Background:Hepatocellular carcinoma (HCC) represents a formidable challenge in oncology, with high mortality rates and limited therapeutic options, particularly for advanced-stage patients. While immunotherapy has shown promise, its efficacy in advanced HCC remains suboptimal, necessitating the exploration of more potent therapeutic strategies. Methods:The HCC cell lines underwent treatment with arsenic sulfide and/or anti-PD1, while HepG2/Hepa1-6 cells were transduced with lentiviruses for THBS1 overexpression or knockdown. The MTT assay, FACS, Western blotting, qRT-PCR, and ChIP were employed to assess proliferation, modulation of proteins and genes. Additionally, C57BL/6J mice were utilized in vivo to investigate the ability of arsenic sulfide to enhance the efficacy of anti-PD-1 therapy. Results:Here, we investigated the role of arsenic sulfide in HCC treatment and explored its potential synergistic effects and underlying mechanisms when combined with immunotherapy. First of all, using bioinformatics analysis and validation in vitro, we identified thrombospondin-1 (THBS1) as a key prognostic factor for HCC in Asian populations. Then, we demonstrated that arsenic sulfide inhibits HCC cell viability, induces apoptosis, and downregulates THBS1 expression. Furthermore, we observed that arsenic sulfide significantly enhances the anti-HCC effects of anti-PD-1 therapy. Mechanistic insights indicate that arsenic sulfide inhibits STAT3 phosphorylation, reduces THBS1 transcription, thereby disrupting the binding between tumor cell THBS1 and T cell CD47, consequently enhancing anti-PD-1 efficacy. Therefore, arsenic sulfide augments anti-PD-1 efficacy against HCC by inhibiting the STAT3-THBS1/CD47 pathway. Conclusions:Collectively, our findings elucidate the role of arsenic sulfide in conjunction with PD - 1 in HCC eradication and its underlying molecular mechanism, providing a precise scientific rationale and a robust theoretical basis for arsenic sulfide's application in HCC treatment.
Abstract Ferroptosis plays a vital role in the pathological process of numerous human diseases, including cancer. It is possible that ferroptosis stimulation could be used as a cancer treatment strategy. Due to this, ferroptosis-inducing drugs are gaining more attention for the clinical treatment of tumors. For the first time, we demonstrated that arsenic sulfide (As4S4) initiated ferroptotic cell death in hepatocellular carcinoma (HCC) cells, which was concomitant with ROS accumulation, lipid peroxidation, and GSH depletion. Arsenic sulfide -mediated cell death in HCC cells was blocked by ferroptosis inhibitors ferrostatin-1 (Fer-1) and deferoxamine (DFO, an iron chelator), but not Z-VAD-FMK, necrosulfonamide, or chloroquine, suggesting that ferroptosis participated in arsenic sulfide -induced cell death. Transient receptor potential channel 6 (TRPC6) expression was notably inhibited under arsenic sulfide intervention and the overexpression of TRPC6 rescued the effects of arsenic sulfide on ferroptosis. Furthermore, glutathione peroxidase 4 (GPX4), was identified to interact with TRPC6 through confocal microscopy images and co-immunoprecipitation assay. In summary, arsenic sulfide exerts anticancer effects on HCC in vitro and in vivo by inducing ferroptosis via inhibiting TRPC6/GPX4 pathway. Our findings led us to conclude that arsenic sulfide could be considered as a prospective drug for liver cancer treatment.
Rhabdomyosarcoma (RMS) represents one of the most lethal soft-tissue sarcomas in children. The toxic trace element arsenic has been reported to function as a radiosensitizer in sarcomas. To investigate the role of arsenic sulfide (As4S4) in enhancing radiation sensitization in RMS, this study was conducted to elucidate its underlying mechanism in radiotherapy. The combination of As4S4 and radiotherapy showed significant inhibition in RMS cells, as demonstrated by the cell counting kit-8 (CCK-8) assay and flow cytometry. Subsequently, we demonstrated for the first time that As4S4, as well as the knockdown of NFATc3 led to double-strand break (DSB) through increased expression of RAG1. In vivo experiment confirmed that co-treatment efficiently inhibited RMS growth. Furthermore, survival analysis of a clinical cohort consisting of 59 patients revealed a correlation between NFATc3 and RAG1 expression and overall survival (OS). Cox regression analysis also confirmed the independent prognostic significance of NFATc3 and RAG1.Taken together, As4S4 enhances radiosensitivity in RMS via activating NFATc3-RAG1 mediated DSB. NFATc3 and RAG1 are potential therapeutic targets. As4S4 will hopefully serve as a prospective radio-sensitizing agent for RMS.
