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American Heart Association

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Final ID: Th0028

Transcriptomic Dynamics of Mouse Arteriovenous Fistulas via Single-Cell RNA Sequencing Analysis.

Abstract Body: Background: Arteriovenous fistula (AVF) is the preferred hemodialysis access for individuals with end-stage renal disease (ESRD); however, approximately 40% of AVFs fail to mature for hemodialysis without intervention. Despite this significant failure rate, our understanding of the cellular and molecular mechanisms underlying post-anastomosis vein remodeling remains limited. In this study, we present a detailed cellular atlas capturing the temporal changes in the mouse jugular vein following AVF anastomosis at the single-cell level.
Methods: Nephrectomy (Nx) was performed on male and female AGE C57BL/6 mice. AVF was created 21 days post-Nx by anastomosing the right jugular vein to the adjacent carotid artery. Animals were euthanized at 3, 10, and 21 days post-AVF for bulk RNA-seq analysis, and at 7 and 30 days for scRNA-seq analysis. The contralateral jugular vein served as a control.
Results: Bulk RNA-seq analysis revealed that, acutely (day 3), AVF formation significantly increased the expression of genes related to leukocyte activation (e.g., Cd44 and Itgam), alongside a decrease in genes associated with vascular smooth muscle contraction (e.g., Myh11, Cnn1, and Tagln). By days 10 and 21, there was a notable upregulation of genes involved in extracellular matrix organization (e.g., Lox, Fn1, and Eln). scRNA-seq analysis confirmed an increase in myeloid cells, particularly profibrotic macrophages (identified by high expression of Spp1 and Lgas3) and neutrophils, coupled with a reduction in endothelial cells, T-cells, and Schwann cells. Remarkably, in the steady state, 82% of fibroblasts in the vein remained inactive, with only 4.7% displaying an activated state (characterized by high expression of Fap, Postn, and Acta2). However, by day 7 post-AVF, activated fibroblasts constituted ~50% of the fibroblast population. Transcription factor enrichment analysis identified Smad3 as the top enriched factor in fibroblast clusters post-AVF. Further intercellular communication analysis demonstrated that, at 7 and 30 days post-AVF, profibrotic macrophages were the primary source of TGFβ ligands (canonical activators of Smad3) acting on activated fibroblasts.
Conclusion: AVF formation induces significant changes in the vein cellular composition, particularly by increasing profibrotic macrophages, which in turn activate fibroblasts through the TGFβ/Smad3 signaling pathway.
  • Stoyell, Filipe  ( University of Miami , Pembroke Pnes , Florida , United States )
  • Rojas, Miguel  ( University of Miami , Pembroke Pnes , Florida , United States )
  • Wei, Yuntao  ( University of Miami , Pembroke Pnes , Florida , United States )
  • Santos Falcon, Nieves  ( University of Miami , Miami , Florida , United States )
  • Martinez, Laisel  ( University of Miami , Pembroke Pnes , Florida , United States )
  • Vazquez-padron, Roberto  ( University of Miami , Pembroke Pnes , Florida , United States )
  • Author Disclosures:
    Filipe Stoyell: DO NOT have relevant financial relationships | Miguel Rojas: No Answer | Yuntao Wei: No Answer | Nieves Santos Falcon: No Answer | Laisel Martinez: DO NOT have relevant financial relationships | Roberto Vazquez-Padron: No Answer
Meeting Info:
Session Info:

15. Poster Session 3 & Reception

Thursday, 04/24/2025 , 05:00PM - 07:00PM

Poster

More abstracts from these authors:
Single cell and spatial multi-Omics show the Regulation and Therapeutic Potential of Venous Smooth Muscle Cell Reprogramming during Arteriovenous Fistula Remodeling

Dong Shuilin, Dong Kunzhe, Zhu Yanfang, Chiang Wantien, Singer Harold, Dardik Alan, Vazquez-padron Roberto, Long Xiaochun, Wang Chunhui, Thaxton Carly, Lowery Austin, Liu Lily, Wu Xiaoliang, Bryant William, Xzhangx Xweix, Martinez Laisel

The Microanatomy of the Human Hemodialysis Fistula Maturation and Failure

Martinez Laisel, Duque Juan, Salman Loay, Long Xiaochun, Vazquez-padron Roberto, Stoyell Filipe, Tabbara Marwan, Rojas Miguel, Pereira-simon Simone, Santos Falcon Nieves, Yang Xiaofeng, Shiu Yan-ting, Lee Timmy

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