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Biomedical subjects

D A Calhoun

Publications and source records attributed to D A Calhoun.

At least 19 recordsLinked to original sources

Enteral administration of hematopoietic growth factors in the neonatal intensive care unit.

UNLABELLED: By 20 wk of gestation, the human fetal gastrointestinal (GI) tract morphologically resembles that of the term infant, but functional development is limited before 26 wk. By 30 wk of gestation, the fetus has the capacity for limited digestion and enteral absorption. GI growth and development continue postnatally. Trophic factors, including nutrients, peptides, hormones and growth factors, are recognized as having important influences on the morphology and histology of the developing GI tract. Other trophic factors are important in adaptation and repair following injury. Many such factors are provided in utero via amniotic fluid swallowing and later by human colostrum and milk. CONCLUSION: This review discusses cytokines with known GI trophic effects, either in vitro or in vivo, and focuses on those cytokines that have been used in the neonatal intensive care unit.

Animals↗

Immune-mediated neutropenia in the neonate.

Alloimmune neonatal neutropenia, neonatal autoimmune neutropenia and autoimmune neutropenia of infancy have remained nebulous entities with difficulties in both clinical and laboratory identification. These disorders are reviewed in this article.

Adrenal Cortex Hormones↗

Granulocyte colony-stimulating factor in preterm and term pregnancy, parturition, and intra-amniotic infection.

OBJECTIVE: [corrected] To determine the sources of granulocyte colony-stimulating factor (G-CSF) in amniotic fluid and to examine its relation to labor and clinically diagnosed intra-amniotic infection. METHODS: We assessed G-CSF and G-CSF receptor expression in placentas (n = 50) from 5-40 weeks' gestation, and G-CSF concentrations were measured in amniotic fluid (n = 146), bronchoalveolar lavage fluid (n = 8), and paired maternal serum, cord blood, neonatal serum, and neonatal urine samples (n = 16). RESULTS: Immunohistochemical staining and messenger RNA analysis showed placental expression of G-CSF and G-CSF receptor throughout gestation. The number of decidual stromal cells expressing G-CSF receptor was significantly higher in women with intra-amniotic infection compared with women without infection (27 +/- 2 versus 18 +/- 3 cells per high power field, P =.02). Amniotic fluid concentrations of G-CSF were not significantly different in noninfected preterm compared with term samples (1708 +/- 1673 versus 1612 +/- 2100 pg/mL, P =.9). Labor was not associated with a significant increase in amniotic fluid G-CSF concentrations (1864 +/- 3151 versus 1612 +/- 2100 pg/mL, P =.77, term labor versus no labor; 3335 +/- 5364 versus 1708 +/- 1673 pg/mL, P =.09, preterm). Concentrations of G-CSF in maternal serum, amniotic fluid, bronchoalveolar lavage fluid, and neonatal urine were increased during intra-amniotic infection (all P <.05). CONCLUSION: Amniotic fluid G-CSF concentrations were similar in preterm and term pregnancies and were not significantly influenced by labor. Intra-amniotic infection was associated with an increased number of placental cells expressing the G-CSF receptor and higher concentrations of G-CSF in amniotic fluid, maternal serum, neonatal urine, and neonatal bronchoalveolar lavage samples.

Adult↗

Losartan versus valsartan in the treatment of patients with mild to moderate essential hypertension: data from a multicenter, randomized, double-blind, 12-week trial.

