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Biomedical subjects

Margaret R Spitz

Publications and source records attributed to Margaret R Spitz.

At least 19 recordsLinked to original sources

Increased plasma levels of angiogenin and the risk of bladder carcinoma: from initiation ot recurrence.

BACKGROUND: Angiogenesis is a well known prerequisite for tumor growth and metastasis. It is believed that angiogenin initiates cell migration and aids cell proliferation. Based on this, the authors hypothesized that individuals who had increased plasma levels of angiogenin were at an elevated risk for carcinoma of the urinary bladder. METHODS: In this ongoing case-control study, the authors used an enzyme-linked immunosorbent assay to compare plasma levels of angiogenin in 209 patients with bladder carcinoma and in 208 healthy control participants who were matched according to age (+/- 5 years), gender, and ethnicity. RESULTS: The mean plasma angiogenin concentration was significantly higher in patients compared with controls (343.2 ng/mL vs. 308.0 ng/mL, respectively; P < 0.01). High plasma angiogenin levels were associated with a two-fold increased risk for bladder carcinoma. Moreover, in patients who had superficial bladder carcinoma, plasma angiogenin levels were significantly higher among those who had recurrent disease than in those who were without recurrence (P < 0.01). Similarly, patients who had superficial bladder carcinoma with higher angiogenin levels had a shorter recurrence-free survival than patients who had lower angiogenin levels (P < 0.01). Finally, elevated angiogenin levels were associated with an increased recurrence risk, with hazard ratio of 2.85. CONCLUSIONS: The results of this study demonstrated that the plasma levels of angiogenin were significantly higher in patients who had bladder carcinoma compared with healthy control participants and in patients with superficial bladder carcinoma who had recurrent disease compared with patients who were without recurrence. Therefore, an elevated plasma level of angiogenin may serve as a novel predictor for the risk of bladder carcinoma.

Biomarkers, Tumor↗

Effects of 9-cis-retinoic acid on the insulin-like growth factor axis in former smokers.

PURPOSE: Insulin-like growth factor (IGF) axis has been associated with the risk of lung cancer. 9-cis-retinoic acid (9-cis-RA) has shown potential chemopreventive activities in former smokers. This study was designed to evaluate the effects of 9-cis-RA on IGF axis in former smokers to identify any benefit the retinoid may have in preventing lung cancer. PATIENTS AND METHODS: Serum concentrations of IGF-I, IGF binding protein (IGFBP)-3, and their molar ratio (IGF-I/IGFBP-3) were measured with radioimmunoassay kits in stored blood samples from the participants of an original chemoprevention trial. The participants had ceased smoking for at least 12 months and were randomly assigned to receive 3 months of daily oral 9-cis-RA (100 mg) or placebo. All statistical tests were two-sided. RESULTS: A total of 111 samples from the study's baseline and 84 samples from the 3 months treatment were analyzed. The serum concentrations of IGF-I and IGF-I/IGFBP-3 at baseline were significantly lower in female than in male participants. After 3 months of treatment, the serum level of IGF-I and IGF-I/IGFBP-3 were significantly lower in the 9-cis-RA group than in the placebo group (P = .03 and P < .01, respectively), but the IGFBP-3 level was significantly higher (P = .03). CONCLUSION: 9-cis-RA treatment modulated the IGF axis in former smokers, suggesting that the IGF axis is a potential target for the chemopreventive activities of 9-cis-RA and that the serum concentrations of IGF, IGFBP-3, and IGF-I/IGFBP-3 could serve as surrogate end point biomarkers of 9-cis-RA treatment.

Adult↗

Methylenetetrahydrofolate reductase polymorphisms and risk of squamous cell carcinoma of the head and neck: a case-control analysis.

