PubMed Health⌕ Search

Biomedical subjects

M D Willcox

Publications and source records attributed to M D Willcox.

At least 19 recordsLinked to original sources

Contact lens wear alters the production of certain inflammatory mediators in tears.

Contact lens wear has been associated with an increased risk of corneal infection and/or inflammation. We studied the hypothesis that contact lens wear alters the number of polymorphonuclear leukocytes (PMNs) on the cornea during sleep and the levels of inflammatory mediators in the tear film. Three groups of subjects were analysed: a non-contact lens wearing group (NCLW), non-adapted (neophyte) contact lens wearers (NACLW) who wore lenses during sleep for the first time in this study and adapted contact lens wearers (ACLW) who normally wore lenses on a daily wear schedule. Ocular PMNs were collected by a non-contact irrigation technique and their numbers counted after staining. Tears were collected from each group and analysed using ELISAs for the presence of the PMN chemoattractants IL-8 and LTB(4)and the cytokines IL-1beta, IL-6 and GM-CSF. Corneal irrigation data demonstrated significantly higher numbers of PMNs from NACLW (P<0.05) compared to the other groups. ACLW showed significantly fewer PMNs (P =0.03) compared to NCLW group. The NACLW group had significantly lower concentrations (P<0. 05) of IL-8, LTB(4)and IL-6 in their tears after 8 hr of sleep compared to the other groups. The ACLW group had significantly (P<0. 05) higher levels of IL-8 at most time points compared to the other two groups. The levels of the chemoattractants IL-8 and LTB(4)in tears were inversely related to the numbers of PMNs from the corneal surface and the chemotaxis of PMNs in vitro. During one night sleep in contact lenses the numbers of PMNs and the concentration of certain inflammatory mediators are significantly altered compared to no lens wear. However, this alteration changes from NACLW to ACLW. This may have effects on the ability of the eye to defend itself during contact lens wear.

Adult↗

Protein microanalysis of animal tears.

Sub-microlitre volumes of normal koala, mouse, dog, rat and cat tears were fractionated using size exclusion-high performance liquid chromatography (SE - HPLC), giving reproducible profiles which were different for each species. Microlitre volumes of tears were also fractionated using sodium dodecylsulphate-polyacrylamide gel electrophoresis (SDS - PAGE), resulting in good separation of individual tear proteins with a species specific distribution. Tears from koalas with conjunctivitis and mice with keratitis were similarly examined and showed mostly quantitative changes. These simple, rapid techniques gave reproducible results and, in contrast to conventional separation techniques, used easily obtainable volumes (as little as 0.75 microl) of tears. Their expansion could allow isola tion, identification and quantitation of individual tear components, enabling effective investigation of changes occurring in disease.

Animals↗

A new species of oral Streptococcus isolated from Sprague-Dawley rats, Streptococcus orisratti sp. nov.

Taxonomic studies were performed on an unusual oral Streptococcus strain isolated from Sprague-Dawley rats. The isolates were alpha-haemolytic, bile-tolerant, aesculin-hydrolytic and unable to grow in 6.5% NaCl. They fermented lactose, sucrose and trehalose. They were distinguished from other recognized species of oral and viridans streptococci by several biochemical characteristics and by Lancefield's group antigen, as well as by unique DNA-DNA hybridization characteristics. 16S rDNA sequence studies confirmed the genealogical distinctiveness of the species. The results of the study demonstrated that the isolates represented a new species of the oral and viridans streptococci. The name Streptococcus orisratti sp. nov. is proposed for the new species. The type strain is A63T (= ATCC 700640T).

Animals↗

Effect of nutrient limitation on adhesion characteristics of Pseudomonas aeruginosa.

