Pages that link to "Q46395715"
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The following pages link to Manganese superoxide dismutase polymorphism, prediagnostic antioxidant status, and risk of clinical significant prostate cancer (Q46395715):
Displaying 50 items.
- Selenium for preventing cancer (Q24197798) (← links)
- Selenium for preventing cancer (Q24234517) (← links)
- Lycopene for the prevention of prostate cancer (Q24235388) (← links)
- Plasma selenium, manganese superoxide dismutase, and intermediate- or high-risk prostate cancer (Q24657886) (← links)
- Superoxide dismutase 2 gene and cancer risk: evidence from an updated meta-analysis (Q26775444) (← links)
- Dietary antioxidants and prostate cancer: a review (Q26996474) (← links)
- Plasma carotenoids and tocopherols in relation to prostate-specific antigen (PSA) levels among men with biochemical recurrence of prostate cancer (Q27324520) (← links)
- Nutritional countermeasures targeting reactive oxygen species in cancer: from mechanisms to biomarkers and clinical evidence (Q28393187) (← links)
- Oxidative response gene polymorphisms and risk of adult brain tumors (Q30486374) (← links)
- A large prospective study of SEP15 genetic variation, interaction with plasma selenium levels, and prostate cancer risk and survival (Q33566592) (← links)
- Interaction between single nucleotide polymorphisms in selenoprotein P and mitochondrial superoxide dismutase determines prostate cancer risk (Q33568386) (← links)
- Vegetables- and antioxidant-related nutrients, genetic susceptibility, and non-Hodgkin lymphoma risk (Q33584179) (← links)
- Plasma antioxidants, genetic variation in SOD2, CAT, GPX1, GPX4, and prostate cancer survival (Q33717435) (← links)
- Iron intake, oxidative stress-related genes (MnSOD and MPO) and prostate cancer risk in CARET cohort (Q33986231) (← links)
- Serum levels of selenium and smoking habits at age 50 influence long term prostate cancer risk; a 34 year ULSAM follow-up (Q34044105) (← links)
- Correlation of concentrations of selected trace elements with Gleason grade of prostate tissues (Q34102367) (← links)
- Defining the Optimal Selenium Dose for Prostate Cancer Risk Reduction: Insights from the U-Shaped Relationship between Selenium Status, DNA Damage, and Apoptosis (Q34128573) (← links)
- A functional variant in NKX3.1 associated with prostate cancer risk in the Selenium and Vitamin E Cancer Prevention Trial (SELECT). (Q34135313) (← links)
- A nutrient approach to prostate cancer prevention: The Selenium and Vitamin E Cancer Prevention Trial (SELECT) (Q34142018) (← links)
- Manganese superoxide dismutase polymorphism, treatment-related toxicity and disease-free survival in SWOG 8897 clinical trial for breast cancer (Q34262314) (← links)
- Manganese superoxide dismutase: beyond life and death (Q34284548) (← links)
- Selenium and prostate cancer prevention: insights from the selenium and vitamin E cancer prevention trial (SELECT). (Q34336747) (← links)
- Single-nucleotide polymorphisms within the antioxidant defence system and associations with aggressive prostate cancer (Q34440647) (← links)
- Antioxidant treatment promotes prostate epithelial proliferation in Nkx3.1 mutant mice (Q34450412) (← links)
- Increased dietary and circulating lycopene are associated with reduced prostate cancer risk: a systematic review and meta-analysis. (Q34555808) (← links)
- Low micronutrient intake may accelerate the degenerative diseases of aging through allocation of scarce micronutrients by triage (Q34581373) (← links)
- The development of molecular epidemiology to elucidate cancer risk and prognosis: a historical perspective (Q34793915) (← links)
- Polymorphisms in inflammatory genes, plasma antioxidants, and prostate cancer risk (Q35516448) (← links)
- Reexamination of a meta-analysis of the effect of antioxidant supplementation on mortality and health in randomized trials (Q35671076) (← links)
- Association of MnSOD AA Genotype with the Progression of Prostate Cancer (Q35683992) (← links)
- Nutrigenetics, nutrigenomics, and selenium. (Q35711019) (← links)
- Serum selenium and single-nucleotide polymorphisms in genes for selenoproteins: relationship to markers of oxidative stress in men from Auckland, New Zealand (Q35863338) (← links)
- Loss of heterozygosity at the glutathione peroxidase 1 locus is not an early event in colon carcinogenesis (Q35959727) (← links)
- Thioredoxin 1 in Prostate Tissue Is Associated with Gleason Score, Erythrocyte Antioxidant Enzyme Activity, and Dietary Antioxidants (Q36016027) (← links)
- Improved weight management using genetic information to personalize a calorie controlled diet (Q36294571) (← links)
- Relationship between manganese superoxide dismutase (MnSODAla-9Val) and glutathione peroxidase (GPx1 Pro 197 Leu) gene polymorphisms and alopecia areata (Q36493171) (← links)
- Thioredoxin in cancer--role of histone deacetylase inhibitors (Q36649242) (← links)
- Personalised nutrition: status and perspectives (Q36768433) (← links)
- Selenoprotein P genetic variants and mrna expression, circulating selenium, and prostate cancer risk and survival (Q36807029) (← links)
- Apoptotic cellular events for selenium compounds involved in cancer prevention (Q36840805) (← links)
- Association of prostate cancer and manganese superoxide dismutase AA genotype influenced by presence of occult cancer in control group (Q36923733) (← links)
- Diet and lifestyle interventions in active surveillance patients with favorable-risk prostate cancer (Q36925784) (← links)
- Constitutional polymorphisms of prostate cancer: prognostic and diagnostic implications (Q37016023) (← links)
- Genetic variation in myeloperoxidase modifies the association of serum α-tocopherol with aggressive prostate cancer among current smokers (Q37076436) (← links)
- Occult prostate cancer effects the results of case-control studies due to verification bias (Q37143558) (← links)
- The interaction of genetic polymorphisms with lifestyle factors: implications for the dietary prevention of prostate cancer (Q37150148) (← links)
- MnSOD genotype and prostate cancer risk as a function of NAT genotype and smoking status. (Q37161758) (← links)
- Polymorphisms in metabolism/antioxidant genes may mediate the effect of dietary intake on pancreatic cancer risk (Q37188291) (← links)
- Mitochondrial and nuclear genes of mitochondrial components in cancer (Q37260045) (← links)
- Manganese and extracellular superoxide dismutase polymorphisms and risk for asbestosis (Q37266794) (← links)