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Association between interleukin-6 polymorphism in the -174 G/C region and hearing loss in the elderly with a history of occupational noise exposure Please cite this article as: Braga MP, Maciel SM, Marchiori LL, Poli-Frederico RC. Association between interleukin-6 polymorphism in the -174 G/C region and hearing loss in the elderly with a history of occupational noise exposure. Braz J Otorhinolaryngol. 2014;80:373-8. ☆☆ ☆☆ Institution: Universidade Norte do Paraná (UNOPAR), Londrina, PR, Brazil.

Abstracts

INTRODUCTION:

The biological processes involved in noise-induced hearing loss (NIHL) are still unclear. The involvement of inflammation in this condition has been suggested.

OBJECTIVE:

To investigate the association between interleukin - 6 (IL-6) polymorphism and susceptibility to NIHL.

METHODS:

This was a cross-sectional study with a sample of 191 independent elderly individuals aged > 60 years of age. Information on exposure to occupational noise was obtained by interviews. Audiological evaluation was performed using pure tone audiometry and genotyped through PCR by restriction fragment length polymorphism - PCR-RFLP. Data were analyzed using the Chi-square test and the Odds ratio (OR), with the significance level set at 5%.

RESULTS:

Among elderly with hearing loss (78.0%), 18.8% had a history of exposure to occupational noise. There was a statistically significant association between the genotype frequencies of the IL-6 -174 and NIHL. The elderly with the CC genotype were less likely to have hearing loss due to occupational noise exposure when compared to those carrying the GG genotype (OR = 0.0124; 95% CI 0.0023-0.0671; p < 0.001).

CONCLUSION:

This study suggests there is an association of polymorphisms in the IL- 6 gene at position - G174C with susceptibility to noise-induced hearing loss.

Occupational noise Sensorineural hearing loss; Cytokines


INTRODUÇÃO:

Os processos biológicos envolvidos na perda auditiva induzida por ruído (PAIR) ainda não estão claros. O envolvimento de processo inflamatório nesta condição tem sido sugerido.

OBJETIVO:

Investigar a associação entre o polimorfismo no gene da interleucina-6 (IL-6) e a suscetibilidade à PAIR.

MÉTODO:

Trata-se de estudo transversal com amostra de 191 idosos independentes acima de 60 anos de idade. Informações sobre a exposição ao ruído ocupacional foram obtidas por entrevistas. A avaliação audiológica foi realizada por meio de audiometria tonal liminar e a genotipagem pela técnica da PCR-RFLP. Os dados foram analisados usando-se o teste Qui-quadrado e a razão de chances (OR), com o nível de significância fixado em 5%.

RESULTADOS:

Entre os idosos com perda auditiva (78,0%), 18,8% apresentavam histórico de exposição ao ruído ocupacional. Houve associação estatisticamente significante entre as frequências genotípicas da IL-6 -174 e a PAIR. Os idosos portadores do genótipo CC foram menos propensos a apresentar perda auditiva por exposição ao ruído ocupacional quando comparados a aqueles portadores do genótipo GG (OR = 0,0124; 95% IC 0,0023-0,0671; p < 0,001).

CONCLUSÃO:

O presente estudo sugere a associação do polimorfismo no gene da IL-6 na posição -G174C com a suscetibilidade à perda auditiva induzida por ruído.

Ruído ocupacional; Perda auditiva neurossensorial; Citocinas


Introduction

Elderly health has increasingly aroused the interest of researchers, as the population in both developed and developing countries is aging.11. Shrestha LB. Population aging in developing countries. Health Affairs. 2000;19:204-12. It is estimated that by 2040 developing countries will have a billion people aged 60 years or older.22. Kinsella K, He W. An aging world: 2008. Washington, USA: Census Bureau; 2009. Given the rapidity and magnitude of this increase, care for this specific group is essential, so they can age in good health and with good quality of life.33. Veras R. Population aging today: demands, challenges and innovations. Rev Saude Publica. 2009;43:548-54.

