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Biomedical subjects

D R Blake

Publications and source records attributed to D R Blake.

At least 91 records · Page 5Linked to original sources

Hydroxyl radical generation by rheumatoid blood and knee joint synovial fluid.

OBJECTIVE: To demonstrate directly that highly reactive hydroxyl radicals (OH.) can be generated in patients with rheumatoid arthritis and contribute to joint damage, and to examine the ability of blood to cause OH. generation. METHODS: The sensitive and specific technique of hydroxylation of aromatic compounds (salicylate and phenylalanine) was used to measure OH.. Synovial fluid and blood from patients with active rheumatoid arthritis were aspirated and immediately added to tubes containing salicylate and phenylalanine as detectors of OH., or to tubes containing saline as a control. Levels of specific products of attack of OH. upon salicylate (2,3- and 2,5-dihydroxybenzoates) and phenylalanine (ortho- and meta-tyrosines) were measured by high performance liquid chromatography. RESULTS: Synovial fluid samples aspirated into saline never contained ortho- or meta-tyrosines or 2,3-dihydroxybenzoate. Of 53 patients examined, synovial fluid and blood from 36 caused formation of ortho- and meta-tyrosines when aspirated into solutions containing phenylalanine. Repeated sampling from three "positive" patients showed consistent evidence of these hydroxylation products. Similarly, of 22 patients examined, synovial fluid and blood from 18 caused formation of 2,3- and 2,5-dihydroxybenzoates when aspirated into salicylate solutions. Further evidence for the role of OH. was provided by inhibition of the hydroxylation by the specific OH. scavengers mannitol and sodium formate. CONCLUSIONS: Aspirated knee joint fluids and blood from rheumatoid arthritis patients can generate OH., consistent with current views on the importance of this radical as a cytotoxic agent in rheumatoid disease. The ability of body fluids to cause OH. formation is not correlated with simple laboratory indices of disease activity, but is reproducible on sequential sampling from the same patients. The mechanism and significance of the phenomenon in rheumatoid arthritis pathology remain to be established.

Arthritis, Rheumatoid↗

Evaluating the antioxidant potential of new treatments for inflammatory bowel disease using a rat model of colitis.

BACKGROUND: Reactive oxygen species may mediate tissue injury in inflammatory bowel disease. Aminosalicylates have antioxidant activity and the antioxidants, superoxide dismutase and allopurinol, are of reported benefit in inflammatory bowel disease. AIM: To develop a convenient technique for testing the antioxidant potential of standard and novel therapeutic agents for use in inflammatory bowel disease. METHODS: Amplified chemiluminescence was used to measure reactive oxygen species production by colonic biopsy specimens from rats with acetic acid induced colitis and to assess the in vitro effect of conventional antioxidants, standard therapies and proposed novel therapies for inflammatory bowel disease. RESULTS: The model was validated by demonstrating that the profile of effects on chemiluminescence of acetic acid induced colitis biopsy specimens given by conventional antioxidants (sodium azide, catalase, copper-zinc superoxide dismutase, dimethyl sulphoxide, N-acetylcysteine and ascorbate) and standard therapies (5-aminosalicylate and hydrocortisone) resembled that previously reported using biopsy specimens from ulcerative colitis. Human recombinant manganese superoxide dismutase did not alter chemiluminescence. Two novel compounds, LY231617 (10 mM) and amflutizole (20 mM), reduced chemiluminescence by 98% (n = 5, p = 0.009) and 88% (n = 5, p = 0.03), respectively. CONCLUSIONS: The similarity of the chemiluminescence responses of colonic biopsy specimens from acetic acid induced colitis and ulcerative colitis to a range of conventional antioxidants and standard treatments suggests that this model is a useful method for testing the antioxidant potential of new therapies for inflammatory bowel disease. The antioxidant actions of dimethyl sulphoxide, ascorbate, and the novel compounds, amflutizole and LY231617 in this model suggest that these agents merit further assessment in the treatment of inflammatory bowel disease.

Acetic Acid↗

Extent of oxidative modification of low density lipoprotein determines the degree of cytotoxicity to human coronary artery cells.

