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Guidelines for mouse and human DC generation

  • Manfred B. Lutz (Corresponding author)
  • , Shafaqat Ali
  • , Cindy Audiger
  • , Stella E. Autenrieth
  • , Luciana Berod
  • , Venetia Bigley
  • , Laura Cyran
  • , Marc Dalod
  • , Jan Dörrie
  • , Diana Dudziak
  • , Georgina Flórez-Grau
  • , Lucila Giusiano
  • , Gloria J. Godoy
  • , Marion Heuer
  • , Anne B. Krug
  • , Christian H.K. Lehmann
  • , Christian T. Mayer
  • , Shalin H. Naik
  • , Stefanie Scheu
  • , Gerty Schreibelt
  • Elodie Segura, Kristin Seré, Tim Sparwasser, Jurjen Tel, Huaming Xu, Martin Zenke

Research output: Contribution to journalArticleAcademicpeer-review

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Abstract

This article is part of the Dendritic Cell Guidelines article series, which provides a collection of state-of-the-art protocols for the preparation, phenotype analysis by flow cytometry, generation, fluorescence microscopy, and functional characterization of mouse and human dendritic cells (DC) from lymphoid organs and various non-lymphoid tissues. This article provides protocols with top ticks and pitfalls for preparation and successful generation of mouse and human DC from different cellular sources, such as murine BM and HoxB8 cells, as well as human CD34+ cells from cord blood, BM, and peripheral blood or peripheral blood monocytes. We describe murine cDC1, cDC2, and pDC generation with Flt3L and the generation of BM-derived DC with GM-CSF. Protocols for human DC generation focus on CD34+ cell culture on OP9 cell layers for cDC1, cDC2, cDC3, and pDC subset generation and DC generation from peripheral blood monocytes (MoDC). Additional protocols include enrichment of murine DC subsets, CRISPR/Cas9 editing, and clinical grade human DC generation. While all protocols were written by experienced scientists who routinely use them in their work, this article was also peer-reviewed by leading experts and approved by all co-authors, making it an essential resource for basic and clinical DC immunologists.

Original languageEnglish
Article numbere2249816
Number of pages52
JournalEuropean Journal of Immunology
Volume53
Issue number11
DOIs
Publication statusPublished - Nov 2023

Funding

This work was supported by the Bavarian State Ministry of Science and Art ( Bayresq.Net‐IRIS ) and the Agence Nationale de la Recherche (ANR) and the DFG (DU548/6‐1), by the DFG (CRC1181‐261193037 and GRK2504‐401821119) to DD. A.B.K. was supported by the DFG (SFB1054‐TPA06 210592381, TRR237‐TPB14 369799452 and 391217598). SS was supported by the DFG (SCHE692/6‐1, SCHE692/8‐1, and 270650915/GRK2158) and the Juergen Manchot Foundation (Manchot Graduate School ‘Molecules of Infection IV’). VB were supported by Wellcome Trust UK (grant number 101155/Z/13/Z) and the Medical Research Council (grant number MR/W01677X/1). Section 1.1.2 : we thank K. Götz for support in cell culture, H. Häcker for HoxB8 plasmid and S. Rose‐John for hyper‐IL‐6. HX was supported by a fellowship of China Scholarship Council (grant number 202008080170). MBL, MH, and LC were supported by the IZKF Wuürzburg (A‐408); CHKL by intramural funding (Erlangen IZKF‐A87) and the DFG (GRK2504‐401821119); and SEA by the German Jose Carreras Leukemia Foundation (DJCLS 13 R/2021).

Keywords

  • Dendritic cells
  • Generation
  • In vitro
  • Isolation

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