Abstract Background: Ferroptosis is critically involved in the pathological process of various human diseases, including cancer. Due to this, ferroptosis-inducing drugs are gaining more attention for the clinical treatment of tumors. Methods: The cell counting kit-8 (CCK-8) assay was conducted to observe cell viability of hepatocellular carcinoma (HCC) cell lines. Ferroptosis was determined by levels of Fe2+, lipid reactive oxygen species (ROS), malondialdehyde (MDA) and transmission electron microscopy. Enzyme-linked immunosorbent assay (ELISA), western blot, quantitative polymerase chain reaction and immunofluorescence staining were utilized to evaluate glutathione peroxidase 4 (GPX4) and transient receptor potential channel 6 (TRPC6). Co-immunoprecipitation assay was conducted to determine the binding between GPX4 and TRPC6. Results: Arsenic sulfide initiated ferroptotic cell death in HCC cells, which was concomitant with ROS accumulation, lipid peroxidation, and GSH depletion. Arsenic sulfide -mediated cell death in HCC cells was blocked by ferroptosis inhibitors ferrostatin-1 (Fer-1), but not Z-VAD-FMK, necrosulfonamide, or chloroquine, suggesting that ferroptosis contributed to arsenic sulfide -induced cell death. Furthermore, TRPC6 expression was notably inhibited under arsenic sulfide intervention and the overexpression of TRPC6 rescued the effects of arsenic sulfide on cell viability and ferroptosis of HCC cells. Furthermore, GPX4 was identified to interact with TRPC6 through confocal microscopy images and co-immunoprecipitation assay. Conclusion: Our findings led us to conclude that arsenic sulfide could be considered as a prospective drug for liver cancer treatment. Citation Format: Shumin Lu, Yu Cai, Chuanying Zhu, Zhuowei Feng, Shuxian Chen, Siyu Chen. Arsenic sulfide triggers ferroptosis in hepatocellular carcinoma cells via TRPC6/GPX4 signaling [abstract]. In: Proceedings of the American Association for Cancer Research Annual Meeting 2024; Part 1 (Regular Abstracts); 2024 Apr 5-10; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2024;84(6_Suppl):Abstract nr 362.
BACKGROUND Metastasis is one of the principal reasons of cancer mortality from hepatocellular carcinoma (HCC). The goal of our investigation was to examine the mechanism by which arsenic sulfide (As4S4) represses the metastasis of HCC. METHODS The cell counting kit-8 (CCK-8) assay was conducted to observe cell viability of HCC cell lines HepG2 and Hep3B following As4S4 treatment, and their metastasis was studied using the wound-healing and transwell assays. HCC-induced angiogenesis of human umbilical vein endothelial cells (HUVEC) was assessed by tube formation assay. Enzyme-linked immunosorbent assay (ELISA), western blot, quantitative polymerase chain reaction and immunofluorescence staining were utilized to evaluate key molecules involved in metastasis, including hypoxia-inducible factor 1α (HIF-1α), vascular endothelial growth factor (VEGF), Vimentin, N-cadherin and E-cadherin. RESULTS As4S4 suppressed the proliferation, migration and invasion of HepG2 and Hep3B cell lines in a concentration-dependent pattern, and inhibited HCC cell-induced angiogenesis of HUVEC in the tube formation assay. Treatment with As4S4 also decreased the expression of crucial elements involved in the metastasis of HCC cells, including HIF-1α and VEGF, while reducing epithelial-mesenchymal transition, as shown by Western blot, ELISA and immunofluorescence staining. CONCLUSIONS Overall, results above indicate that As4S4 suppresses the metastasis of HCC cells via the HIF-1α/VEGF pathway.
