PubMed Health⌕ Search

Biomedical subjects

M Ozen

Publications and source records attributed to M Ozen.

At least 19 recordsLinked to original sources

Rubella seroprevalence in an unvaccinated pregnant population in Malatya, Turkey.

BACKGROUND: Controlling congenital rubella by 2010 is one of the targets of the World Health Organization. Most European countries currently include rubella vaccine in their national immunization programmes, but not yet in Turkey. OBJECTIVES: To define rubella seroprevalence in pregnancy in Malatya, Turkey. STUDY DESIGN: A cross-sectional interview survey was conducted among pregnant women living in Malatya province from November 2003 to May 2004, together with a follow-up component. METHODS: Stratified probability proportional to size sampling methodology. A total of 824 pregnant women from 60 clusters were enrolled. After obtaining informed consent, participants' socio-demographic and fertility characteristics were collected by interview questionnaire. Various blood samples were drawn. After storing serum samples at -20 degrees C for 6 months, anti-rubella IgM and IgG titres were studied by micro ELISA. Only 803 sera were eligible for serological study. RESULTS: Of the 803 samples tested for rubella antibodies, 753 cases (93.8%) had anti-rubella IgG positivity, indicating past infection. Five of the pregnant women (0.6%) had both anti-rubella IgM and IgG positive results, suggesting a recent infection. The remaining 45 women (5.6%) were seronegative for both antibodies. Seroprevalence was not associated with age or urban/rural residency. All the five anti-rubella IgM positive women were in the second trimester of pregnancy. CONCLUSIONS: As 5.6% of pregnant women were susceptible to rubella during pregnancy, and five of them had already had a recent infection, immunization efforts should be directed at babies and adolescents.

Adolescent↗

Gene expression profiling and analysis of signaling pathways involved in priming and differentiation of human neural stem cells.

Human neural stem cells have the ability to differentiate into all three major cell types in the CNS including neurons, astrocytes and oligodendrocytes. The multipotency of human neural stem cells shed a light on the possibility of using stem cells as a therapeutic tool for various neurological disorders including neurodegenerative diseases and neurotrauma that involve a loss of functional neurons. We have discovered previously a priming procedure to direct primarily cultured human neural stem cells to differentiate into almost pure neurons when grafted into adult CNS. However, the molecular mechanism underlying this phenomenon is still unknown. To unravel transcriptional changes of human neural stem cells upon priming, cDNA microarray was used to study temporal changes in human neural stem cell gene expression profile during priming and differentiation. As a result, transcriptional levels of 520 annotated genes were detected changed in at least at two time points during the priming process. In addition, transcription levels of more than 3000 hypothetical protein encoding genes and EST genes were modulated during the priming and differentiation processes of human neural stem cells. We further analyzed the named genes and grouped them into 14 functional categories. Of particular interest, key cell signal transduction pathways, including the G-protein-mediated signaling pathways (heterotrimeric and small monomeric GTPase pathways), the Wnt signaling pathway and the TGF-beta pathway, are modulated by the neural stem cell priming, suggesting important roles of these key signaling pathways in priming and differentiation of human neural stem cells.

Bone Morphogenetic Proteins↗

Long-term beneficial effects of dexamethasone on intellectual and neuropsychological outcome of children with pneumococcal meningitis.

A Substantial ratio of bacterial meningitis survivors suffers mild or serious intellectual and neuropsychological handicaps. We organized eighty subjects into three groups: 1) Pneumococcal meningitis (PM) who did not receive dexamethasone, 2) PM who received dexamethasone, 3) Other bacterial meningitis with different etiology. All subjects underwent Bender Visual Motor Gestalt test and age-appropriate Intelligence quotient (IQ) tests. The mean full-scale IQ scoring fell within normal range (90+/-17) in the post-meningitic cohort. There was no statistical difference between two pneumococcal groups regarding full scale IQ testing (88+/-16 and 91+/-18) and Bender-Gestalt scoring (4.0+/-3.3 and 3.8+/-2.6), respectively. However, the subjects with full scale IQ score <85 (below the average) were statistically less in the group with steroid therapy. PM patients who received dexamethasone therapy had statistically better academic performance. As a result, adjuvant steroid therapy has no significant impact on overall intellectual tests in PM subjects. However, dexamethasone seems to diminish development of below the average IQ scoring in PM cases. In addition, PM subjects who received steroids showed better academic achievement. These findings may support the idea of dexamethasone administration prior to first antibiotic dose in PM subjects.

