Literature DB >> 32366943

Blocking thrombospondin-1 signaling via CD47 mitigates renal interstitial fibrosis.

Sohel M Julovi1, Barkha Sanganeria1, Nikita Minhas1, Kedar Ghimire1, Brian Nankivell1,2,3, Natasha M Rogers4,5,6,7.   

Abstract

Acute kidney injury triggers a complex cascade of molecular responses that can culminate in maladaptive repair and fibrosis. We have previously reported that the matrix protein thrombospondin-1 (TSP1), binding its high affinity its receptor CD47, promotes acute kidney injury. However, the role of this pathway in promoting fibrosis is less clear. Hypothesizing that limiting TSP1-CD47 signaling is protective against fibrosis, we interrogated this pathway in a mouse model of chronic ischemic kidney injury. Plasma and renal parenchymal expression of TSP1 in patients with chronic kidney disease was also assessed. We found that CD47-/- mice or wild-type mice treated with a CD47 blocking antibody showed clear amelioration of fibrotic histological changes compared to control animals. Wild-type mice showed upregulated TSP1 and pro-fibrotic markers which were significantly abrogated in CD47-/- and antibody-treated cohorts. Renal tubular epithelial cells isolated from WT mice showed robust upregulation of pro-fibrotic markers following hypoxic stress or exogenous TSP1, which was mitigated in CD47-/- cells. Patient sera showed a proportionate correlation between TSP1 levels and worsening glomerular filtration rate. Immunohistochemistry of human kidney tissue demonstrated tubular and glomerular matrix localization of TSP1 expression in patients with CKD. These data suggest that renal tubular epithelial cells contribute to fibrosis by activating TSP1-CD47 signaling, and point to CD47 as a potential target to limit fibrosis following ischemic injury.

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Year:  2020        PMID: 32366943     DOI: 10.1038/s41374-020-0434-3

Source DB:  PubMed          Journal:  Lab Invest        ISSN: 0023-6837            Impact factor:   5.662


  49 in total

1.  Epithelial cell cycle arrest in G2/M mediates kidney fibrosis after injury.

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Journal:  Nat Med       Date:  2010-05-02       Impact factor: 53.440

2.  Correlations between renal cortical interstitial fibrosis, atrophy of the proximal tubules and impairment of the glomerular filtration rate.

Authors:  S Mackensen-Haen; R Bader; K E Grund; A Bohle
Journal:  Clin Nephrol       Date:  1981-04       Impact factor: 0.975

Review 3.  Acute kidney injury and chronic kidney disease: an integrated clinical syndrome.

Authors:  Lakhmir S Chawla; Paul L Kimmel
Journal:  Kidney Int       Date:  2012-06-06       Impact factor: 10.612

Review 4.  New insights into epithelial-mesenchymal transition in kidney fibrosis.

Authors:  Youhua Liu
Journal:  J Am Soc Nephrol       Date:  2009-12-17       Impact factor: 10.121

Review 5.  Cellular and molecular mechanisms in kidney fibrosis.

Authors:  Jeremy S Duffield
Journal:  J Clin Invest       Date:  2014-06-02       Impact factor: 14.808

Review 6.  Current understanding of the thrombospondin-1 interactome.

Authors:  Andrea Resovi; Denise Pinessi; Giovanna Chiorino; Giulia Taraboletti
Journal:  Matrix Biol       Date:  2014-01-27       Impact factor: 11.583

Review 7.  Chronic kidney disease: global dimension and perspectives.

Authors:  Vivekanand Jha; Guillermo Garcia-Garcia; Kunitoshi Iseki; Zuo Li; Saraladevi Naicker; Brett Plattner; Rajiv Saran; Angela Yee-Moon Wang; Chih-Wei Yang
Journal:  Lancet       Date:  2013-05-31       Impact factor: 79.321

8.  Capillary rarefaction is more closely associated with CKD progression after cisplatin, rhabdomyolysis, and ischemia-reperfusion-induced AKI than renal fibrosis.

Authors:  Anna Menshikh; Lauren Scarfe; Rachel Delgado; Charlene Finney; Yuantee Zhu; Haichun Yang; Mark P de Caestecker
Journal:  Am J Physiol Renal Physiol       Date:  2019-09-11

9.  The role of the interstitium of the renal cortex in renal disease.

Authors:  A Bohle; H Christ; K E Grund; S Mackensen
Journal:  Contrib Nephrol       Date:  1979       Impact factor: 1.580

10.  Activation of parenchymal CD47 promotes renal ischemia-reperfusion injury.

Authors:  Natasha M Rogers; Angus W Thomson; Jeffrey S Isenberg
Journal:  J Am Soc Nephrol       Date:  2012-08-02       Impact factor: 10.121

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  4 in total

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Review 2.  Biomarkers in Cardiorenal Syndrome and Potential Insights Into Novel Therapeutics.

Authors:  Edmund Y M Chung; Katie Trinh; Jennifer Li; Sebastian Hayden Hahn; Zoltan H Endre; Natasha M Rogers; Stephen I Alexander
Journal:  Front Cardiovasc Med       Date:  2022-05-20

3.  Effect of THBS1 on the Biological Function of Hypertrophic Scar Fibroblasts.

Authors:  D Jiang; B Guo; F Lin; Q Hui; K Tao
Journal:  Biomed Res Int       Date:  2020-12-09       Impact factor: 3.411

4.  Spatially Resolved Transcriptomes of Mammalian Kidneys Illustrate the Molecular Complexity and Interactions of Functional Nephron Segments.

Authors:  Arti M Raghubar; Duy T Pham; Xiao Tan; Laura F Grice; Joanna Crawford; Pui Yeng Lam; Stacey B Andersen; Sohye Yoon; Siok Min Teoh; Nicholas A Matigian; Anne Stewart; Leo Francis; Monica S Y Ng; Helen G Healy; Alexander N Combes; Andrew J Kassianos; Quan Nguyen; Andrew J Mallett
Journal:  Front Med (Lausanne)       Date:  2022-07-07
  4 in total

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