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Biomedical subjects

D R Blake

Publications and source records attributed to D R Blake.

At least 145 records · Page 8Linked to original sources

Hepatic 60-kD heat-shock protein responses in alcoholic hepatitis.

The precise mechanism of the pathogenesis of alcoholic hepatitis is unknown, but immune involvement may perpetuate and exacerbate the process. Heat-shock proteins, normally protective, may be immunogenic and have been shown to induce antibody formation in some inflammatory conditions. Alcohol, cellular hypoxia and tumor necrosis factor, all involved in alcoholic hepatitis, are potent inducers of heat-shock protein. In this study, we sought 60-kD heat-shock protein in liver tissue with a murine monoclonal antibody and measured circulating antibody to 60-kD heat-shock protein on ELISA. Fourteen of 20 livers from patients with acute alcoholic hepatitis expressed 60-kD heat-shock protein in hepatocyte cytoplasm in a diffuse pattern with superimposed clusters; other cell types were occasionally positive. Twelve of these patients had high-titer IgA 60-kD heat-shock protein antibody in serum. In contrast, 60-kD heat-shock protein was identified in only 2 of the 10 patients with alcoholic cirrhosis without hepatitis (p = 0.013). These two patients had severe liver disease, and one patient in this group was seropositive for IgA 60-kD heat-shock protein antibody. Eight alcoholic patients with fatty liver alone were negative for antigen, and all but one were negative for antibody. The 10 patients without liver damage were negative for antigen and antibody. The findings that 60-kD heat-shock protein is present in liver tissue of patients with acute alcoholic liver damage and that circulating IgA 60-kD heat-shock protein antibody levels are increased may point to one pathogenetic mechanism underlying development and progression of liver damage in alcoholic hepatitis.

Adult↗

Stimulation of osteoclastic bone resorption by hydrogen peroxide.

The molecular mechanisms underlying the pathophysiology of bone destruction still remain poorly understood. We have found that hydrogen peroxide (H2O2), a reactive oxygen species (ROS), is a potent stimulator of osteoclastic bone resorption and cell motility. A marked enhancement of bone resorption was noted when rat osteoclasts, cultured on devitalised bovine cortical bone, were exposed to 10 nM [H2O2]. Apart from exposing osteoclasts to a low extracellular pH, which is known to enhance osteoclastic bone resorption, we provide first evidence for a molecule that stimulates osteoclastic bone resorption in osteoclast cultures that do not respond to parathyroid hormone and 1, 25 dihydroxyvitamin D3. We envisage that both basic biological and practical clinical implications may eventually follow from these studies.

Animals↗

Inhibition of neutrophil superoxide production by human plasma alpha 1-antitrypsin.

We report here that human plasma alpha 1-antitrypsin (alpha 1-AT) inhibited human neutrophil O2.- release elicited by a variety of stimulants. In comparison, the inhibitory capacities of two serine protease inhibitors, L-1-tosylamide 2-phenylethyl chloromethyl ketone (TPCK) and soybean trypsin inhibitor (SBTI), and the human recombinant alpha 1-AT mutant, alpha 1-AT-Arg358 were in the order: alpha 1-AT = TPCK much greater than alpha 1-AT-Arg358 greater than SBTI when cells were stimulated with concanavalin A plus cytochalasin E. These data suggest that, in human inflammatory fluids containing relatively high concentrations of alpha 1-AT (such as rheumatoid arthritis synovial fluid), (i) alpha 1-AT may down-regulate the inflammatory process by inhibiting the neutrophil respiratory burst and (ii) serpin oxidation by neutrophil-released reactive oxygen species is unlikely to occur.

Adult↗

Isolation and culture of synovial microvascular endothelial cells. Characterization and assessment of adhesion molecule expression.

OBJECTIVE: In vitro studies investigating the role of the synovial endothelium in the pathogenesis of rheumatoid arthritis (RA) have, until recently, been performed using cultured endothelial cells of nonsynovial macrovascular origin. In an attempt to more correctly model in vivo conditions, a method for the isolation and culture of synovial microvascular endothelial cells (SMEC) has been developed. METHODS: SMEC were isolated, primarily, by the use of lectin-coated (Ulex europaeus agglutinin type I), magnetizable polystyrene beads. RESULTS: Isolated cells exhibit classic endothelial "cobblestone" morphology, express von Willebrand factor, metabolize acetylated low-density lipoprotein, and exhibit a cytokine (interleukin-1)-mediated expression of endothelial leukocyte adhesion molecule type 1 (ELAM-1) and intercellular adhesion molecule type 1 (ICAM-1). ELAM-1 levels were significantly elevated in SMEC, compared with human umbilical vein endothelial cells, over a range of interleukin-1 concentrations. CONCLUSION: This increased expression of ELAM-1 by SMEC may be a potentiating step in the pathogenesis of RA.