Adolescent↗

The role of fibroblast growth factors and their receptors in prostate cancer.

Prostate cancer is the most common malignancy in men in the USA and the second leading cause of cancer deaths. Fibroblast growth factors (FGFs), including FGF1 (acidic FGF), FGF2 (basic FGF), FGF6 and FGF8 are all expressed at increased levels in prostate cancer as paracrine and/or autocrine growth factors for the prostate cancer cells. In addition, increased mobilization of FGFs from the extracellular matrix in cancer tissues can increase the availability of FGFs to cancer cells. Prostate cancer epithelial cells express all four types of FGF receptors (FGFR-1 to -4) at variable frequencies. Expression of FGFR-1 and FGFR-4 is most closely linked to prostate cancer progression, while the role of FGFR-2 remains controversial. Activation of FGF receptors can activate multiple signal transduction pathways including the phospholipase Cgamma, phosphatidyl inositol 3-kinase, mitogen-activated protein kinase and signal transducers and activators of transcription (STAT) pathways, all of which play a role in prostate cancer progression. Sprouty proteins can negatively regulate FGF signal transduction, potentially limiting the impact of FGF signaling in prostate cancer, but in a significant fraction of prostate cancers there is decreased expression of Sprouty1 mRNA and protein. The effects of increased FGF receptor signaling are wide ranging and involve both the cancer cells and surrounding stroma, including the vasculature. The net result of increased FGF signaling includes enhanced proliferation, resistance to cell death, increased motility and invasiveness, increased angiogenesis, enhanced metastasis, resistance to chemotherapy and radiation and androgen independence, all of which can enhance tumor progression and clinical aggressiveness. For this reason, the FGF signaling system it is an attractive therapeutic target, particularly since therapies targeting FGF receptors and/or FGF signaling can affect both the tumor cells directly and tumor angiogenesis. A number of approaches that could target FGF receptors and/or FGF receptor signaling in prostate cancer are currently being developed.

Antineoplastic Agents↗

Role of fibroblast growth factor receptor signaling in prostate cancer cell survival.

BACKGROUND: Expression of fibroblast growth factors (FGFs) is increased in a substantial fraction of human prostate cancers in vivo and in prostate cancer cell lines. Altered FGF signaling can potentially have a variety of effects, including stimulating cell proliferation and inhibiting cell death. To determine the biologic significance of altered FGF signaling in human prostate cancer, we disrupted signaling by expression of a dominant-negative (DN) FGF receptor in prostate cancer cell lines. METHODS: PC-3, LNCaP, and DU145 prostate cancer cells were stably transfected with DN FGFR constructs, and LNCaP and DU145 cells were infected with a recombinant adenovirus expressing DN FGFR-1. The effect of DN FGFR-1 expression was assessed by colony-formation assays, cell proliferation assays, flow cytometry, and cytogenetic analysis. Key regulators involved in the G(2)-to-M cell cycle transition were assessed by western blotting to examine cyclin B1 expression and by in vitro kinase assay to assess cdc2 kinase activity. RESULTS: Stable transfection of the DN FGFR-1 construct inhibited colony formation by more than 99% in all three cell lines. Infection of LNCaP and DU145 prostate cancer cells with adenovirus expressing DN FGFR-1 led to extensive cell death within 48 hours. Flow cytometry and cytogenetic analysis revealed that the DN FGFR-1 receptor led to arrest in the G(2) phase of the cell cycle before cell death. Cyclin B1 accumulated in DN FGFR-1-infected LNCaP cells, but cdc2 kinase activity was decreased. CONCLUSIONS: These findings reveal an unexpected dependence of prostate cancer cells on FGF receptor signal transduction to traverse the G(2)/M checkpoint. The mechanism for the G(2) arrest is not clear. Our results raise the possibility that FGF-signaling antagonists might enhance the cell death induced by other prostate cancer therapies.

Adenoviridae↗

Heterochromatin and interstitial telomeric DNA homology.

