1,721,662 research outputs found
Performance of epigenetic markers SEPT9 and ALX4 in plasma for detection of colorectal precancerous lesions.
BACKGROUND: Screening for colorectal cancer (CRC) has shown to reduce cancer-related mortality, however, acceptance and compliance to current programmes are poor. Developing new, more acceptable non-invasive tests for the detection of cancerous and precancerous colorectal lesions would not only allow preselection of individuals for colonoscopy, but may also prevent cancer by removal of precancerous lesions. METHODS: Plasma from 128 individuals (cohort I - exploratory study: 73 cases / 55 controls) was used to test the performance of a single marker, SEPT9, using a real-time quantitative PCR assay. To validate performance of SEPT9, plasma of 76 individuals (cohort II - validation study: 54 cases / 22 controls) was assessed. Additionally, improvement of predictive capability considering SEPT9 and additionally ALX4 methylation was investigated within these patients. RESULTS: In both cohorts combined, methylation of SEPT9 was observed in 9% of controls (3/33), 29% of patients with colorectal precancerous lesions (27/94) and 73% of colorectal cancer patients (24/33). The presence of both SEPT9 and ALX4 markers was analysed in cohort II and was observed in 5% of controls (1/22) and 37% of patients with polyps (18/49). Interestingly, also 3/5 (60%) patients with colorectal cancer were tested positive by the two marker panel in plasma. CONCLUSIONS: While these data confirm the detection rate of SEPT9 as a biomarker for colorectal cancer, they also show that methylated DNA from advanced precancerous colorectal lesions can be detected using a panel of two DNA methylation markers, ALX4 and SEPT9. If confirmed in larger studies these data indicate that screening for colorectal precancerous lesions with a blood-based test may be as feasible as screening for invasive cancer
Study of the role of the tumor suppressor phosphatase and tensin homolog (PTEN) in hepatocellular carcinoma
published_or_final_versionPathologyMasterMaster of Philosoph
Characterization of mitotic checkpoint proteins, MAD1 and MAD2, in hepatocellular carcinoma
published_or_final_versionabstractPathologyDoctoralDoctor of Philosoph
Significance of LRP6 coreceptor upregulation in the aberrant activation of Wnt signaling in hepatocellular carcinoma
published_or_final_versionPathologyMasterMaster of Philosoph
Molecular alterations on chromosome 8 in hepatocellular carcinoma
published_or_final_versionPathologyMasterMaster of Philosoph
Study of the roles of dishevelled-3 in stemness and cell migration in hepatocellular carcinoma
Hepatocellular carcinoma (HCC) is a common malignancy worldwide and particularly common in China and Southeast Asia. It ranks the 2nd and 4th most common fatal cancer in males and females, respectively, in Hong Kong. Current treatments are not always effective, as recurrence and metastasis in HCC are difficult to tackle and the underlying mechanisms not fully understood. Aberration of Wnt signaling has been implicated in HCC; in this study, we investigated the underlying mechanisms of how aberrant Wnt signaling promoted HCC development. With Taqman Low Density Array (LDA) analysis on 38 pairs of HCC and the corresponding non-tumorous livers for 59 Wnt signaling related-genes, we found significant overexpression of the Wnt signaling intermediate, Dishevelled (Dvl)-3, in HCC (p = 0.014). This observation in LDA was confirmed in 36 additional HCC cases. Among a total of 74 cases studied, 28.38% showed more than 3-fold overexpression in the tumors as compared with the corresponding non-tumorous livers. Dvl3 overexpression positively correlated with the presence of venous invasion. We also observed significant correlation of Dvl3 expression with accumulation of β-catenin, a downstream effecter of Wnt/β-catenin signaling (p=0.028).
We further characterized the functional roles of Dvl3 in contributing to the stem cell-like and metastatic properties of HCC. We found that Dvl3 knockdown in HCC cells suppressed cell proliferation, sphere formation, tumorigenicity in immunodeficient mice, chemo-resistance, and expression of stemness genes. We then examined whether Wnt/β-catenin was effectively modulated by Dvl3 and found that Dvl3 overexpression and knockdown, respectively, promoted and reduced the TOP/FOP luciferase reporter activity in HCC cells. This was accompanied by the expression of β-catenin target genes, EpCAM and LGR5, both of which are associated with HCC stemness. Furthermore, rescue with wild-type or constitutively active β-catenin partially restored the in vivo tumorigenicity suppressed by Dvl3 knockdown, indicating a partial role of β-catenin in mediating the effects of Dvl3 on HCC stemness.
