CrossRef Text and Data Mining
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Impaired fasting glucose, single-nucleotide polymorphisms, and risk for colorectal cancer in Koreans
Keum Ji Jung, Miyong To Kim, Sun Ha Jee
Epidemiol Health. 2016;38:e2016002  Published online January 6, 2016
DOI: https://doi.org/10.4178/epih.e2016002

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Single nucleotide polymorphisms and colorectal neoplasia risk: Updates and impact
Current Colorectal Cancer Reports. 2009;5(1):15-23   Crossref logo
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Single Nucleotide Polymorphisms and Colorectal Cancer Risk: The First Replication Study in a South American Population
Genetic Polymorphisms. 2017;   Crossref logo
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Single nucleotide polymorphisms in sporadic colorectal cancer
Current Colorectal Cancer Reports. 2006;2(4):200-205   Crossref logo
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Single-nucleotide polymorphisms of microRNA processing machinery genes and risk of colorectal cancer
OncoTargets and Therapy. 2015;421   Crossref logo
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Single nucleotide polymorphisms within MicroRNAs, MicroRNA targets, and MicroRNA biogenesis genes and their impact on colorectal cancer survival
Genes, Chromosomes and Cancer. 2017;56(4):285-295   Crossref logo
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Association ofVEGFandKDRsingle nucleotide polymorphisms with colorectal cancer susceptibility in Koreans
Molecular Carcinogenesis. 2012;52(S1):60-69   Crossref logo
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The Association of Single Nucleotide Polymorphisms with Cancer Risk
Genome-Wide Association Studies. 2019;87-144   Crossref logo
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Single nucleotide polymorphisms in theXPGgene: Determination of role in DNA repair and breast cancer risk
International Journal of Cancer. 2002;103(5):671-675   Crossref logo
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Association of single nucleotide polymorphisms of ERCC1 and XPF with colorectal cancer risk and interaction with tobacco use
Gene. 2014;548(1):1-5   Crossref logo
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Prostate Cancer Risk: Single Nucleotide Polymorphisms (SNPs)
Precision Molecular Pathology of Prostate Cancer. 2017;117-128   Crossref logo
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