Background: Breast cancer has the highest incidence among malignant tumors in women, and its prevalence ranks first in global cancer morbidity. Aim: This study aimed to explore the feasibility of a prognostic model for patients with breast cancer based on the differential expression of genes related to fatty acid metabolism. Methods: The mRNA expression matrix of breast cancer and paracancer tissues was downloaded from The Cancer Genome Atlas database. The differentially expressed genes related to fatty acid metabolism were screened in R language. The TRRUST database was used to predict transcriptional regulators related to hub genes and construct an mRNA–transcription factor interaction network. A consensus clustering approach was used to identify different fatty acid regulatory patterns. In combination with patient survival data, Lasso and multivariate Cox proportional risk regression models were used to establish polygenic prognostic models based on fatty acid metabolism. The median risk score was used to categorize patients into high- and low-risk groups. Kaplan–Meier survival curves were used to analyze the survival differences between both groups. The Cox regression analysis included risk score and clinicopathological factors to determine whether risk score was an independent risk factor. Models based on genes associated with fatty acid metabolism were evaluated using receiver operating characteristic curves. A comparison was made between risk score levels and the fatty acid metabolism-associated genes in different subtypes of breast cancer. The differential gene sets of the Kyoto Encyclopedia of Genes and Genomes for screening high- and low-risk populations were compared using a gene set enrichment analysis. Furthermore, we utilized CIBERSORT to examine the abundance of immune cells in breast cancer in different clustering models. Results: High expression levels of ALDH1A1 and UBE2L6 prevented breast cancer, whereas high RDH16 expression levels increased its risk. Our comprehensive assessment of the association between prognostic risk scoring models and tumor microenvironment characteristics showed significant differences in the abundance of various immune cells between high- and low-risk breast cancer patients. Conclusions: By assessing fatty acid metabolism patterns, we gained a better understanding of the infiltration characteristics of the tumor microenvironment. Our findings are valuable for prognosis prediction and treatment of patients with breast cancer based on their clinicopathological characteristics.
Objectives To investigate the relationship between tumour budding, clinicopathological characteristics of patients and prognosis in non-small cell lung cancer. Study design A retrospective study was used. Participants We selected 532 patients with non-small cell lung cancer from China, including 380 patients with adenocarcinoma and 152 with squamous cell carcinoma. Primary and secondary outcome measures Tumour budding was visible using H&E staining as well as pancytokeratin staining. The count data and measurement data were compared using the χ 2 test and the t-test, respectively. The overall survival rate was the follow-up result. The survival curves were drawn using the Kaplan-Meier method, and the differences between groups were analysed using the log-rank method. The independent prognostic factor of patients with lung cancer was determined using a multivariate Cox proportional hazard model. Results In patients with lung adenocarcinoma, there was a correlation between tumour budding and spread through air spaces (OR 36.698; 95% CI 13.925 to 96.715; p<0.001), and in patients with squamous cell carcinoma, tumour budding state was closely related to the peritumoural space (OR 11.667; 95% CI 4.041 to 33.683; p<0.001). On Cox regression analysis, multivariate analysis showed that tumour budding, pleural and vascular invasion, spread through air spaces, tumour size, lymph node metastasis, and tumour node metastasis stage were independent risk factors of prognosis for patients with non-small cell lung cancer. Conclusions As an effective and simple pathological diagnostic index, it is necessary to establish an effective grading system in the clinical diagnosis of lung cancer to verify the value of tumour budding as a prognostic indicator. We hope that this analysis of Chinese patients with non-small cell lung cancer can provide useful reference material for the continued study of tumour budding.
Lung adenocarcinoma (LUAD) is still one of the illnesses with the greatest mortality and morbidity. As a recently identified mode of cellular death, the activation of ferroptosis may promote the effectiveness of antitumor therapies in several types of tumors. However, the expression and clinical significance of Ferroptosis-associated genes in LUAD are still elusive. The RNA sequencing data of LUAD and relevant clinical data were downloaded from The Cancer Genome Atlas (TCGA) datasets. Subsequently, potential prognostic biomarkers were determined by the use of biological information technology. The R software package "ggalluvial" was applied to structure Sanguini diagram. Herein, our team screened 14 dysregulated ferroptosis-associated genes in LUAD. Among them, only four genes were associated with clinical outcome of LUAD patients, including ATP5MC3, FANCD2, GLS2, and SLC7A11. In addition, we found that high SLC7A11 expression predicted an advanced clinical progression in LUAD patients. Additionally, 8 immune checkpoint genes and 7 immune cells for LUAD were recognized to be related to the expression of SLC7A11. KEGG assays indicated that high expression of SLC7A11 might participate in the modulation of intestinal immune network for IgA generation and Staphylococcus aureus infection. Overall, our findings revealed that SLC7A11 might become a potentially diagnostic biomarker and SLC7A11 might serve as an independent prognosis indicator for LUAD.
