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1.
Frontiers of Medicine ; (4): 216-226, 2022.
Article in English | WPRIM (Western Pacific) | ID: wpr-929209

ABSTRACT

Hepatocellular carcinoma (HCC), which makes up the majority of liver cancer, is induced by the infection of hepatitis B/C virus. Biomarkers are needed to facilitate the early detection of HCC, which is often diagnosed too late for effective therapy. The tRNA-derived small RNAs (tsRNAs) play vital roles in tumorigenesis and are stable in circulation. However, the diagnostic values and biological functions of circulating tsRNAs, especially for HCC, are still unknown. In this study, we first utilized RNA sequencing followed by quantitative reverse-transcription PCR to analyze tsRNA signatures in HCC serum. We identified tRF-Gln-TTG-006, which was remarkably upregulated in HCC serum (training cohort: 24 HCC patients vs. 24 healthy controls). In the validation stage, we found that tRF-Gln-TTG-006 signature could distinguish HCC cases from healthy subjects with high sensitivity (80.4%) and specificity (79.4%) even in the early stage (Stage I: sensitivity, 79.0%; specificity, 74.8%; 155 healthy controls vs. 153 HCC patients from two cohorts). Moreover, in vitro studies indicated that circulating tRF-Gln-TTG-006 was released from tumor cells, and its biological function was predicted by bioinformatics assay and validated by colony formation and apoptosis assays. In summary, our study demonstrated that serum tsRNA signature may serve as a novel biomarker of HCC.


Subject(s)
Humans , Biomarkers , Biomarkers, Tumor/genetics , Carcinoma, Hepatocellular/diagnosis , Hepatitis B virus , Liver Neoplasms/diagnosis , RNA, Transfer/genetics
2.
Protein & Cell ; (12): 714-724, 2014.
Article in English | WPRIM (Western Pacific) | ID: wpr-757657

ABSTRACT

The mechanism underlying T cell-mediated fulminant hepatitis is not fully understood. In this study, we investigated whether myeloid derived suppressor cells (MDSCs) could prevent the concanavalin A (ConA)-induced hepatitis through suppressing T cell proliferation. We observed an increase in the frequencies of MDSCs in mouse spleen and liver at early stage of ConA treatment, implicating that the MDSCs might be involved in the initial resistance of mice against ConA-mediated inflammation. Subpopulation analysis showed that the MDSCs in liver of ConA-induced mice were mainly granulocytic MDSCs. Adoptive transfer of the bone marrow-derived MDSCs into ConA-treated mice showed that the MDSCs migrated into the liver and spleen where they suppressed T cell proliferation through ROS pathway. In addition, the frequencies of MDSCs in mice were also significantly increased by the treatment with immune suppressor glucocorticoids. Transfer of MDSCs into the regulatory T cell (Treg)-depleted mice showed that the protective effect of MDSCs on ConA-induced hepatitis is Treg-independent. In conclusion, our results demonstrate that MDSCs possess a direct protective role in T cell-mediated hepatitis, and increasing the frequency of MDSCs by either adoptive transfer or glucocorticoid treatment represents a potential cell-based therapeutic strategy for the acute inflammatory disease.


Subject(s)
Animals , Male , Adoptive Transfer , Blotting, Western , Bone Marrow Cells , Allergy and Immunology , CD11b Antigen , Allergy and Immunology , Metabolism , Cell Movement , Allergy and Immunology , Cell Proliferation , Chemical and Drug Induced Liver Injury , Allergy and Immunology , Concanavalin A , Toxicity , Dexamethasone , Pharmacology , Flow Cytometry , Glucocorticoids , Pharmacology , Liver , Allergy and Immunology , Pathology , Mice, Inbred C57BL , Mitogens , Toxicity , Myeloid Cells , Allergy and Immunology , Metabolism , Transplantation , Receptors, Chemokine , Allergy and Immunology , Metabolism , Spleen , Allergy and Immunology , Pathology , T-Lymphocytes , Allergy and Immunology , T-Lymphocytes, Regulatory , Allergy and Immunology
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