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Biomedical subjects

K Chauhan

Publications and source records attributed to K Chauhan.

15 recordsLinked to original sources

Hypoxia stimulates the synthesis of cytochrome P450-derived inflammatory eicosanoids in rabbit corneal epithelium.

The corneal epithelium metabolizes arachidonic acid by a cytochrome P450-(CYP) mediated pathway to 12(R)hydroxy-5,8,10,14-eicosatrienoic acid [12(R)-HETE] and 12(R)hydroxy-5,8,14-eicosatrienoic acid [12(R)-HETrE]. Both metabolites possess potent inflammatory properties with 12(R)-HETrE being a powerful angiogenic factor and assume the role of inflammatory mediators in hypoxia- and chemical-induced injury in the cornea, in vivo. We developed an in vitro model of corneal organ culture to characterize the biochemical and molecular events involved in the increased synthesis of these metabolites. These cultured corneas exhibit epithelial cytochrome P450 CYP-dependent 12(R)-HETE and 12(R)-HETrE synthesis as indicated by chiral analysis and by the ability of CYP enzyme inhibitors to repress their synthesis. Hypoxia greatly and selectively stimulated the synthesis of 12(R)-HETE (7-fold over control normoxic conditions) and 12(R)-HETrE. The bacterial endotoxin, lipopolysaccharide, also increased the synthesis of these eicosanoids, substantiating the notion that this activity may function as an inflammatory pathway. These metabolites were detected in the culture medium by gas chromatography/mass spectroscopy (GC/MS) analysis and their levels significantly increased in hypoxia-treated corneas, further indicating their endogenous formation in response to injury. This in vitro model provides an excellent preparation for studying factors regulating the synthesis of these inflammatory eicosanoids and for isolating, identifying and characterizing the CYP protein responsible for their synthesis.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Involvement of a 43-kilodalton outer membrane protein in beta-lactam resistance of Shigella dysenteriae.

A beta-lactam-sensitive strain (C152) of Shigella dysenteriae showed two major outer membrane proteins (OMPs) with M(r)s of 43,000 and 38,000, while the clinical isolate M2 lacked the 43,000-Mr OMP, which acted as a channel for beta-lactam antibiotics. Permeability of beta-lactams across the outer membrane (OM) of M2 was lower than that across the OM of C152. Mutants deficient in the 43-kDa OMP could be selected in vitro from strain C152 in the presence of cefoxitin. All beta-lactam-resistant strains were sensitive to imipenem.

Anti-Bacterial Agents

Accommodation and acuity under night-driving illumination levels.

Laboratory experiments are described in which the monocular changes in the refractive error and acuity of six young, normal, adult subjects were measured as the field luminance was reduced from approximately 100 to 10(-3) cd/m2. It was found that, at luminance levels equal to those recommended for road lighting (about 1 cd/m2), acuity fell from its photopic value of > or = 6/6 to about 6/9, with little change in the measured refraction. Marked changes in refraction, i.e. night myopia, only started to become manifest when the luminance was further reduced to below about 0.03 cd/m2, much less than that applying under normal night-driving conditions. Direct experiments under street-lighting conditions confirmed the absence of any significant night myopia. It is concluded, therefore, that neural changes, rather than night myopia, normally are responsible for the acuity loss suffered by drivers at night.

Accommodation, Ocular

Accommodation responses to flickering stimuli.

It has been suggested that accommodation to visual display unit (VDU) symbols or to stimuli lit by fluorescent tubes or similar temporally modulated light sources may be less accurate due to flicker. Furthermore, if the microfluctuations of accommodation play a part in the control of steady-state accommodation, the effects of stimulus flicker might affect the quality of this control. Experiments are described in which monocular accommodation stimulus-response curves for sinusoidal grating stimuli (1.0, 5.3 and 8.9 c/deg) were measured under the following conditions of temporal modulation: (1) square-wave on-off modulation to give spatial modulation varying between 0 and 37%; (2) sinusoidal modulation to give spatial modulation varying between 0 and 37%; (3) sinusoidal modulation to give spatial modulation varying between 16 and 32%; and (4) on-off modulation with varying mark/space ratio. Temporal modulation frequencies were between 0.5 and 7.8 Hz and above the critical fusion frequency (CFF) i.e., > or = 40 Hz. In general, the results suggest that while lower-frequency flicker may adversely affect the accuracy and stability of the accommodation response, the latter are very little affected by flicker at frequencies > or = 40 Hz. Thus flicker from fluorescent lamps or VDUs is unlikely to cause systematic accommodation difficulties. The possible relevance of the results to theories which ascribe a role for the higher-frequency (> 0.5 Hz) accommodative microfluctuations in the control of the response is considered.

