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  • Article
  • Open Access
23 Citations
7,205 Views
14 Pages

Connexin 26 is Down-Regulated by KDM5B in the Progression of Bladder Cancer

  • Xin Li,
  • Yongping Su,
  • Jinhong Pan,
  • Zhansong Zhou,
  • Bo Song,
  • Enqing Xiong and
  • Zhiwen Chen

11 April 2013

Connexin 26 (Cx26) expression is down-regulated and KDM5B (H3K4 demethylase) is up-regulated in the progression of bladder cancer, suggesting that Cx26 expression may be down-regulated by KDM5B in bladder cancer. To test the hypothesis, the HT1376 an...

(This article belongs to the Section Biochemistry)
  • Article
  • Open Access
29 Citations
9,438 Views
13 Pages

G Protein-Coupled Receptor 87 (GPR87) Promotes Cell Proliferation in Human Bladder Cancer Cells

  • Xia Zhang,
  • Dage Liu,
  • Yushi Hayashida,
  • Homare Okazoe,
  • Takeshi Hashimoto,
  • Nobufumi Ueda,
  • Mikio Sugimoto and
  • Yoshiyuki Kakehi

14 October 2015

G protein-coupled receptor 87 (GPR87) is a newly deorphanized member of the cell surface molecule G protein-coupled receptor family. GPR signaling was shown to play a role in promotion of cell growth and survival, metastasis, and drug resistance. T...

(This article belongs to the Collection G Protein-Coupled Receptor Signaling and Regulation)
  • Article
  • Open Access
35 Citations
5,707 Views
14 Pages

4 December 2021

In bladder cancer, urothelial carcinoma is the most common histologic subtype, accounting for more than 90% of cases. Pathogenic effects due to the dysbiosis of gut microbiota are localized not only in the colon, but also in regulating bladder cancer...

(This article belongs to the Topic Cancer Biology and Therapy)
  • Article
  • Open Access
20 Citations
5,584 Views
12 Pages

Synergistic Effects of Combination Therapy with AKT and mTOR Inhibitors on Bladder Cancer Cells

  • Hyera Kim,
  • Su Jin Lee,
  • In Kyoung Lee,
  • Suejean C. Min,
  • Hyun Hwan Sung,
  • Byong Chang Jeong,
  • Jeeyun Lee and
  • Se Hoon Park

Despite comprehensive genomic analyses, no targeted therapies are approved for bladder cancer. Here, we investigate whether a single and combination therapy with targeted agents exert antitumor effects on bladder cancer cells through genomic alterati...

(This article belongs to the Special Issue The Promise of Precision Oncology: Molecular Strategies, Methods, Pharmacogenomics and Informatics)
  • Article
  • Open Access
28 Citations
6,302 Views
18 Pages

Transgelin, a p53 and PTEN-Upregulated Gene, Inhibits the Cell Proliferation and Invasion of Human Bladder Carcinoma Cells In Vitro and In Vivo

  • Ke-Hung Tsui,
  • Yu-Hsiang Lin,
  • Kang-Shuo Chang,
  • Chen-Pang Hou,
  • Pin-Jung Chen,
  • Tsui-Hsia Feng and
  • Horng-Heng Juang

7 October 2019

Transgelin (TAGLN/SM22-α) is a regulator of the actin cytoskeleton, affecting the survival, migration, and apoptosis of various cancer cells divergently; however, the roles of TAGLN in bladder carcinoma cells remain inconclusive. We compared ex...

(This article belongs to the Special Issue Diagnostic, Prognostic and Predictive Biological Markers in Bladder Cancer – Illumination of a Vision 2.0)
  • Article
  • Open Access
102 Citations
11,324 Views
20 Pages

Ellagic Acid Inhibits Bladder Cancer Invasiveness and In Vivo Tumor Growth

  • Claudia Ceci,
  • Lucio Tentori,
  • Maria Grazia Atzori,
  • Pedro M. Lacal,
  • Elena Bonanno,
  • Manuel Scimeca,
  • Rosella Cicconi,
  • Maurizio Mattei,
  • Maria Gabriella De Martino and
  • Grazia Graziani
  • + 2 authors

22 November 2016

Ellagic acid (EA) is a polyphenolic compound that can be found as a naturally occurring hydrolysis product of ellagitannins in pomegranates, berries, grapes, green tea and nuts. Previous studies have reported the antitumor properties of EA mainly usi...

  • Article
  • Open Access
28 Citations
5,672 Views
16 Pages

The Role of Interleukin-1-Receptor-Antagonist in Bladder Cancer Cell Migration and Invasion

  • Lisa Schneider,
  • Junnan Liu,
  • Cheng Zhang,
  • Anca Azoitei,
  • Sabine Meessen,
  • Xi Zheng,
  • Catharina Cremer,
  • Christian Gorzelanny,
  • Sybille Kempe-Gonzales and
  • Axel John
  • + 4 authors

Background: The interleukin-1-receptor antagonist IL1RA (encoded by the IL1RN gene) is a potent competitive antagonist to interleukin-1 (IL1) and thereby is mainly involved in the regulation of inflammation. Previous data indicated a role of IL1RA in...

(This article belongs to the Special Issue Recent Aspects in the Pathogenesis and Molecular Mechanism of Vascular Endothelial Inflammation in Metabolic Diseases)