1.Knockdown of RFC4 inhibits the cell proliferation of nasopharyngeal carcinoma in vitro and in vivo.
Shuzhen GUAN ; Lin FENG ; Jinrui WEI ; Guizhen WANG ; Lichuan WU
Frontiers of Medicine 2023;17(1):132-142
Nasopharyngeal carcinoma (NPC) is a malignant tumor that mainly occurs in East and Southeast Asia. Although patients benefit from the main NPC treatments (e.g., radiotherapy and concurrent chemotherapy), persistent and recurrent diseases still occur in some NPC patients. Therefore, investigating the pathogenesis of NPC is of great clinical significance. In the present study, replication factor c subunit 4 (RFC4) is a key potential target involved in NPC progression via bioinformatics analysis. Furthermore, the expression and mechanism of RFC4 in NPC were investigated in vitro and in vivo. Our results revealed that RFC4 was more elevated in NPC tumor tissues than in normal tissues. RFC4 knockdown induced G2/M cell cycle arrest and inhibited NPC cell proliferation in vitro and in vivo. Interestingly, HOXA10 was confirmed as a downstream target of RFC4, and the overexpression of HOXA10 attenuated the silencing of RFC4-induced cell proliferation, colony formation inhibition, and cell cycle arrest. For the first time, this study reveals that RFC4 is required for NPC cell proliferation and may play a pivotal role in NPC tumorigenesis.
Humans
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Nasopharyngeal Carcinoma/pathology*
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Carcinoma/pathology*
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Replication Protein C/metabolism*
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Nasopharyngeal Neoplasms/pathology*
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Cell Line, Tumor
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Cell Proliferation
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Gene Expression Regulation, Neoplastic
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Cell Movement
2.Progress on three-dimensional cell culture technology and their application.
Xiaoqin LU ; Xiaofeng LIU ; Hao ZHONG ; Wei ZHANG ; Shuzhen YU ; Rongfa GUAN
Journal of Biomedical Engineering 2023;40(3):602-608
Three-dimensional (3D) cell culture model is a system that co-culture carriers with 3D structural materials and different types of cells in vitro to simulate the microenvironment in vivo. This novel cell culture model has been proved to be close to the natural system in vivo. In the process of cell attachment, migration, mitosis and apoptosis, it could produce biological reactions different from that of monolayer cell culture. Therefore, it can be used as an ideal model to evaluate the dynamic pharmacological effects of active substances and the metastasis process of cancer cells. This paper compared and analyzed the different characteristics of cell growth and development under two-dimensional (2D) and 3D model culture and introduced the establishment method of 3D cell model. The application progress of 3D cell culture technology in tumor model and intestinal absorption model was summarized. Finally, the application prospect of 3D cell model in the evaluation and screening of active substance was revealed. This review is expected to provide reference for the development and application of new 3D cell culture models.
Cell Culture Techniques, Three Dimensional
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Cell Culture Techniques
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Apoptosis
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Cell Proliferation
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Technology