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Biomedical subjects

J D Carter

Publications and source records attributed to J D Carter.

At least 55 records · Page 3Linked to original sources

Gender differences in the frequency of personality disorders in depressed outpatients.

We examined gender differences in the frequency of DSM-III-R personality disorder diagnoses and symptomatology in a sample of 225 depressed outpatients. This research partially replicates and extends one of the first studies in this area by Golomb et al. (1995). Males were significantly more likely than females to meet diagnoses for schizotypal, paranoid, narcissistic, antisocial, obsessive compulsive, and borderline personality disorder. Compared to females, males were also significantly more likely to have schizoid, schizotypal, narcissistic, antisocial, and obsessive-compulsive personality disorder symptomatology. Females did not predominate in any personality disorder symptomatology or diagnoses. A possible explanation for these findings is discussed. The results of this study challenge traditional assumptions about gender differences in the frequency of personality disorders, and confirm the need for future studies to investigate the relation between gender and personality disorders in specific Axis I samples.

Adult↗

Disruption of normal iron homeostasis after bronchial instillation of an iron-containing particle.

The atmosphere constitutes a prime vehicle for the movement and redistribution of metals. Metal exposure can be associated with an oxidative stress. We tested the hypothesis that, in response to an iron-containing particle, the human respiratory tract will demonstrate an increased expression of both lactoferrin and ferritin as the host attempts to transport and store the metal in a chemically less-reactive form and therefore diminish the oxidative stress the particle presents. Subjects (n = 22) were instilled with 20 ml of saline and 20 ml of an iron-containing particle suspended in saline in a right middle lobe bronchus and a lingular bronchus, respectively. At either 1, 2, or 4 days after this exposure, the volunteer was lavaged for a sample of the lower respiratory tract, and concentrations of L-ferritin, transferrin, and lactoferrin were measured by enzyme immunoassay, immunoprecipitin analysis, and enzyme-linked immunosorbent assay (ELISA), respectively. Transferrin receptor was also quantified by ELISA. The concentrations of L-ferritin in the lavage fluid of lung exposed to particles were significantly increased relative to the levels of the protein in the segment exposed to saline. Relative to saline instillation, transferrin was significantly diminished after exposure to the iron-containing particle, whereas both lactoferrin and transferrin receptor concentrations in the segment of the lung exposed to the particle were significantly elevated. We conclude that instillation of an iron-containing particle was associated with a disequilibrium in iron metabolism in the lower respiratory tract. The response included increased ferritin and lactoferrin concentrations, whereas transferrin concentrations diminished. This coordinated series of reactions by the host effects a decrease in the availability of catalytically reactive iron to likely diminish the consequent oxidative stress to the human host.

Adolescent↗

Metal-dependent expression of ferritin and lactoferrin by respiratory epithelial cells.

Increased availability of catalytically active metal has been associated with an oxidative injury. The sequestration of transition metals within intracellular ferritin confers an antioxidant function to this protein. Such storage by ferritin requires that the metal be transported across a cell membrane. We tested the hypothesis that, in response to in vitro exposures to catalytically active metal, respiratory epithelial cells increase the production of lactoferrin and ferritin to bind, transport, and store this metal with their coordination sites fully complexed. Residual oil fly ash is an emission source air pollution particle with biological effects that, both in vitro and in vivo, correspond with its metal content. Cell cultures were exposed to 0-200 micrograms/ml of oil fly ash for 2 and 24 h. Concentrations of ferritin and lactoferrin mRNA were estimated by reverse transcription-polymerase chain reaction, and concentrations of ferritin and lactoferrin proteins were measured in parallel. mRNA for ferritin did not change with exposure to oil fly ash. However, ferritin protein concentrations increased. Although mRNA for transferrin receptor decreased, mRNA for lactoferrin increased after incubation with the particle. Similar to changes in mRNA, transferrin concentration decreased, whereas that of lactoferrin increased. Deferoxamine, a metal chelator, inhibited these responses, and exposure of the cells to vanadium compounds alone reproduced elevations in lactoferrin mRNA. We conclude that increases in ferritin and lactoferrin expression can be metal dependent. This response can function to diminish the oxidative stress a metal chelate presents to a living system.

Air Pollutants↗

Cytokine production by human airway epithelial cells after exposure to an air pollution particle is metal-dependent.