Folate deficiency is implicated in cancer risk that may be modulated by a genetic variation in the methylenetetrahydrofolate reductase (MTHFR) gene in folate metabolism. We hypothesized that genetic variants in MTHFR are associated with risk of squamous cell carcinoma of the head and neck (SCCHN). We genotyped 3 MTHFR polymorphisms (C677T, A1298C and G1793A) and estimated their haplotypes in a hospital-based case-control study of 537 SCCHN cases and 545 cancer-free controls. The controls were frequency-matched to the cases by age (+/- 5 years), sex, ethnicity and smoking status. We found that the MTHFR 1298AC/CC genotypes were associated with an approximately 35% reduction in risk of SCCHN (adjusted odds ratio = 0.65; 95% CI = 0.51-0.82) compared to the AA genotype. The MTHFR 677CT and 1793GA/AA genotypes were associated with nonsignificant increased risk of SCCHN compared to the 677CC and 1793GG genotypes, respectively. We estimated that there were 8 haplotypes and 16 haplotype genotypes based on these 3 variants. When we used the haplotypes and assumed that the 677T, 1298A and 1793A alleles were risk alleles, the adjusted odds ratios increased as the number of risk alleles increased: 1.00 for 0-1 variant, 1.85 (1.3-2.5) for any 2 risk alleles and 1.93 (1.4-2.7) for any 3 risk alleles. These results suggest that all 3 MTHFR polymorphisms may play a role in the susceptibility to SCCHN among non-Hispanic whites. Future studies should incorporate detailed data on alcohol consumption, dietary folate intake and related serologic measurements.

Adult↗

Roles of tumor suppressor and telomere maintenance genes in cancer and aging--an epidemiological study.

Advanced age is strikingly linked to increased incidence of cancer. To gain insight into the mechanism underlying the association between increased cancer incidence and aging in normal human physiological conditions, we used a case-control design and measured the mRNA expression levels of p53, ATM, hTERT and TRF2, the four major protectors of genomic integrity, in isolated peripheral blood lymphocytes from 202 confirmed bladder cancer (BC) patients and 199 healthy controls. Significant age effects on expression levels were observed. When we divided the study subjects into three age groups (<57, 57-65 and > or = 65), the expressions of p53, ATM and TRF2 significantly decreased with advancing age in cases (P for trend < or = 0.001, 0.01 and 0.01 for p53, ATM and TRF2, respectively). In controls, however, p53 expression significantly increased with advancing age (P for trend = 0.05). Among subjects > or = 65 years of age, the expressions of p53, ATM and TRF2 were significantly lower in cases than in controls (P = 0.003, 0.04 and 0.05 for p53, ATM and TRF2, respectively), suggesting that attenuated genomic maintenance mechanisms lead to increased cancer risk in older individuals. When we dichotomized our study population at the median age of study subjects (61 years old), low p53 expression was associated with a significantly increased BC risk in older people (OR = 2.27, 95% CI = 1.00-5.16). In addition, older subjects without detectable hTERT expression had a significantly reduced BC risk (OR = 0.41, 95% CI = 0.17-0.99). Our study provides the first epidemiologic evidence that the increased genomic instability resulting from the combination of telomere dysfunction, impaired ATM- and p53-mediated DNA damage, and/or telomere dysfunction response pathway contributes to increased cancer incidence in the elderly population.

Aged↗

Genetic polymorphisms of p21 are associated with risk of squamous cell carcinoma of the head and neck.