The most common types of hearing loss are presbycusis (due to aging) and noise-induced hearing loss (NIHL).44. Nudelmann AA, Costa EA, Seligman J, Ibañez RN. Perda auditiva induzida pelo ruído. Porto Alegre: Bagagem; 1997 NIHL is due to continued exposure to loud noise levels, resulting in gradual loss of auditory acuity and is usually bilateral, symmetric, sensorineural and irreversible. It usually affects the high audiometric frequencies of 3000-6000 Hz.55. Keithley EM, Wang X, Barkdull GC. Tumor necrosis factor alpha can induce recruitment of inflammatory cells to the cochlea. Otol Neurotol. 2008;29:854-9. The etiology of hearing loss also has genetic components, in addition to environmental ones, and more recently, inner ear inflammatory response induction and up-regulation of proinflammatory cytokines were evaluated in the presence of exacerbated noise.55. Keithley EM, Wang X, Barkdull GC. Tumor necrosis factor alpha can induce recruitment of inflammatory cells to the cochlea. Otol Neurotol. 2008;29:854-9. , 66. Hirose K, Discolo CM, Keasler JR, Ransohoff R. Mononuclear phagocytes migrate into the murine cochlea after acoustic trauma. J Comp Neurol. 2005;489:180-94. and 77. Satoh H, Firestein GS, Billings PB, Harris JP, Keithley EM. Tumor necrosis factor-alpha, an initiator, and etanercept, an inhibitor of cochlear inflammation. Laryngoscope. 2002;112:1627-34. Several researchers have reported the presence of inflammatory cells in the steady state and their increase after lesions in the inner ear.66. Hirose K, Discolo CM, Keasler JR, Ransohoff R. Mononuclear phagocytes migrate into the murine cochlea after acoustic trauma. J Comp Neurol. 2005;489:180-94. , 88. Jokay I, Papp Z, Soos G, Sziklai I, Dezso B. The effect of chronic otitis media on the immunoreactivity of human inner ear. Eur Arch Otorhinolaryngol. 2001;258:529-32. , 99. Okano T, Nakagawa T, Kita T, Kada S, Yoshimoto M, Nakahata T, et al. Bone marrow-derived cells expressing Iba1 are constitutively present as resident tissue macrophages in the mouse cochlea. J Neurosci Res. 2008;86:1758-67. and 1010. Tan BT, Lee MM, Ruan R. Bone marrow-derived cells that home to acoustic deafened cochlea preserved their hematopoietic identity. J Comp Neurol. 2008;509:167-79.

Noise exposure induces the expression of pro-inflammatory cytokines, including tumor necrosis factor-α (TNF-α), interleukin 1β (IL-1β) and interleukin-6 (IL-6).1111. Fujioka M, Kanzaki S, Okano HJ, Masuda M, Ogawa K, Okano H. Proinflammatory cytokines expression in noise-induced damaged cochlea. J Neurosci Res. 2006;83:575-83. So et al.1212. So H, Kim H, Lee JH, Park C, Kim Y, Kim E, et al. Cisplatin cytotoxicity of auditory cells requires secretions of proinflammatory cytokines via activation of ERK and NFkappa. B J Assoc Res. 2007;8:338-55. observed a transient up-regulation of IL-6 in cisplatin-treated animal models. Wakabayashi et al.1313.Wakabayashi K, Fujioka M, Kanzaki S, Okano H J, Shibata S, Yamashita D, et al. Blockade of interleukin-6 signaling suppressed cochlear inflammatory response and improved hearing impairment in noise-damaged mice cochlea. Neuroscience Res. 2010;66:345-52. investigated the effect of IL-6 inhibition using an anti-IL-6 (MR16-1) antibody in mice. These authors found that MR16-1 showed a protective effect against noise-induced cochlear injury, mainly due to neuronal loss suppression and presumably by relieving the inflammatory response, similar data were found by Nakamoto et al.1414. Nakamoto T, Mikuriya T, Sugahara K, Hirose Y, Hashimoto T, Shimogori H, et al. Geranylgeranylacetone suppresses noise-induced expression of proinflammatory cytokines in the cochlea. Auris Nasus Larynx. 2012;39:270-4. These authors suggested that the suppression of proinflammatory cytokine HSF-1 in the cochlea by the administration of GGA (geranyl-geranyl-acetone) could be an important way to protect the inner ear.