Despite the many epidemiological studies supporting the contention that ambient air pollution particles can adversely affect human health, there is no clear agreement as to a biologically plausible mechanism which can explain the acute mortality and morbidity associated with exposure to particles less than 10 microm in size. We tested the hypothesis that metals present in an air pollution particle can induce the synthesis and expression of the inflammatory cytokines IL-8, IL-6, and TNFalpha. A residual oil fly ash (ROFA) containing the transition metals vanadium, nickel, and iron was used as a model emission source air pollution particle. Normal human bronchial epithelial (NHBE) cells were exposed for either 2 or 24 hr to 0, 5, 50, or 200 microg/ml ROFA. Concentrations of IL-8, IL-6, and TNF-alpha proteins were measured with commercially available ELISA kits. mRNA for these same cytokines was quantified by RT-PCR. NHBE cells exposed to ROFA produced significant amounts of IL-8, IL-6, and TNF, as well as mRNAs coding for these cytokines. Cytokine production was inhibited by the inclusion of either the metal chelator deferoxamine (1.0 mM) or the free radical scavenger dimethylthiourea (1.0 mM). In addition, vanadium containing compounds, but not iron or nickel sulfates, mimicked the effects of intact ROFA. These results demonstrate that metals present in ROFA may be responsible for production and release of inflammatory mediators by the respiratory tract epithelium and suggest that these mediators may contribute to the toxic effects of particulate air pollutants reported in epidemiology studies.

Air Pollutants, Occupational↗

Ferritin expression after in vitro exposures of human alveolar macrophages to silica is iron-dependent.

The increased availability of catalytically active iron after silica exposure can present an oxidative injury to a living system. Sequestration of reactive iron would, therefore, confer a protective effect. The intracellular storage of iron by ferritin within macrophages can limit the potential for radical generation and cellular injury resulting from exposure to a metal chelate. We tested the hypothesis that in vitro exposure of human alveolar macrophages to silica increases the expression of ferritin through a posttranscriptional mechanism. Exposure of 1.0 x 10(6) macrophages to 100 microg/ml silica for 4 h increased light-subunit (L)-ferritin protein concentrations in both cell supernatants and lysates. Inclusion of 1.0 mM deferoxamine in the reaction mixtures inhibited increases in ferritin after silica. To test for a posttranscriptional regulation of ferritin protein expression, cells were incubated with acid-washed particles, silica with complexed zinc cation, and silica with complexed iron cation. L-ferritin protein concentrations were increased in both cell supernatants and lysates after 4 h of exposure to silica with complexed iron cation. There were no increases in L-ferritin after incubations with acid-washed particles or silica with complexed zinc cation. There were no significant differences in levels of L-ferritin cDNA between any of the exposures, suggesting a posttranscriptional control of ferritin expression.

Cells, Cultured↗

Induction of prostaglandin H synthase 2 in human airway epithelial cells exposed to residual oil fly ash.

Exposure to ambient air containing respirable particulate matter at concentrations below the current National Ambient Air Quality Standard has been associated with increased rates of pulmonary-related morbidity and mortality. To identify mechanisms involved in pulmonary responses to such exposure, we studied the effects of the emission source particulate air pollutant residual oil fly ash (ROFA) on prostaglandin metabolism in cultured human airway epithelial cells. Epithelial cells exposed to ROFA for 24 hr secreted substantially increased amounts of the prostaglandin H synthase (PHS) products prostaglandins E2 and F2 alpha. The ROFA-induced increase in prostaglandin synthesis was correlated with a marked increase in PHS activity. Western blots showed that ROFA exposure induced dose-dependent increases in PHS2 protein levels. Reverse transcriptase-PCR analyses demonstrated accompanying increases in PHS2 mRNA which were evident by 2 hr of continuous exposure. In contrast, expression of PHS1 was not affected by ROFA treatment of airway epithelial cells. There were no alterations in arachidonic acid release, incorporation, or availability in ROFA-exposed cells. These data show that exposure to ROFA induces PHS2 expression, leading to increased prostaglandin synthesis in cultured airway epithelial cells. These findings suggest that prostaglandins may play a role in the toxicology of air pollution particle inhalation.

Air Pollutants↗

Evidence for a colonic PAF receptor.

