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Activation of the IKK2/NF-κB pathway in VSMCs inhibits calcified vascular stiffness in CKD
Shinobu Miyazaki-Anzai, Masashi Masuda, Audrey L. Keenan, Yuji Shiozaki, Jose G. Miranda, Makoto Miyazaki
Shinobu Miyazaki-Anzai, Masashi Masuda, Audrey L. Keenan, Yuji Shiozaki, Jose G. Miranda, Makoto Miyazaki
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Research Article Vascular biology

Activation of the IKK2/NF-κB pathway in VSMCs inhibits calcified vascular stiffness in CKD

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Abstract

IKK2/NF-κB pathway–mediated inflammation in vascular smooth muscle cells (VSMCs) has been proposed to be an etiologic factor in medial calcification and stiffness. However, the role of the IKK2/NF-κB pathway in medial calcification remains to be elucidated. In this study, we found that chronic kidney disease (CKD) induces inflammatory pathways through the local activation of the IKK2/NF-κB pathway in VMSCs associated with calcified vascular stiffness. Despite reducing the expression of inflammatory mediators, complete inhibition of the IKK2/NF-κB pathway in vitro and in vivo unexpectedly exacerbated vascular mineralization and stiffness. In contrast, activation of NF-κB by SMC-specific IκBα deficiency attenuated calcified vascular stiffness in CKD. Inhibition of the IKK2/NF-κB pathway induced cell death of VSMCs by reducing anti–cell death gene expression, whereas activation of NF-κB reduced CKD-dependent vascular cell death. In addition, increased calcification of extracellular vesicles through the inhibition of the IKK2/NF-κB pathway induced mineralization of VSMCs, which was significantly reduced by blocking cell death in vitro and in vivo. This study reveals that activation of the IKK2/NF-κB pathway in VSMCs plays a protective role in CKD-dependent calcified vascular stiffness by reducing the release of apoptotic calcifying extracellular vesicles.

Authors

Shinobu Miyazaki-Anzai, Masashi Masuda, Audrey L. Keenan, Yuji Shiozaki, Jose G. Miranda, Makoto Miyazaki

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Figure 6

Deletion of the IKK2/NF-κB pathway induces apoptosis of VSMCs.

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Deletion of the IKK2/NF-κB pathway induces apoptosis of VSMCs.
(A) Immun...
(A) Immunoblot analysis of caspase 3 (Casp3) in IKK2-KO VSMCs treated with TNF-α. VMSCs were treated with TNF-α plus high phosphate (2.4 mM) for 6 hours and 12 hours. (B) Immunoblot analysis of Casp3 in IKK2-KO and RelA-KO VSMCs treated with high phosphate. VMSCs were treated with high phosphate (2.4 mM) for 12 hours. (C) Casp3 activity in IKK2-KO and RelA-KO VSMCs treated with TNF-α. VMSCs were treated with TNF-α plus high phosphate (2.4 mM) for 12 hours. (D) Immunoblot analysis of p-MLKL in IKK2-KO VSMCs treated with TNF-α. VMSCs were treated with TNF-α plus high phosphate (2.4 mM) for 6 hours and 12 hours. (E) Immunoblot analysis of p-MLKL in the aortic media of CKD SMC-IKK2–KO mice. (F–I) mRNA levels of antiapoptotic proteins in IKK2-KO and RelA-KO VSMCs. (J) Immunoblot analysis of Casp3 in IKK2-KO and RelA-KO VSMCs. VMSCs were treated with TNF-α plus high phosphate (2.4 mM) for 12 hours. (K) Heatmap with mRNA levels of 21 antiapoptotic proteins in the aortic media of SMC-IKK2–KO and SMC-IκBα–KO mice. Aortic medial layers were dissected 3 weeks after CKD was induced. The numbers are shown in Supplemental Table 4. *P < 0.05; ***P < 0.001 by 1-way ANOVA with Tukey’s post hoc test.

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