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Y Chung

Publications and source records attributed to Y Chung.

At least 73 records · Page 4Linked to original sources

Ferret tracheal epithelial cells grown in vitro are resistant to lethal injury by activated neutrophils.

Airway inflammation is often accompanied by accumulation of polymorphonuclear leukocytes (PMN) as well as epithelial sloughing. To determine whether PMN contribute to epithelial damage in inflammatory states, we examined the interaction of PMN and tracheal epithelial cells in culture. Ferret tracheal epithelial (FTE) cells were grown in primary culture on collagen-coated multiwell dishes. Confluent monolayers were loaded with [51Cr]O4 and exposed to resting and activated neutrophils. There was no significant increase in cell death as assessed by [51Cr]O4 release over 8 h of exposure, at effector (PMN)-to-target cell (epithelial cell) ratios up to 90:1, whether PMN were activated by maximal activating concentrations of phorbol myristate acetate or formylmethionylleucylphenylalanine with or without cytochalasin B. This result was confirmed by using a [3H]leucine release assay as well as by uptake of a supravital dye. However, exposure of FTE cells to activated PMN for 4 h resulted in separation of adjacent cells and formation of gaps in the monolayer, without significant detachment of epithelial cells from the dish. Gap formation was prevented by alpha 1-antitrypsin, N-methoxysuccinyl-Ala-Ala-Pro-Val-chloromethylketone, or 10% serum, was mimicked by PMN elastase (24 micrograms/ml), but not by hydrogen peroxide in concentrations up to 10 mM, or superoxide generated by xanthine/xanthine oxidase, and was reversible within 24 h of removal of elastase and exposure to fresh medium. We conclude that activated PMN do not kill FTE cells in culture. However, disruption of the epithelial cell monolayer probably by a proteolytic mechanism can result from exposure to activated PMN and may allow alteration of the epithelial barrier during airway inflammation.

Animals↗

Receptor-mediated cAMP production in adult and infant ferret tracheal epithelium.

Tracheal epithelial cells obtained from adult and infant ferrets were grown in primary culture in vitro. Cells from adult animals grew readily, and many ciliated cells were observed in the cultures. Successful cultures were derived from infant animals, but cell number in infant and adult cultures began to decrease after 6 d. Receptor-mediated activation of adenylate cyclase was determined by incubating monolayers of adult or neonatal cells with beta-adrenergic agonists, prostaglandin E2 (PGE2) and vasoactive intestinal peptide and measuring cAMP production. beta-adrenergic agonists and PGE2, but not vasoactive intestinal peptide, stimulated production of cAMP in both cell types. The 50% effective concentration for isoproterenol and PGE2 in neonatal ferret tracheal epithelial (NFTE) cells was nearly 10-fold more than for adult ferret tracheal epithelial (FTE) cells, but maximal agonist-stimulated cAMP production was significantly different between the cell types only for PGE2. Radioligand binding studies were performed using the beta-adrenergic antagonist [125I]iodocyanopindolol on membrane particulates from confluent monolayers and freshly isolated FTE cells. Binding of iodocyanopindolol was saturable, stereoselective, and of high affinity (binding affinity = 26.1 +/- 6.6 pmol/L, adult; 16.5 +/- 5.7 pmol/L, NFTE). Competition studies with the specific beta 2-adrenergic receptor antagonist, ICI 118 551 revealed a predominance of beta 2-adrenergic receptors on both adult FTE and NFTE cells. Receptor density was significantly higher in adult FTE compared with NFTE cells (48.2 +/- 9.1, 18.1 +/- 1.5 fmol/mg, respectively). Basal adenylate cyclase activity was significantly lower in neonatal cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenylyl Cyclases↗

Human immunodeficiency virus causes mononuclear phagocyte dysfunction.

There is compelling clinical evidence for dysfunction of the mononuclear phagocyte system in patients with AIDS, which is believed due in part to loss of T-cell cooperativity. The direct consequences of human immunodeficiency virus infection on macrophage function are unknown. To address this question we infected normal human macrophages in vitro with a monocytotropic strain of human immunodeficiency virus and performed assays to quantify their extra- and intracellular killing ability. Human immunodeficiency virus-infected macrophages were significantly less effective than control cells in mediating antibody-dependent cell-mediated cytotoxicity against leukemic cell targets and intracellular killing of Candida pseudotropicalis. The functional defects were profound, related temporarily to active virus production by the macrophages, and could not be overcome by granulocyte-macrophage colony-stimulating factor. Treatment of macrophages with 3'-azido-3'-deoxythymidine (AZT) 6 days after infection caused a marked decrease in virus production and prevented development of the intracellular killing functional defect. The results suggest that early antiviral therapy may be useful in preventing or mitigating some virus-induced mononuclear phagocyte dysfunction.

Antibody-Dependent Cell Cytotoxicity↗

Foreign body epithelioid granuloma after cosmetic eyebrow tattooing.

We describe two patients with epithelioid granulomatous inflammation on the eyebrows after undergoing cosmetic eyebrow tattooing. We tried to analyze the causative elements from biopsy specimens and tattoo inks with x-ray microanalysis. We suggest that granuloma caused by cosmetic eyebrow tattooing is a complication worthy of mention.

Adult↗

13C NMR studies of glycogen turnover in the perfused rat liver.