The p21 (Waf1/Cip1/CDKN1A) protein regulates the transition from the G1 to the S phase and has an important role in modulating cell-cycle control, apoptosis and cell growth. Two polymorphisms of the p21 gene at codon 31 (p21 C98A, dbSNP rs1801270) and at the 3' untranslated region (p21 T70C, dbSNP rs1059234) may have an effect on the protein function and may thus play a role in the development of cancer. We hypothesized that these two p21 polymorphisms are associated with the risk of squamous cell carcinoma of the head and neck (SCCHN). We tested this hypothesis in a hospital-based case-control study of 712 patients newly diagnosed with SCCHN and 1222 cancer-free controls who were frequency-matched by age, sex and ethnicity. All subjects were non-Hispanic whites. Our results showed that the variant alleles and genotypes were more common among cases than among controls (P < 0.001 and P = 0.013 for p21C70T, and P < 0.001 and P = 0.035 for p21C98A, respectively). Compared with the p21 70CC genotype, there was a significantly greater risk of SCCHN associated with the variant p21 70TC [odds ratio (OR) = 1.47, 95% confidence interval (CI) = 1.12-1.93] and combined p21 70TC/TT (OR = 1.49, 95% CI = 1.14-1.95) genotypes. Similarly, compared with the p21 98CC genotype, there was also a significantly greater SCCHN risk associated with the variant p21 98AC (OR = 1.32, 95% CI = 1.00-1.73) and combined p21 98AC/AA (OR = 1.37, 95% CI = 1.05-1.79) genotypes. When these two polymorphisms were evaluated together by the number of risk alleles, there was a significant increase in SCCHN risk that was dependent on the number of risk alleles (P(trend) = 0.001). Our results suggest that the presence of these two p21 polymorphisms may be a marker of genetic susceptibility to SCCHN.

3' Untranslated Regions↗

High mutagen sensitivity in peripheral blood lymphocytes predicts poor overall and disease-specific survival in patients with stage III non-small cell lung cancer treated with radiotherapy and chemotherapy.

PURPOSE: To investigate whether the bleomycin sensitivity assay, an in vitro peripheral blood lymphocyte assay, can predict outcome in patients with inoperable stage III non-small-cell lung cancer (NSCLC) treated with definitive radiotherapy and chemotherapy. EXPERIMENTAL DESIGN: We identified 102 patients with inoperable stage III NSCLC cell lung cancer treated with definitive radiotherapy and chemotherapy. The patients' pretreatment peripheral blood lymphocyte cultures were treated with the radiomimetic mutagen bleomycin. An index of bleomycin sensitivity was determined by counting the number of chromatid breaks in 50 metaphases. The correlation between bleomycin sensitivity (expressed as mean breaks per cell) and clinical outcome was analyzed. RESULTS: High bleomycin sensitivity (defined as a mean of >1.02 chromatid breaks/cell, representing the third quartile of bleomycin sensitivity) predicted poor disease-specific survival and overall survival. The 6-year disease-specific survival was 27% in patients with high bleomycin sensitivity compared with 46% in patients without such sensitivity (P = 0.0094). The association remained statistically significant when adjusted for smoking status, age, and radiation dose. The 6-year overall survival was 19% for patients with high bleomycin sensitivity and 29% for those without (P = 0.0193). There was a trend toward worse local regional control and worse disease-free survival among patients with high bleomycin sensitivity. There was no difference between the two groups in distant metastasis-free survival or radiation treatment-related complications. CONCLUSIONS: High bleomycin sensitivity correlated with poor overall survival and disease-specific survival in these patients with stage III NSCLC treated with radiotherapy and chemotherapy. Bleomycin sensitivity may function as a biomarker for poor clinical outcome for this group of patients.

Aged↗

An association between a NQO1 genetic polymorphism and risk of lung cancer.

