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High-Efficiency Transduction of Liver Cancer Cells by Recombinant Adeno-Associated Virus Serotype 3 Vectors
Published on: March 22, 2011
Adenovirus encoding XAF-1 and TNF‑α in the same open reading frame efficiently inhibits hepatocellular cancer cells
Kai Li1, Xinhong Li2, Zhongjun Wu1
1Department of Hepatobiliary Surgery, Hepatobiliary Treatment Center, The First Affiliated Hospital of Chongqing Medical University, Chongqing 400016, P.R. China.
Abstract:
X‑linked inhibitor of apoptosis (XIAP)‑associated factor 1 (XAF‑1), a tumor suppressor, is downregulated in most human malignant tumors. However, the tumor suppressive role of XAF‑1 in hepatocellular carcinoma (HCC) and its therapeutic value require further elucidation. The present study examined the expression of XAF‑1 at the mRNA and protein level in the HCC and paired peritumor tissue specimens, as well as in HCC cell lines and a normal liver cell line. A recombinant adenovirus which co‑expressed XAF‑1 and TNF‑α was then constructed, and its effects on the proliferation and colony formation ability of the MHCC97H HCC cell line were assessed using apoptosis induction, flow cytometry, trypan blue staining assay and a clonogenic assay. The results demonstrated that the expression of XAF‑1 was significantly reduced in HCC tissues compared with that in their matched peritumor specimens, and a significant correlation with the tumor size, stage and tumor ‑ nodes ‑ metastasis stage was identified. The reduced levels of XAF‑1 were further confirmed the HCC cell lines MHCC97L, HepG2 and MHCC97H compared with those in the L02 normal liver cell line. The recombinant adenovirus Ad‑XAF‑1&TNF‑α, which co‑expressed XAF‑1 and TNF‑α, was shown to efficiently express the two proteins at the mRNA and protein level. Furthermore, infection with Ad‑XAF‑1&TNF‑α synergistically induced apoptosis, reduced the proliferation and colony formation ability of MHCC97L cells to a significantly greater extent than overexpression of XAF‑1 or TNF‑α individually. To the best of our knowledge, the present study was the first to construct an adenovirus which co‑expressed XAF‑1 and TNF‑α in the same open reading frame and expressed them proportionally. As Ad‑XAF‑1&TNF‑α inhibited HCC cells with enhanced efficiency, it may be applicable for the treatment of HCC.
Insights
X‑linked inhibitor of apoptosis (XIAP)‑associated factor 1 (XAF‑1) is downregulated in hepatocellular carcinoma (HCC). A novel adenovirus co-expressing XAF‑1 and TNF‑α effectively suppressed HCC cell growth and holds potential for HCC therapy.
Area of Science:
- Oncology
- Molecular Biology
- Gene Therapy
Background:
- X‑linked inhibitor of apoptosis (XIAP)‑associated factor 1 (XAF‑1) is a known tumor suppressor.
- XAF‑1 is frequently downregulated in human cancers, but its role in hepatocellular carcinoma (HCC) requires further investigation.
- Understanding XAF‑1's function in HCC is crucial for developing new therapeutic strategies.
Purpose of the Study:
- To investigate the expression levels of XAF‑1 in HCC tissues and cell lines.
- To evaluate the therapeutic potential of a novel recombinant adenovirus co-expressing XAF‑1 and TNF‑α for HCC treatment.
Main Methods:
- XAF‑1 expression was analyzed at mRNA and protein levels in HCC and adjacent non-tumor tissues, and in HCC and normal liver cell lines.
- A recombinant adenovirus (Ad‑XAF‑1&TNF‑α) was constructed to co-express XAF‑1 and TNF‑α.
- Apoptosis induction, proliferation, and colony formation were assessed in HCC cells following infection with the recombinant adenovirus.
Main Results:
- XAF‑1 expression was significantly reduced in HCC tissues and cell lines compared to controls.
- Reduced XAF‑1 levels correlated with tumor size, stage, and metastasis.
- Ad‑XAF‑1&TNF‑α efficiently expressed both proteins and synergistically inhibited HCC cell proliferation and colony formation by inducing apoptosis, outperforming individual gene expression.
Conclusions:
- XAF‑1 is downregulated in HCC, suggesting a tumor-suppressive role.
- The co-expression adenovirus Ad‑XAF‑1&TNF‑α demonstrates enhanced efficacy in inhibiting HCC cell growth.
- This novel adenovirus vector represents a promising therapeutic candidate for hepatocellular carcinoma treatment.
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