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Biomedical subjects

M J Forrest

Publications and source records attributed to M J Forrest.

At least 37 records · Page 2Linked to original sources

Attenuation of oxygen free radical formation and tissue injury during experimental inflammation by P-selectin blockade.

OBJECTIVE: Neutrophilic leukocyte rolling on postcapillary endothelium requires membrane interaction between SLex-containing ligands on neutrophils and P-selectin on endothelial cells. The current sequence of studies was performed to explore the hypothesis that the leukocyte-endothelial rolling interaction not only precedes leukocyte migration but also is accompanied by oxygen free radical production and interstitial cell death in the rat mesentery. METHODS: The ratio of leukocyte rolling velocity on the endothelium of postcapillary venules and centerline red cell velocity was determined after topical application of platelet activating factor (PAF; 10(-8) mol/L). Superoxide formation was determined by an in situ nitroblue tetrazolium reduction to dark blue formazan crystals in the in situ mesentery preparation, and cell death was detected by nuclear staining with propidium iodide. RESULTS: Leukocyte rolling and subsequent adhesion was inhibited with a monoclonal antibody against P-selectin, PB1.3. Superoxide formation, as well as parenchymal cell death, was significantly enhanced in the mesentery after stimulation with platelet activating factor, and both could be significantly attenuated by reduction of the rolling leukocyte-endothelial interaction with PB1.3. CONCLUSIONS: These results provide direct evidence that the interaction of leukocytes and endothelium followed by migration of leukocytes into the interstitium is accompanied by enhanced oxidative stress and parenchymal cell death. Early interruption of the interaction provides significant protection even in the presence of a proinflammatory stimulus.

Animals↗

Impairment of selectin-mediated leukocyte adhesion to venular endothelium in spontaneously hypertensive rats.

The present study was designed to elucidate whether molecular mechanisms for leukocyte adhesion to microvascular endothelium may differ between spontaneously hypertensive rats and Wistar Kyoto rats. Leukocyte rolling and adhesion were investigated while monitoring venular wall shear rates in the mesenteric microcirculation stimulated with histamine or tert-butyl hydroperoxide in the two strains. In Wistar Kyoto rats, 10 microM histamine as well as 500 microM tertbutyl hydroperoxide promoted a significant reduction of venular leukocyte rolling velocity and subsequent adhesion. These changes in leukocyte behavior were blocked by monoclonal antibodies against P-selectin (PB 1.3) and against sialyl Lewis X-like carbohydrates (2H5). However, spontaneously hypertensive rats exhibited a blunted response of the stimulus-elicited leukocyte rolling, which was associated with impairment of venular P-selectin expression as well as a decrease in the expression of sialyl Lewis X-like carbohydrates on circulating neutrophils. No significant differences were detected between the two strains not only in the surface CD11b/CD18 expression but also in the CD18-mediated adhesivity of neutrophils to intracellular adhesion molecule-1 transfectants in vitro. These results suggest that impairment of selectin-mediated leukocyte adhesion is an event responsible for disorders of inflammatory responses in spontaneously hypertensive rats.

Animals↗

Modification of leukocyte adhesion in spontaneously hypertensive rats by adrenal corticosteroids.

Leukocyte adhesion is a key factor in the pathogenesis of organ injury following a variety of stimuli. In this study we have addressed the role of leukocyte adhesion in hypertensives as a risk factor for organ injury. In the spontaneously hypertensive rat (SHR), the number of circulating leukocytes and their level of activation are significantly increased compared with its normotensive control, the Wistar-Kyoto rat (WKY). We have demonstrated that elevated levels of glucocorticoid in SHR suppress P-selectin-mediated leukocyte-endothelial interaction in the microcirculation. It is possible that the disturbance in leukocyte-endothelial interactions may result in an elevated number of leukocytes in the circulation. The aim of the present study was to investigate the contribution of the adrenal glands to the disturbance in leukocyte behavior in SHR by subjecting the animals to bilateral adrenalectomy and investigating the effect of hydrocortisone. In addition, we have studied by immunohistochemistry the expression of the endothelial adhesion molecule, P-selectin, in response to histamine in the mesenteric venules of normal and adrenalectomized SHR and WKY. The elevated blood pressure, above-normal leukocyte counts, and elevated number of activated neutrophils (nitroblue tetrazolium test) in SHR were blunted after adrenalectomy. The blunted histamine-induced leukocyte-endothelial interaction in the mesenteric venules of SHR was restored after adrenalectomy. Treatment with hydrocortisone significantly attenuated the elevated leukocyte adhesion in the adrenalectomized SHR as well as in WKY. The suppressed P-selectin expression in SHR mesentery was restored after adrenalectomy. In conclusion, the subnormal leukocyte-endothelial interaction in response to an inflammatory stimulation in SHR is abolished after adrenalectomy, suggesting a relationship between the altered leukocyte adhesiveness and the adrenal corticosteroids in hypertensives.

