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Updated: Jan 18, 2026

Intravital Microscopy of Monocyte Homing and Tumor-Related Angiogenesis in a Murine Model of Peripheral Arterial Disease
Published on: August 26, 2017
ICAM-1 and vascular matrices coordinate skin S1 macrophage formation from blood PDGFRα lineage monocyte
Yu-Tung Li1, Akito Inoue1, Aoi Fukuda1
1Department of Stem Cell Therapy Science, Graduate School of Medicine, University of Osaka, Suita 565-0871, Japan.
Abstract:
Extravasation control of leukocytes and their functional fates are crucial to maintain tissue homeostasis. Leukocyte lineage origin regulates these processes that blood monocytes derived from PDGFRα+ embryonic progenitors (PDGFRα lineage) extravasate more efficiently to inflamed skin than non-PDGFRα lineage cells. Here, we elucidated the underlying mechanism and their macrophage identity fates in skin. Spatial confocal imaging showed PDGFRα lineage monocytes adhered better on venular endothelium than non-PDGFRα lineage before transvenular migration dependently on ICAM-1. At endothelial interface, more ICAM-1 aggregates were observed with PDGFRα lineage monocytes and disruption with a Src-family kinases antagonist reduced adhesion advantage. Extravasated PDGFRα lineage monocytes exhibited slower β1-integrin-dependent migration to interstitium and remained proximal to hypodermal capillaries. Skin-interstitial fibronectin binds integrin-α5 and activates Src-family kinases to suppress macrophage expression of S1-marking CD163. By accessing nearby vascular matrices, PDGFRα lineage monocytes mitigated this effect and developed stronger S1 identity. Together, extravasation fate of PDGFRα lineage monocyte/macrophage reveals the vasculatures foster S1 macrophage identity formation in skin.

