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Biomedical subjects

W Reed

Publications and source records attributed to W Reed.

At least 55 records · Page 3Linked to original sources

Connexin 26 expression in human and ferret airways and lung during development.

Coordinated microscopic and molecular biological studies were used to document gap junction expression during postnatal development in ferret tracheal epithelium and lung and in fetal and adult human airway and lung. Expression of connexin 26 (Cx26) in the ferret airways was limited to the epithelial layer and was observed only during the newborn interval. In contrast, we found Cx26 expressed in the alveolar epithelium of the ferret lung by in situ hybridization, Northern blotting, RT-PCR amplification, and immunocytochemical labeling at all ages examined. This finding was further confirmed by documentation of gap junctional plaques upon ultrastructural examination of freeze-fracture replicas of adult ferret lung tissue. Parallel studies of developing human fetal lung and airway suggested connexin expression in the airways only in the first trimester but, as in the ferret, persistent expression was observed in both fetal and adult lung. These studies suggest that the transient expression of Cx26 is a reliable early indicator of airway epithelial development and differentiation in the airways. In contrast, Cx26 expression persists throughout life in the lung, suggesting that gap junctions serve more perennial intercellular communication functions in the peripheral lung.

Animals↗

Air pollution particles induce IL-6 gene expression in human airway epithelial cells via NF-kappaB activation.

Fine particles in the air have been associated with increased mortality and morbidity. Particulate air pollution is a complex mixture which varies by region and includes a number of components including residual oil fly ash (ROFA), a byproduct of power plant and industry fuel-oil combustion. Human airway epithelial cells exposed to ROFA release inflammatory cytokines including interleukin (IL)-6, IL-8, and tumor necrosis factor. Expression of these genes is dependent upon pretranscriptional binding of cis regulatory elements, including nuclear factor kappaB (NF-kappaB). To investigate the role of NF-kappaB in the particulate-induced IL-6 response, we exposed human airway epithelial cells (BEAS-2B) to ROFA in vitro. ROFA stimulated a time- and dose-dependent increase in IL-6 messenger RNA (mRNA), which was preceded by the activation of nuclear proteins binding to the NF-kappaB sequence motif in the IL-6 promoter. Transient transfection of BEAS-2B cells with the 5' promoter region of the IL-6 gene linked to a luciferase reporter gene confirmed that NF-kappaB binding is necessary for the transcription of IL-6 mRNA. The IL-6 response was inhibited by the metal chelator deferoxamine and the free radical scavenger N-acetyl-L-cysteine, suggesting that the activation of NF-kappaB may be mediated through reactive oxygen intermediates generated by transition metals found in ROFA. Activation of NF-kappaB may therefore be a critical first step in the inflammatory cascade following exposure to particles generated by oil combustion.

Acetylcysteine↗

Copper-dependent inflammation and nuclear factor-kappaB activation by particulate air pollution.

Particulate air pollution causes increased cardiopulmonary morbidity and mortality, but the chemical determinants responsible for its biologic effects are not understood. We studied the effect of total suspended particulates collected in Provo, Utah, an area where an increase in respiratory symptoms in relation to levels of particulate pollution has been well documented. Provo particulates caused cytokine-induced neutrophil chemoattractant-dependent inflammation of rat lungs. Provo particulates stimulated interleukin-6 (IL-6) and IL-8 production, increased IL-8 messenger RNA (mRNA) and enhanced expression of intercellular adhesion molecule-1 (ICAM-1) in cultured BEAS-2B cells, and stimulated IL-8 secretion in primary cultures of human bronchial epithelium. Cytokine secretion was preceded by activation of the transcription factor nuclear factor-kappaB (NF-kappaB) and was reduced by treatment of cultures with superoxide dismutase, deferoxamine, or N-acetylcysteine. These biologic effects were replicated by culturing BEAS cells with quantities of Cu2+ found in Provo extract. IL-8 secretion by BEAS cells could be modified by addition of normal constituents of airway lining fluid to the culture medium. Mucin significantly reduced IL-8 secretion, and ceruloplasmin significantly increased IL-8 secretion and activation of NF-kappaB. These findings suggest that copper ions may cause some of the biologic effects of inhaled particulate air pollution in the Provo region of the United States, and may provide an explanation for the sensitivity of asthmatic individuals to Provo particulates that has been observed in epidemiologic studies.