The expression of cytokines may be influenced by genetic variation, resulting in pathogenic conditions1515. Satoh H, Firestein GS, Billings PB, Harris JP, Keithley EM. Proinflammatory cytokine expression in the endolymphatic sac during inner ear inflammation. J Assoc Res Otolaryngol. 2003;4:139-47. and several studies have investigated single nucleotide polymorphisms (SNPs) as risk factors for inflammatory diseases.1616. Dinarelo CA. Interleukin-1 in the pathogenesis and treatment of inflammatory diseases. Blood. 2011;117:3720-32. These SNPs may affect the expression, secretion and cellular transport of interleukins1717. Hwang JH, Chen JC, Yang SY, Wang MF, Chan YC. Expression of tumor necrosis factor-a and interleukin-1b genes in the cochlea and inferior colliculus in salicylate-induced tinnitus. J Neuroinflammation. 2011;8:30. and 1818.Santtila S, Savinainen K, Hurme M. Presence of the IL-1RA allele 2 (IL1RN*2) is associated with enhanced IL-1beta production in vitro. Scand J Immunol. 1998;47:195-8. and can also decrease the level of the IL-1 receptor antagonist (IL-1Ra), which increases the production and activity of IL-1β.1919. Bioque G, Crusius JB, Koutroubakis I, Bouma G, Kostense PJ, Meuwissen SG, et al. Allelic polymorphism in IL-1 beta and IL-1 receptor antagonist (IL-1Ra) genes in inflammatory bowel disease. Clin Exp Immunol. 1995;102:379-83.

The SNP in the region -174 of the interleukin-6 gene contains the replacement of G by C, and the presence of the C allele represents a protective function due to reduced production of IL-6.2020. Costa AM, Guimarães MCM, De Souza ER, Nóbrega OT, Bezerra ACB. Interleukin-6 (G-174C) and tumour necrosis factor-alpha (G-308A) gene polymorphisms in geriatric patients with chronic periodontitis. Gerodontol. 2010;27:70-5.

Considering that NIHL is involved in the inflammatory process, this study aimed to evaluate the association between the proinflammatory cytokine-6 (IL-6) gene polymorphism and susceptibility to NIHL in physically independent elderly Brazilians.

Method

Study population

This cross-sectional study was approved by the Ethics Committee on Human Research of the University of Northern Paraná (0070/09). It is part of a broader investigation, the "Study on aging and longevity", which has been carried out in Londrina since 2009. Londrina (approximately 500,000 inhabitants) is located in the northern region of the state of Paraná, Brazil.

Of a population of 43,610 elderly individuals treated in 38 basic health units (BHUs) in the urban area of the city, the sample size was set at 343 individuals, considering a confidence interval of 95% and a margin of error of 5%.2121. Raosoft Sample Size Calculator [site da Internet; acessado 10 Jun 2013] Disponível em: http://www.raosoft.com/samplesize.html
http://www.raosoft.com/samplesize.html...

Aiming at obtaining sample representativeness, random stratification was performed considering gender and regions of the city. The study included individuals aged 60 years or older, of both genders, living independently and classified at level 3 or 4, as proposed by Spirduso.2222. Spirduso WW. Physical dimensions of aging. 2ª ed. Barueri: Manole; 2005. p. 75-80. This classification assesses the level of independence of the elderly, in which level 1 indicates a lack of self-mobility and level five indicates athletes. The elderly who had some disease or limitations that prevented the tests, such as physical or mental impairment, were excluded from the sample. All participants signed an informed consent form.

