scholarly article | Q13442814 |
P356 | DOI | 10.1002/CM.20521 |
P698 | PubMed publication ID | 21755610 |
P50 | author | Adrian Thrasher | Q60318865 |
Siobhan O Burns | Q60651613 | ||
Joao Metelo | Q124138070 | ||
P2093 | author name string | Natalie Ward | |
P2860 | cites work | Configuration of human dendritic cell cytoskeleton by Rho GTPases, the WAS protein, and differentiation | Q28211583 |
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Multiply attenuated lentiviral vector achieves efficient gene delivery in vivo | Q29616612 | ||
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In vivo gene transfer using a nonprimate lentiviral vector pseudotyped with Ross River Virus glycoproteins | Q34344453 | ||
A general method for the generation of high-titer, pantropic retroviral vectors: highly efficient infection of primary hepatocytes | Q35796872 | ||
Exploiting dendritic cells for cancer immunotherapy: genetic modification of dendritic cells | Q35910661 | ||
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Adhesions that mediate invasion. | Q36514416 | ||
TLR ligand-induced podosome disassembly in dendritic cells is ADAM17 dependent | Q36860375 | ||
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Toll-like receptor expression and function in human dendritic cell subsets: implications for dendritic cell-based anti-cancer immunotherapy | Q37702840 | ||
Woodchuck hepatitis virus contains a tripartite posttranscriptional regulatory element. | Q39580820 | ||
The cortactin-binding domain of WIP is essential for podosome formation and extracellular matrix degradation by murine dendritic cells | Q39643346 | ||
Passage through mitosis is required for oncoretroviruses but not for the human immunodeficiency virus | Q40037960 | ||
Dendritic cell podosomes are protrusive and invade the extracellular matrix using metalloproteinase MMP-14. | Q40136248 | ||
Tubulovesicular structures within vesicular stomatitis virus G protein-pseudotyped lentiviral vector preparations carry DNA and stimulate antiviral responses via Toll-like receptor 9. | Q40213297 | ||
T cell-independent, TLR-induced IL-12p70 production in primary human monocytes | Q40271779 | ||
Efficient transduction of liver and muscle after in utero injection of lentiviral vectors with different pseudotypes | Q40574948 | ||
Lentiviral vectors pseudotyped with a modified RD114 envelope glycoprotein show increased stability in sera and augmented transduction of primary lymphocytes and CD34+ cells derived from human and nonhuman primates. | Q40578428 | ||
Lentiviral vectors pseudotyped with baculovirus gp64 efficiently transduce mouse cells in vivo and show tropism restriction against hematopoietic cell types in vitro | Q40596843 | ||
Subcellular localization of Toll-like receptor 3 in human dendritic cells | Q40636721 | ||
Origin, maturation and antigen presenting function of dendritic cells. | Q40906220 | ||
Subsets of human dendritic cell precursors express different toll-like receptors and respond to different microbial antigens | Q42261747 | ||
WIP regulates the stability and localization of WASP to podosomes in migrating dendritic cells | Q42756730 | ||
Lentiviral-mediated gene delivery in human monocyte-derived dendritic cells: optimized design and procedures for highly efficient transduction compatible with clinical constraints | Q44110253 | ||
Gene transfer by lentiviral vectors is limited by nuclear translocation and rescued by HIV-1 pol sequences | Q44491759 | ||
Modulation of human dendritic-cell function following transduction with viral vectors: implications for gene therapy. | Q45238852 | ||
Differential expression and regulation of toll-like receptors (TLR) in human leukocytes: selective expression of TLR3 in dendritic cells | Q45345615 | ||
High-level transduction and gene expression in hematopoietic repopulating cells using a human immunodeficiency [correction of imunodeficiency] virus type 1-based lentiviral vector containing an internal spleen focus forming virus promoter | Q45732758 | ||
Efficient gene transfer to human peripheral blood monocyte-derived dendritic cells using human immunodeficiency virus type 1-based lentiviral vectors | Q45740670 | ||
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Activation of monocytes via the CD14 receptor leads to the enhanced lentiviral transduction of immature dendritic cells | Q47305038 | ||
Activation of Immature Monocyte-Derived Dendritic Cells After Transduction with High Doses of Lentiviral Vectors | Q60858569 | ||
Lentivirally transduced dendritic cells as a tool for cancer immunotherapy | Q60858599 | ||
Maturation of DC is associated with changes in motile characteristics and adherence | Q61053890 | ||
HIV-1 genome nuclear import is mediated by a central DNA flap | Q73726795 | ||
Comparison of various envelope proteins for their ability to pseudotype lentiviral vectors and transduce primitive hematopoietic cells from human blood | Q77684631 | ||
P433 | issue | 8 | |
P921 | main subject | cytoskeleton | Q154626 |
dendritic cell | Q506253 | ||
P304 | page(s) | 434-445 | |
P577 | publication date | 2011-07-29 | |
P1433 | published in | Cytoskeleton | Q2196987 |
P1476 | title | Lentivectors are efficient tools to manipulate the dendritic cell cytoskeleton | |
P478 | volume | 68 |
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