Air Pollution↗

Dehydroepiandrosterone and analogs inhibit DNA binding of AP-1 and airway smooth muscle proliferation.

The adrenal steroid dehydroepiandrosterone (DHEA) and its analogs reduce growth of immortalized and malignant cell lines. We therefore explored their effects on the growth of airway smooth muscle, whose hyperplasia may lead to fixed airways obstruction and enhanced airways hyperresponsiveness in severe chronic asthma. DHEA and its potent analog 16 alpha-bromoepiandrosterone dramatically reduced proliferation in primary cultures of rat tracheal smooth muscle stimulated with fetal bovine serum or platelet-derived growth factor. Growth inhibition was dose-dependent and could not be attributed to interference with glucose-6-phosphate dehydrogenase activity or cholesterol metabolism, as reported for immortalized or malignant cell lines, respectively. Expression of the early response gene c-fos remained intact, but DHEA and 16 alpha-bromoepiandrosterone decreased DNA binding of the transcription factor activator protein-1, a later response important for expression of genes that mediate DNA synthesis and cell cycle progression. These results suggest that the nonglucocorticoid steroid DHEA and its analogs may impair activation of secondary growth response genes in a fashion analogous to that reported for glucocorticoids and that they may prove useful for treatment of asthmatic airway remodeling in the human.

Androsterone↗

Disruption of protein tyrosine phosphate homeostasis in bronchial epithelial cells exposed to oil fly ash.

Residual oil fly ash (ROFA) is a toxic air pollutant that we have previously shown induces inflammatory mediator expression in human bronchial epithelial cells. To identify intracellular signaling mechanisms activated by ROFA, we studied its effect on protein tyrosine phosphate metabolism in the human bronchial epithelial cell line BEAS. Noncytotoxic levels of ROFA induced significant dose- and time-dependent increases in protein tyrosine phosphate levels in BEAS cells. ROFA-induced increases in protein phosphotyrosines were associated with its soluble fraction and were mimicked by vanadyl [V(IV)]- and vanadate [V(V)]-containing solutions. Ferrous, ferric, and nickel (II) ion solutions failed to increase phosphotyrosine levels. Tyrosine phosphatase activity, which was known to be inhibited by vanadium ions, was markedly diminished after ROFA treatment. Tyrosine kinase activity was unaffected. We conclude that ROFA exposure induces vanadium ion-mediated inhibition of tyrosine phosphatase activity, leading to accumulation of protein phosphotyrosines in BEAS cells. These findings demonstrate that ROFA exposure disrupts protein tyrosine phosphate homeostasis in BEAS cells and suggest a possible mechanism that leads to increased synthesis of proinflammatory proteins in airway epithelial cells exposed to PM10.

Air Pollutants↗

RSV infection of human airway epithelial cells causes production of the beta-chemokine RANTES.

