PubMed Health⌕ Search

Biomedical subjects

M C Swanson

Publications and source records attributed to M C Swanson.

At least 19 recordsLinked to original sources

Exposure to protein aeroallergens in egg processing facilities.

Proteinaceous materials in the air can be highly allergenic and result in a range of immunologically mediated respiratory effects, including asthma. We report on the largest evaluation of exposure to date of airborne egg protein concentrations in an egg breaking and processing plant that had cases of occupational asthma. Personal air samples for egg protein were analyzed in duplicate on each PTFE filter using two analytical methods: (1) a commercial assay for non-specific total protein, and (2) indirect competitive inhibition assay using an ELISA method to quantify specific egg protein components. The highest concentrations were found in the egg washing room (mean exposure 644 microg/m3) and breaking room (255 microg/m3), which were also the areas where the risk of being sensitized was the greatest. There was excellent quantitative agreement between the airborne concentrations of total protein and sum of the specific protein antigens (ovalbumin, ovomucoid, and lysozyme). The correlation coefficient of the log-transformed data from the two methods was 0.88 (p < 0.0001). Size-selective sampling also indicated that most of the aerosol was capable of reaching the small airways. The methods described can be utilized to evaluate employee exposure to egg proteins. Exposure documentation, coupled with recommended exposure reduction strategies, could facilitate prevention of future employee sensitization and allergic respiratory responses by identifying high-exposure jobs and evaluating control measures.

Aerosols↗

Detection and quantitation of raw fish aeroallergens from an open-air fish market.

BACKGROUND: IgE-mediated hypersensitivity to fish is a clinically relevant problem, particularly in several European countries. Although most allergic reactions to fish are caused by ingestion, occupational exposures to seafood allergens by inhalation have been correlated with respiratory symptoms. In Madrid, patients with fish allergy have exhibited respiratory symptoms after visits to an open-air fish market. OBJECTIVE: We sought to study the possibility of passively aerosolized fish allergen in an open-air fish market through air sampling and a competitive IgE immunoassay. METHODS: Air samples were collected on polytetrafluoroethylene filters by using air samplers. Samples were collected on 41 different days from both an open-air fish market and an outdoor residential area. Fish allergens were specifically quantified by competitive IgE immunoassay by using pooled sera from fish-sensitive individuals. A raw fish extract (10 mg of dry weight/mL) was used as the reference standard. RESULTS: Allergen was quantified in all 39 fish market air samples (2-25 ng/m(3)). The residential air samples contained no detectable allergen. The analytic limit of detection was 2 ng, allowing detection of 0.4 ng/m(3) for the air volumes collected. A concentrated (30-fold) pool of fish market air samples was tested in serial dilutions and demonstrated an identical regression line to that of the raw fish standard. CONCLUSION: By using air sampling and an immunochemical analytic technique, fish allergen is detectable in the air of an open-air fish market. Avoidance of a food allergen, such as fish, should include preventing exposure to aerosolized particles through inhalation in relevant environments.

Air Pollution↗

Passive dispersion of latex aeroallergen in a healthcare facility.

BACKGROUND: Prompted by worsening asthma in a dental assistant with latex allergy and occupational asthma while under personal latex precautions, we confirmed continuing latex aeroallergen exposure. OBJECTIVES: To determine the source of latex aeroallergen and ascertain the effects of site-wide substitution of nonpowdered low allergen latex glove in a health care site. METHODS: Using a volumetric sampler, baseline latex aeroallergen levels were measured in rooms where she worked and nearby rooms, as well as shared X-ray, laboratory, and waiting rooms. Allergen levels were measured in upholstery fabric samples, ventilation duct dust, and latex gloves. Alterations in aeroallergen levels following change of glove types were prospectively determined. RESULTS: Baseline latex aeroallergen levels ranged from 6 to 25 ng/m3 in the patient's work areas and in other rooms from 29 to 90 ng/m3 during work hours. Latex antigen was found in three brands of powdered latex gloves (chi = 1,156 microg/g) used in the nearby opertories and the hygiene room, and in upholstery fabric, carpet dust, but not ventilation duct dust. In the absence of any other control measures, airborne latex became undetectable (<5 ng/m3) with exclusive use of nonpowdered latex gloves. DISCUSSION: Latex aeroallergen is primarily generated by active glove use; carpeting and fabric upholstery can serve as important aeroallergen repositories. Site-wide substitution of nonpowdered latex gloves eliminates detectable latex aeroallergen.