Audiological assessment

The audiological assessment was performed by conventional pure tone audiometry, in an interacoustics audiometer. To determine the severity of hearing loss, the criteria proposed by BIAP - Bureau Internacional d'Audio Phonologie - an institution formed by several associations of European countries with the main objective of guiding the activity of professionals in these regions, were used. The means of hearing thresholds in dB in air conduction, at 500 Hz, 1 kHz, 2 kHz and 4 kHz and the 02/1 1997 recommendations were analyzed, both the right and left ears were evaluated for a group of individuals with a history of occupational noise and the group of individuals with no history of occupational noise. 2323. National Committee on Noise and Hearing Conservation. Recommendations for the assessment of damage caused by noise induced hearing loss. Letter to the editors. Acta AWHO. 1996;16:45. , 24 and 25

Evaluation of occupational noise exposure

The assessment of occupational noise exposure was performed through interviews with the elderly participants, using a semi-structured questionnaire. Information was collected on whether work was performed in a noisy environment or not, how many years of work in a noisy environment and whether the individual wore a hearing aid. Moreover, demographic characteristics (gender, age and ethnicity) were collected.

Genotyping for IL-6 G-174C (rs1800795) gene polymorphism

Peripheral blood samples were collected in vacuum tubes containing 6% ethylenediamine tetraacetic acid (EDTA) and DNA was extracted from peripheral blood leukocytes, using the protocol described by Olerup and Zeterquist.2626. Olerup O, Zetterquist H. HLA-DR typing by PCR amplification with sequence-specific primers (PCR-SSP) in 2 hours: An alternative to serological DR typing in clinical practice including donor-recipient matching in cadaveric transplantation. Tissue Antigens; 1992;39:225-35.

Based on the original sample, the DNA was diluted to a concentration of 100 ng/mL. The concentration was determined by spectrophotometer at 260 nm and 280 nm (Biomate 3, Thermo Fisher Scientific, Madison, USA).

The C to T polymorphic site located at position -174 of the IL-6 (rs1800795) gene was amplified by polymerase chain reaction (PCR) resulting in a 99 bp fragment. The PCR mixture contained a mixture of a buffer solution pH 8.0 1×, 1.5 mM of MgCl2, 8 mM each of deoxyribonucleotide triphosphates, 1 µM of each primer and 1 U Taq DNA polymerase (Invitrogen, Carlsbad, CA, USA). The primers used were F: 5'-TTGTCAAGACATGCCAAGTGCT-3' and R: 5'-GCCTCAGAGACATCTCCAGTCC-3' (Invitrogen, Carlsbad, CA, USA).2727. Olomolaiye O, Wood NA, Bidwell JL. A novel NlaIII polymorphism in the human IL-6 promoter. Eur J Immunogenet. 1998; 25:267.

PCR amplification was performed in a thermocycler (TC-512 Techne resistance, Burlington, NJ, USA) under the following conditions: initial denaturation at 95 °C for 5 min followed by 30 cycles of 95 °C for 1 min, 56 °C for 1 min and 72 °C for 1 min, and final extension at 72 °C for 5 min.

The PCR product was digested with 2 U of restriction enzyme NlaIII (Invitrogen, Carlsbad, CA, USA) overnight at 65 °C. The digested fragments were separated on 2% agarose gel (Invitrogen Life Technologies, São Paulo, Brazil). A sample with known genotype was used as positive control and ultra-pure water was used as negative PCR control.

The 100-bp DNA molecular weight marker (Ladder, Invitrogen) was included on each gel stained with SybrSafe (Invitrogen Life Technologies, São Paulo, Brazil) and visualized under UV illumination. The reading and interpretation of agarose gels were made with LabImage L-PIX (HE) 1D-L340 (Loccus Biotechnology, São Paulo, Brazil) program. Fragments of 13, 227 and 59 bp (allele G), and fragments of 13, 118, 109 and 59 bp (allele C) were observed.

Statistical analysis

The statistical analysis was performed using the statistical package SPSS 17.0 (SPSS Inc., Chicago, IL, USA). To test the association between genotype frequency and hearing loss related to a history of occupational noise exposure, the chi-square test was performed. The Hardy-Weinberg equilibrium was tested in each group using the chi-square test. The odds ratio (OR) with a confidence interval of 95% (95% CI) was calculated. The significance level was set at 5%.

