Aging Modulates the Effects of Ischemic Injury Upon Mesenchymal Cells within the Renal Interstitium and Microvasculature

Author:

Shaw Isaac W.12ORCID,O'Sullivan Eoin D.13,Pisco Angela O.4,Borthwick Gary1,Gallagher Kevin M.13,Péault Bruno25,Hughes Jeremy13,Ferenbach David A.13

Affiliation:

1. Centre for Inflammation Research  Queen's Medical Research Institute, University of Edinburgh, Edinburgh, UK

2. Centre for Regenerative Medicine  University of Edinburgh, Edinburgh, UK

3. Department of Renal Medicine  Royal Infirmary of Edinburgh, Edinburgh, UK

4. Chan Zuckerberg Biohub, San Francisco, California, USA

5. Orthopaedic Hospital Research Center and Broad Stem Cell Research Center  David Geffen School of Medicine, University of California, Los Angeles, California, USA

Abstract

Abstract The renal mesenchyme contains heterogeneous cells, including interstitial fibroblasts and pericytes, with key roles in wound healing. Although healing is impaired in aged kidneys, the effect of age and injury on the mesenchyme remains poorly understood. We characterized renal mesenchymal cell heterogeneity in young vs old animals and after ischemia-reperfusion-injury (IRI) using multiplex immunolabeling and single cell transcriptomics. Expression patterns of perivascular cell markers (α-SMA, CD146, NG2, PDGFR-α, and PDGFR-β) correlated with their interstitial location. PDGFR-α and PDGFR-β co-expression labeled renal myofibroblasts more efficiently than the current standard marker α-SMA, and CD146 was a superior murine renal pericyte marker. Three renal mesenchymal subtypes; pericytes, fibroblasts, and myofibroblasts, were recapitulated with data from two independently performed single cell transcriptomic analyzes of murine kidneys, the first dataset an aging cohort and the second dataset injured kidneys following IRI. Mesenchymal cells segregated into subtypes with distinct patterns of expression with aging and following injury. Baseline uninjured old kidneys resembled post-ischemic young kidneys, with this phenotype further exaggerated following IRI. These studies demonstrate that age modulates renal perivascular/interstitial cell marker expression and transcriptome at baseline and in response to injury and provide tools for the histological and transcriptomic analysis of renal mesenchymal cells, paving the way for more accurate classification of renal mesenchymal cell heterogeneity and identification of age-specific pathways and targets.

Funder

Wellcome Trust Intermediate Fellowship

Kidney Research UK

Britain Israel Research and Academic Exchange Partnership

British Heart Foundation

MRC Tissue Repair

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,General Medicine

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