Adrenal Cortex Hormones↗

Mast cell activation induces P-selectin-dependent leukocyte rolling and adhesion in postcapillary venules in vivo.

As studied by intravital microscopy, local challenge with the mast cell secretagogue compound 48/80 was found to increase the leukocyte rolling fraction, decrease rolling velocity and induce firm leukocyte adhesion in postcapillary venules of the rat mesentery. These effects of compound 48/80 were inhibited by a monoclonal anti-P-selectin antibody, but not by combined treatment with H1 and H2 histamine-receptor antagonists. Moreover, the response to compound 48/80 was not mimicked by exogenous histamine or 5-hydroxytryptamine (5-HT). These novel findings indicate that mediator(s) other than histamine and 5-HT evoke P-selectin-dependent leukocyte rolling and thereby promote firm leukocyte adhesion in mast cell-dependent inflammation.

Animals↗

Impaired leukocyte-endothelial cell interaction in spontaneously hypertensive rats.

Hypertension is associated with a progressive organ injury whose etiology remains largely speculative. An increasing database shows that activated leukocytes, while affording an important immune protection, may be a contributing factor to several of the pathogenetic features of the hypertension syndrome. The purpose of this study was to determine the extent to which the glucocorticoid pathway may be involved in the atypical kinetics of leukocytes in spontaneously hypertensive rats (SHR) compared with normotensive Wistar-Kyoto (WKY) rats. The typical venular leukocyte adhesion induced by histamine application was significantly lower in SHR, and a comparison of normalized leukocyte rolling velocity (VWBC/VRBC) showed the values to be significantly higher in SHR relative to WKY controls. This abnormal trend in adherent leukocyte numbers and in VWBC/VRBC values could be counteracted when SHR were pretreated with RU 486, a synthetic glucocorticoid inhibitor, and restored to the levels observed in WKY rats. Anti-P-selectin monoclonal antibody (PB1.3) attenuated in SHR and WKY rats the increment of adherent leukocyte numbers as well as the decrement of VWBC/VRBC value that developed under combined histamine and RU 486 superfusion. Furthermore, an anti-intercellular adhesion molecule-1 monoclonal antibody (1A29) served to attenuate the increment of adherent leukocyte number induced by a combination of histamine and RU 486 superfusion in WKY rats and SHR. The results indicate that the deficient leukocyte-endothelial cell interaction in SHR can be circumvented by a glucocorticoid inhibitor.

Animals↗

Sialyl Lewisx-containing oligosaccharide attenuates myocardial reperfusion injury in cats.

Neutrophil (PMN) adhesion to the vascular endothelium is an important mechanism of myocardial reperfusion injury. The adhesion process is initially mediated by selectins (e.g., P- and L-selectin), and monoclonal antibodies directed against these adhesion molecules exert cardioprotective activity in ischemia/reperfusion models. The counterreceptors for these selectins are thought to be carbohydrate-containing moieties. In this connection, we studied the effect of a soluble sialyl Lewisx-containing oligosaccharide (SLex-OS) on PMN-endothelial interactions in a feline model of myocardial ischemia/reperfusion (MI/R). SLex-OS (10 mg/kg), administered 10 min before R, significantly reduced myocardial necrosis compared with its vehicle 270 min after reperfusion (6 +/- 1% vs. 35 +/- 4% of area at risk, P < 0.01). The cardioprotection was confirmed by significantly lower plasma creatine kinase activities in SLex-OS vs. vehicle-treated cats (P < 0.01). Cardiac contractility (dP/dt max) of cats receiving SLex-OS was significantly preserved after 270 min of R (97 +/- 2% vs. 78 +/- 5% of initial, P < 0.01). Furthermore, endothelium-dependent relaxation to acetylcholine in coronary artery rings isolated from MI/R cats treated with SLex-OS was significantly preserved (73 +/- 7% vs. 22 +/- 6% vasorelaxation, P < 0.01). In vitro PMN adherence to coronary vascular endothelium after 270 min of R was significantly attenuated in the SLex-OS-treated group compared with the vehicle group (14 +/- 5 vs. 91 +/- 12 PMN/mm2, P < 0.01). Our results indicate that a SLex-OS is cardioprotective and preserves coronary endothelial function after MI/R, indicating an important role of sialyl Lewisx in PMN accumulation, endothelial dysfunction, and myocardial injury in myocardial ischemia/reperfusion.

