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Featured researches published by Mariola Sliwinska-Kowalska.


Folia Phoniatrica Et Logopaedica | 2006

The prevalence and risk factors for occupational voice disorders in teachers.

Mariola Sliwinska-Kowalska; Ewa Niebudek-Bogusz; Marta Fiszer; T. Los-Spychalska; Piotr Kotylo; B. Sznurowska-Przygocka; M. Modrzewska

Objective: Occupational voice disorders in Poland account for over 25% of all occupational diseases. The aim of the study was to assess the prevalence of voice problems in the general population of Polish teachers, and identify risk factors for developing voice pathology. Patients and Methods: The study group comprised 425 female full-time teachers (most of them primary and secondary school, age ranging from 23 to 61 years) and 83 non-teacher women (control) whose jobs did not involve vocal effort, matched for age to the study group. All participants were subjected to a survey using an extensive questionnaire, and to laryngological, phoniatric and videostroboscopic examinations. Results: The overall lifetime vocal symptoms were more frequent in the teachers than in the non-teachers (69 vs. 36%), and in particular it related to permanent and recurrent hoarseness, and dryness in the throat. Mean number of the voice symptoms was 3.21 in teachers and 1.98 in controls (p < 0.001). Abnormal (non-euphonic) voice, neck muscle hypertension during phonation and incorrect resonator function were also significantly more frequent in the teachers. Mean maximum phonation time was shorter in teachers than in the controls (14.3 vs. 15.9 s, p < 0.01). Occupational voice disorders and hyperfunctional dysphonia (that is thought to predispose to such pathology) were found in 32.7% of teachers and 9.6% of control subjects. The probability of developing incomplete glottal closure (odds ratio 13.2x; 95% CI: 1.8–96.8) and hyperfunctional dysphonia (odds ratio 2.7; 95% CI: 1.14–6.44) were significantly higher in the teacher group versus non-teachers. A significant positive relationship was found in teachers between the prevalence of hyperfunctional dysphonia and strained phonation, neck muscle hypertension, instability of voice, self-assessed hyperarousal, and lifetime vocal effort index (years of employment as a teacher × hours of professional activity/week). The prevalence of vocal nodules and incomplete glottal closure were correlated with incorrect phonation technique parameters, but not with psychological factors. No correlation was found with environmental variables, such as classroom temperature, humidity, airborne dust. Conclusion: The prevalence of self-reported symptoms and clinical signs of voice disorders is around 2–3 times more frequent in Polish female teachers than in non-teachers. Lifetime vocal effort, incorrect technique of phonation and psychological predisposition seem to constitute major risk factors for developing occupational voice disorders.


Journal of Occupational and Environmental Medicine | 2003

Ototoxic effects of occupational exposure to styrene and co-exposure to styrene and noise.

Mariola Sliwinska-Kowalska; Ewa Zamyslowska-Szmytke; Szymczak W; Piotr Kotylo; Marta Fiszer; Wiktor Wesołowski; Malgorzata Pawlaczyk-Luszczynska

Learning ObjectivesRecall the reported effects of exposure to styrene and noise on the cochlear hair cells and hearing function in rats.Describe which possible confounding factors were and were not controlled for in this study, and what the results indicate about the respective ototoxic effects on humans of exposure to styrene and noise.Characterize the effects in humans of isolated and combined exposure to styrene and noise. Ototoxicity of styrene and the synergistic action of styrene and noise have been shown in rats. The respective data in humans are scarce and equivocal. This study evaluated the effects of occupational exposure to styrene and combined exposures to styrene and noise on hearing. The study group, comprised of 290-yacht yard and plastic factory workers, was exposed to a mixture of organic solvents, having styrene as its main compound. The reference group, totaling 223 subjects, included (1) white-collar workers, exposed neither to solvents nor noise and (2) metal factory workers, exposed exclusively to noise. All subjects were assessed by means of a detailed questionnaire and underwent otorhinolaryngological and audiometric examinations. Multiple logistic regression analysis revealed almost a 4-fold (or 3.9; 95% CI = 2.4–6.2) increase in the odds of developing hearing loss related to styrene exposure. The factors adjusted for were: age, gender, current occupational exposure to noise, and exposure to noise in the past. In cases of the combined exposures to styrene and noise, the odds ratios were two to three times higher than the respective values for styrene-only and noise-only exposed subjects. The mean hearing thresholds—adjusted for age, gender, and exposure to noise—were significantly higher in the solvent-exposed group than in the unexposed reference group at all frequencies tested. A positive linear relationship existed between an averaged working life exposure to styrene concentration and a hearing threshold at the frequencies of 6 and 8 kHz. This study provides the epidemiological evidence that occupational exposure to styrene is related to an increased risk of hearing loss. Combined exposures to noise and styrene seem to be more ototoxic than exposure to noise alone.