BACKGROUND: Losartan, the first of the angiotensin II receptor blockers (ARBs) to be introduced, has been studied extensively in comparison with other classes of antihypertensive agents. Less research has been conducted on the efficacy and tolerability of losartan compared with that of other ARBs. OBJECTIVE: This randomized, multicenter, double-blind, parallel-group equivalence study was conducted to compare the antihypertensive efficacy and tolerability of a once-daily regimen of losartan with that of valsartan. METHODS: Patients > or = 21 years of age with mild to moderate hypertension, defined as a trough sitting diastolic blood pressure (SiDBP) between 95 and 115 mm Hg, were randomized to receive once-daily losartan (50 mg) or valsartan (80 mg) for 12 weeks. At the end of the sixth treatment week, patients in both groups with trough SiDBP > or = 90 mm Hg had their dose doubled for the remainder of the treatment period. Analysis of variance was used to compare treatment groups with respect to change in mean trough SiDBP from baseline to week 12. Within-treatment changes were analyzed using the paired t test. With at least 220 patients per treatment group, the study had 90% power to place a 90% CI on the difference between losartan and valsartan in SiDBP within the equivalence interval of +/- 2.5 mm Hg. RESULTS: A total of 495 patients were randomized, 247 to the losartan group and 248 to the valsartan group: 456 patients completed the study. Adjusted mean change from baseline values for trough SiDBP atthe end of 12 weeks of treatment were significantly different (P < 0.001) from zero in both the losartan group (-9.9 mm Hg) and the valsartan group (-10.1 mm Hg). At week 12, losartan was as effective as valsartan in lowering SiDBP, with a between-group difference of 0.2 mm Hg (90% CI, -1.3 to 1.7; P = 0.827). At week 6, the difference in SiDBP between groups was -1.3 mm Hg (90% CI, -2.7 to 0.0; P = 0.106). A similar pattern of results was obtained at weeks 6 and 12 for sitting systolic blood pressure. The percentage of patients reaching the SiDBP goal at week 6 (46% [112/2411 losartan; 42% [103/245] valsartan) and week 12 (57% [139/243] losartan; 59% [145/245] valsartan) was not significantly different between the treatment groups. Both losartan and valsartan were similarly well tolerated. Over the 12 weeks, the laboratory profiles of the 2 drugs were similar except for serum uric acid levels, which decreased from 6.0 to 5.7 mg/dL in the losartan group and increased from 5.9 to 6.0 mg/dL in the valsartan group (P = 0.001 for between-treatment difference). CONCLUSIONS: At starting and titrated doses, losartan and valsartan are similarly effective in reducing blood pressure in patients with mild to moderate hypertension. Losartan, but not valsartan, was associated with a decrease in serum uric acid levels.

Adult↗

Transfer of recombinant human granulocyte colony stimulating factor (rhG-CSF) from the maternal to the fetal circulation is not dependent upon a functional G-CSF-receptor.

Administration of granulocyte colony stimulating factor (G-CSF), a haematopoietic growth factor, to pregnant rats increases neutrophil production in the pups. The mechanism for the placental transfer is unknown, but it has been speculated to involve the placental G-CSF receptor (G-CSFR). The purpose of this study was to test that hypothesis. Pregnant mice were treated with a single subcutaneous dose of 50 microg/kg recombinant human G-CSF (rhG-CSF). Mice with an intact G-CSFR ("wild type", WT) and those with a homozygous deletion in the G-CSFR gene (G-CSFR deficient, "knock-out", KO) were studied. At intervals after injection, fetuses were delivered and maternal blood, amniotic fluid (AF) and fetal blood collected. G-CSF concentrations were measured using an enzyme linked immunosorbent assay specific for human G-CSF. Thirty minutes after injection, G-CSF was measurable in the AF (167+/-50 versus 445+/-217 pg/ml, mean+/-sem, WT versus KO) and fetal plasma (774+/-673 versus 427+/-121 pg/ml, WT versus KO). Peak concentrations occurred 2 h after injection in WT dams (572 542+/-41 262 pg/ml) and 4 h in KO dams (616 100+/-96 300 pg/ml). Therefore, in mice, a functional G-CSFR is not essential for the transfer of rhG-CSF from pregnant dams to their fetuses.

Amniotic Fluid↗

Administration of recombinant granulocyte colony-stimulating factor to neonates with septicemia: A meta-analysis.

A meta-analysis was used to determine whether administering recombinant granulocyte colony-stimulating factor (rG-CSF) to neonates with bacterial septicemia reduces mortality. Five studies were identified, involving 73 rG-CSF recipients and 82 control subjects. Mortality was lower among the rG-CSF recipients (odds ratio, 0.17; CI, 0.03-0.70; P <.05). However, when the non-randomized studies were excluded, the P value was.13. For the subgroups "<2000 g" or "neutropenia," the P value was <.02. Thus the routine use of rG-CSF cannot be recommended for all neonates with sepsis.

Granulocyte Colony-Stimulating Factor↗

Enalaprilat blunts reflexive increases in cardiac interstitial norepinephrine in conscious rats.