Animals↗

The role of CD18 in IL-8 induced dermal and synovial inflammation.

1. The intradermal administration of endothelial IL-8 (IL-8(1-77) or monocyte derived IL-8 (IL-8(1-72) to rabbits produced a concentration-dependent increase in plasma extravasation and an accumulation of polymorphonuclear leukocytes (PMNs) when measured over a 3 h time period. When plasma extravasation and PMN accumulation were measured over a 30 min time period no significant increases in PMN accumulation or plasma extravasation were observed in response to IL-8 alone. However, under these conditions, the addition of prostaglandin E2 (100 pmol) produced a significant potentiation of IL-8-induced plasma extravasation. There was no significant difference between the biological activities of IL-8(1-77) and IL-8(1-72). 2. Plasma extravasation and PMN accumulation induced by IL-8 were inhibited in rabbits pretreated with the monoclonal antibody designated IB4 (1 mg kg-1, i.v.) directed against the common beta chain (CD18) of the leukocyte integrins. 3. The intra-articular administration to rabbits of IL-8(1-77) (1 nmol) resulted 24 h later in the appearance of a mixed population of leukocytes (PMNs and mononuclear cells) in synovial lavage fluid. Biochemical analyses revealed the presence of an increased level of sulphated proteoglycans (sPG) and of the metalloproteinase stromelysin. Pretreatment of rabbits with IB4 (3 mg kg-1, i.v.) inhibited the accumulation of PMNs but had no effect on the mononuclear infiltrate nor on the levels of sPG or stromelysin. 4. The intradermal or intra-articular injection of E. coli-derived endotoxin induced similar inflammatory changes to those observed with IL-8.The possibility that the biological activities of IL-8 were attributable to minor contamination with endotoxin is unlikely for two reasons. Firstly, biological effects of endotoxin were observed at levels greater than that contained in the IL-8 preparation. Secondly,reduction of the endotoxin content of the IL-8 preparation by a factor of 10 did not produce a concomitant reduction in the observed biological activity of the IL-8.

Animals↗

FK-506 and cyclosporin A: selective inhibition of calcium ionophore-induced polymorphonuclear leukocyte degranulation.

This paper investigates the abilities of FK-506 and cyclosporin A (CsA) to inhibit human polymorphonuclear leukocyte (PMNL) degranulation. PMNLs, purified from human blood, were stimulated in vitro with A23187, ionomycin, the complement derived peptide C5a, formylmethionylleucinylphenylalanine (FMLP) or phorbol myristate acetate (PMA). Degranulation was assessed by measuring the release of either lactoferrin or N-acetyl-beta-D-glucosaminidase (NAG). Both FK-506 and CsA produced a concentration-related inhibition of degranulation induced by either A23187 or ionomycin but did not affect C5a-, FMLP- or PMA-induced degranulation. The IC50 values for inhibition of degranulation (approximately 0.7 nM for FK-506 and 33.7 nM for CsA) are very close to the published values for inhibition of human T-cell proliferation. Removal of calcium from the incubation medium with ethyleneglycolbis(aminoethylether)tetra-acetate (EGTA) totally inhibited calcium ionophore-induced degranulation but had no effect against C5a-, FMLP- or PMA-induced degranulation. Preincubation of PMNLs with actinomycin D or cycloheximide did not affect either A23187- or PMA-induced degranulation. Non-immunosuppressive analogs of CsA were ineffective at inhibiting degranulation. Rapamycin, a macrolide structurally related to FK-506, did not inhibit degranulation but it did antagonize the inhibition produced by FK-506. Given the similar profiles of activity of FK-506 and CsA in neutrophils and T cells, we conclude that similar activation or signal transduction pathways may be present in both T cells and neutrophils. Because A23187-induced PMNL degranulation was not sensitive to either actinomycin D or cycloheximide, it is apparent that the signal transduction pathways ultimately control different cellular functions.

Anti-Bacterial Agents↗

Retardation of articular cartilage degradation by glycosaminoglycan polysulfate, pentosan polysulfate, and DH-40J in the rat air pouch model.

