Neurokinin receptors. Comparison of data from classical pharmacology, binding, and molecular biology.
Explore the source record for details and available documents.
Biomedical subjects
Publications and source records attributed to K Nguyen.
Explore the source record for details and available documents.
The B7 family of costimulatory molecules provides the second signal necessary for activation of T cells. In the absence of the second signal, responding T cells become anergic. Although predominantly expressed on professional APCs, recent evidence shows that the B7 molecules are also expressed on T cells. To study the functions of B7 molecules on T cells, we transfected murine B7.1 (CD80) and B7.2 (CD86) cDNAs into the EL4 T cell thymoma cell line and examined the transfectants for their ability to costimulate T cell proliferation in vitro and to induce antitumor immunity in vivo. Here we show that although EL4-B7.1 cells costimulate T cells and induce tumor regression, EL4-B7.2 transfectants failed to costimulate T cell proliferation or induce tumor regression. To understand the cellular basis for this difference, we examined the binding of EL4-B7.1 and EL4-B7.2 to CTLA4 and CD28. Whereas EL4-B7.1 cells bound both CTLA4-Ig and CD28-Ig, EL4-B7.2 transfectants preferentially bound CTLA4-Ig, but not CD28-Ig. Similar binding data were obtained with freshly isolated murine T cells, which have been shown to constitutively express B7.2. Our data suggest, therefore, that B7.2 expressed on T cells may not costimulate but instead inhibit the T cell response by preferential binding to CTLA4.
The small intestine is richly innervated by the sympathetic nervous system. High concentrations of monoamines, most notably norepinephrine, are found throughout the various intestinal layers. In order to determine whether norepinephrine is capable of influencing bacterial pathogenesis, the growth and production of virulence factors in ETEC and EHEC were examined in a physiologically relevant medium utilizing very low initial bacterial inoculums to more closely mimie in vivo conditions. The growth of ETEC strain B44 and the production of the K99 pilus adhesin on a protein equivalent basis was greatly increased in the presence of norepinephrine. Growth of EHEC O157:H7 was also increased in norepinephrine containing medium as well as production of SLT-I and SLT-II. The ability of norepinephrine to increase both bacterial growth and expression of virulence factors was shown to be non-nutritional in nature. Given the abundant adrenergic innervation in the small intestine, these in vitro results suggest that the neurohumoral environment of the host may play a role in bacterial growth and expression of virulence factors.
To identify time-efficient and educationally effective methods for teaching in ambulatory care and managed care settings, the authors studied four exemplary preceptors who taught family medicine clerks in managed care clinics. They interviewed all four preceptors and observed three of them. All of these preceptors claimed to practice more efficiently with students than without them. Analysis of 33 patients encounters involving students revealed that each of the five students observed spent an average of 12.0 minutes conducting a history and physical examination, 2.2 minutes presenting the case to the preceptor, 7.9 minutes observing the preceptor reviewing and/or repeating the examination with the patient, and 1.8 minutes receiving direct instruction and feedback from the preceptor. The total time per patient encounter was 23.7 minutes, 11.7 minutes of which directly involved the preceptor. The authors then compared these 33 encounters with encounters involving the preceptors alone; these encounters took an average of 10.6 minutes of the preceptors' time. The 1.1-minute difference between the amount of time preceptors spent in encounters involving students and the amount of time they spent in encounters on their own was not statistically significant as measured by t-test (p < .05). However, in calculating this time difference, possible time saved by students' assistance with charting was not accounted for. In interviews the preceptors identified three major instructional strategies for time-efficient teaching; planning and preparing; teaching with patients; and charting, giving feedback, and reflecting. Students described these preceptors as enthusiastic teachers and good role models; however, they also felt that their first two years of education had not prepared them for seeing patients in fast-paced ambulatory care settings. The challenge for medical schools is to better prepare both students and preceptors for learning and teaching in productivity driven ambulatory care and managed care environments.