The purpose of this investigation was twofold. The first objective was to demonstrate that, in most of ten mammalian species commonly used in biomedical research, not all constitutive heterochromatin (C-bands) represents telomeric DNA. For example, the C-bands in human chromosomes, the long arm of the X and the entire Y chromosome of Chinese hamster, and most of the short arms of Peromyscus and Syrian hamster chromosomes are not telomeric DNA. In addition to the usual terminal telomeric DNA in the chromosomes of these mammalian species, the pericentromeric regions of seven or eight Syrian hamster chromosomes and all Chinese hamster chromosomes except pair one have pericentromeric regions that hybridize with telomeric DNA, some in C-bands and some not. The second objective was to describe a simple fluorescence in situ hybridization (FISH) reverse-printing procedure to produce black-and-white microphotographs of metaphase and interphase cells showing locations of telomeric DNA with no loss of resolution. Thus, at least three different types of heterochromatin (telomeric heterochromatin, nontelomeric heterochromatin and a combination of both) are present in these mammalian species, and this simple black-and-white reverse printing of telomeric FISH preparations can depict them economically without sacrificing clarity.

Animals↗

Interleukin-6 is an autocrine growth factor in human prostate cancer.

Prostate cancer is the most common cancer in American men and the second leading cause of cancer deaths in this group. We have found that interleukin (IL)-6 protein concentrations are increased approximately 18-fold in clinically localized prostate cancers when compared to normal prostate tissue. Normal and neoplastic prostatic epithelial cells in culture, with the exception of LNCaP cells, secrete IL-6. Addition of exogenous IL-6 to primary epithelial cells in culture or the LNCaP prostate cancer cell line leads to phosphorylation of Stat-3 and increases in net cell proliferation. The concentration of IL-6 receptor is increased eightfold in the prostate cancer tissues and is increased in the cancer cells by immunohistochemistry. The increased expression of IL-6 receptor is correlated with increased proliferation of prostate cancer cells in vivo as assessed by Ki67 immunohistochemistry. These findings strongly support the hypothesis that IL-6 acts as a significant autocrine growth factor in vivo for primary, androgen-dependent prostate cancers.

Cell Division↗

LNCaP progression model of human prostate cancer: androgen-independence and osseous metastasis.

BACKGROUND: Clinically, the lethal phenotypes of human prostate cancer are characterized by their progression to androgen-independence and their propensity to form osseous metastases. We reported previously on the establishment of androgen-independent (AI) human prostate cancer cell lines derived from androgen-dependent (AD) LNCaP cells, with androgen independence defined as the capability of prostate cancer cells to grow in castrated hosts. One of the sublines, C4-2, was found to be AI, highly tumorigenic, and metastatic, having a proclivity for metastasis to the bone. METHODS: We established the AI and bone metastatic cell sublines B2, B3, B4, and B5 from the parental C4-2 subline, using a previously established coinoculating procedure. We determined the biologic behavior of the parental and derivative LNCaP sublines in vivo and in vitro, as well as their molecular and cytogenetic characteristics. RESULTS: Unlike other human prostate cancer models, the LNCaP progression model shares remarkable similarities with human prostate cancer. We observed a comparable pattern of metastasis from the primary to the lymph node and to the axial skeleton, with a predominant phenotype of osteoblastic reaction; 25-37.5% of the animals developed paraplegia. Cytogenetic and biochemical characterizations of LNCaP sublines also indicate close similarities between human prostate cancer and the LNCaP progression model. Additional chromosomal changes were detected in B2-B5 sublines derived from C4-2 bone metastases. These LNCaP sublines were found to grow faster under anchorage-dependent but not -independent conditions. The in vitro invasion and in vivo metastatic potential of these LNCaP sublines surprisingly correlated with anchorage-dependent and not -independent growth. The derivative LNCaP sublines when cultured in vitro produced a substantially higher (20-30-fold) amount of basal steady-state concentrations of PSA than that of the parental LNCaP cells. PSA production was high initially, but was markedly reduced when the derivative cell lines were inoculated and allowed to grow long-term in vivo for the establishment of tumors and metastasis, suggesting that unknown host factors derived either from the prostate or the bone can effectively downregulate PSA expression by prostate tumor epithelium. CONCLUSIONS: The LNCaP model of human prostate cancer progression will help improve our understanding of the mechanisms of androgen-independence and osseous metastasis, and tumor-host determinants of PSA expression.

Animals↗

Correlation of non-random chromosomal aberrations in lymphocytes of prostate cancer patients with specific clinical parameters.