Journal of Occupational and Environmental Medicine | 2004

Effects of coexposure to noise and mixture of organic solvents on hearing in dockyard workers.

Mariola Sliwinska-Kowalska; Ewa Zamyslowska-Szmytke; Szymczak W; Piotr Kotylo; Marta Fiszer; Wiktor Wesołowski; Malgorzata Pawlaczyk-Luszczynska; Marek Bak

Questionnaire and audiometric data of 701 dockyard workers (517 noise and organic solvent mixture-exposed and 184 noise-only-exposed) were referred to 205 control subjects not exposed to either noise or solvents. The odds ratio (OR) of hearing loss was significantly increased by approximately 3 times in the noise-only group and by almost 5 times in the noise and solvent group. A moderate effect of solvent ototoxicity, in addition to noise, was observed on hearing threshold at a frequency 8 kHz. ORs for hearing loss were 1.12 for each increment of 1 year of age, 1.07 for every decibel of lifetime noise exposure (dB-A), and 1.004 for each increment of the index of lifetime exposure to solvents. The results suggest an additive damaging effect of coexposure to noise and organic solvents to the auditory organ.


The Journal of Allergy and Clinical Immunology | 1993

Nasal secretions in response to acetylsalicylic acid

Marek L. Kowalski; Mariola Sliwinska-Kowalska; Yasushi Igarashi; Martha V. White; Barbara Wojciechowska; Phyllis Brayton; Helen C. Kaulbach; Jerzy Rozniecki; Michael Kaliner

BACKGROUND Acetylsalicylic acid (ASA) induces rhinorrhea in a subset of patients with asthma or chronic rhinosinusitis or both and nasal polyps. The underlying mechanism of the reaction is obscure. METHODS To assess the nasal response to ASA challenge, four groups of patients were challenged orally with ASA: group A (10 ASA-sensitive patients); group B (nine patients with nasal polyps and histories of tolerance to ASA); group C (nine ASA-tolerant patients with chronic allergic rhinitis); and group D (eight healthy nonatopic subjects). RESULTS Nasal lavages obtained before and after ASA challenge were assayed for proteins (total protein, lactoferrin, lysozyme, albumin) and inflammatory mediators (histamine, prostaglandin D2, and leukotriene C4). ASA challenges induced severe rhinorrhea and congestion and significant increases in mean concentrations of all measured nasal proteins in group A. Histamine and prostaglandin D2 rose, but not significantly. In the two control groups with chronic rhinitis, ASA induced increases in the concentration of proteins and histamine. Leukotriene C4 concentrations were significantly elevated in nasal lavages after ASA challenge in groups A and C only. In group D no symptoms or changes in nasal proteins were observed after aspirin challenge. CONCLUSIONS These observations suggest that production of lipoxygenase products of arachidonate may induce glandular secretions that may participate in the clinical changes associated with ASA sensitivity.


Folia Phoniatrica Et Logopaedica | 2008

The effectiveness of voice therapy for teachers with dysphonia.

Ewa Niebudek-Bogusz; B. Sznurowska-Przygocka; Marta Fiszer; Piotr Kotylo; A. Sinkiewicz; M. Modrzewska; Mariola Sliwinska-Kowalska

Objective: An incorrect voice emission is a risk factor for developing occupational voice disorders. The study aimed at assessing the effectiveness of voice therapy in female teachers with dysphonia. Methods: The study comprised 133 subjects with voice disorders, taking part in a vocal training programme. A reference group for the present study included 53 teachers with dysphonia. Questionnaire surveys, phoniatric examination and videostroboscopic evaluation were conducted at initial and control examination. Results: In the study group, an improvement after the vocal training was noted in most of the reported symptoms and also in some quantitative parameters of phoniatric examinations compared to the findings for the reference group. The number of patients who assessed their voice as normal increased significantly after the vocal training (2.3 vs. 46.6%). A significant increase in the mean maximum phonation time, from 13.3 to 16.6 s, was observed. The same applied to voice frequency range (increase from 171 to 226.8 Hz). Conclusions: The outcomes of vocal training, such as a subjective improvement of voice quality and an increase in the quantitative parameters (prolonged maximum phonation time, extended voice range) seem to be important parameters for monitoring the effectiveness of training in correct voice emission.


