| Literature DB >> 30322005 |
Francisca Dias1,2, Mariana Morais3,4,5, Ana Luísa Teixeira6, Rui Medeiros7,8,9,10.
Abstract
Esophageal cancer (EC) is the eighth most common and sixth leading cause of cancer-related mortality in the world. Despite breakthroughs in EC diagnosis and treatment, patients with complete pathologic response after being submitted to chemoradiotherapy are still submitted to surgery, despite its high morbidity. Single-nucleotide polymorphisms (SNPs) in miRNA, miRNA-binding sites, and in its biogenesis pathway genes can alter miRNA expression patterns, thereby influencing cancer risk and prognosis. In this review, we systematized the information available regarding the impact of these miR-SNPs in EC development and prognosis. We found 34 miR-SNPs that were associated with EC risk. Despite the promising applicability of these miR-SNPs as disease biomarkers, they still lack validation in non-Asian populations. Moreover, there should be more pathway-based approaches to evaluate the cumulative effect of multiple unfavorable genotypes and, consequently, identify miR-SNPs signatures capable of predicting EC therapy response and prognosis.Entities:
Keywords: esophageal cancer; miR-SNPs; molecular biomarkers
Year: 2018 PMID: 30322005 PMCID: PMC6210990 DOI: 10.3390/cancers10100381
Source DB: PubMed Journal: Cancers (Basel) ISSN: 2072-6694 Impact factor: 6.639
Figure 1Overview of miRNA-related single-nucleotide polymorphisms (miR-SNPs) found and their impact on esophageal cancer (EC).
Single Nucleotide Polymorphisms (SNPs) within miRNA-encoding genes and their association with Esophageal Cancer (EC) risk and outcome.
| Location | SNP | Population | Type of Study | Sample Size | Relevant | Outcome | References |
|---|---|---|---|---|---|---|---|
|
| rs531564 | Kazach | Case controls | 239 cases/227 controls | CG+GG | ↓ ESCC risk | Wu et al. (2018) [ |
|
| rs531564 | Canadian | Cohort | 368 cases | G allele | ↑ EAC OS | Faluyi et al. (2017) [ |
|
| rs6505162 | Iranian | Case control | 200 cases/300 controls | AA | ↓ EC risk | Nariman-Saleh-Fam et al. (2016) [ |
|
| rs11614913 | Chinese | Case control | 1400 cases/2185 controls | CC | ↑ ESCC risk | Shen et al. (2016) [ |
|
| rs3746444 | C allele | |||||
|
| rs12534337 | Mixed ethnicity | Case control | 2515 EA cases | A allele | ↑ BE and ↑ EAC risk | Buas et al. (2015) [ |
|
| rs531564 | Chinese | Meta analysis | 1738 cases/1961 controls | GG | ↓ ESCC risk | Li et al. (2015) [ |
|
| rs107822 | Kazach | Case control | 248 cases/300 controls | AA/A allele | ↓ ESCC risk | Song et al. (2015) [ |
| rs213210 | T allele | ||||||
|
| rs1834306 | Kazach | Case control | 248 cases/300 controls | CC/C allele | ↓ ESCC risk | Zhu et al. (2015) [ |
|
| rs10061133 | Chinese | Case control | 773 cases/882 controls | GG | ↓ ESCC risk | Zhang et al. (2015) [ |
|
| rs12220909 | C allele | |||||
|
| rs11614913 | Chinese | Case control | 381 cases/426 controls | TT | ↓ ESCC risk | Qu et al. (2014) [ |
|
| rs3746444 | Mixed ethnicity | Meta analysis | 12799 cases/14507 controls | TC+CC | ↑ EC risk in the asian population | Chen et al. (2014) [ |
|
| rs4938723 | Mixed ethnicity | Meta analysis | 7753 cases/8014 controls | CC | ↓ ESCC risk in the asian population | Li et al. (2014) [ |
|
| rs4919510 | Taiwan | Cohort | 504 cases | GC | ↑ OS and ↑ PFS in ESCC | Yang et al. (2014) [ |
|
| rs2910164 | Chinese | Cohort | 378 cases | CG+GG | ↑ risk of severe hematological toxicity in ESCC | Wu et al. (2014) [ |
|
| rs11614913 | TT | ↓ OS ESCC | ||||
|
| rs12976445 | TT | ↓ OS ESCC | ||||
|