Infection of airway epithelial cells with respiratory syncytial virus (RSV) results in the production of a restricted number of cytokines, which may modulate the inflammatory response to infection. To get a better understanding of epithelial cell-mediated inflammatory processes in RSV disease, the aim of the present study was to identify the production of mononuclear cell/eosinophil/mast cell inflammatory chemokines [monocyte chemotactic protein (MCP)-1, MCP-3, macrophage inflammatory protein-1beta, and RANTES] during productive RSV infection in airway epithelial cells. Normal human primary bronchial epithelial cell cultures, nasal epithelial cell explants, and the BEAS-2B airway epithelial cell line were inoculated with RSV, and chemokine induction was assessed during the phase of logarithmic increase in infectious virus production. Only RANTES was found to increase in epithelial cell cultures in an infection-dependent manner. Furthermore, RANTES was released only by RSV-producing cells. To determine whether RANTES was induced by RSV infection in vivo, RANTES was measured in nasal lavage fluids (NLF) from children with RSV-positive and RSV-negative upper respiratory infection and children when they were well. RANTES was increased significantly during RSV infection (128 +/- 38 pg/ml NFL) compared with non-RSV infection (42 +/- 12 pg/ml NFL) and with asymptomatic baseline (13 +/- 4 ng/ml NFL) in the same children. Because RANTES is an effective eosinophil and memory T cell chemoattractant and activator and because eosinophil-dominated inflammation is a hallmark of asthmatic airways, RANTES may play a role in the pathogenesis of RSV-induced exacerbations of airway reactivity and wheezing.

Bronchi↗

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↗

The use of the single cell gel electrophoresis assay in detecting DNA single strand breaks in lung cells in vitro.

DNA single strand breaks (SSB) can be used as a biomarker of oxidant exposure, and also as an indicator of the carcinogenicity/ mutagenicity of a substance. The single cell gel electrophoresis (SCGE) assay is more sensitive and requires fewer cells compared to other techniques used for detecting SSB. We examined the utility of using the SCGE assay for human lung cells exposed to endogenous and exogenous oxidants. A human bronchial cell line (BEAS) was used as a model of airway epithelial cells in this study. BEAS cells exposed to 0-50 microM hydrogen peroxide (H2O2) for 60 min at 4 degrees C exhibited a concentration-dependent increase in SSB as determined by an increased DNA migration area in a gel undergoing electrophoresis. H2O2-induced increases in DNA SSB were also demonstrated using cultured normal human tracheobronchial epithelial (NHBE) cells and human alveolar macrophages in a concentration response manner. BEAS cells were also exposed to air or ozone (O3) on a Transwell filter without medium present apically. Cells exposed to O3 at 0.1 or 0.4 ppm at 37 degrees C for up 120 min had a time- and concentration-dependent increase in SSB compared to air-exposed cells. NHBE cells exposed to 0.4 ppm O3 (60 min) also had increased DNA SSB. Cells with H2O2-induced DNA SSB can be frozen and stored up to 4 weeks without altering the original DNA SSB. These findings indicate that SCGE can be used to detect SSB in cultured lung cells, and has applicability for detecting SSB in lung cells recovered from in vivo and in vitro exposures to oxidants.

Bronchi↗

Localization of cyclic GMP-dependent protein kinase in human mononuclear phagocytes.

The presence and physiological role of cGMP-dependent protein kinase (G-kinase) was investigated in human mononuclear phagocytes. Western blots of monocyte extracts revealed a single polypeptide band that comigrated with purified bovine lung G-kinase. G-kinase was localized by immunofluorescence microscopy in freshly isolated adherent human monocytes, monocyte-derived macrophages cultured from 4 to 14 days, and alveolar macrophages. In monocytes, G-kinase was localized in granules or vesicles in the cytoplasm, at the microtubule organizing center, on filaments, and in the nucleus. In monocyte-derived macrophages, intense staining for G-kinase was found in the vicinity of the Golgi, in vesicles throughout the cytoplasm, and diffusely in the nucleus. Dual-label confocal laser scanning microscopy demonstrated that G-kinase was colocalized with the endoplasmic reticulum. For comparison, G-kinase was localized in alveolar macrophages that were adhered from 3 to 30 min. In these cells, G-kinase was prominent within the organelle-rich area pericortical to the nucleus. However, a well-defined area of intense staining was also observed at the cell periphery at early time points during adherence and spreading. Rhodamine-labeled phalloidin showed that this peripheral area was rich in F-actin. Cytochalasin D, but not nocodazole, inhibited G-kinase targeting to the cell margin. Furthermore, the guanylate cyclase inhibitor LY83583 inhibited alveolar macrophage spreading and staining for G-kinase at the cell periphery. These data suggest that G-kinase may play an important role in cGMP-mediated regulation involved in protein processing and cell motility.