Abstract Background: Glioma is the most common primary malignant tumor of the central nervous system (CNS), and low-grade glioma (LGG) is an important pathological type of glioma. Immune infiltration of tumor microenvironment is an independent predictor of survival and prognosis in LGG patients. SLC25A1 is a gene that has not been reported in LGG. We used the TCGA database to study the expression level of SLC25A1 in LGG tissues and its relationship with the prognosis of LGG patients and tumor immune cell infiltration.Methods: Download gene expression profile data and clinical information of LGG patients from the TCGA database. The expression level of SLC25A1 gene in LGG tissues and normal tissues was compared. The expression level of SLC25A1 gene in LGG tissue samples with different WHO grades and its relationship with the prognosis of patients were analyzed. The correlation between clinical information and SLC25A1 expression was analyzed by Logistic regression. The effect of SLC25A1 on survival of LGG patients was evaluated by survival module. The correlation between SLC25A1 gene expression and tumor immune cell infiltration in LGG and the effect of immune cell infiltration on the prognosis of patients were analyzed by using the relevant modules of GEPIA. The gene groups related to SLC25A1 expression were analyzed by KEGG pathway enrichment analysis. In addition, TCGA dataset was used for gene set enrichment analysis (GSEA).Result: The expression level of SLC25A1 gene in LGG tissues was higher than that in normal tissues. The expression of SLC25A1 in WHO Ⅱ LGG tissues was higher than that in WHO Ⅲ tissues. Multivariate analysis showed that the up-regulated expression of SLC25A1 was an independent prognostic factor for good prognosis in patients with LGG. There was a correlation between the expression level of SLC25A1 and the level of immune cell infiltration of LGG, and the latter affects the prognosis of patients with LGG. In addition, GSEA also found that Neuroactive ligand receptor interaction, cell adhesion molecules cams and so on were differentially enriched in the phenotypic pathway of high expression of SLC25A1. In the Kyoto Encyclopedia of Genome and Genome (KEGG), Neuroactive ligand-receptor interaction, Morphine addiction et al have been identified as differential enrichment pathways.Conclusion: SLC25A1 is the prognosis of LGG related to immune cell infiltration, and may become a biomarker of LGG grade diagnosis, immunotherapy and prognosis.
Abstract Objectives: Arsenic compounds have cytotoxic activities in gastric cancer cells, however, the underlying mechanism is unclear and the clinical potential need to be explored. This study was aimed to investigate the mechanism of arsenic on gastric cancer and find a novel regimen for the treatment of gastric cancer. Methods: Gastric cancer cell lines were treated with arsenics and/or chemotherapeutic drugs. MTT assay, FACS, Western blotting, q-RT-PCR and CHIP were used to detect proliferation, modulation of proteins and genes. Results: We previously showed that NFATc3 was a target of Arsenic sulfide and its inhibition blocks gastric cancer growth. Here we show that the NFATc3 expression is critically important for the growth and survival of gastric cancer cells because knockdown of NFATc3 resulted in DNA damage and cell cycle arrest. Arsenic sulfide can target NFATc3 in gastric cancer cells and cause cell double-strand DNA breaks (DSB). However, overexpression of NFATc3 can block the DNA damage. Abolishing NFATc3 expression, whether by shRNA-induced silencing or Arsenic sulfide treatment, directly upregulated recombination activating gene 1 (RAG1, an endonuclease which is essential for immunoglobulin V(D)J recombination), leading to fatal DSB. NFATc3 targets the promoter of RAG1 for transcriptional inhibition. Moreover, we find that Arsenic sulfide and topoisomerase inhibitors (Irinotecan and Epirubicin, Doxorubicin, Etoposide and SN38) synergistically inhibit gastric cancer. Arsenic sulfide, as well as Arsenic Trioxide, enhanced the cytotoxic effect of Irinotecan and they synergistically induced NFATc3 degradation, resulted in disability of DNA repair system, as reflected by the decrease in the phosphorylated ATM/CHK2/CHK1 protein level and the dramatic increase in the phosphorylated H2AX protein level. More inspiring, a patient with advanced gastric cancer with liver and lymph-node metastasis who failed in first-line treatment achieved PR with 2 months treatment of Irinotecan combined with Realgar-Indigo Naturalis Formula, the main component of which is Arsenic sulfide. The progression-free survival was 4 months with no additional adverse event. Conclusions: Our research links arsenic compounds to the regulation of DNA damage repair and RAG1 expression as a mechanism for the cytotoxic effect. The combination of arsenic with topoisomerase inhibitors may represent a novel regimen for the treatment of gastric cancer and warrants further studies. Citation Format: Ting Kang, Maolin Ge, Shumin Lu, Qing Wang, Shouhai Zhu, Chuanying Zhu, Leizhen Zheng, Han Liu, Siyu Chen. Combining arsenic and topoisomerase inhibitors synergistically inhibit gastric cancer [abstract]. In: Proceedings of the Annual Meeting of the American Association for Cancer Research 2020; 2020 Apr 27-28 and Jun 22-24. Philadelphia (PA): AACR; Cancer Res 2020;80(16 Suppl):Abstract nr 6265.