The rat subcutaneous air pouch model was adapted to examine the in vivo degradation of implanted rabbit articular cartilage, both with and without induced air pouch inflammation, over a 7-day period. The effects of 3 drugs, glycosaminoglycan polysulfate (Arteparon), pentosan polysulfate (SP-54), and zinc-chelated pentosan polysulfate (DH-40J), on inflammation-induced cartilage degradation were also examined. Implanted articular cartilage from noninflamed air pouches showed a reduction in total proteoglycan (PG) content (as hexuronic acid), but not in PG extractability or aggregation, compared with cartilage maintained in tissue culture. The injection of peptone into the air pouch as an inflammogen caused an influx of leukocytes and plasma exudate and a reduction in implanted articular cartilage PG content, extractability, and aggregation, which was significantly greater than that which occurred in noninflamed air pouches. In vitro experiments demonstrated that peptone did not have a direct effect on cartilage PG degradation. Daily injection of Arteparon, SP-54, or DH-40J (10 mg/kg) into peptone-inflamed air pouches significantly increased the PG content, extractability, and aggregation in implanted articular cartilage, compared with that in cartilage from non-drug-treated control animals. The infiltration of leukocytes into the peptone-inflamed air pouches was significantly reduced by daily administration of Arteparon, 10 mg/kg. At an equivalent dose, DH-40J increased leukocyte numbers in the pouch fluid, whereas SP-54 had no significant effect on leukocyte accumulation.

Animals↗

Mechanisms of vitamin B12 deficiency in elderly inpatients.

A protein-bound Schilling test incorporating chick serum was used to study 16 elderly vitamin B12-deficient inpatients. Thirteen of these also underwent standard Schilling tests. They were compared with an age-matched control group of non-deficient inpatients. The lower limit of normal for assimilation of protein-bound vitamin B12 was 0.7%. Fourteen out of 16 deficient patients assimilated protein-bound vitamin B12 subnormally. Twelve of these were fully Schilling tested. Five assimilated free B12 normally, and five responded to intrinsic factor. One patient did not respond to intrinsic factor and had jejunal diverticulosis and one could not be categorized. One of two patients with normal assimilation had a borderline vitamin B12 intake. No subjects had neurological sequelae and only three were anaemic. In this population, B12 deficiency is usually asymptomatic but nearly always results from impaired assimilation possibly justifying replacement therapy. Schilling testing only affects treatment if there is other evidence of small-bowel dysfunction.

Age Factors↗

Laboratory control of immunocytochemistry.

Monoclonal antibody technology is now used in many haematology departments for the analysis and phenotyping of haematological malignancies. Immunocytochemical analysis, in particular the alkaline phosphatase anti-alkaline phosphatase (APAAP) technique is increasing in popularity. This paper describes the findings from the 1st year of an external quality assurance scheme for immunocytochemistry. Initially, there was a wide variation amongst the results received. An improvement was seen over the year with subsequent concordance in the results. This variation could be due to a number of variables within the technique which this report highlights.

Antibodies, Monoclonal↗

Inhibition of neutrophil chemotaxis in methotrexate-treated rheumatoid arthritis patients.

Polymorphonuclear cell (PMN) chemotaxis was assessed using the in vitro under agarose assay in ten rheumatoid arthritis patients prior to and following a single 10-mg dose of methotrexate (MTX). PMNs obtained from patients after MTX showed a decreased chemotactic migration response to both zymosan activated serum (P less than 0.005) and N-formyl-L-methionyl-L-phenylalanine (P less than 0.01). In similar conditions, no significant difference in chemotactic migration could be detected in six rheumatoid arthritis patients not on MTX. In contrast to the in vivo effects of MTX, there was no inhibition of normal PMN chemotactic migration following a 30-min in vitro incubation of the cells with MTX (P less than 0.99).

Arthritis, Rheumatoid↗

D-penicillamine metabolism in an in-vivo model of inflamed synovium.

Oxidation to disulphides is the chief metabolic transformation of D-penicillamine (D-pen) in patients with rheumatoid arthritis. Oxidation also occurs in many biological fluids in-vitro. Reduction of oxygen species may accompany the oxidation of D-pen under appropriate conditions and may mediate the anti-rheumatic action of D-pen. The transformation of D-pen therefore was examined in an in-vivo model of inflamed synovium. Subcutaneous air-pouches of groups of rats were treated with saline, 10% serum or 10% zymosan activated serum (ZAS). The transformation of D-pen to low molecular weight (LMW) metabolites and protein conjugates within the pouch was then assessed. The concentrations of total protein were significantly higher in the serum and ZAS-treated groups than in the saline-treated group and the inflammatory cell counts were significantly higher in the ZAS-treated group than in either of the other groups, as expected. D-pen oxidised rapidly to LMW metabolites and smaller amounts of D-pen-protein conjugate (D-pen-protein) in the air pouches of all animals. The rates of oxidation to LMW metabolites were greater in the ZAS-treated animals than the saline-treated group (p less than 0.005). The concentrations of D-pen-protein conjugate were also greater for the serum-treated and ZAS-treated animals than for the saline controls (p less than 0.005 in each case) at all times. Oxidation of D-pen therefore occurs at this site of inflammation and is influenced by local conditions. This may be important to understanding the forms in which D-pen exists in inflamed synovial joints and the way it may exert its antirheumatic activity.