Air Pollutants, Occupational↗

Mechanism of topical glucocorticoid treatment of hay fever: IL-5 and eosinophil activation during natural allergen exposure are suppressed, but IL-4, IL-6, and IgE antibody production are unaffected.

BACKGROUND: Allergic rhinitis is traditionally defined as an IgE- and mast cell-mediated hypersensitivity reaction. Allergen challenge models suggest that cytokines and eosinophil mediators may also play roles. However, the causal relationship among inflammatory cells, their products, and patients' symptoms during natural allergen exposure has not been established. OBJECTIVE: We sought to elucidate the mechanisms of seasonal allergic rhinitis and the beneficial effects of topical glucocorticoids. METHODS: Thirty patients with ragweed-induced hay fever and a strongly positive serologic test response for ragweed IgE antibody received budesonide nasal spray or placebo in a randomized, parallel, double-blind study. Nasal wash fluids and sera were collected before and during the hay fever season. The levels of inflammatory mediators and allergen-specific immunoglobulins were measured by immunoassay. The activation markers on blood eosinophils were quantitated by flow cytometry. RESULTS: Compared with placebo-treated patients, budesonide-treated patients had strikingly reduced symptoms. In the placebo group, nasal symptoms correlated with nasal lavage fluid eosinophil-derived neurotoxin and IL-5 levels. At the season peak, the budesonide-treated group had significantly lower nasal fluid eosinophil-derived neurotoxin, IL-5, and soluble intracellular adhesion molecule-1 levels. In the treated group eosinophil expression of CD11b was suppressed at the season peak. In contrast, levels of IL-4 and IL-6 in nasal fluid and the seasonal increases in serum ragweed-specific IgE and nasal fluid IgA antibodies did not differ between groups. CONCLUSION: Eosinophilic inflammation plays a critical role in seasonal allergic rhinitis symptoms. One of the therapeutic effects of glucocorticoids is to suppress this inflammation.

Administration, Topical↗

Long term outcome of soybean epidemic asthma after an allergen reduction intervention.

BACKGROUND: Asthma outbreaks due to the inhalation of soybean dust released from handling of soybean in the city harbour occurred in Barcelona, Spain from 1981 to 1987. The installation of bag filters in the responsible silo was followed by a substantial reduction of airborne soybean dust released into the atmosphere and the disappearance of asthma outbreaks. A study was undertaken to assess the relevant outcomes in asthma patients affected by soybean epidemic asthma eight years after this environmental intervention. METHODS: A repeat case-control study was performed in 1995 on a population of subjects with epidemic and non-epidemic asthma previously assessed in 1989. The same protocol was used in both surveys to collect data from patients via a questionnaire and respiratory function, skin and laboratory tests were performed under blinded conditions with regard to epidemic and non-epidemic status. Environmental soybean allergen in pollution filters was measured by means of a RAST inhibition technique. RESULTS: During 1995 and 1996 the 24 hour mean airborne levels of soybean allergen on a sample of 39 unloading days (range 31-269 U/m(3)) were systematically below the lowest level ever detected during an epidemic day (1500 U/m(3)). Measurable levels of serum IgE antibodies against soybean were still present in 55% of patients with epidemic asthma compared with 6.0% of those with non-epidemic asthma (p<0.05). These proportions were almost identical to those observed in 1989. The proportion of patients with soybean asthma with symptoms in 1989 who reported the absence of symptoms in 1995 was similar to the control subjects, so most of the relative risks (RRs) of improvement were near to 1. The only statistically significant differences between the two groups were a smaller proportion of patients with epidemic asthma showing improvement in terms of being woken up by attacks of coughing (RR improvement 0.47; 95% CI 0.22 to 0.99) and the need for treatment at the emergency room (RR improvement 0.63; 95% CI 0.41 to 0.96). CONCLUSIONS: Eight years after a large reduction in the levels of airborne soybean allergen half of the former soybean epidemic asthma patients were still sensitised to soybean. These results indicate an initial improvement in soybean epidemic asthma in the two years following the intervention with no further improvement in subsequent years.