OBJECTIVE: To assess whether the extent of LDL oxidation influences its cytotoxic effects, thus contributing to its atherogenic potential. DESIGN AND SETTING: The effects of native and modified LDL on cultured human coronary artery smooth muscle cells (SMC) and endothelial cells (ECs) were investigated. MAIN OUTCOME MEASURES: Four indices of cytotoxicity were studied: (i) chromium-51 release; (ii) 5-bromo-2'-deoxyuridine (BrDUrd) uptake; (iii) morphological appearance; and (iv) EC migration. RESULTS: (i) Minimally modified (mm) LDL (400 micrograms/ml) causes significant 51Cr release; the cytotoxic effect was significantly greater for copper oxidised (ox) LDL (400 micrograms/ml). Native LDL had no effect. (ii) BrDUrd uptake studies showed significant inhibition of cell proliferation by 100 micrograms/ml of oxLDL and to a lesser extent by mmLDL; native LDL had no effect. (iii) Morphological appearance was not altered by native LDL. Changes in cell morphology were induced by mmLDL (400 micrograms/ml), and were more pronounced with oxLDL in concentrations of > or = 200 micrograms/ml. (iv) EC migration was significantly inhibited by oxLDL (100 micrograms/ml), but not by native or mmLDL. CONCLUSION: The extent of oxidation of LDL determined its cytotoxicity to coronary artery cells. Native LDL had no cytotoxic effect. In contrast, oxLDL and to a lesser extent mmLDL caused cytotoxicity at concentrations to which cells in vivo might be exposed. This may contribute to the atherogenicity of modified LDL by enhancing cellular injury and inflammation, and by inhibiting re-endothelialisation of areas of coronary artery damaged during the atherogenic process.

Bromodeoxyuridine↗

Effect of mu, delta and kappa opioid receptor agonists on a reactive oxygen species mediated model of skin inflammation.

Opioid agents have been shown to protect against tissue damage caused by hypoxia/reperfusion, an event which has a significant reactive-oxygen-species (ROS) involvement. We have investigated the potential anti-inflammatory activity of three opioid agonists, DAMGO, DPDPE and U50488 in rat skin inflammation induced by the ROS hydrogen peroxide. The model involves the intradermal injection of the enzyme glucose oxidase which converts glucose to D-gluconic acid and H2O2 which is locally released. Following injection, a well-delineated inflammatory response develops rapidly, is maximal at 5 h and still measurable after 48 h. Co-administration of the delta or kappa opioid agonist DPDPE or U50488 (7.5-60 micrograms per site) significantly reduced the inflammation, in a dose-dependent manner, for periods of up to 3 h for DPDPE, and up to 5 h with U50488. The mu-opioid agonist DAMGO (7.5-60 micrograms per site) was ineffective. Co-administration of the opioid antagonist naltrexone (120 micrograms) partially reversed the anti-inflammatory effects of DPDPE and U50488. We conclude that the delta and kappa opioid receptor agonists DPDPE and U50488 are able to inhibit ROS-induced skin inflammation and that this may have clinical implications.

3,4-Dichloro-N-methyl-N-(2-(1-pyrrolidinyl)-cycloh↗

Neurogenic influences on contralateral responses during experimental rat monoarthritis.

Many inflammatory conditions show topographically precise symmetrical responses. In this study we assessed vascular and cellular responses of apparently normal knees following induction of monoarthritis on the opposite side. A strictly localised monoarthritis was induced in the right knee of experimental animals using intra-articular latex spheres. In both knee joints bradykinin-induced plasma extravasation was significantly enhanced increasing from 0.52 +/- 0.07 micrograms/ml Evans blue to 0.99 +/- 0.07 micrograms/ml and 0.88 +/- 0.1 micrograms/ml in the injected and uninjected, contralateral, knees respectively (P < 0.05). A bilateral increase in cellularity was also apparent with cell counts in the uninjected, and apparently normal, knee increasing from 512 +/- 42 cells/mm2 to a maximum of 812 +/- 125 cells/mm2 on day 10 (P < 0.05). Immunohistological analysis demonstrated that the infiltrating cells in both the ipsilateral and contralateral joints were predominantly macrophages. Cell counts were not increased in the other peripheral joints. Levels of the sensory neuropeptide substance P were significantly elevated in both the ipsilateral and contralateral dorsal root ganglia and prior inhibition of small unmyelinated nerve activity inhibited the cellular infiltrate on the contralateral side, suggesting that the effect was mediated, at least partially, by a specific neurogenic pathway. The data suggests the presence of a neurogenic mechanism able to induce a topographically precise response. This may serve to upregulate the cellular defences of at-risk tissues following a potentially damaging stimulus at another site.