Aminoquinolines↗

A long-term study of the interaction between iron and alcohol in an animal model of iron overload.

BACKGROUND/AIMS: The hypothesis that chronic alcohol ingestion potentiates iron-associated liver injury was investigated in the 'carbonyl iron-overload rat model'. METHODS: Newborn male and female Wistar-Furth rats (seven per group) were used to investigate iron-alcohol interaction over a 26-week period. Groups 1 and 2 were iron loaded from birth, while the others received normal diet. At 10 weeks all rats commenced Lieber-DeCarli liquid diet; additional treatments were: group 1 6 g carbonyl iron/1000 ml diet plus alcohol; group 2 carbonyl iron in the liquid diet; group 3 alcohol in the liquid diet; group 4, the controls, received liquid diet only. RESULTS: This study confirmed our previous observation that iron-loading from birth resulted in grade III-IV siderosis, in both male and female rats, and caused fibrosis associated with periportal macrophages. Alcohol-feeding, in addition to iron-feeding for 26 weeks significantly lowered the hepatic iron concentration in both male and female rats compared to those fed iron only (p < 0.05). Alcohol feeding did increase hepatic fibrosis in the iron-loaded animals. However, serum alanine aminotransferase activity was significantly higher in the iron-alcohol group than in the other groups (p < 0.05). CONCLUSIONS: Thus, contrary to expectation, chronic alcohol feeding failed to potentiate hepatic fibrosis in iron-overloaded rats, although there was rather more hepatocyte necrosis, and the serum alanine aminotransferase activity was significantly higher in the iron-alcohol group than in the other groups.

Alcoholism↗

[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↗

Omeprazole v ranitidine for prevention of relapse in reflux oesophagitis. A controlled double blind trial of their efficacy and safety.

The aim of this study was to compare recurrence rates of reflux oesophagitis (after endoscopic healing with omeprazole) over a 12 month period of randomised, double blind, maintenance treatment with either daily omeprazole (20 mg every morning; n = 53), weekend omeprazole (20 mg on three consecutive days a week, n = 55) or daily ranitidine (150 mg twice daily, n = 51). Patients were assessed for relapse by endoscopy (with gastric biopsy) at six and 12 months, or in the event of symptomatic recurrence, and serum gastrin was monitored. At 12 months, the estimated proportions of patients in remission (actuarial life table method) were 89% when receiving daily omeprazole compared with 32% when receiving weekend omeprazole (difference 57%, p < 0.001, 95% confidence intervals: 42% to 71%) and 25% when receiving daily ranitidine (difference 64%, p < 0.001, 95% confidence intervals: 50% to 78%). Median gastrin concentrations increased slightly during the healing phase, but remained within the normal range and did not change during maintenance treatment. No significant pathological findings were noted, and no adverse events were attributable to the study treatments. In conclusion, for patients who respond favourably to acute treatment with omeprazole 20 mg every morning, the drug is a safe and highly effective maintenance treatment for preventing relapse of reflux oesophagitis and its associated symptoms over 12 months. By contrast, weekend omeprazole and daily ranitidine were ineffective.

Adolescent↗

[Villous glandular adenocarcinoma of the uterine cervix. A subtype with favourable prognosis?].

The frequency of adenocarcinoma of the uterine cervix is increasing, and accounts for 10-20% of all cervical carcinomas. Adenocarcinoma usually affects women in their fifties and sixties. Mortality is high, with a five-year survival between 49 and 65%. Important prognostic factors are tumour grade, tumour diameter and clinical stage. The prognostic value of histologic subtyping is still under debate. Villoglandular (papillary) adenocarcinoma is a recently described form of well-differentiated adenocarcinoma in the cervix. This lesion apparently affects young women and carries an excellent prognosis. We describe five patients with villoglandular adenocarcinoma in the cervix, clinical stage IB and IIA. Mean age was 34.2 years and mean depth of cervical infiltration was 1.25 cm. Four patients were treated with radical hysterectomy and bilateral pelvic lymphadenectomy and one with simple hysterectomy. All five received postoperative chemotherapy. There is no evidence of recurrent tumour after a follow-up of 18 to 28 months. Cervical conization or simple hysterectomy is probably adequate treatment for this subtype of adenocarcinoma.