Allergens↗

Inhalation challenge testing of latex-sensitive health care workers and the effectiveness of laminar flow HEPA-filtered helmets in reducing rhinoconjunctival and asthmatic reactions.

BACKGROUND: There are few data relating latex aeroallergen concentrations to biologic responses in latex-sensitized persons. OBJECTIVES: We sought to investigate acceptable latex aeroallergen concentrations below which latex-sensitive health care workers do not experience symptoms and to study the effect of high-efficiency particle arrest (HEPA)-filtered laminar flow helmets in preventing latex-induced symptoms. METHODS: Under challenge chamber conditions, latex-sensitive health care workers underwent 7 sequential inhalation challenge tests by donning and discarding either vinyl gloves (challenge 1), low latex-allergen powder-free gloves (challenge 2), or high latex-allergen powdered gloves (challenges 3 to 7) for up to 1 hour. Volunteers wore a laminar flow helmet during all challenges; HEPA filters in the helmet were in place only during challenges 3 and 4. Flow-volume loops, symptom scores, and latex aeroallergen concentrations were measured before and during each test. RESULTS: At 60 minutes, latex aeroallergen concentrations during challenges 3 to 7 (mean, 7600 ng/m3; range, 93 to 54,000 ng/m3 ) were significantly higher than during challenges 1 or 2 (mean, 65 ng/m3; range, nondetectable to 100 ng/m3 ) (P <.001). During challenges 5 and 6, mean maximum percent falls in FEV1 (-16% and -11%, respectively) were significantly greater compared with those measured during challenges 3 and 4 (-3% and -1%, respectively) (P =.03). Mean maximum change from baseline symptom scores during challenges 5 and 6 was significantly higher than that during challenges 3 and 4 (P =.006). During challenges with high latex-allergen gloves, 4 volunteers had reproducible FEV1 falls of 20% or greater at cumulative inhaled latex aeroallergen doses ranging from less than 100 ng to 1500 ng. CONCLUSION: The laminar flow helmets were effective in reducing latex-induced symptoms. Only 1 volunteer exhibited a fall in FEV1 of 20% or greater after a cumulative inhaled latex aeroallergen dose of less than 100 ng, and no volunteer showed a decline in FEV1 after exposure to powder-free low allergen gloves.

Adult↗

Incidence of latex sensitization among latex glove users.

BACKGROUND: Although there are several reports of the prevalence of latex sensitization among health care workers, the incidence of sensitization is unknown. OBJECTIVE: The objective of this study was to estimate the incidence of sensitization among latex glove users at a hospital in Hamilton, Ontario, Canada. METHODS: Workers with negative results to the skin test at baseline were followed prospectively over 1 year, some wearing powdered gloves and others using powder-free gloves. They were reevaluated in 1995 with a questionnaire and skin prick test (SPT) sensitivity to latex reagents, three common inhalants, and six foods. A conversion was defined as a (new) latex SPT with wheal diameter at least 4 mm greater than saline control. Glove extracts were assayed for antigenic protein, and air samples were obtained to estimate exposure to airborne latex protein. RESULTS: During powdered glove use, personal exposures ranged from 5 to 616 ng/m3, whereas during powder-free glove use, all but two results for air samples were below the limit of detection (about 0.1 ng/m3). During the study period, the protein concentration in the powdered gloves, initially mean 557 microg/gm of sample, declined at a rate of 295 microg/gm per year (p < 0.0001). Of the 1075 SPT-negative participants at baseline, 479 were working in eligible wards, and of these, 435 (91%) participated in follow-up, 227 using powder-free gloves and 208 using powdered gloves. We identified four conversions, two (1.0%) in the powdered glove group and two (0.9%) in the powder-free group. The two participants using powdered gloves were the only converters who were symptomatic. The significance of skin test conversions identified in the powder-free group, both asymptomatic patients, is unclear. The limitations of the study are discussed, including the limited power, the declines in latex protein concentrations, and the possibility of information (observer) bias. CONCLUSION: To our knowledge, this represents the first reported estimate (about 1%) of incidence of sensitization in hospital personnel using latex gloves.