Analysis of Variance↗

Detection and investigation of the molecular nature of low-molecular-mass copper ions in isolated rheumatoid knee-joint synovial fluid.

Low-molecular-mass copper(II) species have been detected and quantified in ultrafiltrates (n = 7) of rheumatoid synovial fluid (SF) by a highly-sensitive HPLC-based assay system with the ability to determine Cu(II) concentrations of < 10(-7) mol.dm-3. High field 1H NMR spectroscopy demonstrated that addition of Cu(II)(aq.) to isolated samples of RA SF ultrafiltrates resulted in complexation by histidine > alanine > formate > threonine > lactate > tyrosine > phenylalanine, their effectiveness in this context being in the given order. CD spectra of Cu(II)-treated samples of intact SF exhibited absorption bands typical of copper(II)-albumin complexes, in addition to a band attributable to a low-molecular-mass histidinate complex (lambda min 610 nm). Since both albumin and histidine are potent radical scavengers, these results indicate that any .OH radical generated from bound copper ions will be 'site-specifically' scavenged. Hence, low-molecular-mass copper complexes with the ability to promote the generation of .OH radical which can then escape from the metal ion co-ordination sphere (and in turn, cause damage to critical biomolecules) appear to be absent from inflammatory SF.

Adult↗

Reactive oxygen species and iron--a dangerous partnership in inflammation.

Cells of nearly all forms of life require well-defined amounts of iron for survival, replication and expression of differentiated processes. It has a central role in erythropoiesis but is also involved in many other intracellular processes in the tissues of the body. It is the fourth most abundant element in the Earth's crust and the most abundant transition metal in living organisms for which its characteristic chemistry endows it with a series of properties enabling it to fulfil certain biological reactions especially those involving redox mechanisms. It is involved in the transport of oxygen, in electron transfer, in the synthesis of DNA, in oxidations by oxygen (O2) and hydrogen peroxide (H2O2) and in many other processes maintaining normal structure and function of virtually all mammalian cells. Because an iron atom can exist in two valency states, ferrous and ferric, iron became the primordial partner of oxygen in evolution. However, as de Sousa et al. (1989) state, such long standing partnerships have to use protective devices to ensure that the toxicity of neither partner is expressed in the presence of the other. Here, we discuss this dangerous partnership and its relevance to inflammation. The main themes of this review are the known roles of iron in the generation of reactive oxygen intermediates and new developments, including iron and transcription and the reaction of iron with nitric oxide. We also consider the widening recognition of the importance of oxygen metabolites in hypoxia-reperfusion injury and disease of the skin and joint.

Animals↗

Detection of oxidants in uremic plasma by electron spin resonance spectroscopy.

Depletion of antioxidants and the presence of products of free radical damage in plasma suggest that oxidative stress is increased in uremia. We have developed an application of electron spin resonance spectroscopy, and used this method to show that a stable oxidizing component or components of plasma accumulate in uremia. No oxidizing activity was detectable in plasma from subjects with normal renal function. The oxidant was detected by its capacity to oxidize the spin trap 3,5-dibromo-4-nitrosobenzene sulphonate (DBNBS). The oxidant was dialyzable from plasma, had an upper molecular weight limit of about 3,000 Daltons and was stable over many months. Physiological plasma concentrations of vitamin C, a water soluble congener of vitamin E and reduced glutathione were unable to inhibit the oxidizing capacity of uremic plasma. Thus, uremia is associated with accumulation of an endogenous oxidizing activity at much higher concentrations than in subjects with normal renal function.