Neuroscience | 2008

Noise-induced time-dependent changes in oxidative stress in the mouse cochlea and attenuation by d-methionine

J. Samson; A. Wiktorek-Smagur; P. Politanski; E. Rajkowska; M. Pawlaczyk-Luszczynska; Adam Dudarewicz; Su Hua Sha; Jochen Schacht; Mariola Sliwinska-Kowalska

Oxidative stress in the cochlea is considered to play an important role in noise-induced hearing loss. This study determined changes in superoxide dismutase (SOD), catalase, lipid peroxidation (LPO) and the auditory brainstem response (ABR) in the cochlea of C57BL/6 mice prior to and immediately, 1, 3, 7, 10, 14 and 21 days after noise exposure (4 kHz octave band at the intensity of 110 dB SPL for 4 h). A significant increase in SOD activity immediately and on 1st day after noise exposure, without a concomitant increase in catalase activity suggested a difference in the time dependent changes in the scavenging enzymes, which facilitates the increase in LPO observed on day 7. The ABR indicated significant noise-induced functional deficits which stabilized in 2 weeks with a permanent threshold shift (PTS) of 15 dB at both 4 kHz and 8 kHz. The antioxidant D-methionine (D-Met) reversed the noise-induced changes in LPO levels and enzyme activities. It also significantly reduced the PTS observed on the 14th day from 15 dB to 5 dB for 4 kHz. In summary, the findings indicate that time-dependent alterations in scavenging enzymes facilitate the production of reactive oxygen species and that D-met effectively attenuates noise-induced oxidative stress and the associated functional loss in the mouse cochlea.


European Journal of Human Genetics | 2009

Variations in HSP70 genes associated with noise-induced hearing loss in two independent populations

Annelies Konings; Lut Van Laer; Sophie Michel; Malgorzata Pawelczyk; Per-Inge Carlsson; Marie-Louise Bondeson; Elzbieta Rajkowska; Adam Dudarewicz; Ann Vandevelde; Erik Fransen; Jeroen R. Huyghe; Erik Borg; Mariola Sliwinska-Kowalska; Guy Van Camp

Noise-induced hearing loss (NIHL) is one of the most important occupational health hazards. Millions of people worldwide are exposed daily to harmful levels of noise. NIHL is a complex disease resulting from an interaction between genetic and environmental factors. Although the environmental risk factors have been studied extensively, little is known about the genetic factors. Heat-shock proteins (HSPs) are induced after exposure to severe noise. When first induced by exposure to moderate sound levels, they can protect the ear from damage from excessive noise exposure. This protection is highly variable between individuals. An association of HSP70 genes with NIHL has been described by Yang et al (2006) in a Chinese sample set of noise-exposed workers. In this study, three polymorphisms (rs1043618, rs1061581 and rs2227956) in HSP70-1, HSP70-2 and HSP70-hom, respectively, were genotyped in 206 Swedish and 238 Polish DNA samples of noise-exposed subjects and analyzed. One SNP, rs2227956 in HSP70-hom, resulted in a significant association with NIHL in both sample sets. In addition, rs1043618 and rs1061581 were significant in the Swedish sample set. Analysis of the haplotypes composed of the three SNPs revealed significant associations between NIHL and haplotype GAC in both sample sets and with haplotype CGT in the Swedish sample set. In conclusion, this study replicated the association of HSP70 genes with NIHL in a second and third independent noise-exposed sample set, hereby adding to the evidence that HSP70 genes may be NIHL susceptibility genes.


Annals of Human Genetics | 2009

Candidate Gene Association Study for Noise-induced Hearing Loss in Two Independent Noise-exposed Populations

Annelies Konings; L. Van Laer; A. Wiktorek-Smagur; Elzbieta Rajkowska; Malgorzata Pawelczyk; Per-Inge Carlsson; Marie-Louise Bondeson; Adam Dudarewicz; Ann Vandevelde; Erik Fransen; Jeroen R. Huyghe; Erik Borg; Mariola Sliwinska-Kowalska; G. Van Camp

Millions of people are daily exposed to high levels of noise. Consequently, noise‐induced hearing loss (NIHL) is one of the most important occupational health hazards worldwide. In this study, we performed an association study for NIHL based on a candidate gene approach. 644 Single Nucleotide Polymorphisms (SNPs) in 53 candidate genes were analyzed in two independent NIHL sample sets, a Swedish set and part of a Polish set. Eight SNPs with promising results were selected and analysed in the remaining part of the Polish samples. One SNP in PCDH15 (rs7095441), resulted in significant associations in both sample sets while two SNPs in MYH14 (rs667907 and rs588035), resulted in significant associations in the Polish sample set and significant interactions with noise exposure level in the Swedish sample set. Calculation of odds ratios revealed a significant association of rs588035 with NIHL in the Swedish high noise exposure level group. Our studies suggest that PCDH15 and MYH14 may be NIHL susceptibility genes, but further replication in independent sample sets is mandatory.