Cross-Sectional Studies↗

Latex allergy: epidemiological study of 1351 hospital workers.

OBJECTIVE: To determine the prevalence of latex sensitisation among a large group of healthcare workers, study the occupational and non-occupational factors associated with latex allergy, and characterise latex exposure in air and by gloves. METHODS: All 2062 employees of a general hospital in Hamilton, Ontario, Canada who regularly used latex gloves were invited to participate in a cross sectional survey, representing the baseline phase of a prospective cohort morbidity study. Attempts were made to recruit employees who were diagnosed with latex allergy before the survey. Glove extracts were assayed for antigenic protein, and area and personal air samples were obtained on two occasions (summer and winter) to estimate exposure to airborne latex protein. A questionnaire on medical and occupational information was administered by an interviewer. Skin prick tests were performed with latex reagents, three common inhalants, and six foods. RESULTS: The mean (SD) latex protein concentrations were 324 (227) micrograms/g in powdered surgical gloves and 198 (104) micrograms/g in powdered examination gloves. Personal latex aeroallergen concentrations ranged from 5 to 616 ng/m3. There was a total of 1351 (66%) participants. The prevalence of positive latex skin tests was 12.1% (95% confidence interval (95% CI) 10.3% to 13.9%). This prevalence did not vary by sex, age, hospital, or smoking status but subjects who were latex positive were significantly more likely to be atopic (P < 0.01). Participants who were latex positive were also significantly more likely to have positive skin tests to one or more foods (Mantel-Haenszel odds ratio (OR) adjusted for atopy 12.1, 95% CI 7.6 to 19.6, P < 10(-9)). Work related symptoms were more often reported among latex positive people, and included hives (OR 6.3, 95% CI 3.2 to 12.5), eye symptoms (OR 1.9, 95% CI 1.2 to 2.8), and wheezy or whistling chest (OR 4.7, 95% CI 2.8 to 7.9). The prevalence of latex sensitivity was highest among laboratory workers (16.9%), and nurses and physicians (13.3%). When the glove consumption per healthcare worker for each department was grouped into tertiles, the prevalence of latex skin test positivity was greater in the higher tertiles of glove use for sterile (surgical) gloves (P < 0.005) but not for examination gloves. CONCLUSIONS: In this large, cross sectional study of healthcare workers, the prevalence of latex sensitisation was 12.1% (9.5% among all those eligible), and there were significant associations with atopy, positive skin tests to certain foods, work related symptoms, and departmental use of gloves per healthcare worker. This cohort is being followed up prospectively and will be retested to determine the incidence of development of latex sensitivity.

Adult↗

A prospective, controlled study showing that rubber gloves are the major contributor to latex aeroallergen levels in the operating room.

BACKGROUND: Although protocols have been published for reducing natural rubber latex exposure in medical environments, there are no objective data documenting their effectiveness. OBJECTIVE: We prospectively studied the impact of a single intervention, substitution of low-allergen-containing latex gloves for high-allergen-containing latex gloves, on latex aeroallergen levels in a single operating room (OR). METHODS: We sampled OR air on 52 consecutive days, including 33 surgery days and 19 nonsurgery days. On each surgery day all personnel wore either high-allergen gloves (n = 18 days) or low-allergen gloves (n = 15 days). Latex aeroallergen levels (in nanograms per cubic meter) and extractable latex glove allergen contents (in allergen units per milliliter) were measured by inhibition immunoassays. An on-site study monitor recorded the number of gloves used, the total time spent by all patients in the OR each day (OR time), and the total time of all procedures for each day (operating procedure time). RESULTS: Latex aeroallergen levels during low-allergen glove use days (mean, 1.1 ng/m3; median, 0.9 ng/m3; range, 0.1 to 3.5 ng/m3) were significantly lower than on high-allergen glove use days (mean, 13.7 ng/m3; median, 7.7 ng/m3; range, 2.2 to 56.4 ng/m3) (p < 0.001) but not significantly different from that on nonsurgery days (mean, 0.6 ng/m3; median, 0.3 ng/m3; range, 0.1 to 3.6 ng/m3). Latex aeroallergen levels were strongly correlated with the total number of gloves used on designated high-allergen glove days (r = 0.66, p = 0.003). There was no appreciable day-to-day carryover of latex aeroallergen. CONCLUSIONS: The substitution of low-allergen-containing latex gloves for high-allergen-containing latex gloves can reduce levels of latex aeroallergen by more than 10-fold in an OR environment.