Pseudomonas aeruginosa causes a variety of diseases in humans including lung and ocular infections. Infections of the cornea are usually associated with wearing contact lenses and can result in loss of vision. This study aimed to determine the effect of carbon or nitrogen limitation on the adhesion to contact lenses of a strain of Ps. aeruginosa isolated from contact lens-related corneal inflammation. Cells were grown in a continuous culture apparatus in varying levels of glucose or ammonia to effect nutrient limitation. Adhesion to contact lenses was measured as total counts and viable counts. The cell surface hydrophobicity and charge were measured using adhesion to surface-modified Sepharose. Changes in lipopolysaccharide were determined using 1D SDS-PAGE and changes in cell-surface proteins were measured using 2D gel electrophoresis. The more the cultures were nitrogen limited, the greater the increase in adhesion to unworn hydrogel contact lenses 0.3 x 10(3) - 2.2 x 10(3) cells/mm2 on Etafilon A lenses. Cells that were carbon limited showed a greater increase in adhesion to contact lenses when the lenses had been coated in artificial tears. It appeared that lipopolysaccharide may have been involved in the constitutive adhesion to unworn lenses that occurred during C-limitation, whereas changes in the outer membrane proteins contributed to the increased adhesion under nitrogen limitation, or the change in adhesion that occurred to carbon-limited cells using contact lenses coated in artificial tears. Nine cell-surface proteins appeared during nitrogen limitation with kDa/pI of 75/4.8, 4.9, 5.0; 62/5.6; 89/6.5; 38/6.4; 28/1.5; 18/6.4; 12/4.5. Any or all of these may have been involved in the increased adhesion and further experiments are underway to examine this possibility.

Bacterial Adhesion↗

Lactoferrin increases the susceptibility of S. epidermidis biofilms to lysozyme and vancomycin.

PURPOSE: The tear cationic protein lactoferrin increases the activity of various antimicrobial agents against suspended bacterial cultures including Staphylococcus epidermidis, the predominant causative agent of intraocular lens biofilm infections. We investigated the ability of lactoferrin to enhance the activity of vancomycin and lysozyme against biofilms of a clinical S. epidermidis isolate. METHODS: Biofilms were prepared on soft contact lenses and cells released from the biofilm surface were collected from the surrounding broth. The minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) against the intact biofilm, released cells and suspended bacteria were evaluated using vancomycin with and without lactoferrin. RESULTS: Lactoferrin induced a two-fold reduction in the MBC of vancomycin for biofilm (p < 0.01) and biofilm-released cells from 64 microg/ml to 32 microg/ml and similarly decreased the MIC for biofilm-released cells (p < 0.01) from 32 microg/ml to 16 microg/ml. With or without lactoferrin, the MIC of vancomycin for suspended cells (2 and 4 microg/ml respectively) was less (p < 0.01) than that of both the biofilm (32 and 32 microg/ml) and biofilm-released cells (16 and 32 microg/ml). Lactoferrin did not reduce the MIC of lysozyme, but, at a lysozyme concentration of 16 mg/ml, did significantly (p < 0.05) reduce the number of viable biofilm and biofilm-released cells. CONCLUSIONS: Lactoferrin displays potential as an adjunctive agent to vancomycin in the treatment of S. epidermidis biofilm infections, such as endophthalmitis, associated with intraocular lenses.

Anti-Bacterial Agents↗

Incidence of contamination of preserved saline solutions during normal use.

PURPOSE: To ascertain the incidence of microbial contamination of preserved contact lens saline solutions with normal patient use. METHODS: Eight different brands of preserved saline were dispensed to 40 patients attending optometric practices in the Sydney area. After specific periods of time (7 to 28 days), the samples were collected and the solution bottle nozzles and contents underwent microbial analysis. RESULTS: The overall contamination rate was approximately 26% for contents only and 55% for nozzles of preserved saline solutions. This rate remained constant for all periods of use. Coagulase-negative Staphylococci were most frequently isolated. No Acanthamoebae were isolated. Saline preserved with ethylene-diamine-tetraacetic acid (EDTA) in conjunction with sorbic acid showed the highest percentage of sterility. CONCLUSIONS: The results of this study show that preserved saline became contaminated with gram-positive bacteria. This is in contrast to our previously published paper using unpreserved saline, where contamination was predominantly with gram-negative bacteria. The overall contamination rates with preserved saline were lower than for unpreserved saline.

