Search bioRxiv⌕ Search

Biology subjects

Schanne, F. A. X.

Publications and source records attributed to Schanne, F. A. X..

2 recordsLinked to original sources

Lead (Pb) Inhibits-PMA Induced Microglia Multinucleation

Multinucleated Microglia are formed in response to aging, inflammation, the presence of some pathogens, and are a histological feature of several CNS pathologies. Multinucleated microglia may be involved with increased clearance of CNS debris and whole cells. The present study has sought to determine the best model by which to study multinucleation in microglia in vitro, in order to investigate whether the known neurotoxicant metal lead (Pb) impacts the formation of multinucleated microglia. It was determined that isolated rat microglia (Sprague-Dawley), compared to murine (BV2) and human (HMC3) microglia cell-lines, when induced by Phorbol-myristate-acetate (PMA) results in the greatest amount of cell multinucleation and multinuclearity. In this model, it was shown that long-term exposure to Pb inhibited microglia cell proliferation, multinucleation, and multinuclearity in a dose-dependent manner. Pb appears to inhibit multinucleation in microglia by induction of multinuclear regression (karyolysis, pyknosis, or karyorrhexis) resulting in large mononuclear cells. The mechanism by which PMA induces multinucleation may involve p38/MAPK activity and Pb interferes with this activation.

pharmacology and toxicology↗

Potential Immunomodulatory Role of Lead in Monocyte/Macrophage Differentiation

Lead (Pb) is a pernicious toxic metal and public health hazard, as it persists in the environment contaminating soil, food, and drinking water. Lead exerts its toxic effect on numerous organ systems, with the abundance of focus on the red blood cells and neurons of the hematopoietic and central nervous systems. However, insufficient investigation has been conducted on the effect of Pb on immune cells. In the current study, the toxic effects of Pb on immune cells of monocyte/macrophage lineage are described. Pb exerts a dose-dependent alteration in differentiation of monocyte/macrophage cells that retain some plasticity in development. Pb induces a bifurcation in differentiation of monocyte/macrophage cells, resulting in inhibition of osteoclastogenesis and induction of dendritic cells (DC). This phenomenon was demonstrated in RAW 264.7 murine monocyte/macrophage cell line and was consistent with response in rat bone-marrow derived macrophage (Sprague-Dawley). Pb primarily produced this response through induction of GM-CSF production and inhibition of p38/MAPK activity. Long-term exposure to physiologically relevant concentrations of Pb has the potential to modulate the immune system through altering the cell-lineage commitment of monocyte/macrophage lineage cells in a dose-dependent manner. Thus, Pb may function as an immunomodulator.

pharmacology and toxicology↗