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Biomedical subjects

H A Pope

Publications and source records attributed to H A Pope.

6 recordsLinked to original sources

Acute phase levels of C-reactive protein enhance IL-1 beta and IL-1ra production by human blood monocytes but inhibit IL-1 beta and IL-1ra production by alveolar macrophages.

C-reactive protein (CRP), the major acute phase protein in humans, was purified free of endotoxin (LPS) (< 10 pg of LPS/mg of purified CRP) and evaluated for its ability to modulate LPS-induced production of IL-1 beta and IL-1 receptor antagonist (IL-1ra) from human PBMC and lung macrophages. PBMC (5 x 10(6)/ml) released low levels of IL-1 beta in response to either CRP (250 micrograms/ml) or LPS (100 ng/ml) for 18 h (0.3 +/- 0.1 and 1.5 +/- 0.7 ng/ml, respectively). However, when CRP (250 micrograms/ml) and LPS (100 ng/ml) were combined, PBMC released 9.7 +/- 2.9 ng/ml (p < 0.001 vs LPS alone). This synergy was removed by immunodepletion of CRP before stimulation. With respect to IL-1ra, although CRP induced IL-1ra production from PBMC (0.8 +/- 0.3 ng/ml control, 2.6 +/- 1.3 ng/ml with CRP), CRP did not synergize with LPS for IL-1ra production (15.0 +/- 0.7 ng/ml LPS alone vs 15.4 +/- 1.4 ng/ml LPS and CRP). In contrast, lung macrophages responded to CRP quite differently than PBMC. Macrophages (10(6)/ml) were not stimulated to produce IL-1 beta or IL-1ra by CRP alone. When combined with LPS, CRP inhibited IL-1 beta and IL-1ra release induced by LPS (for IL-1 beta release, LPS induced 3.0 +/- 1.7 ng/ml vs 1.1 +/- 0.4 for combined LPS and CRP; for IL-1ra release, LPS induced 12.9 +/- 2.3 ng/ml vs 7.6 +/- 2.3 ng/ml for combined LPS and CRP). These data suggest that acute phase levels of CRP may have divergent effects depending on the target population. CRP may be largely proinflammatory to blood monocytes responding to LPS since IL-1 beta production is augmented over IL-1ra production. However, in tissue compartments the effects of CRP may be largely immunosuppressive to LPS-induced tissue macrophage IL-1 beta production.

Acute-Phase Reaction↗

Detection of soluble type II receptor in the presence of its natural ligand IL-1 beta. Quantification by sandwich ELISA.

The type II interleukin-1 receptor (IL-1R II) is a newly described 60-68 kDa protein expressed on monocytes, neutrophils, and lymphocytes. It is hypothesized that a 45 kDa soluble form of the IL-1R II attenuates the proinflammatory effects of IL-1 by preventing its binding to the type I IL-1 receptor. However, very little information exists regarding the detection of soluble IL-1R II. Specifically, there are no reports to date characterizing IL-1R II detection by enzyme-linked immunoassay in the presence of IL-1 beta or characterizing IL-1 beta detection in the presence of IL-1R II. This study addresses the detection and quantitation of IL-1R II and IL-1 beta by a number of sandwich ELISA formats and characterizes the sensitivity of detection in the presence of competitive cytokines. We generated two distinct IL-1R II sandwich ELISAs that can detect receptor down to a level of 50 pg/ml. One, M22/R2, detects only unbound IL-1R II and the other, M2/R2, detects both bound and unbound IL-1R II. In this context, a 4:1 molar ratio of IL-1 beta to IL-1R II interferes with the IL-1R II detection by the M22/R2 but not the M2/R2 ELISA. Conversely, IL-1R II at physiologically relevant concentrations interferes with the detection of IL-1 beta by three distinct IL-1 beta ELISA formats. Taken together, these studies suggest that when measuring samples that may contain both IL-1 beta and IL-1R II, careful attention must be given to assay specificity.

Enzyme-Linked Immunosorbent Assay↗

Fc gamma receptor cross-linking down-regulates IL-1 receptor antagonist and induces IL-1 beta in mononuclear phagocytes stimulated with endotoxin or Staphylococcus aureus.

The cross-linking of monocyte Fc gamma R is a potent stimulus for IL-1ra production but does not induce IL-1 beta. However, during systemic infection, IgG-coated bacteria can activate mononuclear phagocytes via both cell wall components and opsonized IgG. Therefore, we analyzed the effect of combinations of Fc gamma R cross-linking and bacterial cell wall components on mononuclear phagocyte IL-1 beta and IL-1ra production. Human mononuclear cells and monocytes were cultured either alone or with combinations of immobilized IgG, LPS, or heat-killed Staphylococcus aureus (HKSA). Cells cultured on immobilized IgG released large amounts of IL-1ra but no detectable IL-1 beta. In response to LPS, mononuclear cells released IL-1ra at 1000-fold lower doses of LPS than was required to induce IL-1 beta. However, when measured in the presence of immobilized IgG, the LPS sensitivity for IL-1 beta release increased 100-fold, whereas IL-1ra release correlated inversely with the LPS dose. Furthermore, HKSA, a nonendotoxin stimulus, affected mononuclear cell IL-1 beta and IL-1ra release similarly. In addition, polymyxin B, a specific endotoxin inhibitor, blocked the LPS, but not the HKSA-induced changes in IL-1 beta and IL-1ra secretion, irrespective of immobilized IgG co-stimulation. In summary, these results suggest that mononuclear phagocyte stimulation with immobilized IgG favors IL-1ra over IL-1 beta production. Conversely, the addition of LPS or HKSA to the Fc gamma R-stimulated cells augments IL-1 beta but suppresses IL-1ra production.