Air Pollutants, Occupational↗

A medical-center-wide, multidisciplinary approach to the problem of natural rubber latex allergy.

Latex is a common cause of occupational allergy in health care workers; latex-sensitized patients are at increased risk of allergic reactions in medical environments. Skin test reagents and latex-specific immunoglobulin E immunoassays were established for diagnosis of latex allergy. Inhibition immunoassays were developed for measuring latex aeroallergens and latex allergens in rubber products. A registry of latex-sensitive employees was established. High-allergen gloves were removed from the medical center inventory; latex aeroallergen levels subsequently declined. Despite an increasing number of gloves used annually, expenditures for gloves in 1994 were lower than in previous years. Latex-sensitive individuals can be identified using skin tests or immunoassays. Latex aeroallergen levels in medical environments can be reduced substantially at lower cost by using powder-free rubber gloves with lower allergen content.

Air Pollutants, Occupational↗

Cytokine production at the site of disease in chronic eosinophilic pneumonitis.

Chronic eosinophilic pneumonitis (CEP) is characterized by longstanding respiratory symptoms accompanied by a massive pulmonary eosinophil infiltration. We hypothesized that cytokine(s) produced in the disease sites are implicated in the pathophysiology of CEP. We studied peripheral blood and bronchoalveolar lavage fluids (BALF) obtained from two lung segments of a patient with CEP. Seventy times more eosinophils were found in the BALF from an involved lung segment (showing patchy opacification on a chest roentgenogram) than from an uninvolved segment. The eosinophil-active cytokines interleukin-5 (IL-5), IL-6, and IL-10 were strikingly elevated in the BALF from the involved lung segment, whereas no or minimal levels of these cytokines were detectable in the BALF from the uninvolved segment or serum, respectively. Leukocytes in the involved lung segment, but not those in peripheral blood, expressed messenger ribonucleic acid (mRNA) for IL-5, IL-6, and IL-10. In contrast, IL-2, IL-3, IL-4, interferon-gamma (IFN-gamma), granulocyte-macrophage colony-stimulating factor (GM-CSF), and tumor necrosis factor-alpha (TNF-alpha) were not detected in any sample. These findings suggest that increased production of several cytokines, such as IL-5, IL-6, and IL-10, in the involved lung segment, but not in the uninvolved lung segment or peripheral blood, is a critical pathophysiologic feature of CEP.

Adult↗

Eosinophilic inflammation is associated with elevation of interleukin-5 in the airways of patients with spontaneous symptomatic asthma.

In vitro and in vivo studies have shown an important role for interleukin-5 (IL-5) in regulating eosinophil proliferation, survival, and effector function. Because eosinophilic inflammation is an important component of symptomatic episodes of asthma, we have investigated whether increased levels of IL-5 protein are present in bronchoalveolar lavage (BAL) fluid of patients with spontaneously symptomatic asthma (FEV1, l61% predicted; FEF25%-75%, 30% predicted) compared with patients with asymptomatic asthma (FEV1, 88% predicted; FEF25%-l75%, 76% predicted). The percent of BAL eosinophils (10.5% vs 0.6]) (p = 0.0001) and eosinophil-derived neurotoxin (386.0 ng/ml vs 6.3 ng/ml) (p = 0.0001) was greater in BAL fluids derived from patients with symptomatic asthma compared with patients with asymptomatic asthma. Levels of IL-5 measured with an immunoradiometric assay were significantly higher in patients with symptomatic asthma (n = 26) compared with those with asymptomatic asthma (n = 18) (274 pg/ml vs < pg/ml) (p = 0.02). The increased IL-5 levels were noted in a subset of patients with symptomatic asthma with BAL absolute eosinophil counts greater than 10(6) (IL-5, 664 pg/ml; n = 10) as opposed to patients with symptomatic asthma with BAL eosinophil counts less than 10(6) (IL-5, < 13 pg/ml; n = 16) (p = 0.005). This study suggests that IL-5 is not only induced in experimental models of allergen-induced asthma but can also be detected as asthma progresses from the asymptomatic to the clinically symptomatic state in subjects with significant BAL eosinophilia.