Contact Lens Solutions↗

Contact lens-induced peripheral ulcers with extended wear of disposable hydrogel lenses: histopathologic observations on the nature and type of corneal infiltrate.

PURPOSE: Contact lens-induced peripheral ulcer (CLPU), a sudden-onset adverse event observed with extended wear of hydrogel lenses, is characterized by a single, small, circular, focal anterior stromal infiltrate in the corneal periphery or midperiphery. The condition is always associated with a significant overlying epithelial loss and resolves in a scar. The aim was to determine, by using histopathologic techniques, the nature and type of the corneal infiltrate of these events. METHODS: Three CLPUs observed in three patients using disposable hydrogel lenses on an extended-wear schedule were examined. The eye was topically anesthetized, and a corneal section including all of the infiltrate was taken. A small triangular piece of conjunctiva immediately adjacent to the infiltrate was sectioned. The tissue was immediately fixed, processed, stained using hematoxylin and eosin and periodic acid-Schiff stains, and examined by using light microscopy. RESULTS: The diameter of these three corneal infiltrates varied from 0.3 to 0.6 mm. Histopathology of the corneal sections revealed a focal epithelial loss corresponding to the infiltrated stroma in all three patients. The adjacent epithelium was thinned. Bowman's layer was intact in two patients and had a localized area of loss in the remaining patient. The anterior stroma was densely infiltrated with polymorphonuclear leukocytes and had focal areas of necrosis. The infiltration was most dense in the region immediately underlying Bowman's layer. No other infiltrative cell type was seen in any of the sections. Histopathology of the conjunctiva revealed features consistent with normal conjunctival tissue. CONCLUSIONS: On histopathology of CLPU, distinctive features (i.e., focal corneal epithelial loss, an intact Bowman's membrane, and a localized infiltration of the anterior stroma with polymorphonuclear leukocytes) were seen. These features suggest that the event is an acute inflammatory process and probably noninfective in nature.

Adolescent↗

Development of mini-gel technology in two-dimensional electrophoresis for mass-screening of samples: application to tears.

Despite the extensive literature available on tear proteins and lipids, very little has been reported on the tear fluid as a whole and it's changes in contact lens wear or ocular diseased patients. Initially a human reflex tear two-dimensional map was created by Molloy et al. (Electrophoresis 1997, 18, 2811-2815), using this information a process for mass-screening was established. The large format two-dimensional technique was evaluated, using a basal tear reference map, and modified to describe a fast, efficient and cost effective method of protein separation. The use of one pH 3-10 18 cm nonlinear immobilised pH gradient (IPG) strip and two mini-gels for the second-dimensional sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE) results in an effective separation of tear proteins which will be applied in diagnostic studies of tear samples.

Acrylic Resins↗

Chemotactic activity of tears and bacteria isolated during adverse responses.

Inflammatory processes are characterized by the dynamic influx of leukocytes. This leukocyte recruitment and activation is thought to be initiated by chemical signals including chemotactic factors. This study was designed to investigate the chemotactic activity in different tear types and bacteria isolated during adverse responses to contact lens wear. Chemotactic activity was determined by quantitating in vitro neutrophil migration using a microchemotaxis chamber. Results demonstrated that tears collected immediately after 8 hours sleep (P<0.001) and tears collected during adverse responses (P<0.001) showed significantly higher chemotactic activity compared to reflex tears. Specific neutralizing antibodies to IL-8, LTB4 and C5a were added to closed eye and adverse response tears. Pre-incubation of closed eye tears with antibodies to IL-8 showed a significant reduction in chemotactic activity (P<0.0001), whereas a significant reduction of PMN migration in adverse response tears was observed after pre-treatment with antibodies to LTB4 (P<0.0001). However no difference in chemotactic activity was observed after incubation with antibody to C5a or irrelevant antibody. Dot blots demonstrated that closed eye tears contained approximately 150 ng ml-1 IL-8 and adverse response tears contained 2 ng ml-1 IL-8. Most Gram negative bacteria isolated from contact lenses caused directed migration of PMNs. Addition of neutralizing antibody to LPS significantly abrogated the chemotactic activity of bacterial cells (P<0.001). Our findings provide evidence that IL-8 during eye closure, and bacterial chemotactic substances and LTB4 during contact lens induced adverse responses, are responsible for the recruitment of PMNs.

