Harpagophytum procumbens Root Extract Mediates Anti-Inflammatory Effects in Osteoarthritis Synoviocytes through CB2 Activation.
Alessia MarianoIrene BigioniRoberto MattioliAntonella Di SottoMartina LeopizziStefania GarzoliPier Francesco MarianiPietro Dalla VedovaSergio AmmendolaAnna Scotto D'AbuscoPublished in: Pharmaceuticals (Basel, Switzerland) (2022)
The endocannabinoid system is involved in the nociceptive and anti-inflammatory pathways, and a lowered expression of CB2 receptors has been associated with inflammatory conditions, such as osteoarthritis (OA). This suggests that CB2 modulators could be novel therapeutic tools to treat OA. In the present study, the involvement of Harpagophytum procumbens root extract, a common ingredient of nutraceuticals used to treat joint disorders, in CB2 modulation has been evaluated. Moreover, to clarify the effects of the pure single components, the bioactive constituent, harpagoside, and the main volatile compounds were studied alone or in a reconstituted mixture. Human fibroblast-like synoviocytes, extracted by joints of patients, who underwent a total knee replacement, were treated with an H. procumbens root extract dissolved in DMSO (HPE DMSO ). The effectiveness of HPE DMSO to affect CB2 pathways was studied by analyzing the modulation of cAMP, the activation of PKA and ERK MAP kinase, and the modulation of MMP-13 production. HPE DMSO was able to inhibit the cAMP production and MAP kinase activation and to down-regulate the MMP-13 production. Pure compounds were less effective than the whole phytocomplex, thus suggesting the involvement of synergistic interactions. Present findings encourage further mechanistic studies and support the scientific basis of the use of H. procumbens in joint disorders.
Keyphrases
- anti inflammatory
- knee osteoarthritis
- oxidative stress
- protein kinase
- end stage renal disease
- newly diagnosed
- endothelial cells
- rheumatoid arthritis
- binding protein
- high density
- ejection fraction
- randomized controlled trial
- systematic review
- chronic kidney disease
- small molecule
- total knee arthroplasty
- signaling pathway
- cell proliferation
- neuropathic pain
- patient reported outcomes
- cell migration
- mass spectrometry
- pluripotent stem cells
- simultaneous determination
- wound healing