Cell Adhesion↗

Autoradiographic localization and analysis of endothelin-1 binding sites in human synovial tissue.

OBJECTIVE: To determine the localization of endothelin binding sites and immunoreactivity in human synovial tissues. METHODS: Quantitative in vitro autoradiographic and immunohistochemical techniques were used to localize and characterize 125I-labeled endothelin-1 (125I-ET-1) binding sites and endothelin-like immunoreactivity in sections of rheumatoid, osteoarthritic, and normal synovium. RESULTS: Specific 125I-ET-1-binding sites, characteristic of the ETA receptor, were localized to the media of synovial blood vessels in all 3 groups. No difference was found in vascular binding site density in rheumatoid and osteoarthritic synovium. Endothelin-like immunoreactivity was localized to endothelial cells in blood vessels displaying 125I-ET-1 binding sites. CONCLUSION: We conclude that endothelin may act locally, modulating synovial perfusion and exacerbating hypoxia in chronic arthritis.

Aged↗

A hypothesis for the local control of osteoclast function by Ca2+, nitric oxide and free radicals.

Several important conclusions have recently emerged from in vitro studies on the resorptive cell of bone, the osteoclast. First, it has been established that osteoclast function is modulated locally, by changes in the local concentration of Ca2+ caused by hydroxyapatite dissolution. It is thought that activation by Ca2+ of a surface membrane Ca2+ receptor mediates these effects, hence providing a feedback control. Second, a number of molecules produced locally by the endothelial cell, with which the osteoclast is in intimate contact, have been found to affect bone resorption profoundly. For instance, the autocoid nitric oxide strongly inhibits bone resorption. Finally, reactive oxygen species have been found to aid bone resorption and enhance osteoclastic activity directly. Here, we will attempt to integrate these control mechanisms into a unified hypothesis for the local control of bone resorption.

Animals↗

The selective protection afforded by ebselen against lipid peroxidation in an ROS-dependent model of inflammation.

The effects of an experimental model of hydrogen-peroxide-induced foot pad oedema on indices of oxidative damage to biomolecules have been investigated. We have demonstrated increased levels of fluorescent protein and lipid peroxides occurring in plasma at 24 and 48 h post-injection. In addition, a decrease in the degree of galactosylation of IgG was observed which kinetically related the degree of inflammation and to the increase in protein autofluorescence (a specific index of oxidative damage). The effects of ebselen, a novel organoselenium compound which protects against oxidative tissue injury in a glutathione-peroxidase-like manner, have also been examined in this model. Pretreatment of animals with a dose of 50 mg/kg ebselen afforded significant and selective protection against lipid peroxidation only. This effect may contribute to the anti-inflammatory effect of this agent in hydroperoxide-linked tissue damage.

Animals↗

Chemiluminescence assay of mucosal reactive oxygen metabolites in inflammatory bowel disease.

Previous studies suggesting increased reactive oxygen metabolite (ROM) production in inflammatory bowel disease have been restricted to peripheral blood and isolated intestinal phagocytes. In the current study, chemiluminescence and the effect of various scavengers, enzymes, and enzyme inhibitors were used to show that ROMs account for the increased production of oxidants by colorectal mucosal biopsy specimens in inflammatory bowel disease. Luminol-amplified chemiluminescence was increased in active ulcerative colitis [macroscopic grade 1: 25 photons.mg-1.min.10(-3) (median), 8-47 (95% confidence intervals), n = 40; grade 2: 89, 65-156, n = 30; grade 3: 247, 133-562, n = 13] and Crohn's disease [mild: 9, 3-84, n = 6; severe: 105, 25-789 (range), n = 5] compared with normal-looking mucosa (ulcerative colitis: 0.8, 0.4-1.4, n = 22, P less than 0.01; Crohn's disease: 0.8, 0.1-2, n = 6, P less than 0.05) and controls (0.6, 0.04-1.4, n = 52, P less than 0.01). In ulcerative colitis, luminol chemiluminescence correlated with microscopic inflammation (Spearman's p = 0.74, P = 0.0001) and was decreased by sodium azide (-89%, P less than 0.05), taurine (-31%, P less than 0.05), catalase (-23%, P less than 0.05), and dimethyl sulfoxide (-29%, P less than 0.05). Superoxide dismutase and oxypurinol decreased lucigenin chemiluminescence in ulcerative colitis by -63% (P less than 0.05) and -27% (P less than 0.05), respectively. Luminol chemiluminescence correlated with lucigenin chemiluminescence (Spearman's rho = 0.72, P = 0.003). These results suggest that neutrophil-derived oxidants (superoxide, hydrogen peroxide, hydroxyl radical, and hypochlorite) are generated in colorectal mucosa in active inflammatory bowel disease and support the hypothesis that production of such metabolites by neutrophils is of major pathogenetic importance.