Chemotaxis, Leukocyte↗

Cytokine and lipid inflammatory mediator profile of human tears during contact lens associated inflammatory diseases.

Contact lens induced acute red eye (CLARE) and contact lens induced peripheral ulcer (CLPU) are among the most common contact lens induced inflammatory reactions. Both CLARE and CLPU are characterized by corneal infiltration which indicates the presence of chemoattractants and other inflammatory mediators. The aim of this study was to characterize the cytokine and chemotactic lipid inflammatory mediator profile in the tears of people experiencing CLARE or CLPU. Cytokines IL-1 beta, IL-6, IL-8, GM-CSF and LTB4 in tears were measured by antibody sandwich and competition inhibition enzyme-linked immunosorbent assays (ELISA). Platelet activating factor-like activity was measured by a degranulation assay by measuring the release of labelled serotonin from platelets. The functional role GM-CSF and chemoattractants were determined by flow cytometry and chemotaxis. Increased levels of cytokines and chemoattractants were detected in both CLARE and CLPU tears. CLPU tears showed increased levels of LTB4 (P = 0.002) and PAF-like activity (P = 0.047) whereas CLARE tears showed increased levels of GM-CSF (P = 0.002). IL-8 (P < 0.05). LTB4 (P = 0.002) and PAF-like activity (P = 0.047) compared to control tears. Flow cytometric analysis revealed that incubation of PMN with CLARE tears increased the number of IgA receptors indicating that the GM-CSF in CLARE tears was active. Combinations of suboptimal concentrations (which were found in CLARE and CLPU tears) of IL-8 with either LTB4 or PAF significantly (P < 0.0001) enhanced the chemotactic activity for PMN compared to their individual effects. Our data highlight the possible pathophysiological roles of these inflammatory mediators in leukocyte recruitment and activation during ocular inflammatory responses. The results suggests that GM-CSF, IL-8 and LTB4 are active during corneal pathology and LTB4 or IL-8 may maintain the contact lens induced PMN response in vivo.

Acute Disease↗

An ocular strain of Pseudomonas aeruginosa is inflammatory but not virulent in the scarified mouse model.

Pseudomonas aeruginosa is the most common pathogen among contact lens-associated infections. This study investigated the response of the murine cornea to infection with an ocular strain of P. aeruginosa isolated from a subject with an inflammatory adverse response to contact lens wear termed CLARE. Although this bacterium was isolated in confluency (greater than 2000 cfu lens-1) from the lens at the time of the inflammatory episode, no infection of the cornea subsequently developed. Male C57BL/6J mice (20 per strain) had their corneas scratched with a 26 gauge needle (3 parallel 1.0 mm wounds in the left eye only). The incisions were centered over the pupillary axis and penetrated the epithelial cell basal lamina and into the superficial stroma. The CLARE strain was found to persist (viable bacteria could be cultured from corneal homogenates) up to 8 hr, as did the virulent control strain ATCC 19660. At 24 hr, only ATCC 19660 could be cultured, indicating an inability of the strain isolated from CLARE, Paer1, to persist in the eye consistent with the human inflammatory episode. Histological examination of the mouse tissue showed further differences between infection by the two strains. Infection with ATCC 19660 resulted in tissue necrosis and a large population of polymorphonuclear leukocytes (PMNs) recruited to the wound site. In contrast, during infection with the CLARE strain, PMN recruitment was reduced and temporally delayed. The CLARE strain grew as well as ATCC 19660 in vitro but produced less protease activity, in particular less elastase. The decreased PMN response and decreased protease production by the CLARE strain may have been responsible for the lack of ocular damage and apparent healing of the wound. P. aeruginosa strains are considered to be invasive or cytotoxic to corneal tissue, however this strain may represent a third inflammatory type consistent with its differing pathology.