We sought to determine the effect of exogenously administered platelet-activating factor (PAF) on eicosanoid release from the left colon of the rabbit. Using an isolated buffer-perfused rabbit left colon preparation, 1.0- or 5.0-micrograms doses of PAF were infused into the inferior mesenteric artery. Effluents from the inferior mesenteric vein and colonic lumen were collected and the concentrations of the eicosanoids, prostaglandin E, 6-ketoprostaglandin F1 alpha, thromboxane B2, and leukotriene B4 (LTB4), were measured by ELISA. During PAF infusion there was a significant increase of all prostanoids, but not LTB4 into the venous effluent and colonic luminal perfusate when compared to control experiments. Additional studies were performed by pretreating the colons with the PAF antagonists WEB-2170 or alprazolam prior to PAF infusion. Both venous and luminal effluent prostanoid release was effectively blocked by WEB-2170, but not by alprazolam. Colons pretreated with WEB-2170 prior to PAF had markedly diminished tissue injury when compared to colons treated with PAF alone. Inhibition of PAF-stimulated prostanoid release by WEB-2170 suggests that a PAF-sensitive receptor is present in rabbit colonic tissue which may induce eicosanoid-mediated tissue injury.

Animals↗

The relationship between intelligence and vigilance in children at risk.

The purpose of this study was to compare two competing models as an explanation of the relationship between intelligence and sustained attention in educationally at-risk kindergarten children. One model assumes that lower-IQ subjects allocate greater amounts of attentional resource of information-processing tasks than higher-IQ subjects, whereas the other model assumes that a "less-than" optimal level of arousal is associated with decrements in task performance across time. Twenty-nine teacher-nominated at-risk and 29 normal achieving kindergarten students were administered the Wechsler Preschool and Primary Scale of Intelligence-Revised (WPPSI-R) and vigilance taks. Signal detection measures of stimulus detectability (d'), decision criterion (beta), correct detections, and false alarms were used to assess children's sustained attention across three time periods (2, 4, and 6 min). The important results were (a) high-risk children were inferior on d' measures when compared to normal achieving children, (b) vigilance measures did not vary over time in either group, and (c) intelligence and vigilance shared a common factor in high-risk, but not low-risk, children. The results suggest that children educationally at risk suffer deficits related to attentional capacity for processing information.

Achievement↗

[In vitro exposure of a human bronchial epithelial cell line with nitrogen dioxide induces enhanced transcription and liberation of pro-inflammatory cytokines].

Studies of in vivo inhalation of nitrogen dioxide (NO2) have demonstrated a transient pulmonary inflammation. This study was done to determine the contribution of airway epithelial cells to the release of inflammatory mediators following NO2 exposure. Confluent cultures of the human bronchial epithelial cell line BEAS-2B on Transwell-Col filters were exposed for 1 h to air or NO2 up to 1.5 ppm with the apical fluids removed with 5% CO2 at 37 degrees C. The cells were hydrated with Hanks' Balanced Salt Solution (HBSS) in the basolateral compartment. Sequential reverse transcription and quantitative cDNA amplification (RT-PCR) was used to measure inflammatory mediator mRNA abundance in BEAS-2B cultures. When compared to air-exposed cells, NO2 induced increases in IL-6 (23.4-fold) and IL-8 (30.9-fold) mRNA abundance. The NO2-dependent increases in mRNA expression reached a maximum between 0 and 1 h post exposure and returned to baseline levels within 24 h. IL-6 and IL-8 proteins as measured by enzyme-linked immunosorbent assays (ELISA) were also elevated in supernatants recovered from NO2-exposed BEAS-2B cells. These studies suggest that exposure to NO2 induces the synthesis and release of inflammatory mediators from airway epithelial cells that may participate in the pathogenesis of airway disease.

Bronchi↗

Growth factor receptor regulation in the Minn-1 leprechaun: defects in both insulin receptor and epidermal growth factor receptor gene expression.

Leprechaunism is a disorder characterized by intrauterine growth retardation, distinctive dysmorphology, and extreme insulin resistance due to structural abnormalities of the insulin receptor (IR). In addition to the IR, it has been suggested that abnormalities of the other growth factor receptors may occur in this syndrome. Using fibroblasts from the Minn-1 leprechaun, we have now investigated the expression of three different growth factor receptor genes: the IR, the insulin-like growth factor-I receptor (IGF-IR), and the epidermal growth factor receptor (EGFR). In agreement with previous studies, we found decreased insulin binding to fibroblasts from the Minn-1 leprechaun. In these cells, the IR transcription rate was not decreased, and sequence analysis of the IR promoter region of the patient showed no abnormalities. Both single-stranded conformational polymorphism analysis (SSCP) and DNA sequencing confirmed a previously reported nonsense mutation in one of the patient's two IR alleles at exon 14. mRNA levels for the IR were markedly decreased, suggesting that IR mRNA turnover was enhanced. We then studied the expression of the closely related IGF-IR Ligand binding, mRNA content, and transcription rate were all normal. In contrast to the IGF-IR, when the EGFR was studied, ligand binding and mRNA content were markedly decreased. These studies therefore raise the possibility that the phenotypic expression of leprechaunism results from defects in the expression of both the IR and the EGFR.

