Potent Suppression of Vascular Smooth Muscle Cell Migration and Human Neointimal Hyperplasia by KV1.3 Channel Blockers
Overview
Authors
Affiliations
Aim: The aim of the study was to determine the potential for K(V)1 potassium channel blockers as inhibitors of human neoinitimal hyperplasia.
Methods And Results: Blood vessels were obtained from patients or mice and studied in culture. Reverse transcriptase-polymerase chain reaction and immunocytochemistry were used to detect gene expression. Whole-cell patch-clamp, intracellular calcium measurement, cell migration assays, and organ culture were used to assess channel function. K(V)1.3 was unique among the K(V)1 channels in showing preserved and up-regulated expression when the vascular smooth muscle cells switched to the proliferating phenotype. There was strong expression in neointimal formations. Voltage-dependent potassium current in proliferating cells was sensitive to three different blockers of K(V)1.3 channels. Calcium entry was also inhibited. All three blockers reduced vascular smooth muscle cell migration and the effects were non-additive. One of the blockers (margatoxin) was highly potent, suppressing cell migration with an IC(50) of 85 pM. Two of the blockers were tested in organ-cultured human vein samples and both inhibited neointimal hyperplasia.
Conclusion: K(V)1.3 potassium channels are functional in proliferating mouse and human vascular smooth muscle cells and have positive effects on cell migration. Blockers of the channels may be useful as inhibitors of neointimal hyperplasia and other unwanted vascular remodelling events.
A sex-dependent role of Kv1.3 channels from macrophages in metabolic syndrome.
Peraza D, Benito-Salamanca L, Moreno-Estar S, Alonso E, Lopez-Lopez J, Perez-Garcia M Front Physiol. 2024; 15:1487775.
PMID: 39605858 PMC: 11599228. DOI: 10.3389/fphys.2024.1487775.
Wang M, Li S, Liu H, Liu M, Zhang J, Wu Y Front Cardiovasc Med. 2022; 9:1062695.
PMID: 36568562 PMC: 9780463. DOI: 10.3389/fcvm.2022.1062695.
Krasa K, Vajnerova O, D Uris Ova J, Minarikova M, Mikova D, Srbova M Physiol Res. 2022; 71(6):801-810.
PMID: 36426885 PMC: 9814989.
Diversification of Potassium Currents in Excitable Cells via Kvβ Proteins.
Dwenger M, Raph S, Baba S, Moore 4th J, Nystoriak M Cells. 2022; 11(14).
PMID: 35883673 PMC: 9317154. DOI: 10.3390/cells11142230.
Styles F, Al-Owais M, Scragg J, Chuntharpursat-Bon E, Hettiarachchi N, Lippiat J Cell Death Dis. 2021; 12(4):372.
PMID: 33828089 PMC: 8027666. DOI: 10.1038/s41419-021-03627-6.