Accommodation, Ocular

Effects of oxo and dihydro metabolites of 12-hydroxy-5,8,10,14-eicosatetraenoic acid on chemotaxis and cytosolic calcium levels in human neutrophils.

One of the pathways of metabolism of leukotriene B4 (LTB4) and 12-hydroxy-5,8,10,14-eicosatetraenoic acid (12-HETE) in leukocytes is oxidation of the 12-hydroxyl group, followed by reduction of the 10,11-double bond. In the case of 12R-HETE and 12S-HETE, this results in the formation of 12-oxo-ETE, 10,11-dihydro-12-oxo-ETE, and the 12R and 12S isomers of 10,11-dihydro-12-HETE (i.e., 12R-HETrE and 12S-HETrE). We investigated the effects of metabolites of 12-HETE formed by this pathway on cytosolic calcium levels and chemotaxis in human neutrophils. Of the above series of metabolites, 12S-HETrE (which has the same absolute stereochemistry at C-12 as 12R-HETE) was the most potent in stimulating both cytosolic calcium levels and chemotaxis. It was slightly less potent than 12R-HETE, consistent with the concept that reduction of the 10,11-double bond results in a loss of biological activity on neutrophils. The effect of 12S-HETrE on calcium levels was blocked by preincubation of these cells with LTB4, suggesting that it acted by stimulating the LTB4 receptor. 12R-HETrE was about 20 times less potent than its 12S isomer in stimulating cytosolic calcium in neutrophils and was also less active as a chemotactic agent. Oxidation of the 12-hydroxyl group to an oxo group resulted in a further loss of biological activity. 12-Oxo-ETE, 8-trans-12-oxo-ETE, and 12-oxo-ETrE had only modest effects on cytosolic calcium levels at concentrations as high as 10 microM and did not display detectable chemotactic activity. However, 12-oxo-ETE and its 8-trans isomer inhibited calcium responses to LTB4 by about 40%. It is concluded that reduction of the 10,11-double bond of 12-HETE results in a slight loss of biological activity on neutrophils, whereas oxidation of the 12-hydroxyl group results in a considerably greater loss of activity.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Single figure indices for the steady-state accommodative response.

The slope of the regression line fit is often used to characterize an accommodation response-stimulus curve. It is argued that comparisons based on this parameter alone may be misleading, as also may be those using the intercept or correlation coefficient of the regression line. It is suggested that it would be more useful to compare curves on the basis of a combination of all three regression line parameters, together with the stimulus interval over which the fit is derived. A new parameter, the accommodative error index which is effectively the mean of the magnitude of the response error divided by the correlation coefficient, is proposed to achieve this.

Accommodation, Ocular

Enhancement of delayed hypersensitivity inflammatory reactions in guinea pig skin by 12(R)-hydroxy-5,8,14-eicosatrienoic acid.

Delayed-type hypersensitivity (DTH) reactions are initiated by sensitized T cells. Their progression is dependent upon the local release of various autacoids, including cytokines and eicosanoids, by T cells, infiltrating inflammatory cells, and resident tissue cells. 12(R)-hydroxy-5,8,14-eicosatrienoic acid [12(R)-HETrE], an eicosanoid produced by skin and cornea, possesses potent proinflammatory properties at picomolar concentrations including vasodilation, increase in membrane permeability, neutrophil chemotaxis, and angiogenesis. Because DTH reactions are associated with many of these same phenomena, we examined the effect of 12(R)-HETrE and related 12-hydroxyeicosanoids on the expression of DTH to purified protein derivative of tuberculin in sensitized guinea pigs. In the absence of purified protein derivative of tuberculin, none of the eicosanoids evoked erythema or edema after intradermal injection at doses up to 100 pmol. When injected together with purified protein derivative of tuberculin, 12(R)-hydroxy-5,8,10,14-eicosatetraenoic acid [12(R)-HETE], but not its enantiomer 12(S)-HETE, significantly inhibited macroscopic expression of delayed reactivity (erythema) only at the highest dose tested, 10 pmol. In contrast, 12(R)-HETrE significantly enhanced expression of DTH at doses between 1 fmol and 1 pmol (50% and 30% increases above control, respectively). Its stereoisomer, 12(S)-HETrE, did not enhance DTH at any tested dose, but was able to block the activity of 12(R)-HETrE when injected simultaneously. Enhancement or inhibition of visible skin responses was not associated with qualitative or quantitative changes in cellular infiltrates at the reaction site. 12(R)-HETrE had no effect on the nonimmunologic inflammatory skin reaction induced by phorbol myristate acetate, suggesting selectivity toward DTH. We conclude that 12(R)-HETrE enhances DTH via a yet to be determined mechanism and that its stereoisomer, 12(S)-HETrE, may be a useful antagonist for studying the inflammatory actions of this eicosanoid.

