Title of article
Role of mitochondria and reactive oxygen species in dendritic cell differentiation and functions
Author/Authors
Annalisa Del Prete، نويسنده , , Patrizia Zaccagnino، نويسنده , , Marco Di Paola، نويسنده , , Maddalena Saltarella، نويسنده , , Constanza Oliveros Celis، نويسنده , , Beatrice Nico، نويسنده , , Giuseppe Santoro، نويسنده , , Michele Lorusso، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
9
From page
1443
To page
1451
Abstract
Dendritic cells (DC) are potent antigen-presenting cells capable of inducing T and B responses and immune tolerance. We have characterized some aspects of energy metabolism accompanying the differentiation process of human monocytes into DC. Compared to precursor monocytes, DC exhibited a much larger number of mitochondria and consistently (i) a higher endogenous respiratory activity and (ii) a more than sixfold increase in ATP content and an even larger increase in the activity of the mitochondrial marker enzyme citrate synthase. The presence in the culture medium of rotenone, an inhibitor of the respiratory chain Complex I, prevented the increase in mitochondrial number and ATP level, without affecting cell viability. Rotenone inhibited DC differentiation, as revealed by the observation that the expression of CD1a, which is a specific surface marker of DC differentiation, was strongly reduced. Cells cultured in the presence of rotenone displayed a lower content of growth factor-induced, mitochondrially generated, hydrogen peroxide. A similar drop in ROS was observed upon addition of catalase, which caused functional effects similar to those produced by rotenone treatment. These results suggest that ROS play a crucial role in DC differentiation and that mitochondria are an important source of ROS in this process.
Keywords
dendritic cells , mitochondria , Oxidative phosphorylation , reactive oxygen species , free radicals
Journal title
Free Radical Biology and Medicine
Serial Year
2008
Journal title
Free Radical Biology and Medicine
Record number
521286
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