Combined Cannabidiol and Δ9-Tetrahydrocannabinol Modulate Inflammation and Nociceptive Signaling in Human Dental Pulp Cells
Abstract
Introduction
Dental pulp inflammation, caused by caries, trauma, or restorative operations, produces pain and slows regeneration. Cannabidiol (CBD) and Δ9-tetrahydrocannabinol (THC), cannabinoids of Cannabis sativa, have effects on inflammation and pain relief. However, the impact of these factors on dental pulp healing is not understood. This study investigated the combined effects of CBD and THC in controlling inflammation and nociception during dental pulp repair.
Methods
Human dental pulp cells were stimulated with lipopolysaccharide (LPS) and treated with CBD (2.5 μg/mL), THC (0.6 μg/mL), and their combination. Pro-inflammatory cytokines (IL-6, IL-12 and IL-1β) and anti-inflammatory cytokine IL-10 were analysed using qPCR and ELISA, while anti-nociceptive markers (CNR1, CNR2, and TRPV1) were evaluated by qPCR and Western blot. Cell viability, proliferation, and migration assays were performed to evaluate treatment effects on cellular behaviours associated with pulpal repair and regenerative potential.
Results
Compared with either treatment alone, the CBD/THC combination more effectively attenuated pro-inflammatory cytokines IL-6, IL-12, and IL-1β, enhanced CNR1 and CNR2 expression, modulated TRPV1, and increased IL-10 expression. Viability assays determined optimal non-cytotoxic concentrations for treatment. The combination enhanced cell proliferation and migration, promoted mineralized nodule formation, and significantly upregulated markers associated with tissue repair, odontogenic differentiation (DMP1), and angiogenesis (VEGF and bFGF).
Conclusion
Combined CBD and THC show promise for promoting dental pulp healing by modulating inflammation and nociceptive signaling, while supporting odontogenic differentiation, angiogenesis, and cell migration in human dental pulp cells. These findings provide in vitro evidence supporting combined cannabinoid treatment as a therapeutic strategy for vital pulp therapies.