Annals of Human Genetics | 2009

Analysis of Gene Polymorphisms Associated with K+ Ion Circulation in the Inner Ear of Patients Susceptible and Resistant to Noise‐induced Hearing Loss

Malgorzata Pawelczyk; Lut Van Laer; Erik Fransen; Elzbieta Rajkowska; Annelies Konings; Per-Inge Carlsson; Erik Borg; Guy Van Camp; Mariola Sliwinska-Kowalska

Noise‐induced hearing loss (NIHL) is one of the leading occupational health risks in industrialized countries. It results from an interaction between environmental and genetic factors, however the nature of the genetic factors contributing to NIHL has not yet been clarified. Here, we investigated whether genetic variations in 10 genes putatively involved in the potassium recycling pathway in the inner ear may influence susceptibility to noise. 99 SNPs were genotyped in Polish noise‐exposed workers, categorized into susceptible and resistant subjects. The most interesting results were obtained for KCNE1 and KCNQ4 as we replicated associations that were previously reported in a Swedish sample set, hence confirming that they are NIHL susceptibility genes. Additionally we report significant associations in GJB1, GJB2, GJB4, KCNJ10 and KCNQ1, however due to the lack of replication in the Swedish sample set, these results should be seen as suggestive.


Environmental Toxicology and Pharmacology | 2005

Exacerbation of noise-induced hearing loss by co-exposure to workplace chemicals

Mariola Sliwinska-Kowalska; Ewa Zamyslowska-Szmytke; Szymczak W; Piotr Kotylo; Marta Fiszer; Wiktor Wesołowski; Malgorzata Pawlaczyk-Luszczynska

BACKGROUND : Numerous organic solvents applied in industry, like toluene, styrene, xylene and n-hexane have been demonstrated to impair hearing in animals. However, the effects of exposure to a given organic solvent and the interaction of noise and solvents on hearing in humans are still not fully recognized. STUDY DESIGN : The study was aimed to assess the effects of occupational exposure to solvents alone or in combination with noise on hearing in 1117 employees of yacht, ship, plastic, shoe, and paint and lacquer industry. These persons were exposed either to the mixture of organic solvents with xylene as the main component, or predominantly to styrene, or to the mixture of n-hexane and toluene. Detailed questionnaire data and pure-tone audiometry were compared with data of the reference group that included white collar workers, exposed neither to solvents nor noise and metal factory workers exposed to noise only. In all statistics, the confounding factors were recognized as gender, age, exposure to noise, and other variables occurring at a different rate in study and reference group. RESULTS : Odds ratio (OR) of hearing loss related with the particular exposure to chemicals was 2.4 (95%CI 1.59-3.74) in case of solvent mixture, 3.9 (95%CI 2.4-6.2) in case of styrene and 5.3 (95%CI 2.6-10.9) in case of n-hexane and toluene exposure. The odds of developing hearing loss substantially increased in the case of combined exposure to organic solvents and noise as compared to isolated exposure to each of these hazards. The highest OR (over 20-fold) was demonstrated in subgroups of subjects exposed simultaneously to noise and two ototoxic solvents (i.e. styrene and toluene or n-hexane and toluene). The mean hearing thresholds were significantly higher in the solvent-exposed groups than in the reference group. The differences in thresholds were observed at high frequencies in the solvent mixture- and n-hexane + toluene-exposed groups and at all frequencies in the styrene-exposed group. A positive linear relationship existed between exposure to solvents and hearing thresholds at high frequencies. CONCLUSIONS : The results of the study provide the epidemiological evidence that exposure to organic solvents in humans is associated with an increased risk of hearing loss. The simultaneous exposure to organic solvents and noise seems to enhance the hearing deficit if compared with isolated exposures.

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Adam Dudarewicz

Nofer Institute of Occupational Medicine

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Ewa Niebudek-Bogusz

Nofer Institute of Occupational Medicine

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Piotr Kotylo

Nofer Institute of Occupational Medicine

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Ewa Zamyslowska-Szmytke

Nofer Institute of Occupational Medicine

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Malgorzata Pawlaczyk-Luszczynska

Nofer Institute of Occupational Medicine

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Marta Fiszer

Nofer Institute of Occupational Medicine

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Elzbieta Rajkowska

Nofer Institute of Occupational Medicine

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Szymczak W

Nofer Institute of Occupational Medicine

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Malgorzata Pawelczyk

Nofer Institute of Occupational Medicine

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Wiktor Wesołowski

Nofer Institute of Occupational Medicine

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