We investigated the effects of hypoxemia and hypoxemia-reoxygenation (H/R) on interleukin-8 (IL-8), tumor necrosis factor-alpha (TNF-alpha), or IL-1beta stimulation of whole blood polymorphonuclear leukocyte (PMN) phagocytosis and bactericidal activity. Whole blood PMN were rendered hypoxemic (venous PO2 < 15 mmHg), normoxic (venous PO2 60-80 mmHg), or reoxygenated after hypoxemia (H/ R = venous PO2 150-200 mmHg) and were incubated with IL-8, TNF-alpha, or IL-1beta before sequential addition of serum-opsonized fluorescent microspheres and fluorescein isothiocyanate-conjugated mouse anti-human CD64, CD32w, CD16, CD35, or CD11b/CD18. Concomitant two-color flow cytometric analyses were then performed measuring mean channel fluorescence and the percentage of PMN positive for phagocytosis, with simultaneous subset receptor analysis on populations of PMN that exceeded control levels of phagocytosis. During hypoxemia, whole blood PMN phagocytosis in the presence of IL-8, TNF-alpha, or IL-1beta was increased compared with normoxia. Northern blot analyses revealed an increase in steady-state mRNA levels for CD32w during hypoxemia + IL-8 and CD64 during hypoxemia + IL-1beta. During reoxygenation, both whole blood PMN phagocytosis and bactericidal activity were reduced in the presence of IL-8, TNF-alpha, or IL-1beta, and in subsets of PMN with reduced phagocytosis H/R reduced CD64, CD32w, CD16, CD35, and CD11b/CD18 expression in the presence of each cytokine. Northern blot analyses revealed that H/R reduced mRNA levels for opsonic receptors primarily for IL-1beta-stimulated PMN. These results demonstrate a direct regulatory effect of hypoxemia and H/R on whole blood PMN phagocytosis, receptor expression, and steady-state mRNA levels of both Fc(gamma) and complement receptors.
OBJECTIVE: To define the mechanisms responsible for the lung leukosequestration and injury elicited by intestinal ischemia/reperfusion (I/R). METHODS: The effect of 120 minutes of superior mesenteric artery occlusion and 90 minutes of reperfusion on neutrophil deformability, lung neutrophil retention, and pulmonary microvascular permeability was determined. RESULTS: Compared with control surgery, intestinal I/R resulted in a significant increase in neutrophil stiffness (mean yield pressure [Pyield], 1.533 +/- 0.075 and 2.302 +/- 0.288 cm H2O, respectively) and lung neutrophil content (6.3 +/- 1.4 and 31.5 +/- 6.4 U/g wet weight, respectively). These changes were not affected by inhibition of neutrophil adherence before gut reperfusion. However, the increased lung microvascular permeability elicited by gut I/R (0.111 +/- 0.020 [control surgery] and 0.255 +/- 0.041 [I/R] mL/min/cm H2O/100 g lung tissue) was significantly attenuated by administration of antibodies directed against neutrophil or endothelial determinants of leukocyte adhesion. CONCLUSIONS: The results of this study suggest that intestinal I/R is a potent inflammatory stimulus that elicits an increase in neutrophil stiffness and lung neutrophil retention independent of neutrophil-endothelial cell adhesion. In contrast, the increased lung microvascular permeability elicited by gut I/R is attenuated by strategies that interfere with neutrophil-endothelial cell adhesion.
OBJECTIVE: To examine the possible association between augmentation mammoplasty and systemic sclerosis (SSc; scleroderma). METHODS: Eight hundred thirty-seven women with a clinical diagnosis of SSc, recruited as a volunteer sample from 3 university-based, tertiary care scleroderma clinical research centers, and 2,507 race-matched local control women, recruited by the technique of random-digit-dialing and frequency-matched on age, completed a questionnaire providing data on history of augmentation mammoplasty, including possible complications of the procedure. The odds ratio (OR) and 95 percent confidence interval (95% CI) for the association of augmentation mammoplasty with SSc were estimated by multivariate logistic regression analysis with adjustment for age, race and center, and by conditional logistic regression analysis with adjustment for age. RESULTS: Eleven (1.31%) of the 837 cases reported a history of augmentation mammoplasty prior to diagnosis of SSc, compared with 31 (1.24%) of the 2,507 controls. The adjusted OR from the unmatched analysis was 1.07 (95% CI 0.53-2.13), while that from the matched analysis was 1.11 (95% CI 0.55-2.24). CONCLUSION: These results fail to demonstrate a significant association between augmentation mammoplasty and SSc, and are consistent with those reported from other epidemiologic studies.
Explore the source record for details and available documents.
