Immortalized Mouse Spleen Dendritic Cells (SRDC)

SKU:BHC10900851
Suppliers
Applied Biological Materials (abm) Inc.
Applied Biological Materials (abm) Inc.
Details Products
Overview
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Immortalized Mouse Spleen Dendritic Cells (SRDC) is supplied as frozen immortalized cell line derived from mouse spleen with half adherent/half suspension, dendritic-like growth properties. Commonly used in cell fate, differentiation, and expansion under defined culture conditions.
Species Mouse
Cell Type Cell Lines, Immortalized Cell Lines
Tissue Spleen
Growth Half adherent/Half suspension, dendritic-like
Format Frozen
Options selector
Catalog no. Pack Size
T0140 1x106 cells / 1.0 ml
Available Options

Select the variant that best fits your experiment. Availability and lead time may vary by option.

  • Options: Pack Size: 1x106 cells / 1.0 ml
  • Lead time: varies by selected option; please contact us for current fulfillment timing.
  • Storage: Vapor phase of liquid nitrogen, or below -130°C.
  • Shipping: Ship with dry ice.
  • Upon receipt: store at the recommended temperature as soon as possible.
  • Sales terms and conditions: Please review prior to ordering.
Field Specification
Organism Mouse (M. musculus)
Applications
  • Cell Culture (Growth)
  • Immunophenotyping
  • Flow Cytometry
Tissue
  • Spleen
Growth properties
  • Half adherent/Half suspension
  • dendritic-like
Biosafety level BSL-2
Product format Frozen
Storage Vapor phase of liquid nitrogen, or below -130°C. Visually examine the packaging containers for signs of leakage or breakage. Immediately transfer frozen cells from dry ice packaging to a temperature below -130°C, preferably in liquid nitrogen vapor phase storage, until ready for use. To ensure the highest level of viability, thaw the vial and initiate culture as soon as possible upon receipt. If continued storage is desired, the vial should only be stored below -130°C or in liquid nitrogen vapor phase. Do not store at -70°C, as it will result in loss of viability. Cryopreservation: We recommend using serum-free CryoGuard™ Freezing Media (TM078) or, if serum is preferred, Cryopreservation Medium (TM024). We recommend using serum-free CryoGuard™ Freezing Media (TM078) or, if serum is preferred, Cryopreservation Medium (TM024).
Shipping Ship with dry ice.
Catalog no. (Mfr.) T0140
Main SKU BHC10900851

Overview

The Immortalized Mouse Spleen Dendritic Cell (SRDC) line is functionally and phenotypically similar to dendritic cells; specifically, in its antigen presentation, T cell priming, and dendritic cell marker expression. This innovative CD4- CD205+ CD11b- immortalized dendritic cell line eliminates the need for in vitro differentiation and expansion of different dendritic cell precursors into splenic dendritic cells.

Key elements and design rationale

  • Model identity: Immortalized Mouse Spleen Dendritic Cells (SRDC) is supplied as an immortalized cell line derived from Mouse spleen.
  • Growth properties: Half adherent/Half suspension, dendritic-like
  • Growth conditions: For optimal cell culture, we recommend using PriCoat™ T25 Flasks (G299) or coating your preferred vessels with Applied Cell Extracellular Matrix (G422). PriGrow V Medium (TM015) + heat-inactivated 5% FBS + 50 µM β-Mercaptoethanol + 2 mM L-Glutamine (G275) + 1% Penicillin/Streptomycin Solution (G255), 37.0°C, 5% CO₂Note: Cells are sensitive to trypsin; Gentle Dissociation Solution (TM080) is recommended for subculture procedures.
  • Product format: Frozen, BSL-2

This cell-based model is generally used in cell fate, differentiation, and expansion studies. Donor/background information is available for contextual interpretation.

Biological background

Therefore, these readily cultured cells are ideal for immunological studies focused on the function and biology of dendritic cells. Immunofluorescence microscopy analysis confirmed SRDC maturation- through expression of DC-LAMP and MHC-II expression. Note: SRDC cells were deposited from the lab of Dr. Dimier-Poisson. The STR profile for SRDC cells shows a 95% match to DC2.4 cells, indicating possible contamination. Donor/background information provided for this product: CBA/J Mouse.

Research relevance and current trends

  • Cultured cell-line models remain central to in vitro studies of phenotype, signaling, and pathway regulation under controlled conditions.
  • Researchers commonly compare morphology, growth rate, and marker expression across media formulations, treatments, or time courses.
  • Interpretation is generally strengthened by using matched controls, consistent passage handling, and appropriate culture surfaces.

Common research applications

  • Expansion and maintenance studies under defined growth conditions prior to downstream differentiation or phenotype analysis.
  • Comparative experiments that examine changes in morphology, marker expression, or functional readouts over time.
  • Assay development in culture systems where media composition and substrate selection influence interpretation.

Changes in morphology, growth rate, viability, or reporter signal are typically interpreted together with passage history, culture matrix, and the specified growth conditions for the model.

Notes for experimental interpretation

  • Morphology, doubling behavior, and reporter or marker output can shift with passage number, substrate choice, and medium composition; these variables should be recorded alongside experimental readouts.
  • Matched controls such as parental cells, untreated cultures, or parallel cultures maintained under identical conditions help distinguish background effects from biology of interest.

