Yanming Lu
China Medical University (PRC)
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Featured researches published by Yanming Lu.
BMC Cancer | 2012
Ning Wang; Shizhuo Wang; Qiao Zhang; Yanming Lu; Heng Wei; Wei Li; Shulan Zhang; Duo Yin; Yangling Ou
BackgroundThe p21 codon 31 single nucleotide polymorphism (SNP), rs1801270, has been linked to cervical cancer but with controversial results. The aims of this study were to investigate the role of p21 SNP-rs1801270 and other untested p21 SNPs in the risk of cervical cancer in a Chinese population.MethodsWe genotyped five p21 SNPs (rs762623, rs2395655, rs1801270, rs3176352, and rs1059234) using peripheral blood DNA from 393 cervical cancer patients and 434 controls.ResultsThe frequency of the rs1801270 A allele in patients (0.421) was significantly lower than that in controls (0.494, p = 0.003). The frequency of the rs3176352 C allele in cases (0.319) was significantly lower than that in controls (0.417, p < 0.001).The allele frequency of other three p21 SNPs showed not statistically significantly different between patients and controls. The rs1801270 AA genotype was associated with a decreased risk for the development of cervical cancer (OR = 0.583, 95%CI: 0.399 - 0.853, P = 0.005). We observed that the three p21 SNPs (rs1801270, rs3176352, and rs1059234) was in linkage disequilibrium (LD) and thus haplotype analysis was performed. The AGT haplotype (which includes the rs1801270A allele) was the most frequent haplotype among all subjects, and both homozygosity and heterozygosity for the AGT haplotype provided a protective effect from development of cervical cancer.ConclusionsWe show an association between the p21 SNP rs1801270A allele and a decreased risk for cervical cancer in a population of Chinese women. The AGT haplotype formed by three p21 SNPs in LD (rs1801270, rs3176352 and rs1059234) also provided a protective effect in development of cervical cancer in this population.
Tumor Biology | 2016
Ning Wang; Heng Wei; Duo Yin; Yanming Lu; Yao Zhang; Qiao Zhang; Xiaoxin Ma; Shulan Zhang
Cervical cancer is one of the most frequent gynecological malignancies in women worldwide. MicroRNA-195 (miR-195) was recently found highly expressed in cervical cancer. However, the role of miR-195 in the pathology of cervical cancer remains poorly understood. In this study, we first confirmed the downregulation of miR-195 in primary cervical cancer tissues. For the functional study, we introduced the sequences of miR-195 or miR-195 inhibitor into Hela and SiHa cervical cancer cell lines. Overexpression of miR-195 inhibited the proliferation of both Hela and SiHa cells. In contrast, reducing the endogenous miR-195 level by miR-195 inhibitor promoted the proliferation of cervical cancer cells. Flow cytometric assay showed that overexpression of miR-195 induced G1 phase arrest, whereas miR-195 inhibitor shortened G1 phase of cervical cancer cells. In addition, the suppressive role of miR-195 in cell cycle was also demonstrated by the western blot results of various cell cycle indicators, such as phosphorylated retinoblastoma (p-Rb) and proliferating cell nuclear antigen (PCNA), in the gain and loss of function experiments. Furthermore, Dual-Luciferase Reporter Assay revealed that miR-195 targeted the 3′-untranslated region of cyclin D1a transcript, such as to regulate cyclin D1 expression. In summary, our results suggest that miR-195 acts as a suppressor in the proliferation and cell cycle of cervical cancer cells by directly targeting cyclin D1a mRNA.
PLOS ONE | 2012
Ning Wang; Duo Yin; Shulan Zhang; Heng Wei; Shizhuo Wang; Yang Zhang; Yanming Lu; Shuyan Dai; Wei Li; Qiao Zhang; Yao Zhang
Background While HPV infection is the main cause of cervical cancer, genetic susceptibility to HPV infection is not well understood. Tumor necrosis factor alpha (TNF-alpha), involved in the defense against HPV infection, plays an important role in cervical cancer progression and regression. The aim of this study was to investigate the relationship between the TNF-alpha rs1800629 polymorphism and risk of HPV infection or cervical cancer. Methods Three groups were involved in this study of Chinese women. Group 1 consisted of 285 high risk HPV positive cervical cancer patients, Group 2, 225 high risk HPV positive patients without cervical cancer, and Group 3, 318 HPV negative women with no cervical cancer. Blood samples were obtained from all patients and genotyped by PCR-RLFP. Fifty randomly selected samples were further sequenced. Results The allele and genotype distributions of the TNF-alpha rs1800629 polymorphism were not significantly different between each of the groups (P>0.05). There are no significant relationship between rs1800629 polymorphism and high risk HPV infection (OR = 0.649, 95% CI: 0.253–1.670, P = 0.371), cervical cancer (OR = 0.993, 95% CI: 0.376–2.618, P = 0.988), or cervical cancer with HPV infection (OR = 0.663, 95% CI: 0.250–1.758, P = 0.409). Conclusions We demonstrated that there is no association between TNF rs1800629 polymorphism and the HPV infection, or cervical cancer with HPV infection.
International Journal of Gynecology & Obstetrics | 2013
Duo Yin; Ning Wang; Shulan Zhang; Naichen Huo; Ouyang Ling; Yanming Lu; Heng Wei
To evaluate the therapeutic value of radical hysterectomy and vaginectomy with sigmoid vaginoplasty among patients with International Federation of Gynecology and Obstetrics stage I vaginal carcinoma.
Medical Oncology | 2014
Yanming Lu; Chao Shang; Yangling Ou; Duo Yin; Yi-Ning Li; Xiang Li; Ning Wang; Shulan Zhang
Oncology Reports | 2013
Yanming Lu; Meng-Li Rong; Chao Shang; Ning Wang; Xiang Li; Yan-Yan Zhao; Shulan Zhang
Cell Biochemistry and Biophysics | 2015
Duo Yin; Yan Jiang; Shulan Zhang; Ning Wang; Yanming Lu; Heng Wei; Naichen Huo; Yangling Ou
International Journal of Clinical and Experimental Pathology | 2014
Ning Wang; Heng Wei; Duo Yin; Yanming Lu; Yao Zhang; Di Jiang; Yan Jiang; Shulan Zhang
Tumor Biology | 2014
Duo Yin; Yan Jiang; Ning Wang; Ling Ouyang; Yanming Lu; Yao Zhang; Heng Wei; Shulan Zhang
Cell Biochemistry and Biophysics | 2015
Duo Yin; Ning Wang; Shulan Zhang; Yan Jiang; Yanming Lu; Heng Wei; Naichen Huo; Yangling Ou