Adult↗

Hypoxia, oxidative stress and rheumatoid arthritis.

The synovial cavity has a negative pressure in health. When the joint is exercised, vascular patency is maintained, allowing for nutrition of the avascular cartilage. In rheumatoid synovitis, the situation is altered. The cavity pressure is raised and upon movement this pressure exceeds the capillary perfusion pressure, causing collapse of the blood vessels. This leads to the production of multiple episodes of 'hypoxic-reperfusion injury' generating reactive oxygen species (ROS). Such ROS oxidise: (a) IgG, inducing rheumatoid factor production (b) Hyaluronan, leading to hyaluronan fragmentation products which may alter immune function (c) Lipids, generating aldehydes which are toxic and may alter T cell/macrophage interactions (d) lipoproteins, leading to the production of monocyte chemotactic peptides Progressive hypoxia alters immune function, predominantly by calcium mediated pathways.

Arthritis, Rheumatoid↗

PPD and hsp65 induced monoarthritis initiates spontaneous recurrent flares in Lewis rats.

OBJECTIVES: To investigate the time course of a monoarthritis induced with the purified protein derivative of tuberculin (PPD) or a recombinant 65 kDa heat shock protein (rhsp65) in two different strains of sensitised rats. METHODS: Wistar and Lewis rats, sensitised with heat killed Mycobacterium tuberculosis in oil, were challenged intraarticularly with PPD or rhsp65 and monitored for six weeks. Inflammation was assessed by joint swelling, histology, and radiographic studies. RESULTS: Sensitised Lewis rats injected with PPD or rhsp65 showed a chronic response with recurrent spontaneous flares, while Wistar rats showed one inflammatory episode. CONCLUSIONS: The Wistar strain response to PPD resembles a transient reactive arthritis, while the response of the Lewis strain mimics the relapsing nature of rheumatoid synovitis, providing an interesting model to determine dominant immunopathogenic mechanisms.

Acute Disease↗

Electron spin resonance spectroscopic demonstration of the generation of reactive oxygen species by diseased human synovial tissue following ex vivo hypoxia-reoxygenation.

OBJECTIVE: To apply an electron spin resonance (ESR) spectroscopic technique as a means of determining the oxidising capacity of reactive oxygen species produced during hypoxia and reoxygenation of diseased human synovial tissue. METHODS: Twenty four specimens of fresh synovial tissue were obtained from patients undergoing primary total knee joint replacement and graded according to the degree of inflammation present. Tissue samples were subjected to an ex vivo hypoxia-reoxygenation cycle in the presence of the nitroso based spin trap, 3,5-dibromo-4-nitrosobenzene sulphonate. The degree of oxidation of the spin trap to a stable free radical was determined and followed with time. Control samples were subjected to hypoxia only. RESULTS: The results indicate that the oxidising capacity of reactive oxygen species produced by human synovial tissue varies with the degree of inflammation present. Only the more inflamed specimens, from both rheumatoid arthritis and osteoarthritis patients, demonstrated increased production of reactive oxygen species when subjected to a hypoxia-reoxygenation cycle. This change was reduced by both competitive and non-competitive inhibitors of the endothelial based enzyme xanthine oxidase. The relative concentration of reactive oxygen species generated by the synovial tissue samples correlated with the mean capillary density of the specimens. CONCLUSION: This study supports the hypothesis of movement induced hypoxicreperfusion injury of the chronically inflamed joint by demonstrating the generation of reactive oxygen species within inflamed human synovium following an ex vivo hypoxia-reoxygenation cycle. Evidence is presented that the microvascular endothelial based enzyme xanthine oxidase is the predominant source of ESR detectable oxidising species in inflamed synovial specimens exposed to hypoxia-reoxygenation.

Adult↗

Intra-articular pressure changes in rheumatoid and normal peripheral joints.