BACKGROUND: The purpose of this study was to determine the effects of hypoxemia/reoxygenation (H/R) on the regulation of interleukin-8 (IL-8)-stimulated human polymorphonuclear neutrophil (PMN) bactericidal activity. METHODS: Venous human whole blood was rendered normoxic (Pvo2 saturation 60% to 80%), hypoxemic (Pvo2 saturation, less than 15%), or H/R (Pvo2 saturation more than 97%) by dialyzing the blood against a gas mixture of N2/H2/CO2 +/- 30% O2. Two hundred microliter aliquots from each study group were incubated with IL-8 (50 ng/ml) for 45 minutes before fluorescein isothiocyanate-conjugated mouse antihuman CD16 or CD35 antibodies were added. Bactericidal activity was measured with the release of 51Cr from labeled bacteria at 1:1, 5:1, and 10:1 PMN-target ratios. Steady-state mRNA levels for CD16 and CD35 were quantified by Northern blot analyses. RESULTS: H/R reduced PMN bactericidal activity compared with hypoxemic levels for staphylococcus aureus (48 +/- 5.6 versus 27 +/- 3.3) and Escherichia coli (58 +/- 7.1 versus 33 +/- 4.2). H/R reduced the surface expression of CD16 but not CD35 (mean channel fluorescence CD16, 610 +/- 70 versus 310 +/- 30 for hypoxemia versus H/R; p < 0.01). After H/R was performed, IL-8 decreased mRNA levels for CD16 but not for CD35 compared with levels seen during hypoxemia + IL-8. CONCLUSIONS: H/R down-regulates IL-8-stimulated PMN bactericidal activity by decreasing steady-state mRNA levels and surface expression of CD16. PMN bactericidal capability after H/R + IL-8 is primarily complementary and not Fc gamma receptor dependent.
Breast carcinoma is the most common malignancy among women in developed countries. Because family history remains the strongest single predictor of breast cancer risk, attention has focused on the role of highly penetrant, dominantly inherited genes in cancer-prone kindreds (1). BRCA1 was localized to chromosome 17 through analysis of a set of high-risk kindreds (2), and then identified four years later by a positional cloning strategy (3). BRCA2 was mapped to chromosomal 13q at about the same time (4). Just fifteen months later, Wooster et al. (5) reported a partial BRCA2 sequence and six mutations predicted to cause truncation of the BRCA2 protein. While these findings provide strong evidence that the identified gene corresponds to BRCA2, only two thirds of the coding sequence and 8 out of 27 exons were isolated and screened; consequently, several questions remained unanswered regarding the nature of BRCA2 and the frequency of mutations in 13q-linked families. We have now determined the complete coding sequence and exonic structure of BRCA2 (GenBank accession #U43746), and examined its pattern of expression. Here, we provide sequences for a set of PCR primers sufficient to screen the entire coding sequence of BRCA2 using genomic DNA. We also report a mutational analysis of BRCA2 in families selected on the basis of linkage analysis and/or the presence of one or more cases of male breast cancer. Together with the specific mutations described previously, our data provide preliminary insight into the BRCA2 mutation profile.
Exposure to stressors can affect various aspects of immune function, including the antibody response. We have previously reported that rats exposed to an acute session of inescapable tail shock (IS) show long-term reductions in anti-keyhole limpet hemocyanin (KLH) immunoglobulin (Ig) M and IgG and a failure to expand Th1-like cells in response to KLH. To further investigate the potential role of decreased Th1-like cells in the IS-induced reduction of anti-KLH Ig, we examined two isotypes of IgG, IgG1 and IgG2a. Isotype switching is under cytokine control. Interleukin-4 helps B cells switch from making IgM to making IgG1, whereas interferon (IFN)-gamma helps B cells switch from making IgM to making IgG2a. In this paper we report that IS exposure reduces IFN-gamma levels 4 days after exposure to IS+KLH compared with immunized home cage controls. In addition, IS exposure reduced the Th1 cytokine-sensitive anti-KLH IgG2a but not Th2 cytokine-sensitive anti-KLH IgG1. This pattern of isotype reduction suggests that a failure to expand the Th1 cell, which results in less IFN-gamma, may contribute to the the IS-induced reduction in anti-KLH Ig. Glucocorticoids (GCs) differentially regulate Th1 and Th2 cells. Administration of the type II GC receptor antagonist RU-486 before IS blocked the IS-induced suppression in anti-KLH IgM, IgG, and IgG2a. Corticosterone (2.5 mg/kg), however, did not produce the suppression in anti-KLH Ig. These results support a role of corticosterone in mediating IS-induced reductions in in vivo antibody.