Abnormalities, Multiple↗

Physiological role for cholecystokinin in reducing postprandial hyperglycemia in humans.

It is known that the ingestion of glucose alone causes a greater increase in plasma glucose levels than ingestion of the same amount of glucose given with other nutrients. Since physiological plasma concentrations of cholecystokinin (CCK) prolong gastric emptying, it is proposed that after a meal, CCK may modify plasma glucose levels by delaying glucose delivery to the duodenum. To evaluate the effect of CCK on oral glucose tolerance, plasma CCK, insulin, and glucose levels and gastric emptying rates were measured in eight normal males before and after the ingestion of 60 g glucose with the simultaneous infusion of either saline or one of two doses of CCK-8 (12 or 24 pmol/kg per h). Gastric emptying rates were measured by gamma camera scintigraphy of technetium 99m sulfur colloid and plasma CCK levels were measured by a sensitive and specific bioassay. Basal CCK levels averaged 1.0 +/- 0.1 pM (mean +/- SEM, n = 8) and increased to 7.1 +/- 1.1 pM after a mixed liquid meal. After glucose ingestion, but without CCK infusion, CCK levels did not change from basal, and the gastric emptying t1/2 was 68 +/- 3 min. Plasma glucose levels increased from basal levels of 91 +/- 3.9 mg/dl to peak levels of 162 +/- 11 mg/dl and insulin levels increased from 10.7 +/- 1.8 microU/ml to peak levels of 58 +/- 11 microU/ml. After glucose ingestion, with CCK infused at 24 pmol/kg per h, plasma CCK levels increased to 8 pM and the gastric emptying t1/2 increased to 148 +/- 16 min. In concert with this delay in gastric emptying, peak glucose levels rose to only 129 +/- 17 mg% and peak insulin levels rose to only 24.2 +/- 4.2 microU/ml. With CCK at 12 pmol/kg per h, similar but less dramatic changes were seen. To demonstrate that endogenous CCK could modify the plasma glucose and insulin responses to oral glucose, oral glucose was given with 50 g of lipid containing long-chain triglycerides. This lipid increased peak CCK levels to 3.7 +/- 0.9 pM. Concomitant with this rise in CCK was a delay in gastric emptying and a lowering of plasma glucose and insulin values. To confirm that CCK reduced hyperglycemia by its effect on gastric motility, 36 g glucose was perfused directly into the duodenum through a nasal-duodenal feeding tube in four subjects. With duodenal perfusion of glucose, there was no change in plasma CCK levels, but plasma glucose levels increased from basal levels of 93+/-5 to 148+/-6 mg/dl and insulin levels rose from 10.6+/-3.5 to 29.5+/-5.2 microU/ml. When CCK was infused at 24 pmol/kg per h, neither the plasma glucose nor insulin responses to the duodenal administration of glucose were modified. Thus we conclude that CCK, in physiological concentrations, delays gastric emptying, slows the delivery of glucose to the duodenum, and reduces postprandial hyperglycemia. These data indicate, therefore, that CCK has a significant role in regulating glucose homeostasis in human.

Administration, Oral↗

Dietary regulation of rat intestinal cholecystokinin gene expression.

Cholecystokinin (CCK) is a gastrointestinal hormone produced by discrete endocrine cells in the upper small intestine and released after ingestion of a meal. The present study was designed to determine if enhanced CCK secretion is associated with increases in intestinal CCK mRNA levels. Rats, prepared with indwelling intraduodenal cannulae, were first fed an elemental diet that did not stimulate CCK release. Next, as a means of stimulating CCK secretion, soybean trypsin inhibitor was perfused for up to 24 h. Trypsin inhibitor administration increased plasma CCK levels from 0.9 +/- 0.1 to approximately 5 pmol/liter. RNA was prepared from the proximal small intestine at various times after trypsin inhibitor perfusion and mRNA levels analyzed by hybridization with a CCK cDNA probe. After 12 and 24 h of trypsin inhibitor treatment there were three- and fourfold increases, respectively, in CCK mRNA levels. In comparison, there was no change in beta-actin mRNA levels. To determine if regulation of CCK mRNA was at the level of CCK gene transcription, labeled transcripts from nuclear run-on incubations were hybridized to immobilized CCK cDNA. In trypsin inhibitor-treated rats, a two- to threefold increase in transcriptional activity was observed, whereas beta-actin gene transcription levels were unaltered. These studies indicate that stimulation of CCK secretion is associated with an increase in intestinal CCK mRNA content resulting from an increase in CCK gene transcription.

