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RSS FeedsIJMS, Vol. 22, Pages 12812: Doxorubicin Impairs Smooth Muscle Cell Contraction: Novel Insights in Vascular Toxicity (International Journal of Molecular Sciences)

 
 

26 november 2021 14:49:33

 
IJMS, Vol. 22, Pages 12812: Doxorubicin Impairs Smooth Muscle Cell Contraction: Novel Insights in Vascular Toxicity (International Journal of Molecular Sciences)
 


Clinical and animal studies have demonstrated that chemotherapeutic doxorubicin (DOX) increases arterial stiffness, a predictor of cardiovascular risk. Despite consensus about DOX-impaired endothelium-dependent vasodilation as a contributing mechanism, some studies have reported conflicting results on vascular smooth muscle cell (VSMC) function after DOX treatment. The present study aimed to investigate the effects of DOX on VSMC function. To this end, mice received a single injection of 4 mg DOX/kg, or mouse aortic segments were treated ex vivo with 1 µM DOX, followed by vascular reactivity evaluation 16 h later. Phenylephrine (PE)-induced VSMC contraction was decreased after DOX treatment. DOX did not affect the transient PE contraction dependent on Ca2+ release from the sarcoplasmic reticulum (0 mM Ca2+), but it reduced the subsequent tonic phase characterised by Ca2+ influx. These findings were supported by similar angiotensin II and attenuated endothelin-1 contractions. The involvement of voltage-gated Ca2+ channels in DOX-decreased contraction was excluded by using levcromakalim and diltiazem in PE-induced contraction and corroborated by similar K+ and serotonin contractions. Despite the evaluation of multiple blockers of transient receptor potential channels, the exact mechanism for DOX-decreased VSMC contraction remains elusive. Surprisingly, DOX reduced ex vivo but not in vivo arterial stiffness, highlighting the importance of appropriate timing for evaluating arterial stiffness in DOX-treated patients.


 
137 viewsCategory: Biochemistry, Biophysics, Molecular Biology
 
IJMS, Vol. 22, Pages 12813: Dominant Role of PI3K p110α over p110β in Insulin and β-Adrenergic Receptor Signalling (International Journal of Molecular Sciences)
IJMS, Vol. 22, Pages 12815: PIAS Factors from Rainbow Trout Control NF-κB- and STAT-Dependent Gene Expression (International Journal of Molecular Sciences)
 
 
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