Cross-Linking Reagents↗

IL-1ra suppresses endotoxin-induced IL-1 beta and TNF-alpha release from mononuclear phagocytes.

The proinflammatory effects of lipopolysaccharide (LPS) are modulated in large part through the induction of interleukin-1 beta (IL-1 beta) and tumor necrosis factor-alpha (TNF-alpha) release by mononuclear phagocytes. However, IL-1's target cell effects can be suppressed by IL-1 receptor agonist (IL-1ra). Because mononuclear phagocytes produce and respond to IL-1 via IL-1 receptors, we hypothesized that IL-1ra may also be able to block receptors on IL-1 producer cells and inhibit secondary IL-1-induced IL-1 production. To test this hypothesis, mononuclear cells and alveolar macrophages were stimulated with LPS in the presence of IL-1ra and analyzed for IL-1 beta and TNF-alpha production. For mononuclear cells, IL-1ra inhibited 6-h LPS- and IL-1 alpha-induced IL-1 beta release to 66 +/- 4% (P = 0.001 by paired t test) and 39 +/- 7% (P = 0.0005 by paired t test) of control, respectively. In addition, IL-1ra reduced both LPS- and IL-1 alpha-stimulated IL-1 beta mRNA levels to 78 and 37% of control, respectively. Furthermore, IL-1ra downregulated both LPS and IL-1 alpha-induced TNF-alpha release to 84 +/- 4% (P = 0.012 by paired t test) and 49 +/- 9% (P = 0.001 by paired t test) of control, respectively. Alveolar macrophages demonstrated variable IL-1ra-induced suppression of LPS-stimulated IL-1 beta and TNF-alpha release.(ABSTRACT TRUNCATED AT 250 WORDS)

Endotoxins↗

Processing proIL-1 beta decreases detection by a proIL-1 beta specific ELISA but increases detection by a conventional ELISA.

Recent investigations have noted that conventional IL-1 beta enzyme linked immunoassays (ELISA) may underestimate proIL-1 beta concentrations. In an attempt to circumvent this problem, we have devised a proIL-1 beta specific ELISA which sandwiches proIL-1 beta between a carboxy-terminus specific, capture antibody, and an amino-terminus specific, detection antibody. The amino-terminus specific antibody was generated against amino acids 3-21 of the intact proIL-1 beta molecule. This sandwich ELISA does not recognize mature 17 kDa IL-1 beta and is not inhibited by the coexistence of mature, 17 kDa IL-1 beta. We compared this proIL-1 beta specific ELISA (amino-terminus ELISA) to the conventional IL-1 beta ELISA (carboxy-terminus ELISA) on test samples that contained either proIL-1 beta or mature IL-1 beta. When purified proIL-1 beta is cleaved by increasing concentrations of IL-1 beta converting enzyme or porcine pancreatic elastase, there is a dose dependent increase in the signal from the conventional IL-1 beta ELISA and a concurrent decrease in signal from the proIL-1 beta specific ELISA. Furthermore, when the proIL-1 beta specific ELISA is used to quantify cellular sources of IL-1 beta, there is no detectable release of proIL-1 beta into the supernatants from either fresh blood monocytes or alveolar macrophages, despite detectable mature IL-1 beta. The cell associated compartment of IL-1 beta is largely proIL-1 beta and the relative amounts of IL-1 beta that remain intracellularly are quite large. Specifically, when assayed at 18 h, the proIL-1 beta ELISA detected 4.6 +/- 1.4 ng/ml per 10(6) monocytes and 13.8 ng/ml per 10(6) macrophages vs. 0.8 +/- 0.3 ng/ml/10(6) monocytes and 1.6 ng/ml/10(6) macrophages by conventional IL-1 beta ELISA. Thus, the 5-10-fold deficit in the detection of intracellular IL-1 beta by a conventional IL-1 beta ELISA, combined with the enhanced detection after enzymatic processing of proIL-1 beta, confirms that a proIL-1 beta specific ELISA is needed to accurately quantify proIL-1 beta.

Enzyme-Linked Immunosorbent Assay↗

Correction of the cystic fibrosis defect in vitro by retrovirus-mediated gene transfer.

We have used retrovirus-mediated gene transfer to demonstrate complementation of the cystic fibrosis (CF) defect in vitro. Amphotropic retroviruses were used to transduce a functional cystic fibrosis transmembrane conductance regulator (CFTR) cDNA into CFPAC-1, a pancreatic adenocarcinoma cell line derived from a patient with CF that stably expresses the chloride transport abnormalities characteristic of CF. CFPAC-1 cells were exposed to control virus (PLJ) and CFTR-expressing virus (PLJ-CFTR); viral-transduced clones were isolated and subjected to molecular and physiologic analysis. RNA analysis detected a viral-derived CFTR transcript in all of the PLJ-CFTR clones that contained unrearranged proviral sequences. Agents that increase intracellular cAMP stimulated 125I efflux in PLJ-CFTR clones but not PLJ clones. Whole-cell patch-clamp performed on three responding clones showed that the anion efflux responses were due to cAMP stimulation of Cl conductance. Our findings indicate that expression of the normal CFTR gene confers cAMP-dependent Cl channel regulation on CF epithelial cells.

Adenocarcinoma↗