Adolescent↗

An epidemic of occupational allergy to latex involving health care workers.

IgE-mediated sensitivity to natural rubber latex is being recognized more frequently among health care workers. Between January 1990 and June 1993, we evaluated 342 consecutive Mayo Medical Center employees who reported symptoms suggestive of latex allergy. All were interviewed and underwent puncture skin testing with extracts of rubber gloves. In some cases, latex-specific IgE antibodies were measured by immunoassay. One hundred four of the 342 employees evaluated (30%) were latex-allergic. Risk factors for sensitization included frequent use of disposable gloves, presence of prior atopic disease, and prior or current hand dermatitis. The peak onset of symptoms occurred in late 1989 and early 1990 and did not correlate with a peak in glove usage at our medical center, which continued to rise. Most sensitized employees (78%) reported contact urticaria from rubber gloves, and over two thirds also experienced allergic rhinitis, conjunctivitis, or asthma when working in areas where large numbers of gloves were being used. Sixteen episodes of rubber-induced anaphylaxis were documented in 12 employees; six episodes occurred after latex skin testing and were easily reversed with appropriate therapy. Our findings substantiate a local epidemic of latex allergy among medical center employees. Epidemiologic studies are needed to assess the effects of various interventions to reduce occupational exposure to latex allergens. Although prick skin testing with concentrated latex glove extracts presents some risk of systemic reaction, pending availability of commercial diagnostic extracts, such testing is generally safe when performed by skilled laboratory personnel. Skin testing is warranted to investigate health care workers suspected of being latex-sensitive.

Anaphylaxis↗

Allergen challenge in asthma: association of eosinophils and lymphocytes with interleukin-5.

To test whether eosinophil recruitment after pulmonary allergen challenge is associated with interleukin (IL)-5 in patients with asthma, we performed segmental bronchoprovocation (SBP) with saline, and with low and high dosages of ragweed extract in six patients with allergic asthma. Bronchoalveolar lavage (BAL) of the challenged segments was performed 5 min after challenge (immediate BAL fluid) and repeated 24 h later (late BAL fluid). Allergen challenge resulted in recruitment of eosinophils, and increased levels of eosinophil-active cytokines. A bioassay showed the predominant eosinophil-active cytokine in the late BAL fluids to be IL-5. Analysis of the late BAL fluids revealed that IL-5 levels correlated with the numbers of eosinophils and lymphocytes. This study provides evidence that IL-5 is a critical cytokine associated with eosinophil and lymphocyte recruitment into the airways of patients with asthma following exposure to allergen.

Adolescent↗

Allergen-specific IgG1 and IgG3 through Fc gamma RII induce eosinophil degranulation.

Evidence suggests that eosinophils contribute to inflammation in bronchial asthma by releasing chemical mediators and cytotoxic granule proteins. To investigate the mechanism of eosinophil degranulation in asthma, we established an in vitro model of allergen-induced degranulation. We treated tissue culture plates with short ragweed pollen (SRW) extract and sera from either normal donors or SRW-sensitive patients with asthma. Eosinophils were incubated in the wells and degranulation was assessed by measurement of eosinophil-derived neurotoxin in supernatants. We detected degranulation only when sera from SRW-sensitive patients were reacted with SRW. Anti-IgG and anti-Fc gamma RII mAb, but not anti-IgE or anti-Fc epsilon RII mAb, abolished the degranulation. IgG-depleted serum did not induce degranulation; IgE-depleted serum triggered as much degranulation as untreated serum. Furthermore, serum levels of SRW-specific IgG1 or IgG3 correlated with the amounts of released eosinophil-derived neurotoxin. When eosinophils were cultured in wells coated with purified IgG or IgE, eosinophil degranulation was observed only with IgG. Finally, human IgG1 and IgG3, and less consistently IgG2, but not IgG4, induced degranulation. Thus, sera from patients with SRW-sensitive asthma induce eosinophil degranulation in vitro through antigen-specific IgG1 and IgG3 antibodies. These antibodies may be responsible for degranulation of eosinophils in inflammatory reactions, such as bronchial asthma.