| rs11614913 | Chinese | Case control | 597 cases/597 controls | CT+TT | ↑ ESCC risk | Wang et al. (2014) [ |
|
| rs2910164 | Mixed ethnicity | Meta analysis | 790 cases/814 controls | GC+GG | ↑ EC risk in the asian population | Xu et al. (2014) [ |
|
| rs6505162 | Chinese | Case control | 629 cases/686 controls | AA | ↑ ESCC risk | Yin et al. (2013) [ |
|
| rs6505162 | Black ethnicity | Case control | 368 cases/583 controls | C allele | ↑ ESCC risk | Wang et al. (2013) [ |
|
| rs7372209 | Mixed ethnicity | 197 cases/420 controls | T allele | ↑ ESCC risk | ||
|
| rs11614913 | Chinese | Case control | 380 cases/380 controls | CC | ↓ ESCC risk in women | Wei et al. (2013) [ |
|
| rs11614913 | Mixed ethnicity | Meta analysis | 4947 cases and 5642 controls | C allele | ↑ EC risk | Wang et al. (2013) [ |
|
| rs11614913 | Indian | Meta analysis | 289 cases/309 controls | T allele | ↓ OS in ESCC | Umar et al. (2013) [ |
|
| rs2910164 | C allele | |||||
|
| rs3746444 | C allele | |||||
|
| rs6505162 | A allele | |||||
|
| rs2910164 | Mixed ethnicity | Meta analysis | 772 cases/779 controls | C allele | ↓ EC risk in the asian population | He et al. (2012) [ |
|
| rs6505162 | Caucasian | Case control | 346 cases/346 controls | AC+AA | ↓ EC risk | Ye et al. (2008) [ |
EC: Esophageal Cancer; EAC: Esophageal Adenocarcinoma; ESCC: Esophageal squamous cell carcinoma; BE: Barrett Esophagus; OS: overall survival; PFS: progression-free survival; ↑: high; ↓: low.
SNPs within miRNA-binding sites and their association with EC risk and outcome.
| miRNA Binding Site | SNP | Population | Type of Study | Sample Size | Relevant Genotype | Outcome | References |
|---|---|---|---|---|---|---|---|
|
| rs1053667 | Canadian | Cohort | 368 cases | C allele | ↑ OS in EAC | Faluyi et al. (2017) [ |
|
| rs16917496 | Chinese | Case control | 180 cases/142 controls | CC | ↑ OS and ↑ Post-surgery survival in ESCC | Wang et al. (2016) [ |
|
| rs11473 | Chinese | Case control | 624 cases/636 controls | TT/T allele | ↑ risk of ESCC | Li et al. (2016) [ |
|
| rs1644730 | Mixed ethnicity | Case control | 2515 EA cases | A allele | ↓ BE and ↓ EA risk | Buas et al. (2015) [ |
|
| rs2866943 | Chinese | Case control | 790 cases/749 controls | CT/TT | ↓ risk of ESCC | Yao et al. (2015) [ |
| rs6029959 | CC/AC | ↑ risk of ESCC | |||||
|
| rs1595066 | Chinese | Case control | 381 cases/426 controls | AA/A allele | ↓ risk of ESCC | Qu et al. (2014) [ |
|
| rs799917 | Jinan | Case control | 540 cases/550 controls | CC | ↑ risk of ESCC | Zhang et al. (2013) [ |
| Huaian | 588 cases/600 controls | ||||||
|
| rs4245739 | Jinan | Case control | 540 cases/550 controls | AC+CC | ↓ risk of ESCC | Zhou et al. (2013) [ |
| Huaian | 588 cases/600 controls | ||||||
|
| rs6573 | Chinese | Case control | 537 cases and 608 controls | CC | ↑ risk of metastasis in ESCC | Wang et al. (2012) [ |
SNPs within miRNA binding sites and their association with EC risk and outcome.
| Gene | SNP | Population | Type of Study | Sample Size | Relevant Genotype | Outcome | References |
|---|---|---|---|---|---|---|---|
|
| rs11077 | Chinese | Cohort | 128 cases | AA | ↑ OS in ESCC | Wang et al. (2018) [ |
|
| rs197412 | Canadian | Cohort | 368 cases | C allele | ↑ OS EAC | Faluyi et al. (2017) [ |
|
| rs910924 | North American | Case control | 346 cases/346 controls | G allele | Haplotype associated with ↓ EC risk | Ye et al. (2008) [ |
| rs2740348 | C allele | ||||||
| rs7813 | G allele | ||||||
| rs910925 | G allele | ||||||
| rs3744741 | C allele | ||||||
| rs1062923 | A allele | ||||||
| rs4968104 | T allele |