Acridines↗

Patient non-compliance: deviance or reasoned decision-making?

A large quantity of research concerning issues of patient compliance with medications has been produced in recent years. The assumption in much of this work is that patients have little option but to comply with the advice and instructions they receive. Studies have shown, however, that between one third and one half of all patients are non-compliant, but different authors cite different reasons for this high level of non-compliance. In this paper, the concept of compliance is questioned. It is shown to be largely irrelevant to patients who carry out a 'cost-benefit' analysis of each treatment, weighing up the costs/risks of each treatment against the benefits as they perceive them. Their perceptions and the personal and social circumstances within which they live are shown to be crucial to their decision-making. Thus an apparently irrational act of non-compliance (from the doctor's point of view) may be a very rational action when seen from the patient's point of view. The solution to the waste of resources inherent in non-compliance lies not in attempting to increase patient compliance per se, but in the development of more open, co-operative doctor-patient relationships.

Adolescent↗

Free radical yields from the homolysis of peroxynitrous acid.

A recent study reports discordant results for maximal free-radical yields from the decomposition of peroxynitrous acid using different assay reagents and a puzzling decrease (to zero) of the radical yields with increasing pH. An assay method using 2,2,'azino-bis(3-ethyl-benzthiazoline sulphonate) (ABTS) has been tested using stopped-flow kinetic studies, and the results imply that the assay is satisfactory when [HOONO] much greater than [-OONO] but that reactions involving peroxynitrite anion interfere at higher pH. Evidence is presented that peroxynitrite was an interfering species in the earlier studies.

Benzothiazoles↗

Alpha-tocopherol, lipids and lipoproteins in knee-joint synovial fluid and serum from patients with inflammatory joint disease.

1. We have determined the antioxidant status of synovial fluid and serum of patients with inflammatory joint disease in terms of the biologically active lipid-soluble antioxidant, alpha-tocopherol. Synovial fluid concentrations of alpha-tocopherol were significantly lower relative to those of paired serum samples (P < 0.001). Serum levels of alpha-tocopherol in these patients did not differ significantly from those in control serum. 2. Lower concentrations of cholesterol, triacylglycerol and low-density lipoprotein were also observed in patients' synovial fluid compared with matched serum samples. However, multiple regression analysis of the data indicated that there remained a significant depletion of alpha-tocopherol, which was largely independent of these co-variables, in inflammatory synovial fluid. These findings are consistent with the consumption of alpha-tocopherol within the inflamed joint via its role in terminating the process of lipid peroxidation. 3. Nuclear magnetic resonance spectroscopic analysis of matched inflammatory synovial fluid and serum confirmed lower concentrations of triacylglycerol in synovial fluid together with evidence of a shortened mean triacylglycerol chain length. The latter metabolic difference suggests an increased utilization of triacylglycerols for energy within the inflamed joint.

Arthritis↗

Skin inflammation: reactive oxygen species and the role of iron.

Superoxide and hydrogen peroxide are reactive oxygen species (ROS) primarily produced by phagocytic cells as a consequence of the process of phagocytosis. This defensive role, may, however, become one of attack when production of ROS is excessive and overwhelms cellular scavenging systems. This happens in situations such as acute inflammation and results in host cell membrane damage, which is particularly prevalent in the presence of transition metal catalysts such as iron and copper. The skin is uniquely vulnerable to this attack being rich in polyunsaturated fatty acids and exposed to high oxygen tensions and ultraviolet light, both of which promote production of ROS. Additionally, the respiratory burst of infiltrating polymorphonuclear leukocytes and macrophages in inflamed skin will produce high local levels of superoxide that can release "catalytic iron" from storage proteins such as ferritin. The role of iron and ROS in the pathogenesis of inflammatory skin disease is discussed as is the possibility of novel therapeutic strategies based on their removal.

Dermatitis↗

The role of iron in an acute model of skin inflammation induced by reactive oxygen species (ROS).

