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Osr1-expressing mesoderm contributes to lymphatic vessel assembly and complexity in the mammalian kidney

  • Daniyal J. Jafree
  • , Lauren G. Russell
  • , Athanasia Stathopoulou
  • , Charlotte O’Riordan
  • , Christopher J. Rowan
  • , Andrew T. White
  • , Maria Kolatsi-Joannou
  • , Karen L. Price
  • , Sarah Ivins
  • , Liam A. Ridge
  • , Catherine Roberts
  • , Antony Rose
  • , Simone Webb
  • , M. S. Vijayabaskar
  • , Jennifer C. Chandler
  • , Laura Wilson
  • , Gideon Pomeranz
  • , Dale Moulding
  • , Benjamin Davis
  • , Hannah Mitchell
  • Julie Siegenthaler, Muzlifah Haniffa, Adrian S. Woolf, Paul R. Riley, Christiana Ruhrberg, Peter J. Scambler, Norman D. Rosenblum, David A. Long*
*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

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Abstract

Lymphatic vessels perform diverse functions, ranging from fluid homeostasis to immune regulation, and arise from multiple cellular origins to form organ-specific networks. Despite their importance in kidney disease and transplant immunity, the origins of kidney lymphatics are unknown. Using genetic lineage tracing in mice, we identify two origins of kidney lymphatics. Most kidney lymphatics arise from a Tie2+ endothelial origin shared by other organs. However, Osr1+ mesoderm generates approximately 15% of kidney lymphatics, without contributing to heart, mesentery, and skin lymphatics. Interrogating single-cell transcriptomics data of mice and humans reveals lymphatic progenitors within Osr1+ mesoderm. Lymphatic clusters forming by de novo assembly originate from both Osr1+ and Tie2+ lineages. Deleting the lymphatic specification gene Prox1 in Osr1+ mesoderm reduces lymphatic cluster number, impairing overall lymphatic network complexity, with lower glomerular number. Thus, an Osr1+ mesodermal origin contributes to organ-specific lymphatic assembly, with consequences for kidney health, disease, and regeneration.

Original languageEnglish
Article number117560
Number of pages20
JournalCell Reports
Volume45
Issue number7
DOIs
Publication statusPublished - 28 Jul 2026

Keywords

  • endothelial cells
  • fate mapping
  • kidney development
  • lineage tracing
  • lymphangiogenesis
  • lymphatic vasculature
  • lymphvasculogenesis
  • nephrogenesis
  • organogenesis
  • three-dimensional imaging

ASJC Scopus subject areas

  • General Biochemistry,Genetics and Molecular Biology

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