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Transplantation Into the Mouse Ovarian Fat Pad
Published on: September 7, 2016
SLFN5 promotes reversible epithelial and mesenchymal transformation in ovarian cancer
Qiao Ping Xu1, Kui Deng2, Zhen Zhang3
1Department of Clinical Pharmacology, Key Laboratory of Clinical Cancer Pharmacology and Toxicology Research of Zhejiang Province, Affiliated Hangzhou, First People's Hospital, Hangzhou, 310006, China.
Abstract:
Ovarian cancer is a disease with increasing incidence worldwide, and there is an urgent need for chemotherapy and biological targeted therapy. Epithelial-mesenchymal transformation (EMT) is an important initiation stage for tumor cells to acquire the ability to invade and metastasize. A growing number of findings suggest that human Schlafen family member 5(SLFN5) plays a key role in malignancy. However, the role of SLFN5 in ovarian cancer cells has not been fully elucidated. Samples were collected from patients with ovarian cancer diagnosed in Hangzhou First People's Hospital, and the expression of SLFN5 was detected by fluorescence quantitative PCR. The relationship between SLFN5 expression and the progression and malignancy of ovarian cancer was analyzed by using the expression profile data from the Cancer Genome Atlas (TCGA) database. The mRNA expression levels of SLFN5 related upstream and downstream signaling pathways were studied by fluorescence quantitative PCR. Silencing SLFN5 was performed by siRNA transfection. The expression of SLFN5 and transfer-related proteins was examined by Western blot. Transwell and wound healing experiments investigated the migration and invasion ability of ovarian cancer cells. TCGA database analysis results showed that in the population with high SLFN5 expression, compared with the group with low SLFN5 expression, OS was worse (P = 0.011). SLFN5 silencing had a significant inhibitory effect on EMT and invasion movement of ovarian cancer cells. RT-PCR method was used to detect the mRNA changes of SLFN5 in ovarian cancer tissue and adjacent tissue. It was found that the expression of SLFN5 in ovarian cancer tissue was increased, with a significant difference (P < 0.05). Together, these results suggest that SLFN5 may play a synergistic role in tumorigenesis and development of ovarian cancer cells, providing a potential target for future drug development for the treatment of ovarian cancer.
Insights
Human Schlafen family member 5 (SLFN5) is upregulated in ovarian cancer tissues and promotes tumor cell invasion and metastasis. Silencing SLFN5 inhibits epithelial-mesenchymal transformation (EMT), offering a potential therapeutic target for ovarian cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Ovarian cancer incidence is rising globally, necessitating novel therapeutic strategies beyond chemotherapy.
- Epithelial-mesenchymal transformation (EMT) is crucial for tumor cell invasion and metastasis.
- Human Schlafen family member 5 (SLFN5) is implicated in malignancy, but its role in ovarian cancer requires further investigation.
Purpose of the Study:
- To elucidate the role of SLFN5 in ovarian cancer progression and malignancy.
- To investigate SLFN5's impact on ovarian cancer cell migration and invasion.
- To assess SLFN5 as a potential therapeutic target for ovarian cancer.
Main Methods:
- Analysis of SLFN5 expression in patient samples and TCGA database.
- Investigation of SLFN5's effect on EMT and cell invasion via siRNA silencing, Western blot, Transwell, and wound healing assays.
- Examination of SLFN5-related signaling pathways using quantitative PCR.
Main Results:
- SLFN5 expression was significantly increased in ovarian cancer tissues compared to adjacent tissues (P < 0.05).
- High SLFN5 expression correlated with worse overall survival (OS) in ovarian cancer patients (P = 0.011).
- SLFN5 silencing significantly inhibited EMT and the invasive capabilities of ovarian cancer cells.
Conclusions:
- SLFN5 plays a significant role in the tumorigenesis and progression of ovarian cancer.
- SLFN5 promotes ovarian cancer cell invasion and metastasis by facilitating EMT.
- SLFN5 represents a promising molecular target for developing new ovarian cancer therapies.