NAD(P)H:quinone oxidoreductase (NQO1) is a detoxification enzyme that protects against the regeneration of reactive oxygen species chemically induced by oxidative stress, cytotoxicity, mutagenicity, and carcinogenicity. The protection conferred by NQO1 protein reduces certain environmental carcinogens, such as nitroaromatic compounds, heterocyclic amines, and possible cigarette smoke condensate. The gene coding for NQO1 has a genetic polymorphism (C-->T) at nucleotide position 609 (i.e. amino acid codon 187) of the NQO1 cDNA. This polymorphism was shown to reduce NQO1 enzyme activity, thereby diminishing the protection provided by NQO1. Therefore, we hypothesized that individuals with the variant NQO1 genotype are at higher risk for lung cancer. Using a case-control study, we genotyped the NQO1 variants successfully by PCR-RFLP in 826 lung cancer patients and 826 healthy control subjects matched for age, sex, ethnicity, and smoking status. The frequency of the NQO1 T-allele was statistically significantly different among three ethnic groups (p<0.001). In further analysis of Caucasians, the variant NQO1 genotypes (CT and TT) were associated with a marginally increased lung cancer risk (OR=1.19; 95% CI: 0.95-1.50). The elevated lung cancer risk was only evident in younger individuals (age <62 years old) (OR=1.46; 95% CI: 1.04-2.05), women (OR=1.89; 95% CI: 1.33-2.68), and never smokers (OR=1.80; 95% CI: 1.03-3.13). Furthermore, we found a statistically significant trend in the development of lung cancer at an early age in women with increasing copies of the variant allele (p=0.03). These results suggest that the NQO1 variant genotype may modulate lung cancer risk, especially in younger individuals (age<62), women, and never smokers.

Base Sequence↗

Opposing effects of emphysema, hay fever, and select genetic variants on lung cancer risk.

The authors compared histories of nonmalignant respiratory diseases (asthma, bronchitis, emphysema, hay fever, and pneumonia) in 1,553 lung cancer patients and 1,375 healthy controls enrolled in a Texas case-control study from 1995 to 2003. They incorporated data on two biologically relevant polymorphic genes, matrix metalloproteinase-1 and myeloperoxidase. Emphysema was associated with a statistically significant increased lung cancer risk (odds ratio (OR) = 2.87, 95% confidence interval (CI): 2.20, 3.76), while hay fever had a significant protective effect (OR = 0.58, 95% CI: 0.48, 0.70). Odds ratios were consistent after exclusion of respiratory disease diagnoses made up to 10 years before interview. There was little association between other respiratory diseases and lung cancer risk. Among carriers of "protective" genotypes, emphysema was associated with a 1.7-fold increased risk (95% CI: 0.84, 3.50), as compared with the substantially higher risk for persons possessing one (OR = 4.98, 95% CI: 2.94, 8.44) or two (OR = 4.23, 95% CI: 1.84, 9.73) "adverse" genotypes. For hay fever, significantly decreased risks were evident with one (OR = 0.32, 95% CI: 0.21, 0.50) or two (OR = 0.35, 95% CI: 0.19, 0.66) protective genotypes as compared with none (OR = 0.69, 95% CI: 0.30, 1.59). The biologic role of respiratory disease in lung cancer is unclear. Further study may yield new insights for identification of susceptible subgroups.

Asthma↗

Integrative epidemiology: from risk assessment to outcome prediction.

In this paper, we advance the concept of integrative epidemiology. Our unifying premise is that the same genes that are implicated in cancer risk may also be involved in a person's propensity to carcinogenic exposure and/or to modulation of therapeutic outcome. In the coming years, molecular epidemiology will play an increasingly prominent role in early detection of cancer and in identifying genetically high-risk subgroups that might benefit disproportionately from more intensive screening or chemoprevention interventions. Molecular epidemiology is also integral to pharmacogenetic research, by constructing genetic profiles that could be used to individualize therapy and to understand the functional consequences of chemoprevention, chemotherapy, or radiotherapy response. At the level of risk assessment, the focus might be on germline polymorphisms in candidate genes; for early detection, epigenetic events in these same or other genes may be relevant; and tumor tissue expression levels, loss of heterozygosity, genomic amplification, rearrangements, or somatic mutations in the same classes of genes may determine outcome. We will provide examples of how changes in the function of a single gene can contribute to susceptibility to carcinogenic exposure, predisposition to cancer development, patient prognosis, and prediction of outcome.

Carcinogens↗

Cell cycle checkpoints, DNA damage/repair, and lung cancer risk.

