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- W2800669258 abstract "Dendritic cells (DC) are professional Antigen-Presenting Cells scattered throughout antigen-exposed tissues and draining lymph nodes, and survey the body for pathogens. Their ability to migrate through tissues, a 3D environment, is essential for an effective immune response. Upon infection, recognition of Pathogen-Associated Molecular Patterns (PAMP) by Toll-like Receptors (TLR) triggers DC maturation. Mature DC (mDC) essentially use the protease-independent, ROCK-dependent amoeboid mode in vivo, or in collagen matrices in vitro. However, the mechanisms of 3D migration used by human immature DC (iDC) are still poorly characterized. Here, we reveal that human monocyte-derived DC are able to use two migration modes in 3D. In porous matrices of fibrillar collagen I, iDC adopted the amoeboid migration mode. In dense matrices of gelled collagen I or Matrigel, iDC used the protease-dependent, ROCK-independent mesenchymal migration mode. Upon TLR4 activation by LPS, mDC-LPS lose the capacity to form podosomes and degrade the matrix along with impaired mesenchymal migration. TLR2 activation by Pam3CSK4 resulted in DC maturation, podosome maintenance, and efficient mesenchymal migration. Under all these conditions, when DC used the mesenchymal mode in dense matrices, they formed 3D podosomes at the tip of cell protrusions. Using PGE2, known to disrupt podosomes in DC, we observed that the cells remained in an immature status and the mesenchymal migration mode was abolished. We also observed that, while CCL5 (attractant of iDC) enhanced both amoeboid and mesenchymal migration of iDC, CCL19 and CCL21 (attractants of mDC) only enhanced mDC-LPS amoeboid migration without triggering mesenchymal migration. Finally, we examined the migration of iDC in tumor cell spheroids, a tissue-like 3D environment. We observed that iDC infiltrated spheroids of tumor cells using both migration modes. Altogether, these results demonstrate that human DC adopt the mesenchymal mode to migrate in 3D dense environments, which relies on their capacity to form podosomes independently of their maturation status, paving the way of further investigations on in vivo DC migration in dense tissues and its regulation during infections." @default.
- W2800669258 created "2018-05-17" @default.
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- W2800669258 date "2018-04-30" @default.
- W2800669258 modified "2023-10-02" @default.
- W2800669258 title "Podosomes, But Not the Maturation Status, Determine the Protease-Dependent 3D Migration in Human Dendritic Cells" @default.
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- W2800669258 cites W1906960897 @default.
- W2800669258 cites W1915831376 @default.
- W2800669258 cites W1934216075 @default.
- W2800669258 cites W1955764924 @default.
- W2800669258 cites W1967470122 @default.
- W2800669258 cites W1974093671 @default.
- W2800669258 cites W1975055486 @default.
- W2800669258 cites W1979680810 @default.
- W2800669258 cites W1984849105 @default.
- W2800669258 cites W1985644715 @default.
- W2800669258 cites W1989571703 @default.
- W2800669258 cites W1996283676 @default.
- W2800669258 cites W1998569410 @default.
- W2800669258 cites W1998944980 @default.
- W2800669258 cites W2001224798 @default.
- W2800669258 cites W2002050061 @default.
- W2800669258 cites W2007070916 @default.
- W2800669258 cites W2022084371 @default.
- W2800669258 cites W2026487158 @default.
- W2800669258 cites W2028131627 @default.
- W2800669258 cites W2029372030 @default.
- W2800669258 cites W2034598453 @default.
- W2800669258 cites W2035538295 @default.
- W2800669258 cites W2036564362 @default.
- W2800669258 cites W2037380046 @default.
- W2800669258 cites W2044296671 @default.
- W2800669258 cites W2045149132 @default.
- W2800669258 cites W2046831018 @default.
- W2800669258 cites W2046842929 @default.
- W2800669258 cites W2072200814 @default.
- W2800669258 cites W2076782790 @default.
- W2800669258 cites W2076942176 @default.
- W2800669258 cites W2082103058 @default.
- W2800669258 cites W2084093396 @default.
- W2800669258 cites W2088641898 @default.
- W2800669258 cites W2092604129 @default.
- W2800669258 cites W2092953457 @default.
- W2800669258 cites W2098301447 @default.
- W2800669258 cites W2100322007 @default.
- W2800669258 cites W2103601941 @default.
- W2800669258 cites W2112777571 @default.
- W2800669258 cites W2124436963 @default.
- W2800669258 cites W2125064243 @default.
- W2800669258 cites W2133317376 @default.
- W2800669258 cites W2142464285 @default.
- W2800669258 cites W2144688518 @default.
- W2800669258 cites W2149639441 @default.
- W2800669258 cites W2150370326 @default.
- W2800669258 cites W2150709405 @default.
- W2800669258 cites W2152232516 @default.
- W2800669258 cites W2155859877 @default.
- W2800669258 cites W2156486811 @default.
- W2800669258 cites W2166769371 @default.
- W2800669258 cites W2168537923 @default.
- W2800669258 cites W2185481865 @default.
- W2800669258 cites W2195686883 @default.
- W2800669258 cites W2256739460 @default.
- W2800669258 cites W2322265548 @default.
- W2800669258 cites W2511963230 @default.
- W2800669258 cites W2519094427 @default.
- W2800669258 cites W2558485988 @default.
- W2800669258 cites W2598112362 @default.
- W2800669258 cites W2605192666 @default.
- W2800669258 cites W2701106679 @default.
- W2800669258 cites W2767586726 @default.
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- W2800669258 doi "https://doi.org/10.3389/fimmu.2018.00846" @default.
- W2800669258 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/5936769" @default.
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- W2800669258 hasPublicationYear "2018" @default.
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