Culture and product details

  • Growth Conditions: For optimal cell culture, we recommend using PriCoat™ T25 Flasks (G299) or coating your preferred vessels with Applied Cell Extracellular Matrix (G422). PriGrow V Medium (TM015) + heat-inactivated 5% FBS + 50 µM β-Mercaptoethanol + 2 mM L-Glutamine (G275) + 1% Penicillin/Streptomycin Solution (G255), 37.0°C, 5% CO₂Note: Cells are sensitive to trypsin; Gentle Dissociation Solution (TM080) is recommended for subculture procedures.
  • Seeding Density (cells/cm²): 30,000
🧊 Thawing Protocol
  1. Thaw cells quickly in a 37°C water bath while agitating gently (maximum 2 minutes). The vial cap should be kept above the water level to minimize the risk of contamination.
  2. Decontaminate the vial by spraying and wiping the exterior of the vial with 70% ethanol. From this point onwards, all operations should be strictly carried out inside a biological safety cabinet using aseptic conditions.
  3. Transfer the cell suspension into a 15ml sterile conical tube containing 5ml of pre-warmed, complete growth media. Centrifuge cells at 125xg for 5-7 minutes.
  4. Aspirate the supernatant without disturbing the cell pellet. Re-suspend the cell pellet in the recommended pre-warmed, complete growth media and dispense into a T25 culture flask.
  5. Incubate the cells at the recommended conditions.
🔬 Subculture Protocol
Cells are sensitive to trypsin; Gentle Dissociation Solution (TM080) is recommended for subculture procedures. Volumes given below are for a T75 flask; proportionally increase or decrease the volume as required per culture vessel size. Subculture cells once the culture vessel is 80% confluent.
  1. Aspirate the culture media, and add 2-3ml of pre-warmed Gentle Dissociation Solution (TM080) to the culture vessel.
  2. Observe the cells under a microscope to confirm detachment (typically within 2-10 minutes). Cells that are difficult to detach can be put in 37°C, for several minutes to facilitate detachment.
  3. Neutralize the Gentle Dissociation Solution (TM080) by adding an equal volume of the complete growth media into the culture vessel.
  4. Transfer the culture suspension into a sterile centrifuge tube, and centrifuge at 125xg for 5 minutes. The actual centrifuge duration and speed may vary depending on the cell type.
  5. Aspirate the supernatant, and re-suspend the pellet with pre-warmed fresh complete growth media. Add appropriate aliquots of the cell suspension to new culture vessels, as desired.
  6. Incubate the cells at the recommended conditions.
How should I handle live cells once I receive them?
Please refer to our Cell Handling and Thawing Guidelines for detailed instructions on receiving, thawing, and culturing live cells:
https://www.abmgood.com/immortalized-cells-documents.html
Following these guidelines will help ensure optimal cell viability and performance.
Why are these cells classified as biosafety level II?
We follow the CDC-NIH recommendations that all mammalian sourced products should be handled at the Biological Safety Level 2 to minimize exposure of potentially infectious products. This information can be found in 'Biosafety in Microbiological and Biomedical Laboratories' (1999). Your institution's Safety Officer or Technical Services will be able to make the call as to whether BioSafety Level I is possible with these cells at your site, if desired.
What is your warranty or return policy?
Our warranty and return policy is outlined in abm’s Terms and Conditions, including details on product quality, limitations, and claims.
Please refer to the following link for full information:
https://www.abmgood.com/terms
For additional questions, our Order team is happy to assist and can be reached at order@abmgood.com.
How many times can cells divide?
The number of times cells can divide depends on the cell type:

Primary cells have a limited lifespan and will undergo a finite number of population doublings before entering senescence. The exact number varies by cell type and culture conditions.
Immortalized cell lines are capable of extended or indefinite proliferation under proper culture conditions, although growth characteristics may vary between lines.
Do I need Applied Cell Extracellular Matrix (G422) if I am using PriCoat™ flasks?
Please refer to the Growth Conditions section of your specific product page. This section will indicate whether Applied Cell Extracellular Matrix (G422), PriCoat™ flasks, or both are recommended for optimal cell attachment and growth, as requirements may vary by cell type.

Cell line sourcing and selection (species, tissue, and disease model matching) · Stable cell line engineering (overexpression, knockdown, knockout via CRISPR/Cas9, shRNA, sgRNA) · Reporter gene integration (GFP, RFP, luciferase, fluorescent/bioluminescent constructs) · Genome editing and knockin (point mutations, tagged endogenous proteins, conditional alleles) · Inducible expression systems (Tet-On/Off and regulatable constructs) · Drug resistance marker selection (puromycin, G418, hygromycin, and others) · Custom growth and media optimisation for specific assay requirements · Scale-up production for high-throughput screening campaigns · Authentication and QC services (STR profiling, mycoplasma testing, viability assessment). Talk to a Scientist or contact support@biohippo.com.

Ruiz, S., Beauvillain, C., Mévélec, M. N., Roingeard, P., Breton, P., Bout, D., & Dimier-Poisson, I. (2005). A novel CD4-CD8alpha+CD205+CD11b- murine spleen dendritic cell line: establishment, characterization and functional analysis in a model of vaccination to toxoplasmosis. Cellular microbiology, 7(11), 1659–1671. https://doi.org/10.1111/j.1462-5822.2005.00583.x

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