In addition, since cell migration is a critical determinant in metastasis, we assessed the HCC cell migratory ability in vitro using transwell migration assays and observed suppression of the cell migration ability upon Dvl3 knockdown. Also, the in vivo orthotopic model confirmed a role of Dvl3 in promoting metastasis, as stable Dvl3 knockdown in HCC cells resulted in a reduction in lung metastasis. Interestingly, the effect of Dvl3 on cell migration was independent of β-catenin, as knockdown of β-catenin had no effect on HCC cell migration in vitro. It was also not related to the phosphorylation of MYPT in Rho-ROCK signaling, which itself was previously implicated in HCC cells metastasis and reported as a downstream signaling of Dvl in development.
In summary, our study has identified roles of Dvl3 in HCC stemness properties and cell migration and this may provide functional implication of Dvl3 overexpression, which significantly correlated with venous invasion in human HCCs. Also, β-catenin is partly responsible for the role of Dvl3 in HCC stemness but independent of that in cell migration.
Functional characterization of Dvl3 in HCC may help future development of therapy targeting Dvl3 of Wnt signaling pathways.published_or_final_versionPathologyDoctoralDoctor of Philosoph
Regulations and functions of rho-kinases in hepatocellular carcinoma
The Best PhD Thesis in the Faculties of Dentistry, Engineering, Medicine and Science (University of Hong Kong), Li Ka Shing Prize,2008-2009published_or_final_versionPathologyDoctoralDoctor of Philosoph
Role of hypoxia-induced upregulation of caveolin-1 in hepatocellular carcinoma
published_or_final_versionPathologyMasterMaster of Philosoph
Functional study of suppressor of variegation 3-9 homolog 1 in hepatocellular carcinoma
Hepatocellular carcinoma (HCC) is the major type of primary liver cancer which is well-known for its high heterogenicity and metastatic potential. Despite of the current advancement in surgical resection and the availability of targeted therapy, HCC remains a barely curable and fatal disease. We previously demonstrated that deregulation of epigenetic regulators is a common event in human HCC. Herein, we identified the frequent up-regulation of the prototype of H3K9 tri-methyltransferase SUV39H1 in clinical HCCs. SUV39H1 over-expression was also significantly associated with increased Ki67 expression and the presence of venous invasion. By using both SUV39H1 over-expression and knockdown model, we consistently demonstrated that SUV39H1 contributed to HCC tumor growth and migration. Most importantly, SUV39H1 knockdown drastically suppressed in vivo tumorigenicity and extra-hepatic metastasis of HCC cells in nude mice model. These findings evidently demonstrated the oncogenic role of SUV39H1 in HCC and implied potential therapeutic targeting of SUV39H1 for HCC treatment.
Molecularly, SUV39H1 knockdown HCC cell underwent morphological changes and accompanied with increased lysosomal β-galactosidase activity and elevated p21 protein and γH2AX level. This data suggested senescence induction in SUV39H1 knockdown HCC cells. SUV39H1 has been implicated in telomere regulation and transcriptional control. However, neither telomere length nor expression of tumor suppressor genes was altered in SUV39H1 knockdown HCC cells. Interestingly, we demonstrated a novel observation that SUV39H1 may potentially methylate non-histone substrates that are yet to be identified, which may contribute to the pro-tumorigenic function of SUV39H1 in HCC.
We also investigated the upstream regulation of SUV39H1 and identified miR-125b as the negative post-transcriptional regulator of SUV39H1. Ectopic expression of miR-125b abolished SUV39H1 3’UTR-coupled luciferase activity and suppressed endogenous SUV39H1 at both mRNA and protein level. Clinically, miR-125b level was found inversely correlated with SUV39H1 expression. We have previously reported the frequent under-expression of miR-125b in HCC. Collectively, our data suggested that SUV39H1 up-regulation in HCC may be the sequential outcome of miR-125b down-regulation.
In conclusion, we demonstrated for the first time that SUV39H1 up-regulation contributed to HCC development and metastasis, potentially via senescence evasion. SUV39H1 elevation in HCC was attributed to the loss of its negative regulator, the tumor suppressive miR-125b.published_or_final_versionPathologyDoctoralDoctor of Philosoph
Identification of CD47 as a novel therapeutic target for hepatocellular carcinoma
published_or_final_versionPathologyMasterMaster of Philosoph
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