8,11,14-Eicosatrienoic Acid

Activation of nuclear factor kappa B and oncogene expression by 12(R)-hydroxyeicosatrienoic acid, an angiogenic factor in microvessel endothelial cells.

12(R)-Hydroxy-5,8,14(Z,Z,Z)-eicosatrienoic acid (12(R)-HETrE) is an arachidonic acid metabolite formed by the corneal epithelium of several species, porcine leukocytes, and human and rat epidermal cells. It is a potent, stereospecific proinflammatory and angiogenic factor and its synthesis is increased manyfold in inflamed tissues, e.g. cornea and skin. It is possible that the angiogenic activity of 12(R)-HETrE is due to a direct mitogenic effect on microvessel endothelial cells via yet to be elucidated cellular and molecular mechanisms. In the present study, we demonstrated the ability of 12(R)-HETrE to stimulate the growth of quiescent endothelial cells in a time- and concentration-dependent manner with a maximal effect at 0.1 nM. This effect was highly stereospecific since its enantiomer, 12(S)-HETrE, had no effect within the same concentration range. Northern blot analysis and transient transfection experiments with chloramphenicol acetyltransferase constructs of oncogene promoter regions demonstrated significant increases over control (0.5% fetal calf serum) in c-myc-, c-jun, and c-fos mRNA levels and expression in cells treated with 0.1 nM 12(R)-HETrE. Electrophoretic mobility shift assay of nuclear protein extracts from cells treated with 12(R)-HETrE with specific radiolabeled oligonucleotides corresponding to known transcriptional binding sites, including AP-1, AP-2, SP1, TRE, NF kappa B, TFIID, OKT1, CREB, CTF/NF1, and GRE demonstrated a markedly rapid and specific increase in the binding activity of NF kappa B and to a lesser extent, AP-1. No significant increase was observed in the binding of other transcription factors assayed as compared to control (untreated) cells. Since the protooncogenes (c-fos, c-jun, and c-myc) are immediate early response genes that are implicated in the process of cell proliferation and differentiation, and activation of certain transcription factors, in particular NF kappa B, is associated with the immediate response of the cell to an injury, we propose that 12(R)HETrE's mitogenic and angiogenic activities are mediated, in part, via the activation of NF kappa B and expression of these protooncogenes.

Animals

Oxidation and keto reduction of 12-hydroxy-5,8,10,14-eicosatetraenoic acids in bovine corneal epithelial microsomes.

The R and S enantiomers of 12-hydroxyeicosatetraenoic acid (12-HETE) exhibit different biological activities. Although they appear to be produced by different enzymatic pathways, cytochrome P-450 monooxygenase and lipoxygenase, respectively, they display similar metabolism in both corneal epithelium and neutrophils. In corneal epithelial microsomes, both enantiomers are subject to oxidation and keto reduction reactions to form the dihydro metabolite, 12-hydroxy-5,8,14-eicosatrienoic acid (12-HETrE), via a keto intermediate. The apparent Km for the formation of 12-HETrE was 17.9 and 20 microM for 12(R)-HETE and 12(S)-HETE, respectively, and the apparent Vmax of the reaction was 17.4 and 8.2 pmol/mg per min, respectively. Chiral analysis of the dihydro metabolite demonstrated a product enantiospecificity. Arachidonic acid, 12(R)-HETE, 12(S)-HETE and the intermediate of this reaction, 12-oxo-ETrE, were metabolized predominantly to 12(R)-HETrE in a ratio [12(R)-HETrE: 12(S)-HETrE] of 7.3:1, 4.3:1, 1.5:1 and 2.3:1, respectively. 12(R)-HETrE is a potent vasodilator, chemotactic and angiogenic factor whose synthesis is induced in inflamed tissues; 12(S)HETrE is devoid of these properties. 12(R)-HETE, derived from NADPH-dependent cytochrome P-450 monooxygenases, and 12(S)-HETE, derived from 12-lipoxygenase, may both play an important role in regulating the inflammatory response by serving as substrates for the local synthesis of 12(R)-HETrE.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid

Anti-CD36 antibodies in patients with lupus anticoagulant and thrombotic complications.

Six patients with lupus anticoagulant with thrombotic complications, but not exhibiting systemic lupus erythematosus, demonstrated the presence in their plasma of antibodies directed against platelet antigens which were not detectable in two patients presenting with lupus anticoagulant but without thrombotic complications. Protein blotting of separated normal platelet proteins against patient plasma gave up to 18 bands of varying intensity indicative of multiple antiplatelet antibodies; one of these antibodies recognized a component with a mobility identical with CD36 (GPIV; m.w. 88,000) in 4/6 cases. Antibodies to CD36 and one or two other components were identified in 5/6 cases by immunoprecipitation from 125I-labelled control platelets and 6/6 by dot blots against purified CD36. These results suggest that antiplatelet antibodies and, specifically, anti CD36 antibodies, occur frequently in the plasma of patients presenting with lupus anticoagulant and thrombotic complications.

Adult

20-Hydroxyeicosatetraenoic acid is excreted as a glucuronide conjugate in human urine.

20-hydroxyeicosatetraenoic acid, a major renal P-450 metabolite of arachidonic acid, has been quantified in human urine using capillary gas chromatography/electron capture negative ion chemical ionization mass spectrometry. The urinary excretion of 20-hydroxyeicosatetraenoic acid was in the low pg/ml range. However, treatment of urine with beta-glucuronidase resulted in a 13- to 28-fold increase in its concentration. This suggests 20-hydroxyeicosatetraenoic acid differs from other eicosanoids in that it is excreted primarily as a glucuronide conjugate.

Gas Chromatography-Mass Spectrometry

Time-averaged accommodation response to flickering stimuli.

Experiments are described in which the steady-state accommodation response versus stimulus curve was measured with an infrared autorefractor for high-contrast stimuli having a 100% square-wave temporal modulation of luminance in the frequency band 1-200 Hz. Slightly more accurate responses were found at frequencies approximately 50-100 Hz, i.e. above flicker fusion. The relevance of the results to practical situations in which flicker may be experienced is discussed.

Accommodation, Ocular

A collaborative study on the suitability of commercial, assayed plasmas for one-stage factor VIII assays.

A collaborative study was carried out to determine the suitability of commercial assayed plasmas for one-stage factor VIII assays. Activated partial thromboplastin times were performed on successive days on serially diluted paired freeze-dried reference plasmas (one sample buffered with HEPES), a freeze-dried test plasma and local laboratory standards-commercial assayed plasmas and in-house frozen pooled plasmas calibrated against commercial plasmas. The factor VIII activity levels of the study reference plasmas relative to average normal plasma were arrived at cumulatively by assaying them against a large number of individual fresh normal plasmas. Estimates of the activity of the test plasma relative to the claimed activity of local standards showed significant discrepancies from the expected value. However the estimates were more precise when the activity was assessed relative to the activity of the local standards derived by calibration against the reference plasmas. The study also showed that a HEPES buffered reference plasma may not contribute to inter-laboratory variability of one-stage factor VIII assays.

Adult

Reliability of "standard" plasmas used by clinical laboratories for one-stage factor VIII assays.

The reliability of "standard" plasmas used by clinical laboratories to assay factor VIII concentrations of patients' plasmas was studied by assessing the credibility of their reference values. Two of three commercial reference plasmas were considered to be unreliable. The third commercial reference plasma appeared to be suitable when assayed against frozen pools of fresh normal plasma with an assigned value of 100% activity. However, assays using fresh pools of normal plasma suggested that the reference value may lack credibility. This study also showed that assignment of 100% activity to frozen pools of fresh normal plasma prepared locally in laboratories may be fallacious.

Evaluation Studies as Topic