Objective Serine protease 3 (PRSS3) is an isoform of trypsinogen, and plays an important role in the development of many malignancies. The objective of this study was to determine PRSS3 mRNA and protein expression levels in invasive ductal carcinoma of the breast and normal surrounding tissue samples. Results Both PRSS3 mRNA and protein levels were significantly higher in invasive ductal carcinoma of the breast tissues than in normal or benign tissues (all P < 0.05). High PRSS3 protein levels were associated with patients’ age, histological grade, Her-2 expression level, ki-67 expression, and the 5.0-year survival rate. These high protein levels are independent prognostic markers in invasive ductal carcinoma of the breast. Materials and Methods We used real-time quantitative polymerase chain reactions (N = 40) and tissue microarray immunohistochemistry analysis (N = 286) to determine PRSS3 mRNA and protein expression, respectively. PRSS3 protein levels in invasive ductal carcinoma of the breast tissues were correlated with the clinical characteristics of patients with invasive ductal carcinoma of the breast and their 5.0-year survival rate. Conclusions PRSS3 acts as an oncogene in invasive ductal carcinoma of the breast development and progression. This finding implies that detection of PRSS3 expression can be a useful prognosis marker and the targeting of PRSS3 can potentially represent a new strategy for invasive ductal carcinoma of the breast treatment.
PFTK1, also named Cyclin-Dependent Kinase 14 (CDK14), is a member of the cell division cycle 2 (CDC2)-related protein kinase family. It is a serine/threonine-protein kinase involved in the regulation of cell cycle progression and cell proliferation. In this study, we investigated the role of PFTK1 in epithelial ovarian cancer (EOC) development. The expression of PFTK1 was detected by Western blot and immunohistochemistry staining, both of which demonstrated that PFTK1 was overexpressed in EOC tissues and cells. Statistical analysis showed the expression of PFTK1 was associated with multiple clinicopathological factors, including tumor grade, FIGO stage, lymph node metastatis, Ki-67 expression and predicted a poor prognosis of EOC patients. With in vitro studies we found that PFTK1 expression was decreased in serum-starved ovarian cancer cells, and progressively increased after serum-re-feeding. Knocking PFTK1 down by small interfering RNA (siRNA) significantly inhibited ovarian cancer cell proliferation, migration and invasion. Taken together, our study suggested that PFTK1 played an important role in ovarian cancer development.
In this study, we investigated the expression and role of PSMB4 in human epithelial ovarian cancer(EOC).
Homeobox C8 (HOXC8) is a transcription factor that has been reported as a potential driver oncogene in several tumors and involved in the regulation of many cancer-related proteins. In this study, we investigated the expression and role of HOXC8 in ovarian cancer. Western blot and immunohistochemistry analyses were performed to detect the expression of HOXC8. Kaplan-Meier curve showed that high expression of HOXC8 was related to poor prognosis of patients with epithelial ovarian cancer (EOC). Starvation and refeeding assay were used to assess cell cycle, suggesting that HOXC8 played a critical role in EOC cell proliferation. HOXC8 depletion by small interfering RNA inhibited cell proliferation, migration, and induced apoptosis in EOC cells. Moreover, HOXC8 knockdown increased the expression of ZAC1. Owing to the overexpression of HOXC8, our findings implied that HOXC8 is involved in the progression of EOC and could be a potential therapeutical approach of EOC.