Animals↗

Atraumatic loop electrodes for electroretinography.

A simple method is described for producing inexpensive, atraumatic electrodes for electroretinography. Scleral contact is obtained by a loop of ultra-lightweight stainless steel wire placed between the eye and lower lid. Recordings obtained by this method in animals are equal to those recorded with needle electrodes from the same ophthalmologically normal dog are presented.

Animals↗

Physiological concentrations of cholecystokinin stimulate amino acid-induced insulin release in humans.

After a meal, hormones released from the gut potentiate insulin release. This study was undertaken to determine if physiological concentrations of plasma cholecystokinin (CCK) stimulate insulin secretion in man. Employing a specific CCK bioassay, postprandial CCK levels were determined in normal subjects. Ingestion of a mixed liquid meal stimulated an increase in circulating CCK from a mean fasting level of 0.9 +/- 0.2 (SEM) pmol/L to a mean peak level of 7.1 +/- 1.1 pmol/L within 10 min of feeding. After 30 min the mean CCK level fell to 3.5 pmol/L and remained elevated for the remainder of the 90-min experiment. Eight subjects underwent 40-min infusions of either arginine (15 g), mixed amino acids (15 g), or glucose (30 g) with or without the simultaneous infusion of CCK-8. Since CCK-8 has full biological potency, this form was chosen for infusion to reproduce total CCK bioactivity in plasma. CCK-8 was infused at rates of 12 or 24 pmol/kg X h, producing steady state plasma CCK levels of 4.5 +/- 0.7 and 8.2 +/- 1.1 pmol/L, respectively, spanning the range of normal postprandial levels. CCK alone had no effect on insulin, glucose, or glucagon levels. Administration of arginine alone stimulated insulin from a mean basal level of 12.8 +/- 1.3 microU/mL to a peak level of 41.3 +/- 5.4 microU/mL. Infusion of CCK at 12 and 24 pmol/kg X h augmented arginine-stimulated insulin levels to peaks of 62.5 +/- 13.9 and 63.0 +/- 4.0 microU/mL, respectively. Moreover, CCK nearly doubled the total amount of insulin secreted during the arginine infusion. A similar potentiation of glucagon release was found with both doses of CCK. In addition, infusion of a mixture of amino acids with and without concomitant CCK infusions revealed that CCK potentiated the insulin release induced by mixed amino acids. In contrast to the potent effect of CCK on amino acid-induced insulin release, infusions of CCK together with glucose caused no enhancement of glucose-stimulated insulin release. These results demonstrate that physiological concentrations of CCK potentiate amino acid (but not glucose)-induced insulin secretion in man. These data suggest, therefore, that CCK may have a role in man as a modulator of insulin release.

Adult↗

Salmonellosis in hospitalized horses: seasonality and case fatality rates.

Salmonellosis was studied during an 11-year period (July 1971 through June 1982) in 245 hospitalized horses. Ten years' data (207 cases) were analyzed in a time series study. Peak seasonality of the disease was from June through September. The cycle curve revealed 3 major outbreaks, with no apparent periodicity. Eighteen Salmonella serotypes caused clinical salmonellosis in horses, but 84% of the cases and 90% of the deaths were caused by 5 serotypes: Salmonella typhimurium, S typhimurium var copenhagen, S anatum, S kottbus, and S saint-paul. Overall, the case fatality rate was 44.9%. Excluding mixed infections, horses infected with S typhimurium and S typhimurium var copenhagen, had a significantly higher (P less than 0.001) case fatality rate (60.4%) than those infected with other Salmonella serotypes (32.3%).

Age Factors↗

Risk factors for salmonellosis in hospitalized horses.

A case-control study to identify risk factors associated with isolation of Salmonella was accomplished, using data from records of horses hospitalized in the period July 1971 through June 1982. Horses in which nasogastric tubes were passed were at 2.9 times greater risk of having Salmonella isolated, compared with horses that did not undergo this procedure. Horses treated with antibiotics parenterally were at 6.4 times greater risk, and those treated with antibiotics orally and parenterally were at 40.4 times greater risk of developing salmonellosis, compared with horses not receiving such treatment. Horses admitted because of colic were 4.2 times as likely to have Salmonella isolated as those admitted for other reasons. Breed, age, and type of surgery did not appear to be risk factors. The risk factors identified and the magnitude of their association with Salmonella isolation were similar to those observed in a preceding study.

Age Factors↗