Results

Of a total of 343, the molecular genetic procedures were performed in 191 elderly. Of these, 31.9% reported a history of noise exposure, with 18.8% exhibiting hearing impairment. Of the 68.1% with no history of noise exposure, 59.2% had hearing loss. The mean age was 67.8 ± 5.3 years, with a higher proportion (58.6%) of elderly women (Table 1).

Table 1
General characteristics, allelic and genotypic frequencies among Brazilian elderly (n = 191).

Of the assessed elderly individuals, 56% were homozygous for the G allele, 7.8% were homozygous for the C allele and 36.2% were heterozygous (Table 1). The genotype distribution for IL-6 gene was in agreement with the Hardy-Weinberg equilibrium (p > 0.05).

A statistically significant association was found between the genotype and allele frequencies of the IL-6 -174 (rs1800795) gene and hearing loss among elderly adults with a history of occupational noise exposure (p < 0.001) ( Table 2). The elderly with the CC genotype were less likely to have hearing loss due to occupational noise exposure in relation to the elderly with the GG genotype (OR = 0.0124; 95% CI: 0.0023-0.0671; p < 0.0001). However, this association was not observed in the elderly group without a history of noise exposure (χ2 = 0.078; p = 0.961).

Table 2
Association between genotype frequency for the interleukin-6 G-174C gene polymorphism and hearing loss related to history of occupational noise exposure (n = 191).

Discussion

Although the mechanism and role of proinflammatory cytokines in NIHL are not well understood, it is known that the structure and expression of cytokines may be affected by genetic variation, such as single nucleotide polymorphisms (SNPs), which results in evident pathological consequences.1515. Satoh H, Firestein GS, Billings PB, Harris JP, Keithley EM. Proinflammatory cytokine expression in the endolymphatic sac during inner ear inflammation. J Assoc Res Otolaryngol. 2003;4:139-47. SNP functionality regarding gene expression is an important subject in disease-associated studies.1616. Dinarelo CA. Interleukin-1 in the pathogenesis and treatment of inflammatory diseases. Blood. 2011;117:3720-32.

In the present study, the frequencies of alleles G and C in the study population were 74.1% and 25.9%, respectively. Other studies have also demonstrated a predominance of the ancestral allele (G) ranging from 60% to 70%.2828. Trevilatto PC, Scarel-Caminaga RM, De Brito RB Jr, De Souza AP, Line SRP. Polymorphism at the position -174 of IL-6 is aasociated with susceptibility to chronic periodontitis in a Caucasian Brazilian population. J Clin Periodontol. 2003;30:438-42. Furthermore, we observed a higher frequency of GG genotype (56%), followed by GC (36.2%) and CC (7.8%). This is consistent with the aforementioned studies.2020. Costa AM, Guimarães MCM, De Souza ER, Nóbrega OT, Bezerra ACB. Interleukin-6 (G-174C) and tumour necrosis factor-alpha (G-308A) gene polymorphisms in geriatric patients with chronic periodontitis. Gerodontol. 2010;27:70-5. and 2828. Trevilatto PC, Scarel-Caminaga RM, De Brito RB Jr, De Souza AP, Line SRP. Polymorphism at the position -174 of IL-6 is aasociated with susceptibility to chronic periodontitis in a Caucasian Brazilian population. J Clin Periodontol. 2003;30:438-42.

We observed an association between the GG genotype of IL-6 and hearing loss with history of exposure to occupational noise (χ2 = 40.201; p < 0.001). The elderly with the CC genotype had lower susceptibility to hearing loss due to occupational noise exposure (OR = 0.0124; 95% CI: 0.0023-0.0671; p < 0.01) compared to elderly patients with the GG genotype. The presence of the C allele results in lower expression of IL-6 after an inflammatory stimulus, when compared with the G allele. 2929. Fishman D, Faulds G, Jeffey R, Mohamed-Ali V, Yudkin JS, Humphries S, et al. The effect of novel polymorphisms in the interleukin-6 (IL-6) gene on IL-6 transcription and plasma IL-6 levels, and an association with systemic-onset juvenile chronic arthritis. J Clin Investigation. 1998;102:1369-76. It is suggested that the CC genotype confers a protective effect against the development of comorbidities, which can be verified in this analysis, in which the frequency the C allele in the hearing loss group without exposure to noise was higher than in the NIHL group.

