The murine dialysis fistula model exhibits a senescence phenotype: pathobiological mechanisms and therapeutic potential

衰老 促炎细胞因子 动静脉瘘 医学 透析 血液透析 下调和上调 内科学 病理 癌症研究 炎症 生物 基因 外科 生物化学
作者
Karl A. Nath,Daniel R. O’Brien,Anthony J. Croatt,Joseph P. Grande,Allan W. Ackerman,Meryl C. Nath,Satsuki Yamada,André Terzic,Tamar Tchkonia,James L. Kirkland,Zvonimir S. Katušić
出处
期刊:American Journal of Physiology-renal Physiology [American Physical Society]
卷期号:315 (5): F1493-F1499 被引量:32
标识
DOI:10.1152/ajprenal.00308.2018
摘要

There is no therapy that promotes maturation and functionality of a dialysis arteriovenous fistula (AVF). The search for such therapies largely relies on evaluation of vascular responses and putative therapies in experimental AVFs. We studied an AVF in mice with chronic kidney disease (CKD). We demonstrate numerous stressors in the vein of the AVF-CKD group, including pathological shear, mitogenic, inflammatory, and hypoxia-reoxygenation stress. Because stress promotes premature senescence, we examined whether senescence is induced in the vein of the AVF-CKD model. We demonstrate a senescence phenotype in the AVF-CKD model, as indicated by increased expression of p16 Ink4a , p21 Cip1 , and p53 and expected changes for certain senescence-associated microRNAs. RNA-sequencing analysis demonstrated differential expression of ~10,000 genes, including upregulation of proinflammatory and proliferative genes, in the vein of the AVF-CKD group. The vein in the AVF-CKD group exhibited telomere erosion and increased senescence-associated β-galactosidase activity and staining. Senescence was induced in the artery of the AVF-CKD group and in the vein of the AVF without CKD. Finally, given the rapidly rising clinical interest in senolytics, we provide proof of concept of senolytics as a therapeutic approach by demonstrating that senolytics decrease p16 Ink4a expression in the AVF-CKD model. This study introduces a novel concept underlying the basis for maturational and functional failure in human dialysis AVFs and identifies a new target for senolytic therapy.
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