The purpose of this research was to correlate non-random chromosomal aberrations in the peripheral blood lymphocytes (PBLs) of prostate cancer patients with specific clinical parameters. Peripheral blood samples were analyzed from 59 informative prostate cancer patients. Non-random chromosomal alterations detected in the PBLs and their correlation with any specific clinical parameters were analyzed statistically. A comparison was made between specific chromosomal abnormalities in the patients having an early (<65 years) or late (> or =65 years) age at disease onset, low-grade (Gleason grade <7) or high-grade (Gleason grade > or =7) tumors, a low (<10 ng/ml) or high (> or =10 ng/ml) prostate-specific antigen (PSA) level, and androgen-sensitive or -insensitive disease. In examining the specific chromosomal breakpoints, the regions 1p13, 2q21, 3p21, 4q13, 5q31, 6p21, 7p15, 7p13, 7q32, 10p11, 10q26, 11p15, 11p11, 14q12, and 16q12 showed breaks in at least four cases. Chromosome 15 (P=0. 045) was significantly altered in patients having a PSA value greater than or equal to 10, while it (P=0.017) and chromosome 19 (P=0.036) were significantly altered in patients having a PSA value greater than or equal to 20. In addition, chromosomes 5 (P=0.032), 8 (P=0.020), 16 (P=0.009), and 20 (P=0.047) were significantly altered in patients having a Gleason grade greater than 7. Also, chromosomes 2 (P=0.020) and 3 (P=0.044) were significantly altered in patients who had early disease onset. Additionally, chromosome 10 (P=0.041) was significantly altered in patients having metastasis, and chromosomes 4 (P=0.006) and 7 (P=0.028) were significantly altered in patients having androgen-insensitive disease. In spite of the small subset of patients, chromosome 8 (p=0.003) was significantly altered in patients having small cell carcinoma of the prostate. From these results we conclude that non-random chromosomal aberrations present in PBLs of prostate cancer patients can be correlated with specific clinical parameters. These correlations can be used to identify a prostate cancer patient's risk response to therapy.

Age of Onset↗

Amplification of the Y chromosome in three murine tumor cell lines transformed in vivo by different human prostate cancers.

Conventional and molecular cytogenetic analyses of three murine cancer cell lines that had been induced in male athymic mice by the injection of three different human prostate cancer cell lines revealed selective amplification of the Y chromosome. In particular, analysis of metaphase and interphase nuclei by fluorescence in situ hybridization (FISH) with the mouse Y chromosome-specific DNA painting probe revealed the presence of various numbers of Y chromosomes, ranging from one to eight, with a large majority of nuclei showing two copies (46.5-60.1%). In Interphase nuclei, the Y chromosomes showed distinct morphology, allowing identification irrespective of whether the preparations were treated for 15 min or for 5 h with Colcemid, a chemical known to cause chromosome condensation. However, FISH performed on human lymphocyte cultures with chromosome-specific DNA painting probes other than the Y chromosome did not reveal condensed chromosome morphology in interphase nuclei even after 12 h of Colcemid treatment. Our FISH results indicate that (1) the Y chromosome is selectively amplified in all three cell lines; (2) the mouse Y chromosome number is comparable in both interphase and metaphase cells: (3) the Y chromosome number varies between one and eight, with a large majority of cells showing two or three copies in most interphase nuclei; (4) the condensation of the Y chromosome is not affected by the duration of Colcemid treatment but by its inherent DNA constitution; and (5) the number of copies of the Y chromosome is increased and retained not only in human prostate tumor cell lines but also in murine tumors induced by these prostate tumor cell lines.

Animals↗

Aneuploidy index in blood: a potential marker for early onset, androgen response, and metastasis in human prostate cancer.

OBJECTIVES: To investigate whether the frequency of chromosome abnormalities in peripheral blood lymphocytes defined as the aneuploidy index in blood (AnIB) can be used as a clinical marker of early age onset, androgen response, and metastasis in human prostate cancer. METHODS: Peripheral blood samples were collected from 80 patients with prostate cancer, and chromosome preparations were made from 72-hour cultures after mitotic block. The AnIB of 59 informative cases was compared with several parameters, including age at disease onset, Gleason grade of tumor, clinical stage of tumor, metastasis, and prostate-specific antigen (PSA) level. RESULTS: Patients with AnIB levels greater than 3 had a significantly higher incidence of metastasis (P = 0.022), androgen-independent disease (P = 0.002), and early age at disease onset (age at diagnosis less than 65 years) (P = 0.002) compared with the patients with lower AnIB (less than 3) levels. In addition, patients with AnIB levels greater than 5 had higher PSA levels (greater than 20 ng/mL) (P = 0.029) than patients with AnIB levels less than 5. CONCLUSIONS: Chromosome abnormalities can be detected in the peripheral lymphocytes of patients with prostate cancer, and AnIB can be used as an early diagnostic and predictive marker for prostate cancer metastasis and androgen-independent disease.

