Key result
Blocking VGSC reduces in vitro cervical cancer cell invasiveness by ~20%.
Why the study?
The role and expression levels of voltage-gated sodium channel subunits in cervical cancer and their association with invasion capacity were not fully characterized.
NaV1.6 is upregulated in cervical cancer and its blockade reduces cell invasiveness, suggesting it could serve as a molecular marker for metastatic behavior.
Hypothesis-generating for NaV1.6 as a metastasis marker in cervical cancer; in vivo validation required before clinical consideration.
Functional activity of voltage-gated sodium channels (VGSC) has been associated to the invasion and metastasis behaviors of prostate, breast and some other types of cancer. We previously reported the functional expression of VGSC in primary cultures and biopsies derived from cervical cancer (CaC). Here, we investigate the relative expression levels of VGSC subunits and its possible role in CaC. Quantitative real-time PCR revealed that mRNA levels of Na(V) 1.6 α-subunit in CaC samples were ∼40-fold higher than in noncancerous cervical (NCC) biopsies. A Na(V) 1.7 α-subunit variant also showed increased mRNA levels in CaC (∼20-fold). All four Na(V) β subunits were also detected in CaC samples, being Na(V) β1 the most abundant. Proteins of Na(V) 1.6 and Na(V) 1.7 α-subunits were immunolocalized in both NCC and CaC biopsies and in CaC primary cultures as well; however, although in NCC sections proteins were mainly relegated to the plasma membrane, in CaC biopsies and primary cultures the respective signal was stronger and widely distributed in both cytoplasm and plasma membrane. Functional activity of Na(V) 1.6 channels in the plasma membrane of CaC cells was confirmed by whole-cell patch-clamp experiments using Cn2, a Na(V) 1.6-specific toxin, which blocked ∼30% of the total sodium current. Blocking of sodium channels VGSC with tetrodotoxin and Cn2 did not affect proliferation neither migration, but reduced by ∼20% the invasiveness of CaC primary culture cells in vitro assays. We conclude that Na(V) 1.6 is upregulated in CaC and could serve as a novel molecular marker for the metastatic behavior of this carcinoma.
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Hernández‐Plata et al. (2011) studied Cervical cancer. NaV1.6 channel overexpression vs. Noncancerous cervical tissue was evaluated on NaV1.6 mRNA expression levels and in vitro invasiveness. NaV1.6 mRNA levels were ~40-fold higher in cervical cancer samples than in noncancerous tissue, and blocking VGSC reduced in vitro invasiveness by ~20%.
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