The studies by Hirose et al.66. Hirose K, Discolo CM, Keasler JR, Ransohoff R. Mononuclear phagocytes migrate into the murine cochlea after acoustic trauma. J Comp Neurol. 2005;489:180-94. and Fujioka et al.1111. Fujioka M, Kanzaki S, Okano HJ, Masuda M, Ogawa K, Okano H. Proinflammatory cytokines expression in noise-induced damaged cochlea. J Neurosci Res. 2006;83:575-83. pointed out the possibility of inflammatory changes in the cochlea after noise stimuli. Fujioka et al.1111. Fujioka M, Kanzaki S, Okano HJ, Masuda M, Ogawa K, Okano H. Proinflammatory cytokines expression in noise-induced damaged cochlea. J Neurosci Res. 2006;83:575-83. demonstrated for the first time the induction of pro-inflammatory cytokines in the cochlea exposed to the noise and observed increased expression of interleukins TNF-α, IL-1β and IL-6 3 h after noise exposure. These authors pointed out that this is a self-protection mechanism against exposure to large amounts of noise and that the consequent over-expression of interleukins for long periods must worsen cochlear function.

The findings by So et al.1212. So H, Kim H, Lee JH, Park C, Kim Y, Kim E, et al. Cisplatin cytotoxicity of auditory cells requires secretions of proinflammatory cytokines via activation of ERK and NFkappa. B J Assoc Res. 2007;8:338-55. clearly demonstrated that IL-6 acts as an inducer of acute cochlear damage, considering that a transient up-regulation of IL-6 occurred after exposure of animals with cisplatin. Some studies have shown that the inhibition of IL-6 production has a cochlear protective effect. Wakabayashi et al.2121. Raosoft Sample Size Calculator [site da Internet; acessado 10 Jun 2013] Disponível em: http://www.raosoft.com/samplesize.html
http://www.raosoft.com/samplesize.html...
used anti-IL-6 (MR10-1) antibody to inhibit IL-6 production in mice, identifying a protective effect for noise-induced cochlear injury. Along this same line of investigation, Nakamoto et al.1414. Nakamoto T, Mikuriya T, Sugahara K, Hirose Y, Hashimoto T, Shimogori H, et al. Geranylgeranylacetone suppresses noise-induced expression of proinflammatory cytokines in the cochlea. Auris Nasus Larynx. 2012;39:270-4. found that the drug geranyl-geranyl-acetone (GGA) stimulates expression of the HSF gene which, in turn, inhibits inflammation in the cochlea, protecting the inner ear.

It is noteworthy that this strong evidence of the involvement of IL-6 with NIHL has been verified by several studies in animal models.1111. Fujioka M, Kanzaki S, Okano HJ, Masuda M, Ogawa K, Okano H. Proinflammatory cytokines expression in noise-induced damaged cochlea. J Neurosci Res. 2006;83:575-83. , 1212. So H, Kim H, Lee JH, Park C, Kim Y, Kim E, et al. Cisplatin cytotoxicity of auditory cells requires secretions of proinflammatory cytokines via activation of ERK and NFkappa. B J Assoc Res. 2007;8:338-55. , 1313.Wakabayashi K, Fujioka M, Kanzaki S, Okano H J, Shibata S, Yamashita D, et al. Blockade of interleukin-6 signaling suppressed cochlear inflammatory response and improved hearing impairment in noise-damaged mice cochlea. Neuroscience Res. 2010;66:345-52. and 1414. Nakamoto T, Mikuriya T, Sugahara K, Hirose Y, Hashimoto T, Shimogori H, et al. Geranylgeranylacetone suppresses noise-induced expression of proinflammatory cytokines in the cochlea. Auris Nasus Larynx. 2012;39:270-4. Evidence in human beings related to pro-inflammatory interleukins and NIHL was recently reported by our group, when we investigated the association of polymorphisms in the IL-1β gene and NIHL.3030. Carvalho LCL, Marchiori LM, Melo JJ, Maciel SM, Poli-Frederico RC. Interleukin-1b gene polymorphism and hearing loss related to the history of occupational noise exposure in Brazilian elderly. Noise Health. 2013;15:160-4. That study demonstrated that the polymorphism in this gene is not associated with NIHL in the assessed elderly subjects. However, the findings of the present study showed that polymorphisms in the IL-6 gene should contribute to the risk of NIHL in the Brazilian elderly.

