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Publication : Long-term sustainable dendritic cell-specific depletion murine model for periodontitis research.

First Author  Finger Stadler A Year  2017
Journal  J Immunol Methods Volume  449
Pages  7-14 PubMed ID  28645528
Mgi Jnum  J:298878 Mgi Id  MGI:6430007
Doi  10.1016/j.jim.2017.06.007 Citation  Finger Stadler A, et al. (2017) Long-term sustainable dendritic cell-specific depletion murine model for periodontitis research. J Immunol Methods 449:7-14
abstractText  Dendritic cells (DCs) are specialized antigen-presenting cells that play a pivotal role in the pathogenesis of periodontitis. The use of animal models to study the role of DCs in periodontitis has been limited by lack of a method for sustained depletion of DCs. Hence, the objectives of this study were to validate the zDC-DTR knockin mouse model of conventional DCs (cDCs) depletion, as well as to investigate whether this depletion could be sustained long enough to induce alveolar bone loss in this model. zDC-DTR mice were treated with different dose regimens of diphtheria toxin (DT) to determine survival rate. A loading DT dose of 20ng/bw, followed and maintained with doses of 10ng/bm every 3days for up to 4weeks demonstrated 80% survival. Animals were weighed weekly and peripheral blood was obtained to confirm normal neutrophil counts. Five animals per group were euthanized at baseline, 24h, 1 and 4weeks. Bone marrow (BM), spleen (SP) and gingival tissue (GT) were harvested, and cells were isolated, separated and stained for Pre-DCs precursors (CD45R(-)MHCII(+)CD11c(+)Flt3(+)CD172a(+)) in BM, cDCs (CD11c(+)MHCII(+)CD209(+)) in spleen, and DCs in GT (CD45R(+)MHCII(+)CD11c(+) DC-SIGN/CD209(+)). Pre-DCs in BM were significantly depleted at 24h and depletion maintained for up to 4weeks, as compared to blank (PBS) controls. Circulating cDCs in spleen demonstrated a non-significant trend to deplete in 1week with high variability among mice. GT also showed a similar non-significant trend to deplete in 24h. The zDC-DTR model seems to be viable for evaluating the role of DCs immune homeostasis disruption and alveolar bone loss pathogenesis in response to long-term oral infection.
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