Monocytes and Macrophages Form Branched Cell Columns in Matrigel: Implications for a Role in Neovascularization
- 1 December 2004
- journal article
- Published by Mary Ann Liebert Inc in Stem Cells and Development
- Vol. 13 (6) , 665-676
- https://doi.org/10.1089/scd.2004.13.665
Abstract
Linear arrays of cells, or cell columns, have been observed in the extracellular matrix prior to neovascularization, but their nature and significance remains elusive. Based on the emerging evidence implicating a role for monocytes and macrophages (MC/MPH) in vasculogenesis, we hypothesized that MC/MPH also can form linear or branched columns, facilitating the co-migration and the spatial arrangement of other cell types. To test this hypothesis, we studied the distribution of MC/MPH effected by chemotactic migration in novel in vitro and in vivo models of development. We induced transversal and lateral migration of THP-1 monocytoid cells in Matrigel in vitro. The effect of this process on co-localization of other micro-objects was assessed using erythrocytes and micron-sized plastic beads. In vivo, we analyzed MC/MPH infiltration in subcutaneously implanted Matrigel plugs containing angiogenic factors and across a microporous filter comprising the wall of a chamber filled with Matrigel, also placed subcutaneously in mice. In vitro, we found that migrating THP-1 cells induced the lasting degradation of Matrigel and produced cell columns, a process amplified by monocyte chemoattractant protein-1 (MCP-1). We also report the co-localization of erythrocytes with THP-1 cells in cell columns. Endothelium-free tunnels containing MC/MPH, neutrophils, or erythrocytes were also observed in the Matrigel-filled chambers. In free subcutaneous Matrigel plugs, we found MC/MPH-based columns harboring isolated Tie-2+ cells (a marker of endothelial progenitor phenotype), as well as fibroblasts, dendritic cells, and adypocytes. Many of these cell columns displayed conspicuous branching. Our data demonstrate formation of branched MC/MPH cell columns in vitro and in vivo, a previously unrecognized pattern of penetration of extracellular matrices by inflammatory cells. Thus, monocytes and macrophages influence the distribution of neovessels as well as their branching points. These cells are the "architects of development," assisting organogenesis, tumorigenesis, and wound healing by patterning the tissular space.Keywords
This publication has 59 references indexed in Scilit:
- The role of endothelium in the regulation of hematopoietic stem cell migrationThe International Journal of Cell Cloning, 2009
- Endothelial–Mesenchymal Interactions In Vitro Reveal Molecular Mechanisms of Smooth Muscle/Pericyte DifferentiationStem Cells and Development, 2004
- Plasticity of Human Adipose Lineage Cells Toward Endothelial CellsCirculation, 2004
- Therapeutic stem and progenitor cell transplantation for organ vascularization and regenerationNature Medicine, 2003
- Anatomy of the brain neurogenic zones revisited: Fractones and the fibroblast/macrophage networkJournal of Comparative Neurology, 2002
- Vasculogenic Mimicry and Tumor AngiogenesisThe American Journal of Pathology, 2000
- Vascular Channel Formation by Human Melanoma Cells in Vivo and in Vitro: Vasculogenic MimicryThe American Journal of Pathology, 1999
- The human leukemia cell line, THP-1: A multifacetted model for the study of monocyte-macrophage differentiationCellular and Molecular Life Sciences, 1991
- Differentiation of Mononuclear Blood Cells into Macrophages, Fibroblasts and Endothelial Cells in Thrombus OrganizationPathobiology, 1988
- The mononuclear phagocyte system of the mouse defined by immunohistochemical localisation of antigen F4/80: Macrophages associated with epitheliaThe Anatomical Record, 1984