Age of Onset↗

Amplification of telomeric DNA directly correlates with metastatic potential of human and murine cancers of various histological origin.

Telomeres, repeated DNA sequences (T2AG3)n that guard the ends of chromosomes, serve as a checkpoint for cell-cycle progression and regulate cell senescence and apoptosis. Loss of the telomeric repeats promotes genomic instability, which is the hallmark of most cancer cells. Whether this loss differs among tumor cells with malignant potential is unknown and was the goal of this study. An all-human telomeric DNA probe was used to perform fluorescence in situ hybridization (FISH) and the telomeric signals in interphase nuclei were quantitated using a computer software package. Southern blot analysis was carried out to measure terminal restriction fragment length (TRFL) in multiple cancer cell lines, including nonmetastatic and metastatic human breast, lung, prostate, colon, brain, and renal carcinomas, as well as human and murine melanoma clones and somatic cell hybrids. The metastatic capability of all cell lines, clones and somatic cell hybrids was evaluated subsequent to orthotopic implantation into nude mice. FISH preparations with telomeric DNA probes showed that the mean percent telomeric area in the metastatic nuclei was significantly greater than their nonmetastatic counterparts and Southern blotting in selected samples confirmed our findings. These data suggest that amplification of telomeres is directly correlated with invasive and metastatic potential of murine or human tumor cells.

Animals↗

Structural alterations of chromosome 5 in twelve human prostate cancer cell lines.

Neoplastic transformation, cancer progression, and metastasis are determined by a series of well-defined changes that take place in target tissue cells. Genetic alterations associated with human prostate carcinogenesis are not well defined. Some chromosomal changes, including gain of chromosomes 7, 12, 17, and X and loss of heterozygosity in chromosomes 8p, 10q, 16q, 17p, and 18q, have been reported. We examined five newly established and eight previously established prostate cancer cell lines before and after subcutis and orthotopic injection into nude mice and observed that structural alterations of chromosome 5 were present in all of the cell lines except the parental LNCaP. The fluorescence in situ hybridization preparations with the use of whole chromosome 5 DNA painting probe confirmed our Giemsa-banding data. Alterations of chromosome 5 consisted of t(1;5)(p36;q15), t(5;?)(p11;?), del(5)(q23q35) in the SP2964(= ARCaP) cell line; t(5;8)(p15;q12), i(5)(p10), t(5;15)(q11;p11) in the SP3031 cell line; t(5;?;15) (q15;?;p11), t(5;7;14)(q31;p11-q32;q11), in the SP3173 and SP3241 cell lines (derived from the same patient); del(5)(q23-33) and t(5;7;14)(q31;p11-q32;q11) in the SP3316 cell line; t(3;5)(q21;q35) in the SP2884 cell line; t(5;5)(p15;q11) in the SP2356 cell line; i(5)(p10),t(5;?)(q23;?) in the DU-145 cell line; and i(5)(p10), t(5;?)(q11;?) and t(2;5)(q15;q15) in the PC-3 cell line. Because, in most cases, alteration of chromosome 5 resulted in the partial or complete loss of 5q, we conjectured that 5q might contain one or more tumor-suppressor genes for human prostate cancer development.

Chromosome Aberrations↗

Telomeric DNA: marker for human prostate cancer development?

BACKGROUND: Telomeres that protect chromosomes at both ends are shortened with each somatic cell division through replication-dependent sequence loss at DNA termini. The chromosomes with shortened telomeres tend to become unstable, leading to cell death. Due largely to reactivation/upregulation of telomerase, a ribonucleoprotein that adds nucleotide sequences onto chromosome ends, cancer cells become immortal and neoplastically transformed. METHODS: The purpose of the present study was to study three newly established human prostate cancer cell lines and three prostate-derived fibroblastic cell cultures at different passages for telomeric DNA signal intensity, telomeric restriction fragment length (TRFL), telomerase activity, and spontaneous apoptotic index. RESULTS: Compared with the three fibroblastic cell cultures, the three new prostate cancer cell lines showed: 1) telomerase activity, 2) stronger telomeric signals, 3) relatively longer TRFLs, and 4) much lower apoptotic indices. On the other hand, three fibroblastic cell cultures showed: 1) no telomerase activity, 2) weaker telomeric signals, 3) shorter TRFLs (fibroblasts derived from surrounding tissue of prostate tumor showed intermediate TRFLs), and 4) comparatively higher apoptotic indices. CONCLUSIONS: Based on these results, we conclude that telomeric DNA signal intensity, TRFL, and telomerase activity can be used to distinguish prostate cancer cells from adjacent fibroblasts.