Animals↗

The proinflammatory cytokines and arachidonic acid metabolites in human overnight tears: homeostatic mechanisms.

The tear film plays an important role in the defense of the external ocular surface. During sleep a number of changes take place, including increased production and release of various inflammatory mediators. We have studied the hypothesis that closed-eye tears contain proinflammatory cytokines and lipid inflammatory mediators, which serve to recruit polymorphonuclear leukocytes (PMNs) and regulate the function of PMNs and IgA during sleep. We investigated interleukin-1beta, interleukin-6, interleukin-8, monocyte chemotactic protein 1, granulocyte-macrophage colony stimulating factor (GM-CSF), leukotriene B4 (LTB4), and platelet activating factor (PAF) in open and closed-eye tears of normal healthy subjects. Results showed that IL-6, IL-8, GM-CSF, LTB4, and PAF were present in high levels in closed-eye tears compared to open-eye tears. Closed-eye tears were able to recruit neutrophils, with maximal recruitment after 8 hr of sleep, suggesting that chemokine IL-8 and the lipid chemoattractant LTB4 were active. Flow cytometric analysis revealed that incubation of neutrophils with closed-eye tears up-regulated the surface expression of IgA receptor, indicating that the GM-CSF in tears was functionally active. Up-regulation of cytokines and the lipid inflammatory mediator LTB4 during eye closure are noteworthy, as each of these cytokines has an established role in initiation and amplification of the inflammatory response. IL-8 and LTB4 may act as potent chemoattractants and activators for PMNs, whereas IL-6 and GM-CSF potentiate the secretion and function of IgA and enhance neutrophil responsiveness to proinflammatory agonists.

Adult↗

A relatively small change in sodium chloride concentration has a strong effect on adhesion of ocular bacteria to contact lenses.

Adhesion of bacteria to hydrogel lenses is thought to be an initial step of ocular colonization allowing evasion of normal host defences. The salt concentration of media is an important parameter controlling microbial adhesion. Salinity varies from 0.97% NaCl equivalents in the open eye to 0.89% in the closed eye state. In this study, the effect of sodium chloride in the concentration range of 0.8-1.0% (w/v) NaCl on adhesion of ocular bacteria to soft contact lenses was investigated using a static adhesion assay. Pseudomonas aeruginosa was found to adhere to lenses in significantly greater amounts than Serratia marcescens, Flavobacterium meningosepticum, Stenotrophomonas maltophilia and Staphylococcus intermedius. Increasing NaCl from 0.8% to 1.0% (w/v) increased adhesion of all bacteria tested. This adhesion was strong since the organisms could not be removed by washing in low ionic buffer. Adhesion of these organisms did not correlate with their cell surface properties as determined by bacterial adhesion to hydrocarbons (BATH) and retention on sepharose columns.

Bacterial Adhesion↗

Effectiveness of two methods of denture sterilization.

Species of Candida and in particular Candida albicans may be involved in the aetiology of denture stomatitis. Studies have shown that Candida and other oral micro-organisms including Streptococcus gordonii are associated with denture plaque; hence denture hygiene is an important factor in the prevention and treatment of the disease. The aim of this investigation was to test in vitro the efficacy of two methods of denture sterilization: (1) microwave irradiation and (2) sodium hypochlorite soak. Twenty upper acrylic dentures were prepared for microbiological assay; 10 were inoculated with C. albicans H1 and 10 with S. gordonii LGR2. Within each group, five dentures were tested in a domestic microwave oven for optimal exposure time and temperature to ensure sterilization; the five control dentures were not microwaved. Microbiological analyses showed that the inoculated dentures became sterile after six min of irradiation at medium setting (2450 MHz, 350 W). Damage to the microorganisms after microwave irradiation was clearly visible by scanning electron microscopy (SEM). Following the same protocol as above, experimental dentures were soaked for 8 h in either 0.02%, or 0.0125% sodium hypochlorite solution and control dentures soaked in distilled water. Microbiological analyses showed that the experimental dentures inoculated with C. albicans H1 became sterile. By contrast, those inoculated with S. gordonii LGR2 did not become sterile, and the SEM procedures confirmed these findings. The results of this study indicate that microwaving may be a more effective method of denture sterilization than denture soaking in sodium hypochlorite. However, compared with microwaving, hypochlorite reduces the levels of residual non-viable micro-organisms attached to the denture surface.