BACKGROUND: The very low concentrations of IgE antibodies in serum make investigations of the affinity of allergen-specific antibodies extremely difficult. In the absence of such studies, the fact that low IgE concentrations are capable of inducing powerful effector function has encouraged the view that IgE antibodies are typically high affinity antibodies. Yet the phenomenon of allergic cross-reactivity suggests that lower affinity IgE antibodies may sometimes be of clinical significance. OBJECTIVES: To investigate the effect of antibody affinity upon mast cell sensitivity in an in vitro model. METHODS: Rat basophil leukaemia (RBL) cells were sensitized with one of three monoclonal IgE antibodies which bind to trinitrophenylated proteins with varying affinity. Serotonin release was measured after challenge of sensitized cells with trinitrophenylated human serum albumin (TNP-HSA). RESULTS: Low valency TNP3-HSA failed to stimulate degranulation of RBL cells sensitized with SPE-7 anti-DNP IgE, which binds TNP with low affinity. However, upon challenge with high concentrations (1250 ng/mL) of TNP8-HSA, or as little as 10 ng/mL of highly substituted TNP23-HSA, low levels of degranulation were seen. A similar relationship between antigen valency and cell sensitivity was seen with cells sensitized with the H-l epsilon-DNP anti-DNP IgE, which binds with moderate affinity to TNP proteins. CONCLUSION: High valency antigen is capable of activating RBL cells sensitized with low affinity antibody. This has important implications for our understanding of allergic sensitization. It also suggests that the long-recognized relationship between antigen valency and RBL cell sensitivity may partly reflect the high functional affinity of cell-bound IgE when directed against multivalent antigen.
DNA damage induces p53 tumor suppressor gene expression and protein production, which in turn facilitates DNA repair or apoptosis. Wild-type p53 protein has a short half-life, so it is rarely detected in non-neoplastic tissue. Because DNA fragmentation is abundant in the intimal lining in rheumatoid arthritis (RA) synovial tissue (ST) using in situ end-labeling (Firestein GS, Yeo M, Zvaifler NJ: Apoptosis in rheumatoid arthritis synovium. J Clin Invest 1995, 96:1631-1638), we assessed ST p53 expression. Immunohistochemical analysis of fixed RA synovium using antibody PAb 1801 showed prominent p53 staining in the cytoplasm and nuclei of intimal lining cells. Noninflammatory and osteoarthritis (OA) ST had significantly less p53 in the lining. These data were confirmed by Western blot analysis of ST extracts, with abundant p53 found in RA compared with OA. p53 expression in cultured fibroblast-like synoviocytes (FLS) was then examined. Flow cytometry on permeabilized cells showed that RA FLS constitutively express p53 protein. Western blots showed that RA FLS expressed significantly more p53 than either OA FLS or dermal fibroblasts. Immunohistochemistry of FLS cultured in chamber slides localized the p53 to the cytoplasm of most resting FLS, with nuclear staining in only 10.7 +/- 2.4%. Exposure to hydrogen peroxide for increased nuclear staining to 70.7 +/- 12.8% after 8 hours (P = 0.003). These data indicate that p53 is overexpressed in RA ST in the intimal lining, which is the primary site of DNA damage, and is constitutively expressed by FLS.
BACKGROUND: The purpose of these studies was to investigate the effect of hypoxemia on interleukin-8 (IL-8) regulation of phagocytosis and surface opsonic receptor expression of whole blood polymorphonuclear leukocytes (PMNs). METHODS: Whole blood PMNs were rendered hypoxemic (PvO2 less than 15 mm Hg) or normoxic (PvO2 equals 60 to 80 mm Hg) and incubated with IL-8 (50 ng/ml) before the sequential addition of serum-opsonized fluorescent microspheres (emission wavelength, 560 nm) and fluorescein isothiocyanate-conjugated mouse anti-human CD32w or CD35 antibodies (emission wavelength, 513 nm). Concomitant two color flow cytometric analysis was then performed to measure the mean channel fluorescence (MCF) and the percentage of positive PMNs. Steady-state messenger RNA levels for CD32w and CD35 were quantitated by means of Northern blot analysis by using total RNA extracted from purified PMNs from each study group. RESULTS: Hypoxemia increased IL-8 stimulated PMN phagocytosis (percentage of positive PMNs, 38 +/- 1.5 versus 27 +/- 2.0, MCF, 5491 +/- 182 versus 4060 +/- 121 for hypoxemia plus IL-8 versus normoxia plus IL-8, respectively; p < 0.05). Hypoxemia increased IL-8 stimulated PMN expression of CD32w and CD35 (MCF CD32w, 791 +/- 105 versus 336 +/- 81; MCF CD35, 542 +/- 87 versus 254 +/- 41; p < 0.05). Under normoxic conditions IL-8 decreased messenger RNA levels for both CD32w and CD35, but under hypoxemic conditions IL-8 increased messenger RNA levels only for CD32w. CONCLUSIONS: Hypoxemia directly regulates IL-8 control of PMNs by increasing phagocytosis, receptor expression, and messenger RNA for these receptors. Studies investigating cytokine regulation of PMN function need to take into account oxygen tension when establishing the fundamental effects of cytokines on PMN physiology.