OBJECTIVE: To investigate the intraarticular pressure (IAP) dynamics of a spectrum of joints in rheumatoid and normal subjects in order to determine whether a reperfusion event is likely to occur at these sites. METHODS: IAP was measured in the metacarpophalangeal (MCP) (n = 8), wrist (n = 8), ankle (n = 4), and elbow joints (n = 4) of rheumatoid subjects, in addition to the MCP (n = 8), wrist (n = 6), and ankle joints (n = 1) of normal healthy controls, using the hand held portable 295-1 Intra-Compartmental Pressure Monitor System (Stryker, UK). RESULTS: Resting IAP was positive in all rheumatoid joints, and subatmospheric or weakly atmospheric in normal subjects (p < 0.01). Exercise produced an increase in IAP in rheumatoid subjects only (p < 0.01). The addition of saline to normal joints mimicked the IAP changes seen in the rheumatoid group. CONCLUSION: These observations suggest that increased resting IAP is a marker for chronic joint inflammation. The IAP increase seen in the rheumatoid group during exercise supports the concept of hypoxic reperfusion mediated joint injury.

Adult↗

The joint, a redox sensitive microenvironment?--an hypothesis.

Antioxidant depletion in a normal adult increases the risk of developing rheumatoid arthritis (1). We discuss how redox processes "control" the inflammatory reaction and suggest that the synovium is a peculiarly "redox-sensitive" microenvironment. This discussion will be illustrated by a zonal model of tissue injury to represent the diseased synovium.

Animals↗

Autoradiographic localization and characterization of [3H]alpha-trinositol (1D-myo-inositol 1,2,6-trisphosphate) binding sites in human and mammalian tissues.

alpha-Trinositol (1D-myo-inositol 1,2,6-trisphosphate, PP56) selectively and potently inhibits the vasoconstrictor effects of neuropeptide Y (NPY). The authors used quantitative in vitro receptor autoradiography to localize and characterize [3H]alpha-trinositol binding sites in human and mammalian tissues. [3H]alpha-trinositol bound specifically to vascular and nonvascular smooth muscle in human, porcine and rat tissues. Binding was time dependent, reversible, saturable and specific for alpha-trinositol compared with inositol 1,4,5-trisphosphate, inositol 1,3,4,5-tetrakisphosphate (Ins-1,3,4,5-P4) and inositol hexakisphosphate (Ins-P6). Binding to each structure gave Kd values of 5 to 20 nM and was consistent with a homogeneous population of sites. Binding was optimal at pH 5 and at low calcium concentrations. Comparison with [125I]Bolton Hunter-labeled NPY ([125I]BH-NPY) binding in porcine tissues revealed 1) a partial colocalization but Bmax values for [3H]alpha-trinositol binding some two orders of magnitude higher than for [125I]BH-NPY and 2) failure of each of the two ligands to inhibit binding of the other. Comparison of [3H]alpha-trinositol with [3H]Ins-1,3,4,5-P4 binding in human umbilical cord revealed that both ligands bound specifically to vascular smooth muscle but that only [3H]Ins-1,3,4,5-P4 bound to arterial endothelium. Both ligands bound to sites with rank orders of affinity Ins-1,3,4,5-P4 > Ins-P6 > inositol 1,4,5-trisphosphate. alpha-Trinositol had, however, three orders of magnitude higher affinity for [3H]alpha-trinositol than [3H]Ins-1,3,4,5-P4 binding sites; Ins-1,3,4,5-P4 and Ins-P6 had higher affinity for [3H]Ins-1,3,4,5-P4 binding sites. Specific [3H]alpha-trinositol binding sites may represent receptors by which alpha-trinositol inhibits NPY effects on vascular tone.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Proteolysis of human native and oxidised alpha 1-proteinase inhibitor by matrilysin and stromelysin.

Matrilysin is shown to rapidly inactivate alpha 1PI, an inhibitor of elastase, by cleaving the Pro357-Met358 peptide bond of its reactive centre. The rate of inactivation of alpha 1PI by matrilysin is four times higher than stromelysin. Matrilysin cleaves oxidised alpha 1PI at the Phe352-Leu353 bond, whilst stromelysin cleaves oxidised alpha 1PI at the Met358-Ser359 bond. We conclude that matrilysin is a potent serpinase which could play a role in inflammatory tissue damage by proteolytically inactivating alpha 1PI.

Amino Acid Sequence↗