Considering this context, the identification of the polymorphism in the IL-6 gene in patients with a history of hearing loss related to occupational exposure to noise may help us to understand individual variability of inflammation resulting in hearing loss, as well as, in the future, to suggest genotyping individuals for this particular polymorphism (rs1800795) in order to determine individual susceptibility, providing a new strategy for the prevention of hearing loss related to noise exposure.

Conclusions

An association between the presence of IL-6 gene polymorphism and hearing loss associated with occupational noise exposure was found in elderly Brazilians. Studies based on large populations and with different ethnicities should be performed to confirm our findings.

References

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    Kinsella K, He W. An aging world: 2008. Washington, USA: Census Bureau; 2009.
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    Veras R. Population aging today: demands, challenges and innovations. Rev Saude Publica. 2009;43:548-54.
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    Nudelmann AA, Costa EA, Seligman J, Ibañez RN. Perda auditiva induzida pelo ruído. Porto Alegre: Bagagem; 1997
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    Keithley EM, Wang X, Barkdull GC. Tumor necrosis factor alpha can induce recruitment of inflammatory cells to the cochlea. Otol Neurotol. 2008;29:854-9.
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    Hirose K, Discolo CM, Keasler JR, Ransohoff R. Mononuclear phagocytes migrate into the murine cochlea after acoustic trauma. J Comp Neurol. 2005;489:180-94.
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    Satoh H, Firestein GS, Billings PB, Harris JP, Keithley EM. Tumor necrosis factor-alpha, an initiator, and etanercept, an inhibitor of cochlear inflammation. Laryngoscope. 2002;112:1627-34.
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    Jokay I, Papp Z, Soos G, Sziklai I, Dezso B. The effect of chronic otitis media on the immunoreactivity of human inner ear. Eur Arch Otorhinolaryngol. 2001;258:529-32.
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    Okano T, Nakagawa T, Kita T, Kada S, Yoshimoto M, Nakahata T, et al. Bone marrow-derived cells expressing Iba1 are constitutively present as resident tissue macrophages in the mouse cochlea. J Neurosci Res. 2008;86:1758-67.
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    Tan BT, Lee MM, Ruan R. Bone marrow-derived cells that home to acoustic deafened cochlea preserved their hematopoietic identity. J Comp Neurol. 2008;509:167-79.
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    Fujioka M, Kanzaki S, Okano HJ, Masuda M, Ogawa K, Okano H. Proinflammatory cytokines expression in noise-induced damaged cochlea. J Neurosci Res. 2006;83:575-83.
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    So H, Kim H, Lee JH, Park C, Kim Y, Kim E, et al. Cisplatin cytotoxicity of auditory cells requires secretions of proinflammatory cytokines via activation of ERK and NFkappa. B J Assoc Res. 2007;8:338-55.
  • 13
    Wakabayashi K, Fujioka M, Kanzaki S, Okano H J, Shibata S, Yamashita D, et al. Blockade of interleukin-6 signaling suppressed cochlear inflammatory response and improved hearing impairment in noise-damaged mice cochlea. Neuroscience Res. 2010;66:345-52.
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    Nakamoto T, Mikuriya T, Sugahara K, Hirose Y, Hashimoto T, Shimogori H, et al. Geranylgeranylacetone suppresses noise-induced expression of proinflammatory cytokines in the cochlea. Auris Nasus Larynx. 2012;39:270-4.