Adenocarcinoma, Papillary↗

Complement factors H and I synthesized by B cell lines function to generate a growth factor activity from C3.

B lymphocytes and transformed B lymphoblastoid cell lines express CR2 (CD21, C3d/EBV-receptor) that is specific for C3 fragments generated by cleavage of C3b or spontaneously hydrolyzed native C3 (C3i) by the serum enzyme factor I and its cofactor, factor H. It had been shown previously that the Raji B cell line could be cultivated in serum-free medium supplemented with only transferrin and either OKB7 anti-CR2 mAb, C3d, or C3d-derived peptides containing the CR2 binding site. Because these agents appeared to function through ligation of CR2, it was unclear how native C3 could also serve as a growth factor, because C3 does not bind to CR2. It appeared possible that Raji cells might be able to use endogenous factors H and I to generate a CR2 ligand from C3, because previous studies had shown that Raji cells synthesized factor H and probably also synthesized factor I. PCR analysis was used to demonstrate factor I mRNA in Raji cells. Secretion of Raji cell factor I protein was confirmed by a sensitive mAb ELISA. Several B cell lines were examined for C3-dependent growth. Raji cells required both C3 (or OKB7) and transferrin for growth, whereas Wil-2 cells grew with transferrin alone and C3 enhanced the growth-promoting activity of transferrin. Two other B cell lines (Daudi and U698M), the T cell line 8402, and the U937 monocytoid cell line could not be sustained with transferrin plus C3. The C3-dependent growth of Raji cells was inhibited almost completely by either OX-23 anti-factor H or 052.11.3 anti-factor I mAb that also blocked the activity of serum-derived factor H or I, respectively. By contrast, there was no inhibition of growth by either OX-24 anti-factor H or OX-21 anti-factor I mAb that did not block factors H and I activity. After the spontaneous hydrolysis of native C3 to C3i, it is hypothesized that Raji cells convert C3i to iC3i with endogenous factors H and I, and then this iC3i serves as a growth factor by binding to membrane CR2.

Animals↗

CDw75 antigen expression in breast lesions.

Alterations on the cell surface of the oligosaccharide portion of glycoproteins and glycolipids are thought to play a role in tumorigenesis. Sialyltransferase catalyzes the incorporation of sialic acid to the carbohydrate group of glycoconjugates. Sialyltransferase has been found elevated in different tumour tissues and in the serum of cancer patients. In the present study we have examined the expression of the beta-galactosyl alpha 2,6-sialyltransferase requiring epitope CDw75, with the monoclonal antibody HH2. 142 breast lesions were included. 21% of the carcinomas in situ and 35% of the invasive carcinomas showed a diffuse cytoplasmic staining. Seven cases of invasive carcinomas also showed a distinct membrane immunoreactivity. We found no correlation between reactivity for CDw75 in malignant lesions and their metastatic potential. Only five out of 11 primary tumours with metastases expressed CDw75 in the primary tumour. In the benign lesions, there was a positive reaction in proliferating lesions, e.g. intraductal papillomas (2 out of 3 cases) and in epithelial proliferations in fibrocystic disease (10 out of 14 cases). None of the four fibroadenomas and phyllodes tumours and only one out of 22 cases of normal breast tissues showed immunoreactivity for HH2. In the malignant lesions, CDw75 was more frequently expressed in the carcinomas of high malignancy grade. The high frequency of immunoreactivity among the benign breast lesions can be indicative of activation of the epithelial cells.

Antigens, CD↗