Programmed death-1 ligand-1 gene rs2890658 polymorphism associated with the risk of esophageal squamous cell carcinoma in smokers

BACKGROUND: The most important anti-tumor immune response is mediated by T lymphocytes. The interaction of programmed death-1 ligand-1 (PD-L1) with its receptor provides an inhibitory signal in T lymphocytes activation and proliferation. OBJECTIVE: This study aimed to investigate whether polymorphis...

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Veröffentlicht in:Cancer biomarkers : section A of Disease markers 2017-12, Vol.21 (1), p.65-71
Hauptverfasser: Zhou, Rong-Miao, Li, Yan, Liu, Jiang-Hui, Wang, Na, Huang, Xi, Cao, Shi-Ru, Shan, Bao-En
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Sprache:eng
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Zusammenfassung:BACKGROUND: The most important anti-tumor immune response is mediated by T lymphocytes. The interaction of programmed death-1 ligand-1 (PD-L1) with its receptor provides an inhibitory signal in T lymphocytes activation and proliferation. OBJECTIVE: This study aimed to investigate whether polymorphisms of PD-L1 were associated with the risk and prognosis of esophageal squamous cell carcinoma (ESCC) in a high-incidence population from Northern China. METHODS: PD-L1 rs2890658 A/C and rs4143815 C/G single nucleotide polymorphisms (SNPs) were genotyped by polymerase chain reaction ligase detection reaction (PCR-LDR) method in 575 ESCC patients and 577 healthy controls. RESULTS: There was no significant difference in the genotype frequencies of these two SNPs between the ESCC patients and the healthy controls. However, for rs2890658 A/C SNP, compared with the C/C genotype, the A/C genotype increased the risk of ESCC for the smokers (OR = 1.513, 95% CI = 1.006–2.287). Among the 575 ESCC patients, the survival information of 202 ESCC patients was collected. Neither the rs2890658 A/C SNP nor the rs4143815 C/G SNP was associated with the survival of ESCC patients. CONCLUSIONS: PD-L1 rs2890658 A/C SNP might be used as risk marker of the susceptibility to ESCC for the Han nationality in a high-incidence population from Northern China.
ISSN:1574-0153
1875-8592
DOI:10.3233/CBM-170269