KC-2293-DW

CT26-GDF15 Cell Line

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Home » 细胞系 » CT26-GDF15 Cell Line

Background of CT26-GDF15 Cell Line

GDF15, also named MIC-1, is a member of TGF-beta superfamily proteins, and plays an important role in tumorigenesis and metastasis. the expression of GDF-15 is dramatically increased in many types of cancers, such as colorectal, breast, and prostate. GDF-15 also mediates cancer-induced anorexia and weight loss through the modulation of neuronal pathways important in the regulation of appetite and energy homeostasis.

Specifications

Catalog NumberKC-2293-DW
Cell Line NameCT26-GDF15 Cell Line
NCBI/UniProt Accession NumberNM_004864.4
Clone Number3#
Host Cell LineCT26
DescriptionStable CT26-GDF15 cell line expressing exogenous GDF15 gene
QuantityTwo vials of frozen cells (≥2-106/vial)
StabilityStable in culture over a minimum of 10 passages
ApplicationDrug screening and biological assays
Freezing Medium70% RPMI1640+20% FBS+10% DMSO
Propagation MediumRPMI1640+10% FBS+10μg/mL Puromycin
Selection MarkerPuromycin
MorphologyEpithelial
SubcultureSplit saturated culture 1:10 every 3 days; seed out at about 1-3 × 105 cells/mL
Incubation37 °C with 5% CO2
StorageLiquid nitrogen immediately upon receiving
Doubling TimeApproximately 20 hours
Mycoplasma StatusNegative

Cell Line Generation

CT26-GDF15 cell line was generated using lentivirus expressing GDF15 sequence.

Characterization

Figure 1. Characterization of GDF15 over-expression in the CT26-GDF15 stable clone using Elisa.

Figure 2:Validation of in vivo tumorigenicity of CT26 cells stably expressing GDF15 via subcutaneous implantation in BALB/c mice, with tumor growth monitored by measuring volume (V=0.5×length×width²) and body weight.

Cell Resuscitation

  1. Prewarm culture medium (RPMI1640+10% FBS+10μg/mL Puromycin)in a 37°C water bath.
  2. Thaw the frozen vial in a 37°C water bath for 1-2 minutes.
  3. Transfer the vial into biosafety cabinet, and wipe the surface with 70% ethanol.
  4. Unscrew the top of the vial and transfer the cell suspension gently into a sterile centrifuge tube containing 9.0mL complete culture medium.
  5. Spin at ~ 125 × g for 5-7 minutes at room temperature, and discard the supernatant without disturbing the pellet.
  6. Resuspend cell pellet with the appropriate volume of complete medium and transfer the cell suspension into a T25 culture flask.
  7. Incubate the flask at 37°C, 5% CO2 incubator.
  8. Split saturated culture 1:10 every 3 days; seed out at about 1-3 × 105 cells/mL.

Cell Freezing

  1. Prepare the freezing medium (70% RPMI1640 + 20% FBS + 10% DMSO) fresh immediately before use.
  2. Keep the freezing medium on ice and label cryovials.
  3. Transfer cells to a sterile, conical centrifuge tube, and count the cells.
  4. Centrifuge the cells at 250×g for 5 minutes at room temperature and carefully aspirate off the medium.
  5. Resuspend the cells at a density of at least 3×106 cells/mL in chilled freezing medium.
  6. Aliquot 1 mL of the cell suspension into each cryovial.
  7. Freeze cells in the CoolCell freezing container overnight in a -80°C freezer.
  8. Transfer vials to liquid nitrogen for long-term storage.

References

  1. GDF15, an update of the physiological and pathological roles it plays: a review.Artin Assadi , Azadeh Zahabi&Robert A Hart .Affiliations expand PMID: 32936319
  2. Secreted and Cell Surface Genes Expressed in Benign and Malignant Colorectal Tumors. Advances in Brief DOI: Published October 2001 doi:10.1006/geno.1998.5281. PMID 9615235.
  3. The Transforming Growth Factor-β Superfamily Member Growth-Differentiation Factor-15 Protects the Heart From Ischemia/Reperfusion Injury.Circulation Research. 2006;98:351-360.Originally published5 Jan 2006.
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