Acrylic Resins↗

Tear changes in contact lens wearers following overnight eye closure.

PURPOSE: Tear protein composition alters during eye closure, by becoming rich in secretory IgA (sIgA) and certain complement proteins. This may reflect altered ocular defense mechanisms during eye closure. Since overnight wear of contact lenses (CLs) is associated with an increased risk of corneal infection and inflammation, this study aimed to quantify tear protein changes with overnight soft CL wear. METHODS: Non-stimulated tears were collected from 9 CL wearers prior to CL wear (baseline), after daily CL wear, and after 8 h sleep. Lenses were removed following wear and were extracted in 80% urea at 95 degrees C. Secretory IgA, complement C3 and C4, were measured using ELISA and total protein using the Pierce BCA assay. Assays were performed on tear samples and CL extracts. RESULTS: Baseline tear protein concentrations were: 0 total tear protein (9.37 +/- 2.97 mg/mL), C3 (4.4 +/- 2.1 micrograms/mL), C4 (0.1 +/- 0.1 micrograms/mL), and sIgA (0.84 +/- 0.34 mg/mL). There were no differences in any protein levels between daily CL wear and no CL wear (p > 0.05). Following sleep, protein concentrations were: total tear protein (43.64 +/- 24.30 mg/mL), C3 (72.5 +/- 49.9 micrograms/mL), C4 (6.7 +/- 5.2 micrograms/mL), and sIgA (5.53 +/- 5.15 mg/mL). Total protein extracted from CLs after daily wear was 90 +/- 27 micrograms/CL and, after overnight wear, 152 +/- 24 micrograms/CL. Negligible levels of C3, C4 and sIgA were recovered from CL extracts. CONCLUSIONS: Uncomplicated daily use of soft CLs does not appear to alter certain tear proteins compared with baseline levels. Uptake of these proteins by the CL does not appear to deplete the tear protein levels. Overnight levels of all tear proteins were increased, compared to daily CL wear.

Adult↗

Modulation of bacterial adhesion to hydrogel contact lenses by albumin.

PURPOSE: The purpose of this investigation was to measure the abilities of Pseudomonas aeruginosa and Staphylococcus epidermidis strains to adhere to two hydrogel lens materials and measure the effect of a protein-coated surface on the number of adhered bacteria. METHODS: Proteins absorbed to contact lenses during sleep were extracted, subjected to sodium dodecylsulphate polyacrylamide gel electrophoresis (SDS-PAGE), and probed for the presence of albumin. Bacterial adhesion was measured by counting bacteria adherent to contact lenses coated in vitro in increasing concentrations of albumin, examining the ability of albumin in solution to prevent adhesion to albumin-coated lenses, and examining the topography of bacterial adhesion by electron microscopy. RESULTS: Albumin adsorbed to lenses during overnight wear. In vitro studies demonstrated that Polymacon lenses adsorbed more albumin than Etafilcon A lenses. In general, the numbers of adherent bacteria increased with increasing concentration of albumin. Bacteria adhered in higher numbers to Polymacon lenses than Etafilcon A (p < 0.05). P. aeruginosa showed an increased adhesion as the amount of albumin on Etafilcon A lenses increased. There was a decrease in numbers of bacteria adhering per milligram of albumin as the level of albumin increased on Polymacon lenses. Cells tended to adhere to "deposits" on albumin-coated lenses. DISCUSSION: Albumin adsorbed onto the surface of contact lenses modulated the ability of P. aeruginosa and S. epidermidis to adhere. P. aeruginosa is commonly associated with contact lens-associated microbial keratitis, where bacterial adhesion to contact lenses is believed to be an important first step in the pathogenesis of the disease.

Adsorption↗