| Literature DB >> 29343267 |
Linan Zhu1, Xudong Zhang1, Xiaorui Fu1, Zhaoming Li1, Zhenchang Sun1, Jingjing Wu1, Xinhua Wang1, Feng Wang1, Xiangke Li1, Songtao Niu1, Mengjie Ding1, Zhenzhen Yang1, Wanqiu Yang1, Meifeng Yin1, Lei Zhang1, Mingzhi Zhang2.
Abstract
BACKGROUND: Esophageal carcinoma is the eighth prevalent malignancy and ranks the sixth in carcinoma-related death worldwide. Tumor necrosis factor-α-induced protein-8 like-2 (TIPE2) has been identified as a tumor suppressor in multiple carcinomas. However, its roles and molecular mechanisms underlying esophageal carcinoma progression are still undefined till now.Entities:
Keywords: Esophageal carcinoma; Proliferation; TIPE2; Tumorigenesis; Wnt/β-catenin pathway
Mesh:
Substances:
Year: 2018 PMID: 29343267 PMCID: PMC5773041 DOI: 10.1186/s12967-018-1383-0
Source DB: PubMed Journal: J Transl Med ISSN: 1479-5876 Impact factor: 5.531
Fig. 1TIPE2 expression was downregulated in esophageal carcinoma tissues and cells. a RT-qPCR assay was used to detect TIPE2 mRNA expression in 29 pairs of esophageal carcinoma tissues and adjacent normal tissues, with β-actin as an endogenous control. b The overall expression of TIPE2 protein in 29 pairs of esophageal carcinoma tissues and adjacent normal tissues was measured using western blot and normalized to β-actin expression. c TIPE2 protein level in esophageal carcinoma cell lines (KYSE410, EC9706, KYSE150, TE-1, and EC109) and normal human esophageal epithelial cells (HEEC), *P < 0.05
Fig. 2TIPE2 overexpression suppressed the proliferation of esophageal carcinoma cells. TIPE2 protein level in PBS-treated, Ad-V- or Ad-TIPE2-infected EC9706 (a) and EC109 (b) cells were measured using western blot assay after treatment for 3 days. MTT assay was performed to detect the proliferation of EC9706 (c) and EC109 (d) cells at the indicated time points (0, 1, 2, 3 days) after infection with Ad-V or Ad-TIPE2. Representative images of EdU incorporation in Ad-V- or Ad-TIPE2-infected EC9706 (e) and EC109 (f) cells (the green fluorescent cells) are in the S phase of mitosis. Representative images of DAPI staining in Ad-V- or Ad-TIPE2-infected EC9706 (e) and EC109 (f) cells (the blue fluorescent cells) represent all of the cells. Cell proliferation rates were also determined by EdU cell proliferation assay in Ad-V- or Ad-TIPE2- infected EC9706 (g) and EC109 (h) cells at the 3th day after infection, *P < 0.05
Fig. 3TIPE2 overexpression suppressed invasion and induced apoptosis in esophageal carcinoma cells. Transwell assay was employed to assess invasion capability in Ad-V- or Ad-TIPE2-infected EC9706 (a) and EC109 (b) cells. Cell apoptosis rates were measured in Ad-V- or Ad-TIPE2-infected EC9706 (c) and EC109 (d) cells at the 3th day after infection, *P < 0.05
Fig. 4TIPE2 overexpression inhibited tumor growth in vivo. Xenograft tumor models were established by injecting with EC9706 cells infected with Ad-V or Ad-TIPE2 into the flank region of nude mice. a The tumor volume was monitored every 3 days for 24 days. b Resected xenograft tumor tissues were processed to perform IHC assay and H&E staining. c The representative photographs of xenograft tumor tissues were obtained and the mean weight of resected xenograft tumors was measured at the 24th day after infection, *P < 0.05
Fig. 5TIPE2 overexpression suppressed activation of the Wnt/β-catenin signaling pathway in vitro and in vivo. a Western blot assay was performed to detect the expressions of β-catenin, c-Myc, and cyclinD1 in EC9706 cells infected with Ad-V or Ad-TIPE2 at the 3th day after infection. b β-catenin, c-Myc, and cyclinD1 expressions were also measured in Ad-V- or Ad-TIPE2-infected xenografts tumor tissues, *P < 0.05