Transfection of Vitamin D3-Induced Tolerogenic Dendritic Cells for the Silencing of Potential Tolerogenic Genes. Identification of CSF1R-CSF1 Signaling as a Glycolytic Regulator

利用维生素D3诱导耐受性树突状细胞进行转染以沉默潜在的耐受性基因。鉴定CSF1R-CSF1信号通路作为糖酵解调节因子。

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作者:María José Mansilla ,Iñigo González-Larreategui ,Neus Figa-Martín ,Jaume Barallat ,Federico Fondelli ,Ares Sellés-Rius ,Bibiana Quirant-Sánchez ,Aina Teniente-Serra ,Eva Martínez-Cáceres

Abstract

The use of autologous tolerogenic dendritic cells (tolDC) has become a promising strategy to re-establish immune tolerance in autoimmune diseases. Among the different strategies available, the use of vitamin D3 for the generation of tolDC (VitD3-tolDC) has been widely tested because of their immune regulatory properties. To identify molecules and pathways involved in the generation of VitD3-tolDC, we established an easy and fast gene silencing method based on the use of Viromer blue to introduce siRNA into monocytes on day 1 of culture differentiation. The analysis of the effect of CD209 (DC-SIGN) and CD115 (CSF1R) down-modulation on the phenotype and functionality of transfected VitD3-tolDC revealed a partial role of CD115 in their tolerogenicity. Further investigations showed that CSF1R-CSF1 signaling is involved in the induction of cell metabolic reprogramming, triggering glycolysis to produce high amounts of lactate, a novel suppressive mechanism of T cell proliferation, recently found in autologous tolerogenic dendritic cells (ATDCs). Keywords: CSF1R; DC-SIGN; autoimmunity; tolerance; tolerogenic dendritic cells; vitamin D3.

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