Given that defects in cell cycle control and DNA repair capacity may contribute to tumorigenesis, we hypothesized that patients with lung cancer would be more likely than healthy controls to exhibit deficiencies in cell cycle checkpoints and/or DNA repair capacity as gauged by cellular response to in vitro carcinogen exposure. In an ongoing case-control study of 155 patients with newly diagnosed lung cancer and 153 healthy controls, we used the comet assay to investigate the roles of cell cycle checkpoints and DNA damage/repair capability in lung tumorigenesis. The median gamma-radiation-induced and benzo(a)pyrene diol epoxide-induced Olive tail moments, the comet assay parameter for measuring DNA damage, were significantly higher in the case group (5.31 and 4.22, respectively) than in the control group (4.42 and 2.83, respectively; P < 0.001). Higher tail moments of gamma-radiation and benzo(a)pyrene diol epoxide-induced comets were significantly associated with 2.32- and 4.49-fold elevated risks, respectively, of lung cancer. The median gamma-radiation-induced increases of cells in the S and G(2) phases were significantly lower in cases (22.2% and 12.2%, respectively) than in controls (31.1% and 14.9%, respectively; P < 0.001). Shorter durations of the S and G(2) phases resulted in 4.54- and 1.85-fold increased risks, respectively, of lung cancer. Also observed were joint effects between gamma-radiation-induced increases of S and G(2) phase frequencies and mutagen-induced comets. In addition, we found that in controls, the S phase decreased as tail moment increased. This study is significant because it provides the first molecular epidemiologic evidence linking defects in cell cycle checkpoints and DNA damage/repair capacity to elevated lung cancer risk.

7,8-Dihydro-7,8-dihydroxybenzo(a)pyrene 9,10-oxide↗

Wood dust exposure and the association with lung cancer risk.

BACKGROUND: Wood dust was designated as a human carcinogen based on increased sinus and nasal cancer rates among exposed workers. However, data on an association with lung cancer have been inconclusive. METHODS: Self-reported wood dust exposure was compared between 1,368 lung cancer patients and 1,192 cancer-free adults, in a lung cancer case-control study. Epidemiological information was collected through a detailed personal interview. RESULTS: Using several definitions of wood dust exposure we consistently observed statistically significant elevated adjusted risk estimates; for example, the adjusted odds ratio (OR) for combined wood dust related occupations and industries was 3.15 (95% confidence intervals (CI) 1.45-6.86) and for an overall summary exposure measure it was 1.60 (95% CI 1.19-2.14). The association was maintained when stratified by histopathological type. Among those exposed to cigarette smoke and wood dust, 21% of the cases were attributable to biologic interaction. CONCLUSIONS: Wood dust exposure is a potential risk factor for lung cancer.

Air Pollutants, Occupational↗

Inflammatory gene polymorphisms influence risk of postoperative morbidity after lung resection.

BACKGROUND: Polymorphisms in genes encoding proteins involved in the inflammatory response may lead to a differential response to a noxious stimulus. We hypothesized that proinflammatory alleles at candidate loci would predispose patients undergoing lung resection to cardiopulmonary complications with a presumed inflammatory cause. METHODS: We determined the genotypes at six candidate loci in 155 patients who underwent 160 lung resection operations at our center. We correlated these results with data from our clinical database, constructed a model predicting the risk of postoperative complications, and assessed its adequacy using receiver operating characteristic curve methodology. RESULTS: Preexisting cardiovascular disease (p < 0.001), primary lung cancer (p = 0.009), extent of lung resection (p = 0.042), interleukin 6 genotype (p = 0.017), and tumor necrosis factor genotype (p = 0.005) were significantly associated with complications. The odds ratio for complications for rare allele homozygosity was 3.9 (95% confidence interval, 1.4 to 10.4) for interleukin 6 and 15.3 (95% confidence interval, 1.7 to 131.4) for tumor necrosis factor. In multivariate analysis we found that cardiovascular disease (p < 0.001; odds ratio, 4.0 [95% confidence interval, 1.9 to 8.6]), interleukin 6 genotype (p = 0.027; odds ratio, 1.8 [95% confidence interval, 1.1 to 3.1]), and tumor necrosis factor genotype (p = 0.011; odds ratio, 2.5 [95% confidence interval, 1.2 to 5.1]) were independently predictive of complications, with an area under the receiver operating characteristic curve for the entire model of 0.765. CONCLUSIONS: Carriage of specific alleles, and homozygosity in particular, at loci within the interleukin 6 and tumor necrosis factor genes appears to contribute to the risk of experiencing an adverse event after lung resection.