Apoptosis↗

Specific histologic and cytogenetic evidence for in vivo malignant transformation of murine host cells by three human prostate cancer cell lines.

The chromosomal constitutions of three murine cell lines that developed in vitro from tumors that grew in nude mice after orthotopic and ectopic injections of three human prostate tumor cell lines were examined by histopathology, conventional G-banding, and with fluorescence in situ hybridization techniques. All three murine cell lines showed unique marker chromosomes involving mouse chromosome 12, with a common break point. Histopathologic evidence from a murine prostate gland into which SP 3031 cells had been injected indicated dysplastic glandular epithelium and carcinomatous areas. These observations further indicate that: (a) human prostate tumors are capable of transforming host organ cells, (b) host cells have specific chromosomal alterations that may be associated with transformation, and (c) the process of host cell transformation can be demonstrated in histological sections. Although cancer cell heterogeneity and drug-resistant phenotypes are caused by additional genetic alterations and clonal evolution of the original tumor, transformation of the host's distant organ cells may also contribute because most therapies are directed only to the original cancer cells.

Animals↗

Establishment of two human prostate cancer cell lines derived from a single bone metastasis.

Human prostate cancer cell lines are particularly difficult to establish, and most existing cell lines do not exhibit features commonly seen in human prostate cancer. Most available models either grow only in vivo as xenografts or are androgen insensitive and fail to express prostate-specific antigen (PSA). The lack of functionally relevant model systems of advanced prostate cancer has limited prostate cancer research and therapy development. Of 30 processed samples derived from patients with prostate cancer, we established two cell lines (MDA PCa 2a and MDA PCa 2b) that express PSA and androgen receptor, grow in vitro, and are androgen sensitive. Cells from these lines produced tumors in nude mice when injected either s. c. or orthotopically (intraprostatic). Both cell lines were established from a bone metastasis of a patient whose cancer was exhibiting androgen-independent growth. Although both were derived from two samples of the same specimen, they have different genetic features (as assessed by karyotype analysis) and different phenotypes (e.g., morphology and growth rate). It is likely that they are distinct clones isolated by the use of different culture procedures and reflect the genetic heterogeneity of the tumor. These new cell lines are the first available derived from a bone metastasis of an androgen-independent prostatic adenocarcinoma that grow both in vivo and in vitro and have retained PSA expression and androgen sensitivity. They therefore constitute important model systems to address critical questions related to the androgen-independent growth of human prostate cancer and to the complex process of bone metastasis.

Androgens↗

Ag-NOR studies in a human lymphocyte culture: are variants localized to specific chromosomes?

The genomic activity and polymorphisms of nucleolus organizer regions (NORs) were studied in an individual with routinely used AgNO3 and Q-banding techniques. The results demonstrate that (a) the mean number of NORs per metaphase spread was 7.4, (b) chromosomes 14, 13, 15, and 21 showed variations of Ag-NOR in decreasing order, (c) chromosome 22 did not show a polymorphism in any cell examined, and (d) both chromosomes 14 showed silver staining in most cells. Unlike many earlier reports indicating that NOR variants were constitutional in each individual, our present case represented a mosaic pattern of polymorphism involving most of the D- and G-group chromosomes.

Cells, Cultured↗

Audiometry in chronic renal failure before and after intermittent haemodialysis.

In seven cases, audiometric studies were carried out immediately before and after haemodialysis. Hearing was found to be affected in all cases, and the impairment was particularly significant in higher frequency ranges. Following haemodialysis an average improvement of 20 dB was found for the highest frequencies, and in most cases a narrowing of the bone-air gap was also observed. As the improvement was reflected mainly in serum osmolality, BUN and fluid retention in the post-dialysis stage, it was thought that the mechanism reversing the hearing impairment might be due to these parameters.

Adolescent↗