The effect of iron was studied in rats in a ROS-initiated model of acute skin inflammation. Iron dextran was administered i.v. 24 h before the induction of the inflammatory response by intradermal injection of glucose oxidase attached to polyethylene glycol (GOD-PEG). Iron exacerbated the response at 24 and 48 h (P greater than 0.001). Histologically, a similar picture was seen to that without iron except for an increase in tissue oedema and matrix destruction including the skin glands. Associated with iron loading was an increase in Perls stainable iron in the skin (P greater than 0.025) and liver (P greater than 0.001). However, skin inflammation without iron loading also increased skin iron levels (P greater than 0.025). Total serum iron was decreased in iron-loaded and GOD-PEG animals (P greater than 0.01) and the unbound iron binding capacity (UIBC) increased (P greater than 0.01).

Animals↗

Circulating antibodies to heat-shock protein 60 in Crohn's disease and ulcerative colitis.

Heat-shock proteins (HSPs) are highly conserved immunogenic intracellular molecules that are induced by inflammatory mediators and may induce autoimmune phenomena in vivo. We have recently demonstrated the increased expression of HSP-60 in the colonocytes of patients with ulcerative colitis. To study further the role of HSP-60 in inflammatory bowel disease, we have now measured antibodies to recombinant mycobacterial HSP-65 (a member of the HSP-60 family) in patients with Crohn's disease, ulcerative colitis, healthy volunteers and, as disease controls, patients with confirmed bacterial diarrhoea. In comparison with healthy controls (n = 20; median level of 89 ELISA units; range 24-292), serum IgA HSP-60 antibodies were elevated in Crohn's disease (n = 21; 157; 57-364; P < 0.05) and active ulcerative colitis (n = 16; 188; 58-373; P < 0.01) but not bacterial diarrhoea (n = 10; 106; 51-285). Increased IgA HSP-60 antibody levels in patients with inflammatory bowel disease may occur as the result of HSP release from injured gut epithelium; alternatively, increased intestinal permeability could facilitate mucosal access of luminal antigens and the generation of cross-reactive anti-bacterial HSP antibodies.

Antibodies↗

The effects of calcitonin gene-related peptide on formation of intra-articular oedema by inflammatory mediators.

1. The temporal and quantitative effects of inflammatory mediators on plasma extravasation in the rat knee were investigated by use of a perfusion technique. 2. Intra-articular perfusion of substance P (SP), bradykinin or histamine over a 5 min test period produced rapid-onset and prolonged plasma extravasation in a dose-dependent fashion. The rank order of potency was bradykinin greater than SP greater than histamine. 3. Calcitonin gene-related peptide (CGRP) did not induce plasma extravasation but enhanced substance P-induced plasma extravasation in a dose-dependent fashion. A 5 min co-perfusion of the two agents produced short-term enhancement lasting 10 min while continuous co-perfusion produced enhancement for the duration of the perfusion. 4. A 5 min perfusion of CGRP enhanced plasma extravasation when co-perfused with bradykinin but not histamine. However, when CGRP and histamine were continuously co-perfused over a 20 min test period, an enhanced response was apparent. 5. The results indicate that intra-articular perfusion of CGRP enhances synovial plasma extravasation induced by agents that increase vascular permeability, but suggest that the response is not uniform and is critically dependent on the duration of perfusion within the joint.

Animals↗

Exercise induced release of von Willebrand factor: evidence for hypoxic reperfusion microvascular injury in rheumatoid arthritis.

Experimental evidence suggests that rheumatoid synovitis may be perpetuated by the generation of reactive oxygen species during hypoxic reperfusion injury. The latter occurs because increased intra-articular pressure during exercise exceeds synovial capillary perfusion pressure, impairing blood flow. The object of this study was to establish a marker for and the mechanism of synovial hypoxic reperfusion injury. Von Willebrand factor (vWF) is only released from endothelial cells and platelets and is an in vivo and in vitro marker of endothelial injury. In vivo exercise induced changes in plasma vWF were therefore investigated in patients with rheumatoid arthritis (RA) compared with controls and in vitro vWF release by human umbilical vein endothelial cells subjected to hypoxia reperfusion. Pre-exercise plasma vWF levels were 1001 and 817 IU/l, increasing after exercise to 1658 and 845 IU/l in patients with RA and controls respectively. Von Willebrand factor release from human umbilical vein endothelial cells followed a biphasic pattern, occurring during both hypoxia and reperfusion. Hypoxia reperfusion induced vWF release by human umbilical vein endothelial cells in vitro suggests that exercise induced vWF release in patients with RA is best explained by synovial hypoxic reperfusion injury. This study supports evidence that generation of reactive oxygen species plays a principal part in synovial hypoxic reperfusion injury and suggests vWF as a useful marker of this phenomenon.

Adult↗