Aged↗

Mutagen sensitivity may predict lung protection by amifostine for patients with locally advanced non-small cell lung cancer treated by chemoradiotherapy.

Amifostine (AMF) has been shown to protect some normal tissues from acute effects of radiation therapy +/- chemotherapy. We enrolled 62 patients in a randomized study investigating the efficacy of AMF: 31 had concurrent chemoradiation for non-small cell lung cancer and 31 had the same treatment + AMF. AMF reduced the frequency and severity of esophagitis, pneumonitis, and neutropenic fever. We have tried to identify patients who get more benefit from AMF by checking their DNA repair capability of normal cells. It was hypothesized that DNA repair capacity from patients' lymphocytes damaged by bleomycin could predict their normal tissue sensitivity to chemoradiation and could be protected by AMF. Forty-six of the 62 patients provided pretreatment blood for assessment of mutagen sensitivity (MS) using a peripheral lymphocyte assay that infers DNA repair capacity from cellular damage remaining after in vitro mutagenic exposure and recovery. Bleomycin-induced chromosome breaks in 50 metaphases were counted and expressed as the mean number of breaks per cell. Patients with an average of more than one break/cell were deemed to exhibit the MS phenotype. Data analysis used Pearson's chi-square and Kaplan-Meier survival function estimates with Strata 8.2 statistical software. The Log-rank test was used to assess the equality of survival function using a P value of .05. Twelve patients (10 AMF, 2 control) exhibited the MS phenotype. The remaining 34 patients (13 AMF, 21 control) were considered to have normal DNA repair. There were no significant differences in overall survival, disease specific survival, or local control by MS. Those with high MS had shorter distant metastasis-free survival compared with low MS patients ( P = .029). There were no differences in severe esophagitis or neutropenic fever by MS. Both high and low MS patients from the control group developed severe lung fibrosis compared with five of 21 who had AMF ( P = .025). The incidence of grade 3/4 lung fibrosis was two of 10 with AMF compared with two of two in the control group ( P = .025) with higher MS. Higher MS was associated with shorter distant metastasis-free survival and more frequent grade 3/4 lung fibrosis. AMF reduced the incidence of grade 3/4 lung fibrosis among higher MS. These data suggest that MS might help identify subgroups of patients who could receive more benefit from AMF with respect to lung damage.

Adult↗

Polymorphisms and haplotypes of serine hydroxymethyltransferase and risk of squamous cell carcinoma of the head and neck: a case-control analysis.

Low dietary intake of fruits and vegetables, particularly folate deficiency, has been associated with the risk of squamous cell carcinoma of the head and neck (SCCHN). We hypothesized that polymorphisms of the cytosolic serine hydroxymethyltransferase (SHMT1) gene involved in folate-dependent, one-carbon metabolism are associated with SCCHN risk. In a hospital-based, case-control study of 721 non-Hispanic white SCCHN patients and 1,234 control subjects, frequency-matched by age and sex, three known SHMT1 polymorphisms (34761C>T, 34840C>G and 34859C>T) were genotyped. It was found that none of these three polymorphisms alone had a significant main effect on the risk of SCCHN. However, when the three polymorphisms were evaluated together by the number of the variant (risk) haplotype alleles (i.e. 34761 T, 34840G or 34859 T), the risk of SCCHN was significantly increased in a dose-response manner as the number of variant haplotype alleles increased compared to those with zero variant alleles [adjusted odd ratio (OR)=1.39, 95% confidence interval (CI)=1.14-1.70 for 1-3 variant alleles and OR=1.46, 95% CI=1.09-1.97 for 4-6 variant alleles; Ptrend=0.001]. In stratification analysis, this significant association was confined to younger men (<or=64 years), ever smokers, ever drinkers and patients whose primary tumor site was in the pharynx or larynx. In conclusion, these three SHMT1 polymorphisms may play a joint role in the etiology of SCCHN in a non-Hispanic white population.