  • 15
    Satoh H, Firestein GS, Billings PB, Harris JP, Keithley EM. Proinflammatory cytokine expression in the endolymphatic sac during inner ear inflammation. J Assoc Res Otolaryngol. 2003;4:139-47.
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    Dinarelo CA. Interleukin-1 in the pathogenesis and treatment of inflammatory diseases. Blood. 2011;117:3720-32.
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    Hwang JH, Chen JC, Yang SY, Wang MF, Chan YC. Expression of tumor necrosis factor-a and interleukin-1b genes in the cochlea and inferior colliculus in salicylate-induced tinnitus. J Neuroinflammation. 2011;8:30.
  • 18
    Santtila S, Savinainen K, Hurme M. Presence of the IL-1RA allele 2 (IL1RN*2) is associated with enhanced IL-1beta production in vitro. Scand J Immunol. 1998;47:195-8.
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    Bioque G, Crusius JB, Koutroubakis I, Bouma G, Kostense PJ, Meuwissen SG, et al. Allelic polymorphism in IL-1 beta and IL-1 receptor antagonist (IL-1Ra) genes in inflammatory bowel disease. Clin Exp Immunol. 1995;102:379-83.
  • 20
    Costa AM, Guimarães MCM, De Souza ER, Nóbrega OT, Bezerra ACB. Interleukin-6 (G-174C) and tumour necrosis factor-alpha (G-308A) gene polymorphisms in geriatric patients with chronic periodontitis. Gerodontol. 2010;27:70-5.
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    » http://www.raosoft.com/samplesize.html
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    » http://www.fonoaudiologia.org.br/publicacoes/ManualdeAudiologia.pdf
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    Olerup O, Zetterquist H. HLA-DR typing by PCR amplification with sequence-specific primers (PCR-SSP) in 2 hours: An alternative to serological DR typing in clinical practice including donor-recipient matching in cadaveric transplantation. Tissue Antigens; 1992;39:225-35.
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    Olomolaiye O, Wood NA, Bidwell JL. A novel NlaIII polymorphism in the human IL-6 promoter. Eur J Immunogenet. 1998; 25:267.
  • 28
    Trevilatto PC, Scarel-Caminaga RM, De Brito RB Jr, De Souza AP, Line SRP. Polymorphism at the position -174 of IL-6 is aasociated with susceptibility to chronic periodontitis in a Caucasian Brazilian population. J Clin Periodontol. 2003;30:438-42.
  • 29
    Fishman D, Faulds G, Jeffey R, Mohamed-Ali V, Yudkin JS, Humphries S, et al. The effect of novel polymorphisms in the interleukin-6 (IL-6) gene on IL-6 transcription and plasma IL-6 levels, and an association with systemic-onset juvenile chronic arthritis. J Clin Investigation. 1998;102:1369-76.
  • 30
    Carvalho LCL, Marchiori LM, Melo JJ, Maciel SM, Poli-Frederico RC. Interleukin-1b gene polymorphism and hearing loss related to the history of occupational noise exposure in Brazilian elderly. Noise Health. 2013;15:160-4.
  • Funding This study was funded by FUNADESP / Brazil (Fundação Nacional de Desenvolvimento do Ensino Superior Particular).
  • Please cite this article as: Braga MP, Maciel SM, Marchiori LL, Poli-Frederico RC. Association between interleukin-6 polymorphism in the -174 G/C region and hearing loss in the elderly with a history of occupational noise exposure. Braz J Otorhinolaryngol. 2014;80:373-8.
  • ☆☆
    Institution: Universidade Norte do Paraná (UNOPAR), Londrina, PR, Brazil.

Publication Dates

  • Publication in this collection
    Sep-Oct 2014

History

  • Received
    29 July 2013
  • Accepted
    01 Feb 2014
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