Published: Vol 5, Iss 5, Mar 5, 2015 DOI: 10.21769/BioProtoc.1415 Views: 17132
Reviewed by: Kathrin SutterAndrea IntroiniAnonymous reviewer(s)
Protocol Collections
Comprehensive collections of detailed, peer-reviewed protocols focusing on specific topics
Related protocols
Isolation and Culture of Primary Pericytes from Mouse
Tamara McErlain [...] Meera Murgai
Apr 20, 2025 1705 Views
Primary Mouse Choroidal Endothelial Cell Culture
Qiuhua Yang [...] Yuqing Huo
Jun 20, 2025 861 Views
Isolation of Podocyte Cell Fractions From Mouse Kidney Using Magnetic Activated Cell Sorting (MACS)
Jeffrey W. Pippin [...] Stuart J. Shankland
Jul 5, 2025 1200 Views
Abstract
The spleen is a vastly vasculated organ and consists of a complex organized network of innate and adaptive immune cells. This permits the specialized functions of the spleen such as antibacterial and antifungal immunity and iron metabolism among others (Mebius and Kraal, 2005). Different dendritic cell (DC) subsets reside in the spleen and can be defined by the expression of unique surface markers. These DC subsets are recognized to perform non-redundant functions in the immune system (Merad et al., 2013). In our recent study, we found that Inositol Requiring Enzyme (IRE)-1 is specifically activated in splenic CD8a+ DCs. Furthermore, loss of X-box binding protein (XBP)-1 – the transcription factor regulated by IRE-1 – resulted in defective cross-presentation of dead cell associated antigens by splenic CD8a+ DCs (Osorio et al., 2014). This protocol allows the isolation of specific DC subsets for experimental use ex-vivo.
Materials and Reagents
Equipment
Procedure
Label | Marker | Clone | Dilution |
FITC | CD3 | 145-2C11 | 1/300 |
FITC | CD19 | 1D3 | 1/500 |
- | CD16/CD32 | 2.4G2 | 1/200 |
Label | Marker | Clone | Dilution |
FITC | CD3 | 145-2C11 | 1/300 |
FITC | CD19 | 1D3 | 1/500 |
PE-eFluor610 | CD11c | N418 | 1/300 |
PE-Cy5 | CD8a | 53-6.7 | 1/600 |
PE-Cy7 | CD11b | M1/70 | 1/800 |
AF-647 | CD64 | X54-5/7.1 | 1/100 |
APC-Cy7 | MHCII | M5/114.15.2 | 1/1,000 |
eFluor | 506 | Viability | 1/200 |
- | CD16/CD32 | 2.4G2 | 1/200 |
Notes
Recipes
Acknowledgments
This work was supported by the European Research Council, the European Union Seventh Framework Programme, the Fonds Wetenschappelijk Onderzoek Vlaanderen program (FWO) and the Agentschap voor Innovatie door Wetenschap en Technologie (IWT).
References
Article Information
Copyright
© 2015 The Authors; exclusive licensee Bio-protocol LLC.
How to cite
Tavernier, S. J., Osorio, F., Janssens, S. and Lambrecht, B. N. (2015). Isolation of Splenic Dendritic Cells Using Fluorescence-activated Cell Sorting. Bio-protocol 5(5): e1415. DOI: 10.21769/BioProtoc.1415.
Category
Immunology > Immune cell isolation > Antigen-presenting cell
Immunology > Immune cell staining > Flow cytometry
Cell Biology > Cell isolation and culture > Cell isolation
Do you have any questions about this protocol?
Post your question to gather feedback from the community. We will also invite the authors of this article to respond.
Tips for asking effective questions
+ Description
Write a detailed description. Include all information that will help others answer your question including experimental processes, conditions, and relevant images.
Share
Bluesky
X
Copy link