Aged↗

Polymorphisms of methionine synthase and methionine synthase reductase and risk of lung cancer: a case-control analysis.

Although tobacco is the major lung cancer risk factor, folate deficiency has also been implicated as a risk. Methionine synthase (MS; gene symbol, MTR) and methionine synthase reductase (MSR; gene symbol, MTRR) play important roles in the folate metabolism pathway. It was hypothesized that polymorphisms of MTR and MTRR are associated with lung cancer risk and interact with dietary intake of folate-related nutrients in lung cancer etiology. In a hospital-based, case-control study of 1,035 lung cancer cases and 1,148 controls of non-Hispanic whites, frequency matched by age, sex, ethnicity and smoking status, the MTR 2756A>G and MTRR 66A>G polymorphisms were genotyped. It was found that the MTRRG allele was associated with a significantly increased lung cancer risk [adjusted odd ratio (OR)=1.34, 95% confidence interval (CI)=1.06-1.70 for the AG genotype and OR=1.39, 95% CI=1.08-1.78 for the GG genotype compared to the AA genotype]. Further analysis suggested some evidence of gene-diet interactions between the MTRR 66A>G polymorphism and dietary intake of total folate and vitamin B12. When the two polymorphisms were evaluated together by the number of the variant alleles (i.e. the MTR2756G and MTRR66A), lung cancer risk was significantly increased in a dose-dependent manner (Ptrend=0.045). The risk of lung cancer was 1.29 (0.98-1.69) for one variant allele, and 1.36 (1.04-1.77) for two or more variant alleles compared to the wild-type (0 variant allele) genotype. In conclusion, our data provide evidence supporting the association between the MTR 2756A>G and MTRR 66A>G polymorphisms and lung cancer risk, which may be modulated by dietary nutrient intake.

5-Methyltetrahydrofolate-Homocysteine S-Methyltran↗

Polymorphisms of vitamin D receptor gene protect against the risk of head and neck cancer.

Vitamin D has potent anti-tumour properties. Calcitriol [1,25(OH)2D3], the hormonal derivative of vitamin D3, is an antiproliferative and prodifferentiation factor for several cell types, including human squamous cells of the head and neck. Several polymorphisms of the vitamin D receptor (VDR) gene have been described, including a FokI restriction fragment-length polymorphism (RFLP) in exon 2 and an adjacent TaqI RFLP in exon 9. We hypothesized that the VDR FokI and TaqI polymorphisms are associated with the risk of developing squamous cell carcinoma of the head and neck (SCCHN). We conducted a hospital-based, case-control study of 719 SCCHN cases and 821 cancer-free controls (all non-Hispanic Whites) to assess the association between VDR polymorphisms and SCCHN risk. The cases and controls were frequency-matched on age, sex and ethnicity. Polymorphisms at the TaqI and FokI restriction sites were determined from genomic DNA by polymerase chain reaction-RFLP methods. Both homozygous variant genotypes (ff and tt) were associated with a decreased risk of SCCHN [odds ratio (OR)=0.72, 95% confidence interval (CI)=0.53-0.98 and OR=0.64, 95% CI=0.47-0.87, respectively] compared to the common FF and TT genotypes. The VDR variant genotypes were associated with a decreasing risk of SCCHN in a variant allele dose-dependent manner, and the decreasing trend in OR was statistically significant, particularly for the combined genotypes (Ptrend<0.001). These data suggest that the VDR f and t alleles and their genotypes may protect against SCCHN. However, further studies are warranted to confirm these findings.