OBJECTIVE: We have reported that acute administration of enalaprilat, an angiotensin converting enzyme inhibitor, induces less reflexive increase in lumbar sympathetic nerve activity in spontaneously hypertensive rats (SHRs) than nicardipine, a dihydropyridine calcium-channel blocker. The current study was conducted to determine if angiotensin converting enzyme inhibitors likewise suppress cardiac sympathetic activation. DESIGN: Cardiac interstitial levels of norepinephrine were measured in fully conscious SHRs before and after acute blood pressure lowering with enalaprilat or nicardipine. METHODS: Microdialysis probes were inserted into the left ventricular wall of SHRs. Twenty-four to 48 hours post-implantation, myocardial interstitial fluid was collected in fully conscious rats during a 60-min baseline period. Mean arterial pressure was lowered 20 mmHg with intravenous infusion of enalaprilat or nicardipine. During continuous enalaprilat or nicardipine infusion, myocardial interstitial fluid was again collected. Norepinephrine levels were assayed in the perfusate. CONCLUSIONS: Enalaprilat-induced reduction in mean arterial pressure did not significantly increase cardiac interstitial norepinephrine levels. In contrast, nicardipine-induced reduction in blood pressure was associated with a significant increase in interstitial norepinephrine levels. These results indicate that enalaprilat suppresses reflexive sympathetic activation of the heart during acute blood pressure lowering. These results may be clinically relevant in that reductions in end-organ sympathetic stimulation may enhance the long-term cardiovascular benefit of angiotensin converting enzyme inhibitors.

Angiotensin-Converting Enzyme Inhibitors↗

Hyperactive ENaC identifies hypertensive individuals amenable to amiloride therapy.

Pathophysiological features of both primary aldosteronism and pseudohyperaldosteronism are hyperactive amiloride-sensitive epithelial Na(+) channels (ENaC) and refractory hypertension. Peripheral blood lymphocytes express ENaC, which functions and is regulated similarly to ENaC expressed by renal principal cells. Thus it was hypothesized that individuals with either of these hypertensive etiologies could be identified by assessment of the function and regulation of peripheral blood lymphocyte ENaC, by whole cell patch clamp. We also tested the hypothesis that specific inhibition of hyperactive ENaC with amiloride could ameliorate the hypertension. To test these hypotheses, we solicited blood samples from normotensive, controlled hypertensive, and refractory hypertensive individuals. Lymphocytes were examined electrophysiologically to determine whether ENaC was hyperactive. All positive findings were from refractory hypertensive individuals. Nine refractory hypertensive patients had amiloride added to their hypertensive therapy. Amiloride normalized the blood pressure of four subjects. These individuals all had hyperactive ENaC. Amiloride had no effect on individuals with normal ENaC. These findings suggest that whole-cell patch clamp of peripheral blood lymphocytes can be used to identify accurately and rapidly hypertensive individuals who will respond to amiloride therapy.

Adrenal Gland Neoplasms↗

Granulocyte colony-stimulating factor, granulocyte macrophage colony-stimulating factor and neutrophils in the bronchoalveolar lavage fluid of premature infants with respiratory distress syndrome.

BACKGROUND: Granulocyte colony-stimulating factor (G-CSF) and granulocyte macrophage colony-stimulating factor (GM-CSF) promote clonal maturation of neutrophil and macrophage progenitors and increase functional activities of mature cells. The number and activity of neutrophils and macrophages in the lung affect healing and remodeling following respiratory distress syndrome (RDS). QUESTIONS OF THE STUDY: (1) Are G-CSF and GM-CSF present in the airways of preterm neonates with RDS? (2) Do airway G-CSF and GM-CSF concentrations correlate with neutrophil and macrophage number in the bronchoalveolar lavage (BAL) fluid? (3) Are alveolar macrophages a source of airway G-CSF and GM-CSF? (4) Is in vitro expression of G-CSF and GM-CSF by airway macrophages modified by dexamethasone, endotoxin, or hyperoxia? METHODS: Eighteen preterm neonates with RDS requiring mechanical ventilation within the first 24 h of life underwent BAL on days 1, 3, 6, 10, 12, 15, 20, and 28 if still intubated. BAL G-CSF and GM-CSF concentrations were measured by ELISA, and neutrophils and macrophages were counted. Alveolar macrophages were cultured, and G-CSF and GM-CSF expression measured in the presence and absence of dexamethasone, endotoxin, and hyperoxia. RESULTS: G-CSF and GM-CSF were present in the BAL of intubated preterm neonates. In infants who did not develop chronic lung disease (CLD) (n = 5), G-CSF and GM-CSF concentrations were highest in the first days of life, falling thereafter, while in those who did develop CLD (n = 13) these concentrations increased over time. Neutrophil concentrations in BAL fluid followed a similar pattern. Macrophages from BAL were identified as a source of G-CSF and GM-CSF mRNA and protein. G-CSF and GM-CSF expression by these macrophages was increased by endotoxin, decreased by dexamethasone, and unchanged by hyperoxia. CONCLUSIONS: G-CSF and GM-CSF are present in neonatal BAL, and may contribute significantly to the accumulation of alveolar neutrophils.

Bronchoalveolar Lavage Fluid↗

Congenital autoimmune neutropenia in two premature neonates.

