A dose–response meta-analysis of coffee consumption and bladder cancer

scientific article published on May 4, 2012

A dose–response meta-analysis of coffee consumption and bladder cancer is …
instance of (P31):
meta-analysisQ815382
scholarly articleQ13442814

External links are
P356DOI10.1016/J.YPMED.2012.04.020
P953full work available at URLhttps://api.elsevier.com/content/article/PII:S0091743512001636?httpAccept=text/plain
https://api.elsevier.com/content/article/PII:S0091743512001636?httpAccept=text/xml
P698PubMed publication ID22564775

P2093author name stringChongqi Jia
Yunping Zhou
Changwei Tian
P2860cites workBias in meta-analysis detected by a simple, graphical testQ24685585
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Alcohol, coffee, and bladder cancer risk: a review of epidemiological studiesQ28303848
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Flexible meta-regression functions for modeling aggregate dose-response data, with an application to alcohol and mortalityQ30932972
Non-alcoholic beverages and risk of bladder cancer in UruguayQ33280489
Drug interactions with tobacco smoking. An updateQ33700123
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Are coffee and tea consumption associated with urinary tract cancer risk? A systematic review and meta-analysisQ34258988
Caffeine induces apoptosis by enhancement of autophagy via PI3K/Akt/mTOR/p70S6K inhibitionQ34577381
The causes and prevention of cancer: gaining perspectiveQ34638943
Induction of cancer chemopreventive enzymes by coffee is mediated by transcription factor Nrf2. Evidence that the coffee-specific diterpenes cafestol and kahweol confer protection against acroleinQ34655422
Caffeine Promotes Ultraviolet B-induced Apoptosis in Human Keratinocytes without Complete DNA RepairQ35067683
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Caffeine inhibits homology-directed repair of I-SceI-induced DNA double-strand breaksQ40596779
Induction of a caffeine-sensitive S-phase cell cycle checkpoint by psoralen plus ultraviolet A radiationQ40633717
Homologous recombination as a potential target for caffeine radiosensitization in mammalian cells: reduced caffeine radiosensitization in XRCC2 and XRCC3 mutantsQ40836005
The coffee-specific diterpenes cafestol and kahweol protect against aflatoxin B1-induced genotoxicity through a dual mechanismQ42539599
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Bladder cancer and coffee consumption in smokers and non-smokers in SpainQ43879431
Caffeine inhibits checkpoint responses without inhibiting the ataxia-telangiectasia-mutated (ATM) and ATM- and Rad3-related (ATR) protein kinasesQ44504054
Occupational exposure to chemical and petrochemical industries and bladder cancer risk in four western Canadian provincesQ44588439
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CYP1A2 polymorphisms, occupational and environmental exposures and risk of bladder cancer.Q46292251
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Fluid intake and the incidence of bladder cancer among middle‐aged men and women in a three‐county area of western WashingtonQ50914470
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Coffee-drinking and cancer of the lower urinary tract.Q54464749
Attributable risks for bladder cancer in Northern ItalyQ57561644
Coffee consumption and bladder cancer riskQ58317449
Coffee drinking and bladder cancerQ59650528
Life style and occupational risk factors for bladder cancer in Germany. A case-control studyQ68078365
Dietary factors and the incidence of cancer of the urinary bladderQ68357695
Epidemiological characteristics of squamous cell carcinoma and adenocarcinoma of the bladderQ68389725
Confounders contributing to the reported associations of coffee or caffeine with diseaseQ68475431
The Copenhagen case-control study of bladder cancer. II. Effect of coffee and other beveragesQ69490435
Bladder cancer in nonsmokersQ69994235
Dietary factors in cancer of the lower urinary tractQ70141574
A prospective study of diet, smoking, and lower urinary tract cancerQ72691504
Coffee, cigarette smoking, and bladder cancer in western New YorkQ72705057
Bladder cancer, tobacco smoking, coffee and alcohol drinking in Brescia, northern ItalyQ73910719
Fluid intake and the risk of bladder cancer in menQ77399898
Coffee and tea consumption and cancers of the bladder, colon and rectumQ78027915
Non-occupational risk factors for cancer of the lower urinary tract in GermanyQ78111793
Foods and beverages in relation to urothelial cancer: case-control study in JapanQ79369625
Bladder cancer, GSTs, NAT1, NAT2, SULT1A1, XRCC1, XRCC3, XPD genetic polymorphisms and coffee consumption: a case-control studyQ80953545
Effects of lifestyle and genetic polymorphisms on consumption of coffee or black tea and urinary caffeine levelsQ87169048
P433issue1
P407language of work or nameEnglishQ1860
P304page(s)14-22
P577publication date2012-05-04
P1433published inPreventive MedicineQ7242397
P1476titleA dose-response meta-analysis of coffee consumption and bladder cancer
A dose–response meta-analysis of coffee consumption and bladder cancer
P478volume55

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cites work (P2860)
Q38646407A Prospective Investigation of Coffee Drinking and Bladder Cancer Incidence in the United States
Q90136348Association between coffee consumption and risk of bladder cancer in a meta-analysis of 16 prospective studies
Q36495926Association between green tea/coffee consumption and biliary tract cancer: A population-based cohort study in Japan.
Q37008014Coffee and Tea Consumption Are Inversely Associated with Mortality in a Multiethnic Urban Population1–3
Q35879735Coffee consumption and the risk of incident gastric cancer--A meta-analysis of prospective cohort studies
Q35133994Coffee consumption and urologic cancer risk: a meta-analysis of cohort studies
Q41295001Coffee, Tea, Cola, and Bladder Cancer Risk: Dose and Time Relationships.
Q35203786Induction of AhR-mediated gene transcription by coffee
Q28072392Modifiable risk factors for the prevention of bladder cancer: a systematic review of meta-analyses
Q34331240The impact of coffee on health

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