Adult↗

Polymorphisms in XPD exons 10 and 23 and bladder cancer risk.

INTRODUCTION: The nucleotide excision repair gene, xeroderma pigmentosum complementation group D (XPD), has been hypothesized to have a role in cancer risk, but results from prior molecular epidemiologic studies and genotype-phenotype analyses are conflicting. MATERIALS AND METHODS: We examined the frequency of the XPD Asp312Asn polymorphism in exon 10 and the XPD Lys751Gln polymorphism in exon 23 in 505 incident bladder cancer cases and 486 healthy controls. RESULTS: Overall, the XPD exon 10 and 23 genotypes were not associated with bladder cancer risk, after adjusting for age, sex, ethnicity, and smoking status. A gender-specific role was evident that showed an increased risk for women, but not for men, associated with the variant genotypes for both exons. For example, when the exon 23 variant allele genotypes were combined (Lys/Gln + Gln/Gln), there was an increased bladder cancer risk in women [odds ratio (OR), 1.69; 95% confidence interval (95% CI), 1.12-2.58] but not in men (OR, 0.99; 95% CI, 0.79-1.24; P(interaction) = 0.041; OR, 1.62; 95% CI, 1.02-2.58). There was also a gene-smoking interaction that showed the variant alleles for either exon or the combination of both increase the risk of bladder cancer for light and heavy smokers. For exon 23 (P(interaction) = 0.057; OR, 1.21; 95% CI, 0.99-1.47), heavy smokers (> or = 20 pack-years) who carried the exon 23 variant allele genotypes had an OR of 4.13 (95% CI, 2.53-6.73), whereas heavy smokers with the wild-type genotypes were at lower risk (OR, 3.55; 95% CI, 2.19-5.75). Moderate smokers (1-19 pack-years) with the variant allele genotypes had an OR of 1.54 (95% CI, 0.94-2.53), whereas moderate smokers with the wild-type genotypes had an OR of 1.12 (95% CI, 0.63-1.98). CONCLUSIONS: Although we did not observe main effects associated with the XPD genotypes, these results do suggest the variant allele genotypes were associated with increased bladder cancer risk in women and smokers with statistically significant interactions in the exon 23 polymorphism. Although there is biological plausibility, these novel findings for gender and smoking should be interpreted with caution upon confirmation in larger studies.

Case-Control Studies↗

Chromosomal instability in peripheral blood lymphocytes and risk of prostate cancer.

Prostate cancer is an extremely complex disease, and it is likely that chromosomal instability is involved in the genetic mechanism of tumorigenesis. Several chromosomes have been labeled as "players" in the development of prostate cancer, among them chromosome 1 and X chromosome have been reported to harbor prostate cancer susceptibility loci. However, there is little information regarding the background levels of chromosome instability in these patients. In this pilot study, we examined spontaneous chromosome instability in short-term lymphocyte cultures from 126 study subjects, 61 prostate cancer patients, and 65 healthy controls. We evaluated chromosomal instability using a fluorescence in situ hybridization assay using two probes targeting specific regions on X chromosome and chromosome 1. Our results showed a significantly higher mean level of spontaneous breaks involving the X chromosome in patients compared with controls (mean +/- SE, 2.41 +/- 0.26 and 0.62 +/- 0.08, respectively; P < 0.001). Similarly, chromosome 1 spontaneous breaks were significantly higher among cases compared with controls (mean +/- SE, 1.95 +/- 0.24 and 1.09 +/- 0.16, respectively; P < 0.001). Using the median number of breaks in the controls as the cutoff value, we observed an odds ratio (95% confidence interval) of 15.53 (5.74 - 42.03; P < 0.001) for spontaneous X chromosome breaks and 3.71 (1.60 - 8.63; P < 0.001) for chromosome 1 breaks and risk of development of prostate cancer. In conclusion, our preliminary results show that spontaneous chromosome instability could be a risk factor for prostate cancer.

Aged↗