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Sequential Roles of VLA-4/VCAM-1 Interactions and CXCR4/CXCL12 Cues in the Early Phases of Injured Lung Regeneration
Xiaohua Su1, Sandeep K Yadav1,2, Christa Blagdon1
1Department of Stem Cell Transplantation and Cellular Therapy.
Abstract:
Lung cell transplantation has demonstrated remarkable regenerative potential in various mouse models of lung injury, including pulmonary fibrosis. However, early processes governing donor cell lung homing and fate after transplantation remain poorly understood. This study interrogates mechanisms underlying donor cell homing, extravasation, and formation of regenerative patches inside recipient lungs after intravenous infusion of CD45- lung cells. Naphthalene (NA) and total body irradiation (TBI) were used to induce lung injury. Donor-derived lung cell suspensions were infused intravenously, and donor cell localization was analyzed at various time points using flow cytometry and immunofluorescence. The functional roles of VLA-4/VCAM-1 and CXCR4/CXCL12 interactions in early donor cell homing to injured lungs were assessed by incubating donor cells with anti-VLA-4 or anti-CXCR4 blocking antibodies or by pretreatment of recipient mice with anti-VCAM-1 antibody. At 24 hours after infusion, only 0.8% of infused cells accumulated inside the lungs, with approximately a third of the cells within the pulmonary vasculature. By Day 7, 97% of donor cells were found in the lung parenchyma. These donor cells were highly proliferative and formed regenerative patches by Day 21. Blocking VLA-4 or CXCR4 inhibited adhesion of infused cells to blood vessels early after infusion and interfered with subsequent formation of regenerative donor-derived lung patches at 6 weeks after infusion. This study highlights the sequential roles of VLA-4/VCAM-1 and CXCR4/CXCL12 interactions in facilitating donor lung cell homing and regenerative patch formation in injured lungs.