We aimed to investigate the molecular mechanisms of DYRK2 and the HCC sensitivity to Oxaliplatin in DYRK2-depleted HCC cells. HCC tissue specimens were obtained from 86 HCC patients during hepatectomy. We used immunohistochemistry and western blot to analyze DYRK2 expression in HCC tissues and cell lines, and used siRNA transfection to decrease DYRK2 expression in HCC cells. Flow cytometry and CCK-8 assay were detected in cell cycle progression, cell proliferation and the efficacy of Oxaliplatin, DYRK2 was down-regulated in HCC tissues, compared with adjacent nontumor ones. The significant correlation between DYRK2 expression and clinicopathologic factors was apparently shown in the immunohistochemical and statistical analyses. The expression of DYRK2 was significantly associated with histological grade of HCC patients. Univariate and multivariate survival analyses revealed that DYRK2 was a significant predictor for overall survival of HCC patients. The depletion of DYRK2 promoted HCC cell proliferation, and increased resistance to Oxaliplatin. These data showed that the downregulated expression of DYRK2 in HCC tumor tissues could promote the proliferation of HCC cells. In addition, reducing DYRK2 expression was associated with poor prognosis and Oxaliplatin resistance in HCC.
The aim of this study is to investigate the potential role and prognostic significance of translationally controlled tumor protein (TCTP) in human epithelial ovarian cancer (EOC). Western blot was used to evaluate the expression of TCTP in eight fresh EOC tissues. Immunohistochemistry was performed on formalin-fixed paraffin-embedded sections of 119 cases of ovarian cancers. Kaplan–Meier method indicated the relation between TCTP and EOC patients’ overall survival rate. Starvation and re-feeding was used to assess cell cycle. Knocking down of TCTP and CCK8 assay showed the role of TCTP in HO8910 cell cycle. We found that TCTP was overexpressed in carcinoma tissues compared with normal tissues. Immunohistochemistry revealed that TCTP expression was significantly associated with clinicopathologic variables. Kaplan–Meier analysis revealed that high TCTP expression was significantly related to poor prognosis of the patients. Starvation and re-feeding suggested TCTP played a critical role in HO8910 cell proliferation. Interference of TCTP and CCK8 assay showed that the TCTP-siRNA treated HO8910 cells grew more slowly than the control group. CCK-8 assays and terminal-deoxynucleoitidyl transferase mediated nick end labeling assays were also performed to demonstrate the cisplatin could inhibit the survival of HO8910 cells and promote their apoptosis. All the experiments we have done showed that TCTP could promote the progression of EOC and reduce the sensitiveness of HO8910 cells to cisplatin.
PURPOSE:This study aimed at investigating the potential role and prognostic significance of Annexin A2 in human epithelial ovarian cancer (EOC).METHODS:Western blot was used to evaluate the expression of Annexin A2 in nine fresh EOC tissues, and immunohistochemical analysis was performed on formalin-fixed paraffin-embedded sections of 119 cases of ovarian cancers. Then, we used Fisher exact test to analyze the correlation between Annexin A2 and clinicopathological parameters. Starvation refeeding was used to detect the alteration of Annexin A2 in HO8910 cell cycle.RESULTS:Annexin A2 was overexpressed in carcinoma tissues compared with normal tissue, and the expression levels gradually increased from G1 to G3. Moreover, the staining of tissue microarray was consistent with the result we got from western blot, increasing from G1 to G3 gradually, and it was related to the Figo stage (P = 0.005), histologic grade (P = 0.002), ascite (P < 0.001), malignant tumor cells (P < 0.001), residual tumor size (P = 0.044), Ki-67 (P = 0.003). Kaplan-Meier analysis revealed that high Annexin A2 expression was significantly associated with poor prognoses of the patients (P < 0.001). Multivariate analysis demonstrated that Annexin A2 was an independent prognostic indicator for overall survival. Starvation refeeding indicated that Annexin A2 was related to EOC cell proliferation.CONCLUSIONS:We could hypothesize that Annexin A2 acted a critical role in EOC cell proliferation, and may be used as a potential and novel therapeutic target for EOC. These data suggest that Annexin A2 may promote the progression of EOC and be a therapeutic target for EOC therapy.
This study focused on determining the role of Spy1 in human epithelial ovarian cancer (EOC). Speedy is a novel cell cycle protein capable of promoting cell proliferation. In this study, western blot and immunohistochemistrical analyses were performed to detect the expression of Spy1 in ovarian cancer. Spy1 protein levels increased with ovarian cancer grade, and Kaplan–Meier curve showed that overexpression of Spy1 was significantly correlated with reduced patient survival. In vitro, Spy1 depletion in ovarian cell lines led to reduced proliferation according to CCK8 and plate colony assays. The expression of Spy1 was positively related to pThr187-p27. Flow cytometry revealed that the reduced expression of Spy1 induced the apoptosis of the EOC cells. In summary, our findings suggested that Spy1 may be a novel independent prognostic predictor of survival for ovarian patients.