Autoimmune neutropenia (AIN) has been reported in infants and children, but not in neonates. AIN is caused by antibodies produced by the patient against their own neutrophils; therefore, it differs from the more common alloimmune neonatal neutropenia and the neonatal neutropenia because of a maternal autoimmune disease in which antineutrophil antibodies of maternal origin cross the placenta. We observed 2 cases of congenital AIN in premature neonates. These are the youngest reported cases, and indicate that AIN can have a prenatal onset. Examination of the bone marrow biopsies revealed an increase in B lymphocytes and myeloperoxidase-positive cells with a maturation arrest at the myelocyte stage. Recombinant human granulocyte colony-stimulating factor effectively treated the neutropenia, as it does in infantile AIN. Ten months after the diagnosis, 1 of the patients still requires recombinant human granulocyte colony-stimulating administration.

Autoimmune Diseases↗

Human developmental biology of granulocyte colony-stimulating factor.

The availability of granulocyte colony-stimulating factor (G-CSF) has influenced the management of neonates with neutropenia. Since the first use of G-CSF in a neonate with neutropenia, much has been learned about the cellular sources and physiologic roles of G-CSF. This article reviews our present understanding of G-CSF and its cognate receptor in the fetus and neonate.

Aging↗

A practical approach to evaluating and treating neutropenia in the neonatal intensive care unit.

Neutropenia is a relatively common problem in the NICU, recognized in as many as 8% of patients at some time during their hospital stay. In most instances, neutropenia among NICU patients is of short duration and has little influence on outcome. In other cases it is prolonged and severe, and constitutes a serious antimicrobial defense deficiency. When a neonatologist discovers a low blood neutrophil count, choices must be made regarding further evaluation and treatment. The authors hope that the information provided in this article is useful in making these choices.

Anti-Bacterial Agents↗

Eosinophilia in the neonatal intensive care unit.

Although common in the neonatal intensive care unit, eosinophilia is often overlooked or ignored. The latter might be, at least in part, because evaluating the neonate with eosinophilia can be a complex process. This article reviews the physiologic features of eosinophilia, reference ranges, and clinical conditions associated with eosinophilia in the neonate. Recommendations for the evaluation of the neonate with eosinophilia are presented.

Eosinophilia↗

Expression of tissue factor pathway inhibitor in human fetal and placental tissues.

The coagulation system differs markedly between fetuses, neonates, and adults, and fetal and neonatal thrombotic abnormalities are poorly understood. Tissue factor pathway inhibitor (TFPI) is an important inhibitor of the extrinsic pathway of coagulation. To begin examining the role of TFPI in the maternal-fetal relationship, TFPI expression in human fetal and placental tissues was studied by immunohistochemical staining. TFPI was widely expressed in human fetal tissues from 8-24 weeks gestation, particularly in epithelial and endothelial tissues. Fetal liver, lung, kidney, and intestine were notably positive for TFPI staining. Within the tissues, TFPI was expressed in pneumocytes, hepatocytes, renal tubular and glomerular cells, muscle fibers, and enterocytes. In placental tissues, TFPI was expressed in syncytiotrophoblasts, cytotrophoblasts, vascular endothelium, and extravillus trophoblasts from 10 weeks through term. Advancing gestation had little effect on TFPI expression. Further studies are needed to determine the functional role of TFPI in fetal and placental tissues and to define perturbations in its expression during fetal and neonatal disease states.

Endothelium↗

Evaluation of low-dose endotoxin administration during pregnancy as a model of preeclampsia.

BACKGROUND: Recent evidence implicates nitric oxide (*NO) in the pathogenesis of preeclampsia. The authors tested the hypothesis that administration of low-dose endotoxin to pregnant rats mimics the signs of preeclampsia in humans and that *NO and *NO-derived species play a role in that animal model. METHODS: Endotoxin was infused at doses of 1, 2 and 10 microg/kg over 1 h to rats on day 14 of pregnancy. Mean arterial pressure, urinary protein, urinary and plasma nitrite plus nitrate (NO2- + NO3-) concentrations, and platelet count were measured before and after the endotoxin infusion. In another group of pregnant rats, the nitric oxide synthase inhibitor L-nitroarginine methyl ester (L-NAME) was administered in drinking water at a dose of 3 mg x kg(-1) x d(-1) starting on day 7 of pregnancy. Endotoxin was then infused at 10 microg/kg on day 14 of pregnancy. Kidneys and uteroplacental units were examined histologically and analyzed immunohistochemically for 3-nitrotyrosine. RESULTS: Endotoxin administration at doses of 2 and 10 microg/kg caused proteinuria and thrombocytopenia in pregnant rats, but did not result in hypertension. Urinary NO2- + NO3- concentration, reflective of tissue *NO production rates, was significantly elevated in pregnant rats that received endotoxin at 10 microg/kg. Ingestion of L-NAME caused hypertension. Tissues from pregnant rats treated with L-NAME, endotoxin at 10 microg/kg, and a combination of L-NAME and endotoxin had increased 3-nitrotyrosine immunoreactivity. CONCLUSION: Nitric oxide either directly or through secondary species plays a significant role in the biochemical and physiologic changes that occur in a rodent model of endotoxin-induced injury.