To assess whether hepatic glycogen is actively turning over under conditions which promote net glycogen synthesis we perfused livers from 24-h fasted rats with 20 mM D-[1-13C]glucose, 10 mM L-[3-13C]alanine, 10 mM L-[3-13C]lactate, and 1 microM insulin for 90 min followed by a 75-min "chase" period with perfusate of the same composition containing either 13C-enriched or unlabeled substrates. The peak height of the C-1 resonance of the glucosyl subunits in glycogen was monitored, in real time, using 13C NMR techniques. During the initial 90 min the peak height of the C-1 resonance of glycogen increased at almost a constant rate reflecting a near linear increase in net glycogen synthesis, which persisted for a further 75 min if 13C-enriched substrates were present during the "chase" period. However, when the perfusate was switched to the unenriched substrates, the peak height of the C-1 resonance of glycogen declined in a nearly linear manner reflecting active glycogenolysis during a time of net glycogen synthesis. By comparing the slopes of the curve describing the time course of the net [1-13C] glucose incorporation into glycogen with the rate of net loss of 13C label from the C-1 resonance of glycogen during the "chase" period we estimated the relative rate of glycogen breakdown to be 60% of the net glycogen synthetic rate. Whether this same phenomenon occurs to such an appreciable extent in vivo remains to be determined.

Alanine↗

Lex and Ley antigen expression in human pancreatic cancer.

Carbohydrate antigens are useful markers for the serological detection of pancreatic cancer. However, data concerning the expression of structurally well-defined carbohydrate antigens in normal and malignant pancreatic tissue is quite limited. The Lex and Leg antigens are closely related carbohydrate antigens synthesized on type 2 blood group oligosaccharide side chains of glycolipids and glycoproteins. Monoclonal antibodies anti-SSEA-1 and AH6 recognize "simple" Lex and Ley epitopes, respectively, regardless of the length of the carrier carbohydrate. Other monoclonal antibodies recognize Lex (FH4), sialyl Lex (FH6, IB9) or Ley (KH1, CC-1, CC-2) carried only by elongated type 2 side chains with or without internal alpha 1,3 fucosyl substitution. The present comparative immunohistochemical study used tissues of normal pancreas, chronic pancreatitis, and pancreatic cancer to determine the normal expression of Lex and Ley antigens in the pancreas and to elucidate any cancer-associated alterations. Lex-related antigens were not expressed in normal pancreas, expressed in only 10-20% of chronic pancreatitis tissues, but expressed in 50-70% of pancreatic cancer tissues. The frequency of Lex-related antigen expression in pancreatic cancer tissues was lowest in poorly differentiated cancers. Within a given specimen, at least three or all four of the Lex recognizing monoclonal antibodies were simultaneously expressed. Unlike Lex antigens, Ley-related antigens were expressed in 32-77% of specimens of normal pancreas, with similar frequencies in specimens of chronic pancreatitis and pancreatic cancer. In normal pancreas, simple Ley was expressed by both ductal and acinar cells, but extended Ley antigens were expressed only by acinar cells. In pancreatic cancer, extended Ley antigen expression was found in less than 10% of poorly differentiated tumors. Coexpression among the Ley-related antigens was less common than with the Lex-related antigens. Also in cancer specimens, simple Lex and simple Lex antigens were often concordantly expressed, whereas extended Lex and extended Ley antigen expression was often discordant. Hyperplastic ducts and ductules associated with pancreatic cancer expressed Lex-related antigens more frequently than morphologically similar lesions associated with chronic pancreatitis. These results demonstrate that Lex-related antigens are cancer-associated determinants in the human pancreas. The discrepant expression between Lex and Ley antigens in these tissues implies altered regulation of fucosyltransferase activity associated with the malignant state.

Antibodies, Monoclonal↗

Evaluation of serum pancreatic enzymes, carbohydrate antigen 19-9, and carcinoembryonic antigen in various pancreatic diseases.

Comparative studies of pancreatic enzymes carbohydrate antigen 19-9 (CA 19-9) and carcinoembryonic antigen (CEA) were performed in various pancreatic disease. In acute pancreatitis as well as during acute exacerbation of chronic pancreatitis, all pancreatic enzymes were abnormally high. In chronic pancreatitis, they did not have any diagnostic sensitivity for pancreatic insufficiency. In pancreatic carcinoma, serum elastase levels may have a diagnostic value compared with other pancreatic enzymes. In studies of CEA and CA 19-9, both tumor markers were within normal range in benign pancreatitis but 27.7% of CEA and 30.7% of CA 19-9 in acute pancreatitis were above normal. In pancreatic carcinoma, although most of these patients had advanced disease, both tumor markers were extremely high and 61% for CEA and 71% for CA 19-9 were above normal. In patients with resected pancreatic carcinoma, serum CEA was slightly higher than normal CA 19-9 was much higher than normal. The sensitivity of CEA and CA 19-9 in this group were 33 and 77.7%, respectively. The results indicate that the CA 19-9 assay is a useful adjunct in the diagnosis of pancreatic carcinoma, possibly in the resectable stage especially combined measurement of serum elastase and CEA.

Adolescent↗

Rapid test for assay of ozone sensitivity in Escherichia coli.

A rapid test devised for assay of ozone sensitivity in Escherichia coli is described. The detection of new mutants, either more resistant or more sensitive than wild type strain to ozone, and the genetic analysis of ozone recombinants are now possible. Results confirm that ozone resistance is probably involved with DNA repair mechanism; and show that ozone and ultraviolet light inhibit the cell division capacity of lon mutant in a similar way.

Bacteriological Techniques↗