Allergens↗

Quantification of occupational latex aeroallergens in a medical center.

To determine the quantity, variability, and mean aerodynamic diameter of latex aeroallergens in a large medical center, we collected air samples from work sites by using area and personal breathing zone air samplers, and we measured latex allergens by an inhibition assay with IgE antibodies from latex-sensitive individuals. Latex aeroallergen concentrations in 11 areas where powdered latex gloves were frequently used ranged from 13 to 208 ng/m3, and in areas where powdered latex gloves were never or seldom used, concentrations ranged from 0.3 to 1.8 ng/m3. Installation and use of a laminar flow glove changing station in one work area did not reduce latex aeroallergen levels. Large quantities of allergen were recovered from used laboratory coats and anesthesia scrub suits and from laboratory surfaces. Latex allergen concentrations in personal breathing zone samplers worn by health care workers in areas where powdered gloves were frequently used ranged from 8 to 974 ng/m3. Exposure likely occurs when gloves are changed and as a result of resuspension from reservoirs of powder in the room and clothing. Latex allergens were found in all particle sizes but were predominant in particles greater than 7 microns in mass median aerodynamic diameter. Results of electrophoretic immunoblotting showed that the aeroallergens are primarily the higher molecular mass components of the latex glove proteins. Measures to control exposure can be monitored by both area and personal air sampling with this immunochemical approach. Use of gloves with low allergen content or powder-free gloves appears to be more effective than use of a laminar flow glove changing station in reducing aeroallergen levels.

Academic Medical Centers↗

Control of airborne latex by use of powder-free latex gloves.

OBJECTIVE: Our objective was to assess airborne latex allergen exposure in the workplace of a hospital laboratory technician with occupational latex sensitization and repeated anaphylactic episodes from this. Her allergic manifestations had cleared only when coworkers changed to powder-free latex gloves. Therefore a laboratory still using powdered latex gloves was selected for comparative airborne latex sampling. DESIGN: The design was a survey. SETTING: We used a hospital hematology laboratory, and a biochemistry laboratory was used for comparison. PARTICIPANTS: The index case with latex allergy is described. An average of 10 employees worked on the day shift in the same laboratory, and 10 employees worked in the biochemistry laboratory studied. MAIN OUTCOME MEASURE: Airborne latex allergen levels obtained by high airflow area sampling were compared in the laboratory using powder-free latex gloves and in the laboratory using powdered latex gloves. RESULTS: Levels were below the level of detection (< 0.02 ng/m3 of latex allergen) in the laboratory using powder-free latex gloves but ranged from 39 to 311 ng/m3 in the laboratory using powdered gloves. CONCLUSIONS: Airborne latex allergen is produced with use of powdered latex gloves. Such usage by coworkers may provoke respiratory and anaphylactic response to latex in sensitized subjects. Use of powder-free gloves by coworkers may enable such patients to continue work in their trained profession and may prevent measurable airborne latex exposure. Affected patients, however, still need to avoid direct latex contact.

Adult↗

Epidemiology of psychiatric disorders in Edmonton. Antisocial personality disorders.

3258 randomly selected adult household residents of Edmonton, Canada, were interviewed by trained lay interviewers using the Diagnostic Interview Schedule (DIS). 104 subjects fulfilled DSM-III antisocial personality disorder (ASP) criteria. Lifetime prevalence rates were found to be significantly higher in males and in the younger adult age groups. The age of onset (i.e. age at which conduct disorder symptoms first appeared) was found to be under 10 years in the majority of cases, with females lagging just slightly behind males. Symptom patterns and frequencies were examined and the relative risks for these symptoms were calculated. Comorbidity, calculated using full DSM-III severity criteria, but without exclusion criteria, revealed an increased prevalence of nearly every other psychiatric disorder in those with antisocial personality disorder, with 90.4% having at least one other lifetime psychiatric diagnosis.

Adolescent↗