricular leukomalacia (4% vs 2%). Adverse outcomes increased by cocaine exposure were abruptio placentae (8% vs 18%; p = 0.046), surgical ligation of a patent ductus arteriosus (1% vs 7%; p = 0.02), and seizures (5% vs 17%; p = 0.004). We conclude that prenatal cocaine exposure does not increase the incidence or severity of intracranial hemorrhage or periventricular leukomalacia but does increase the risk of abruptio placentae, surgical ligation of a patent ductus arteriosus and seizures in very low birth weight infants.

Abruptio Placentae↗

Three different strains of heat-killed group B beta-hemolytic streptococcus cause different pulmonary and systemic hemodynamic responses in conscious neonatal lambs.

Although group B beta-hemolytic streptococcus (GBS) causes pathologic hemodynamic alterations in both human neonates and neonatal animal models of sepsis, little is known about strain-dependent differences in hemodynamic responses to GBS. This study compared pulmonary and systemic hemodynamic dose-response profiles in conscious neonatal lambs with three different strains of heat-killed GBS originally isolated from infected human neonates (group 1: serotype Ib, early-onset sepsis; group 2: serotype Ib, necrotizing enterocolitis; and group 3: serotype III, meningitis). Regression models of hemodynamic responses were characterized after lambs were injected with heat-killed GBS (dose range 0.1-6.0 x 10(9) colony-forming units, i.v.). All three GBS strains caused dose-dependent increases in mean pulmonary arterial pressure and pulmonary and systemic vascular resistances and decreases in cardiac output and heart rate. The GBS strain used in group 1 caused a greater effect on mean pulmonary arterial pressure and systemic vascular resistance than those used in groups 2 and 3 and was the only strain to cause an increase in mean systemic arterial pressure. The GBS strains used in groups 1 and 2 had a greater effect on pulmonary vascular resistance than that used in group 3. No group differences were observed in cardiac output and heart rate responses, which were, however, influenced by age, gender, and duration of postoperative recovery of the lambs. No attenuation or augmentation of hemodynamic effect was observed after sequential doses of 10(9) colony-forming units of GBS given in a single day. This study demonstrates strain-dependent quantitative differences in pulmonary vascular response and qualitative differences in systemic vascular response to heat-killed GBS.

Animals↗

Effect of beta-adrenergic receptor antagonism on chloralose-induced hemodynamic changes in newborn lambs.

alpha-Chloralose is an anesthetic commonly used in cardiovascular research. Using a chronically instrumented neonatal lamb model, we previously determined that chloralose has important effects on basal hemodynamics and arterial oxygen tension as compared with those of paired conscious control lambs. We wished to determine whether beta-adrenergic receptor stimulation accounted for chloralose-induced hemodynamic effects and to investigate the influence of chloralose and beta-adrenergic receptor antagonism on oxygen metabolism. In paired studies, five lambs were given chloralose intravenously (30 mg/kg i.v.) after propranolol (1 mg/kg i.v.) or saline control. The group pretreated with propranolol had reduced heart rate (HR 206 +/- 12 vs. 244 +/- 10 beats/min, p = 0.04) and cardiac output (CO 253 +/- 29 vs. 302 +/- 40 ml/min/kg, p = 0.005) 30 min after chloralose as compared with control; pretreatment with propranolol also attenuated the systemic hypertensive response to chloralose (77 +/- 8 vs. 89 +/- 5 mm Hg, p = 0.055). No difference in the response of stroke volume (SV), atrial or pulmonary arterial pressures, or pulmonary and systemic vascular resistances (PVR, SVR) were observed between treatment groups. No differences between propranolol and saline treatment groups were observed in arterial and mixed venous oxygen contents, arteriovenous (A-V) oxygen difference, oxygen extraction, or oxygen consumption; a reduction in oxygen delivery observed after propranolol as compared with saline was not altered by chloralose. We conclude that tachycardia and increase in CO induced by chloralose in lambs probably are mediated by beta-adrenergic receptor stimulation, which may be direct or indirect.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Antagonists↗

Hemodynamic effects of heat-killed group B beta-hemolytic streptococcus in newborn lambs: role of leukotriene D4.

Group B beta-hemolytic streptococcus (GBS) infection is an important cause of neonatal pneumonia and sepsis. GBS infection is frequently associated with persistent pulmonary hypertension of the newborn. To better understand the early pulmonary hypertension phase of GBS-induced acute lung injury in a conscious animal, we characterized the pulmonary and systemic hemodynamic response of spontaneously breathing, chronically instrumented newborn lambs to injections of heat-killed type Ib GBS, 0.1-9.0 x 10(9) colony forming units. Heat-killed GBS caused marked dose-dependent increases in mean pulmonary arterial pressure and calculated pulmonary vascular resistance, 190 and 370% at the maximum dose, respectively. Similarly, GBS caused dose-dependent increases in mean systemic arterial pressure and systemic vascular resistance (28.5 and 108% at the maximum dose, respectively) and a decrease in cardiac output (33.5%). Arterial oxygen tension worsened at the higher doses. GBS-induced pulmonary hypertension was decreased by two structurally unrelated, putative leukotriene D4 receptor antagonists. Pretreatment with LY171883 blocked GBS-induced pulmonary hypertension by 95%, and WY48,252 attenuated this effect by 27%. Both drugs completely blocked the hemodynamic effects of exogenous leukotriene D4. For comparison, several lambs received bolus injections of live GBS, either alone or after pretreatment with LY171883. The hemodynamic response to live GBS and attenuation of that response by LY171883 were similar to those caused by similar doses of heat-killed GBS. Thus, bolus injections of heat-killed GBS provide a reproducible model of pulmonary hypertension in conscious newborn lambs. In addition, the sulfidopeptide leukotrienes appear to be important mediators of GBS-induced pulmonary hypertension in newborn lambs.

Acetophenones↗

Effect of aminophylline on the pulmonary and systemic hemodynamic response to group B beta-hemolytic Streptococcus and leukotriene D4 in newborn lambs.

Aminophylline, a methyl xanthine, has been used for many years in the treatment of apnea of prematurity and bronchospasm. Aminophylline relaxes smooth muscle through several proposed mechanisms. We hypothesized that aminophylline might be effective in relaxing preconstricted pulmonary vascular smooth muscle and would be ideally suited for clinical trial in babies with pulmonary hypertension. To test this hypothesis, the haemodynamic response of chronically instrumented newborn lambs to injections of heat-killed Group B beta-hemolytic Streptococcus (GBS) and leukotriene (LT) D4, potent pulmonary vasoconstrictors was compared before and after pretreatment with a clinically therapeutic dose of intravenous aminophylline. GBS (10(9)cfu) significantly increased pulmonary arterial pressure 130%. LTD4 (1.0 microgram/kg) significantly increased pulmonary arterial pressure 142% and systemic arterial pressure 23% and decreased cardiac output 47%. Aminophylline did not significantly affect the baseline variables or alter the pulmonary or systemic haemodynamic response to either stimuli. Therefore, it is unlikely that aminophylline will be clinically useful in the treatment of babies with persistent pulmonary hypertension whose etiology is infectious or leukotriene-mediated.

Aminophylline↗