We have constructed a two-dimensional map of 243 markers on the X chromosome. The average distance between markers ordered by two recombinants is 5.4 centiMorgans (cM), which is reduced to 3.2 cM using a less stringent criterion of one recombinant. Map resolution is enhanced by replacing the usual reference marker format with a 2D format, and the two-recombinant rule is more conservative than the lod 3.0 criterion for order. Taken together, crossover mapping and the 2D format produces maps with greater reliability and higher resolution than maps constructed using currently accepted standards. This first high-density crossover-based map of an entire human chromosome provides a model for integrating physical and genetic maps.
The objective of this study was to determine if ethanol-induced cytochrome P450 2E1 (CYP2E1) was responsible for the changes in hepatic fatty acids observed in rats fed ethanol intragastrically. We hypothesized that if CYP2E1 was responsible for these changes then CYP2E1 inhibitors fed with ethanol should prevent the ethanol-induced changes in fatty acids. We compared the fatty acid composition of the liver in rats fed ethanol alone with that in rats fed ethanol with the CYP2E1 inhibitors, diallyl sulfide and phenethyl isothiocyanate. In each experiment, rats pair-fed isocaloric glucose were included to determine the effect of the inhibitors alone on the hepatic fatty acid composition. The lobular distribution of succinic dehydrogenase was determined histochemically because the lobular distribution of CYP2E1 shifts to the periportal area in livers of rats fed CYP2E1 inhibitors. The CYP2E1 inhibitors ameliorated both the ethanol-induced changes in fatty acids and the shift in succinic dehydrogenase. Rats fed ethanol but no inhibitors had significantly greater hepatic total fatty acids and triglyceride fractions than when inhibitors were fed ethanol. Ethanol altered the fatty acid composition compared with rats fed ethanol with CYP2E1 inhibitors. The ratio of 20:4/18:2 was significantly lower and that of 18:1/18:0 was greater in alcohol-fed rats compared with their pair-fed controls. The CYP2E1 inhibitors inhibited many of the above effects of alcohol. The data suggest that the changes in the fatty acid composition due to ethanol ingestion are the result of CYP2E1-dependent lipid peroxidation and fatty acid metabolism.
Chloride/base exchange activity has been detected in every mammalian nephron segment in which it has been sought. However, in contrast to the Cl-/HCO3- exchanger AE1 in type A intercalated cells, localization of AE2 within the kidney has not been reported. We therefore studied AE2 expression in rat kidney. AE2 mRNA was present in cortex, outer medulla, and inner medulla. Semiquantitative polymerase chain reaction of cDNA from microdissected tubules revealed AE2 cDNA levels as follows [copies of cDNA derived per mm tubule (+/- SE)]: proximal convoluted tubule, 688 +/- 161; proximal straight tubule, 652 +/- 189; medullary thick ascending limb, 1,378 +/- 226; cortical thick ascending limb, 741 +/- 24; cortical collecting duct, 909 +/- 71; and outer medullary collecting duct, 579 +/- 132. AE2 cDNA was also amplified in thin limbs and in inner medullary collecting duct. AE2 polypeptide was detected in all kidney regions. AE2 mRNA and protein were also detected in several renal cell lines. The data are compatible with the postulated roles of AE2 in maintenance of intracellular pH and chloride concentration and with its possible participation in transepithelial transport.
A small proportion of breast cancer, in particular those cases arising at a young age, is due to the inheritance of dominant susceptibility genes conferring a high risk of the disease. A genomic linkage search was performed with 15 high-risk breast cancer families that were unlinked to the BRCA1 locus on chromosome 17q21. This analysis localized a second breast cancer susceptibility locus, BRCA2, to a 6-centimorgan interval on chromosome 13q12-13. Preliminary evidence suggests that BRCA2 confers a high risk of breast cancer but, unlike BRCA1, does not confer a substantially elevated risk of ovarian cancer.