| Literature DB >> 35116732 |
Rui Gao1, Ting Cao1, Hui Chen1, Jing Cai1, Ming Lei2, Zehua Wang1.
Abstract
BACKGROUND: Nav1.5, an isoform of voltage-gated sodium channel alpha subunits, has been found to be over-expressed in cancer cells and linked to disease progression. Nav1.5-third extracellular region antibody (E3Ab) specifically targets the E3 of Nav1.5 and can lead to a subtype-specific inhibition of Nav1.5. We were interested in the therapeutic potential of E3Ab in cancer.Entities:
Keywords: Ion channel; Nav1.5; cancer; invasion; migration
Year: 2019 PMID: 35116732 PMCID: PMC8798249 DOI: 10.21037/tcr.2018.12.23
Source DB: PubMed Journal: Transl Cancer Res ISSN: 2218-676X Impact factor: 1.241
Figure 1Nav 1.5 expression in Caov-3 cells. Immunocytochemistry assays show positive Nav 1.5 expression (green) in Caov-3 by E3Ab and Nav1.5 antibody. Cell nuclei are visualized by DAPI staining (blue). E3Ab, third extracellular region antibody.
Figure 2E3Ab inhibits ovarian cancer growth in vivo. Caov-3 subcutaneous xenografts mouse models were established and E3Ab, lidocaine, or PBS were intratumoral administrated one week after inoculation (ten mice per group). (A) Tumor growth curves show E3Ab and lidocaine slowed down the growth of xenografts compared with the PBS group; (B) the xenografts in the E3Ab group and the lidocaine group were smaller than those from the PBS group; (C) HE staining of the xenografts. *, P<0.05 vs. control. E3Ab, third extracellular region antibody.
Figure 3E3Ab inhibits cancer cell migration and invasion in vitro. Tumor cells were treated with E3Ab, lidocaine, or PBS. The transwell migrating cells (A) and the invading cells (B) were significantly decreased in the E3Ab group and the lidocaine group compared with the PBS group; (C) EdU incorporation assays. E3Ab and lidocaine inhibited cell proliferation; (D) Western blot. MMP-9 protein expression in Caov-3 cells was reduced by E3Ab and lidocaine. *, P<0.05 vs. control. E3Ab, third extracellular region antibody; EdU, 5-Ethynyl-2'-deoxyuridine; MMP-9, metal matrix protease-9.