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      Exosomal CCL2 from Tubular Epithelial Cells Is Critical for Albumin-Induced Tubulointerstitial Inflammation

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          Abstract

          Albuminuria is a key instigator of tubulointerstitial inflammation associated with CKD, but the mechanism through which filtered albumin propagates renal injury remains unclear. In this study, we explored the role in this process of exosome mRNA released from tubular epithelial cells (TECs). Compared with control mice, acute and chronic kidney injury models had more exosomes containing inflammatory cytokine mRNA, particularly the chemokine CCL2, in kidneys and urine. In vitro stimulation of TECs with BSA recapitulated this finding. Notably, the internalization of purified TEC exosomes by cultured macrophages increased if TECs were exposed to BSA. Macrophage internalization of exosomes from BSA-treated TECs led to an enhanced inflammatory response and macrophage migration, but CCL2 silencing in TECs prevented these effects. Using a GFP-CCL2 fusion mRNA construct, we observed direct transfer of CCL2 mRNA from TEC exosomes to macrophages. Mice subjected to tail vein injection of purified BSA-treated TEC exosomes developed tubular injury with renal inflammatory cell infiltration. However, injection of exosomes from BSA-treated CCL2-deficient TECs induced less severe kidney inflammation. Finally, in patients with IgA nephropathy, the increase of proteinuria correlated with augmented urinary excretion of exosomes with exaggerated expression of CCL2 mRNA. Moreover, the level of CCL2 mRNA in urinary exosomes correlated closely with levels of renal interstitial macrophage infiltration in these patients. Our studies demonstrate that the increasing release of exosomes that transfer CCL2 mRNA from TECs to macrophages constitutes a critical mechanism of albumin-induced tubulointerstitial inflammation.

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          Author and article information

          Journal
          J Am Soc Nephrol
          J. Am. Soc. Nephrol
          jnephrol
          jnephrol
          ASN
          Journal of the American Society of Nephrology : JASN
          American Society of Nephrology
          1046-6673
          1533-3450
          March 2018
          02 January 2018
          : 29
          : 3
          : 919-935
          Affiliations
          [1 ]Institute of Nephrology, Zhongda Hospitial, Southeast University School of Medicine, Nanjing, China; and
          [2 ]Division of Nephrology, Department of Medicine, Duke University and Durham Veterans Affairs Medical Centers, Durham, North Carolina
          Author notes
          Correspondence: Dr. Bi-Cheng Liu, Institute of Nephrology, Zhongda Hospital, Southeast University School of Medicine, 87 Ding Jia Qiao Road, Nanjing, China. Email: liubc64@ 123456163.com
          Article
          PMC5827595 PMC5827595 5827595 2017050523
          10.1681/ASN.2017050523
          5827595
          29295871
          f25d85a6-3d3a-4714-b6d9-4d47d25db557
          Copyright © 2018 by the American Society of Nephrology
          History
          : 15 May 2017
          : 14 November 2017
          Page count
          Figures: 8, Tables: 2, Equations: 0, References: 28, Pages: 17
          Categories
          Basic Research
          Custom metadata
          March 2018

          macrophages,albuminuria,extracellular vesicle,mRNA,CCL2,exosome
          macrophages, albuminuria, extracellular vesicle, mRNA, CCL2, exosome

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