Animals↗

Inhibition of leucotriene B4 synthesis by BW 755c does not reduce polymorphonuclear leucocyte (PMNL) accumulation induced by monosodium urate crystals.

Monosodium urate (MSU) crystals induce an inflammatory response when injected into the rat subcutaneous air pouch, which is characterised by polymorphonuclear leucocyte (PMNL) accumulation and plasma leakage. The arachidonic acid metabolites leucotriene B4 (LTB4), prostaglandin E2 (PGE2), 6-oxo-prostaglandin F1 alpha, (6-oxo-PGF1 alpha), and thromboxane B2 (TXB2) are found in increased concentrations in MSU induced exudates compared with animals injected with phosphate buffered saline (PBS). Pretreatment of animals with BW 755c significantly reduced the concentration of both lipoxygenase and cyclo-oxygenase derived arachidonic acid metabolites. Although BW 755c reduced MSU crystal induced plasma leakage, it did not affect PMNL accumulation. Pretreatment of animals with indomethacin selectively inhibited the generation of cyclo-oxygenase derived arachidonic acid metabolites and reduced MSU crystal induced plasma leakage but had no effect on PMNL accumulation. The inhibition of plasma leakage by either BW 755c or indomethacin was reversed by prostaglandin E2 (1 microgram/ml), which itself produced a significant increase in plasma leakage. The injection of purified LTB4 (4 ng/ml or 40 ng/ml) did not induce either plasma leakage or PMNL accumulation within the air pouch. These data suggest that although MSU crystals stimulate LTB4 production, LTB4 is not the mediator of MSU crystal induced PMNL accumulation. Cyclo-oxygenase products of arachidonic acid metabolism (e.g., PGE2), however, appear to play a part in MSU crystal induced plasma leakage.

4,5-Dihydro-1-(3-(trifluoromethyl)phenyl)-1H-pyraz↗

The metabolism of synthetic leukotriene B4 in synovial fluid and whole human blood.

The metabolism in vitro of synthetic leukotriene B4 (LTB4) in synovial fluid from rheumatoid arthritis and osteoarthritis patients and in whole blood from these same patient groups and from normal volunteers has been studied. A linear relationship existed between a plot of the time of incubation of samples with LTB4 and the percentage of the initial concentration of LTB4 at each time point. The slope of this line, the rate constant for metabolism, has been used to compare different samples. LTB4 was metabolised more rapidly in the synovial fluid of rheumatoid arthritis patients than osteoarthritis patients. Furthermore, LTB4 was metabolised more rapidly in the blood of rheumatoid arthritis patients than either osteoarthritis patients or normal volunteers. These differences in metabolism correlate with the polymorphonuclear leukocyte (PMN) and albumin content of samples. It is suggested that binding of LTB4 to albumin in vivo will in part determine the available concentration of LTB4 in inflammatory lesions.

Arthritis, Rheumatoid↗

Crystal-induced inflammation in the rat subcutaneous air-pouch.

Monosodium urate (MSU) and calcium pyrophosphate dihydrate (CPPD) crystals initiated acute inflammatory reactions characterized by increased plasma extravasation and polymorphonuclear leukocyte (PMNL) accumulation in the rat subcutaneous air-pouch. Pretreatment of rats with colchicine (1 mg kg-1, s.c.) inhibited PMNL accumulation induced by either crystal type but had a greater inhibitory effect on MSU-induced plasma extravasation compared with that induced by CPPD crystals. Colchicine (1 mg kg-1, s.c.) did not reduce histamine-induced plasma extravasation in the air-pouch. The lipoxygenase product of arachidonic acid metabolism, leukotriene B4 (LTB4), was detected in MSU-induced exudates but not in CPPD-induced exudates. Pretreatment of rats with colchicine (1 mg kg-1, s.c.) inhibited LTB4 production in MSU-induced exudates.

Animals↗

Peripheral blood lymphocyte subpopulations in patients with primary proliferative and secondary polycythaemia.

Peripheral blood lymphocyte subpopulations were measured in 18 patients with primary proliferative polycythaemia and 13 patients with secondary polycythaemia. A decrease in numbers of suppressor T lymphocytes and an increase in the helper:suppressor T lymphocyte ratio was found in those with primary polycythaemia compared with normal subjects and patients with secondary polycythaemia. If other causes of an increased helper:suppressor ratio are excluded this variable may be useful in confirming the myeloproliferative nature of patients with erythrocytosis.

Adult↗