Source: Barkley, C. et al., A Co-Culture Method to Study Neurite Outgrowth in Response to Dental Pulp Paracrine Signals. J. Vis. Exp. (2020).
This video showcases a technique for establishing a co-culture of trigeminal neurons and primary dental pulp cells using a transwell filter. In this physically separated condition, mesenchymal cells obtained from dental pulp tissue secrete paracrine signaling molecules that traverse through the pores, promoting the differentiation and migration of neurons towards the mesenchymal cells establishing a co-culture system.
1. Plate Preparation
NOTE: Be sure the plate lid is on during all incubation and rinsing steps outside of the sterile tissue culture hood to prevent contamination during sample processing.
2. Cell Plating
Table 1: Co-culture media.
Component | Volume | Concentration |
MEM α | 440 mL | |
Heat inactivated fetal bovine serume | 50 mL | 10% |
100x L-glutamine | 5 mL | 1x |
Penicillin-streptomycin 100 x | 5 mL | 1x |
Change media on day 2 with mitotic inhibitors at these final concentrations | ||
Uridine | 1 μM | |
5'-Fluor-2'deoxyuridine | 15 μM |
Figure 1: A schematic of the mouse dissection to obtain cells for co-culture. (A) A diagram of where to cut to open the mouse skull and locate TG nerves, shown in black in the last depiction. Scissors indicate where to insert the scissor tips to cut along the dotted lines. (B) A combined darkfield and GFP image showing Thy1-YFP+ TG nerves circled in white. (C) Dissected TG ganglia can then be dispersed and cultured, as shown in F. (D) The mandible of a P7 mouse, with forceps holding the mandible on the left and alveolar bone ridges containing unerupted teeth on each side of the tongue. (E) DP tissue (circled) extracted from the mineralized structure (top), and the enamel outer epithelium (bottom) that was removed to disperse and plate in a tissue culture-treated plate, as shown in F. Images are not shown to scale. DP cells were dispersed and grown to confluence before adding TG neurons.
The authors have nothing to disclose.
5-Fluoro-2'-deoxyuridine | Sigma-Aldrich | F0503 | Used as a mitotic Inhibitor at 15 μM concentration in co-culture media, Day 2 |
24 Well Cell Culture Plate | Corning | 3524 | Co-culture plate |
B6;129- Tgfbr2tm1Karl/J | The Jackson Laboratory | 12603 | Tgfbr2f/f mouse model used for dental pulp cells in optimized protocol |
B6.Cg-Tg(Thy1-YFP)16Jrs/J | The Jackson Laboratory | 3709 | Thy1-YFP mouse model genotype used for trigeminal neurons |
Collagenase Type II | Millipore | 234155-100MG | Used to disperse trigeminal neurons |
Fetal Bovine Serum | Gibco | 10437 | Additive to co-culture media |
Fine forceps | Fine Science Tools | 11413-11 | Fine forceps for TG dissection |
Laminin | Sigma-Aldrich | L2020 | Coats the transwell inserts at final concentration of 10 μg/ml, stock solution is assumed at 1.5 mg/ml |
L-Glutamine | Gibco | 25030081 | Additive to co-culture media |
Micro-dissecting scissors | Sigma-Aldrich | S3146-1EA | Dissection scissors to open skull |
Minimal Essential Medium a | Gibco | 12571063 | Co-culture media base |
Penicillin-Streptomycin | Gibco | 15070063 | Antibiotic additive to co-culture media |
Phosphatase Inhibitor | Sigma-Aldrich | 04 906 837 001 | Additive to RIPA Buffer for extracting protein from dental pulp cells post co-culture |
ThinCert Cell Culture Insert | Greiner Bio-One | 662631 | Transwell inserts for trigeminal neurons in co-culture assays |
Trypsin-EDTA (0.25%) | Gibco | 25200056 | Used fto disperse dental pulp cells |
Trypsin Type II | Sigma-Aldrich | T-7409 | Used to disperse trigeminal neurons |
Ultra Fine Forceps | Fine Science Tools | 11370-40 | Ultra fine forceps for dissection |
Uridine | Sigma-Aldrich | U3750 | Used as a mitotic Inhibitor at 1 μM concentration in co-culture media, Day 2 |
Vial forceps | Fine Science Tools | 110006-15 | Long forceps for tissue transfer to conicals |