Key result
Phenotypic remodeling of human uterine artery smooth muscle cells is associated with a shift to Kv3.4 channel expression, and selective blockade of Kv3.4 reduces the proliferation rate.
Kv3.4 channels are the principal contributor to K+ currents in cultured human uterine artery smooth muscle cells, and their blockade reduces proliferation, suggesting a role in phenotypic remodeling.
Kv3.4 blockade may curb uterine artery smooth muscle proliferation in vitro; leaves open therapeutic relevance for vascular remodeling.
Vascular smooth muscle cells (VSMCs) perform diverse functions that can be classified into contractile and synthetic (or proliferating). All of these functions can be fulfilled by the same cell because of its capacity of phenotypic modulation in response to environmental changes. The resting membrane potential is a key determinant for both contractile and proliferating functions. Here, we have explored the expression of voltage-dependent K+ (Kv) channels in contractile (freshly dissociated) and proliferating (cultured) VSMCs obtained from human uterine arteries to establish their contribution to the functional properties of the cells and their possible participation in the phenotypic switch. We have studied the expression pattern (both at the mRNA and at the protein level) of Kvalpha subunits in both preparations as well as their functional contribution to the K+ currents of VSMCs. Our results indicate that phenotypic remodeling associates with a change in the expression and distribution of Kv channels. Whereas Kv currents in contractile VSMCs are mainly performed by Kv1 channels, Kv3.4 is the principal contributor to K+ currents in cultured VSMCs. Furthermore, selective blockade of Kv3.4 channels resulted in a reduced proliferation rate, suggesting a link between Kv channels expression and phenotypic remodeling.
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Miguel‐Velado et al. (2005) studied Phenotypic remodeling of human uterine artery smooth muscle cells. Selective blockade of Kv3.4 channels vs. Unblocked cells was evaluated on Expression pattern of Kv channels and proliferation rate. Phenotypic remodeling of human uterine artery smooth muscle cells is associated with a shift to Kv3.4 channel expression, and selective blockade of Kv3.4 reduces the proliferation rate.
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