Animals↗

Stability of filgrastim and epoetin alfa in a system designed for enteral administration in neonates.

OBJECTIVE: To determine the stability of recombinant granulocyte colony-stimulating factor (rG-CSF, filgrastim) and recombinant erythropoietin (rEpo, epoetin alfa) in a solution designed for enteral administration in the neonatal intensive care unit. DESIGN: Filgrastim and epoetin alfa were added to a solution with NaCl 0.9%, sodium acetate, potassium chloride, and human albumin in concentrations designed to mimic human amniotic fluid. Additionally, the solution was dripped through polyvinyl chloride feeding tubes to simulate feedings, and aliquots were collected before, during, and after priming of the tube. Other aliquots were either frozen immediately, stored at room temperature, or refrigerated for 0, 6, 12, 18, and 24 hours. MAIN OUTCOME MEASURES: Filgrastim and epoetin alfa concentrations in the various aliquots were compared with the concentrations in the original solution. RESULTS: Filgrastim and epoetin alfa concentrations were stable for at least 24 hours when refrigerated and for at least three weeks when frozen. At room temperature, filgrastim was stable for 18 hours and epoetin alfa for 24 hours. Filgrastim concentrations did not vary significantly before, during, or after priming of the feeding tube, whereas epoetin alfa concentrations decreased significantly unless the feeding tube was primed with 10 mL of solution. CONCLUSIONS: Filgrastim and epoetin alfa were stable in our amniotic fluid-like solution. In this respect, our solution is suitable for enteral administration to patients in the neonatal intensive care unit.

Cold Temperature↗

Granulocyte colony-stimulating factor is present in human milk and its receptor is present in human fetal intestine.

OBJECTIVE: Human milk provides neonates with a meaningful degree of protection from infection, but the responsible mechanisms are not well understood. Discovering these mechanisms is important, because of the possibility of supplementing infant formulas with factors that simulate human milk's protective capacity. We postulated that granulocyte colony-stimulating factor (G-CSF), a cytokine known to augment antibacterial defenses through its salutory effect on neutrophil production, might be one such factor. To test this hypothesis, we quantified G-CSF in milk of healthy women and those with intraamniotic infection, and sought the presence of functional G-CSF receptors (G-CSF-R) in fetal/neonatal intestinal villi. STUDY DESIGN: G-CSF was measured by enzyme-linked immunoassay in 126 milk samples obtained from breast-feeding women, and the concentrations were analyzed according to gestational age, postpartum day of collection (first 2 days vs greater 2 days), and the presence versus absence of intraamniotic infection. G-CSF-R messenger ribonucleic acid transcripts were sought from fetal/neonatal intestine using reverse transcriptase polymerase chain reaction, and localized using in situ RT-PCR. G-CSF-R protein, and specific intracellular signaling proteins (Janus tyrosine kinase-1, Janus tyrosine kinase-2, and tyrosine kinase-2), were sought by immunohistochemistry. RESULTS: All milk samples contained G-CSF, and significantly more G-CSF was contained in milk collected during the first 2 postpartum days than during subsequent days. Milk from women who delivered prematurely had less G-CSF during the first 2 postpartum days than milk from women who delivered at term. When intraamniotic infection was present, the concentration of G-CSF in milk was elevated significantly compared with concentrations in milk of noninfected women. G-CSF concentrations were also higher in milk collected during the first 2 postpartum days from women who had received intrapartum recombinant G-CSF treatment, compared with milk obtained from women with intraamniotic infection, regardless if they delivered prematurely or at term. G-CSF-R messenger ribonucleic acid and protein were expressed on fetal villus enterocytes, and Janus tyrosine kinase-1, Janus tyrosine kinase-2, and tyrosine kinase-2 were present within the cytoplasm of these cells. CONCLUSIONS: Human milk contains substantial quantities of G-CSF. G-CSF-R are abundant on villus enterocytes, and specific proteins associated with G-CSF-R signaling are present in these cells.

Chorioamnionitis↗