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Published on: January 5, 2017
Nerve terminals in the tumor microenvironment as targets for local infiltration analgesia
Pallavi Madhusudanan1, Chinnu Jerard1, Gayathri Raju1
1Amrita School of Nanosciences & Molecular Medicine, Amrita Institute of Medical Sciences & Research Center, Amrita Vishwa Vidyapeetham, Kochi, Kerala 682041, India.
Abstract:
Nerve terminals within the tumor microenvironment as potential pain-mitigating targets for local infiltration analgesia is relatively less explored. In this study, we examine the role of key analgesics administered as local infiltration analgesia in a model of cancer-induced bone pain (CIBP). CIBP was induced by administration of allogenic MRMT1 breast cancer cells in the proximal tibia of rats, and tumor mass characterized using radiogram, micro-CT, and histological analysis. In vitro responsiveness to key analgesics δ-opioid receptor agonist (DOPr), Ca2+ channel and TRPV1 antagonists was assessed using ratiometric Ca2+ imaging in sensory neurons innervating the tumor site. Effectiveness of locally infiltrated analgesics administered independently or in combination was assessed by quantifying evoked limb withdrawal thresholds at two distinct sites for up to 14 days. CIBP animals demonstrated DOPr, N-, and L-type and TRPV1 expression in lumbar dorsal root ganglion neurons (DRG), comparable to controls. Evoked Ca2+ transients in DRG neurons from CIBP animals were significantly reduced in response to treatment with compounds targeting DOPr, N-, L-type Ca2+ channels and TRPV1 proteins. Behaviourally, evoked hyperalgesia at the tumor site was strongly mitigated by peritumoral injection of the DOPr agonist and T-type calcium antagonist, via its activity on bone afferents. Results from this study suggest that nerve terminals at tumor site could be utilized as targets for specific analgesics, using local infiltration analgesia.
Insights
Local infiltration analgesia targeting nerve terminals shows promise for managing cancer-induced bone pain (CIBP). Key analgesics effectively reduced pain in a rat model, suggesting novel therapeutic strategies.
Area of Science:
- Oncology
- Pain Management
- Neuroscience
Background:
- Local infiltration analgesia for cancer pain is underexplored.
- Nerve terminals in the tumor microenvironment are potential pain targets.
Purpose of the Study:
- To investigate the efficacy of local analgesics targeting nerve terminals for cancer-induced bone pain (CIBP).
- To assess the role of delta-opioid receptor agonist (DOPr), calcium channel blockers, and TRPV1 antagonists in CIBP management.
Main Methods:
- A rat model of CIBP was established using MRMT1 breast cancer cells.
- In vitro calcium imaging assessed sensory neuron responses to analgesics.
- Behavioral assays quantified pain thresholds following local analgesic administration.
Main Results:
- CIBP animals showed expression of DOPr, calcium channels, and TRPV1 in sensory neurons.
- Local analgesics targeting DOPr, calcium channels, and TRPV1 significantly reduced neuronal activity.
- Peritumoral injection of a DOPr agonist and T-type calcium antagonist mitigated hyperalgesia at the tumor site.
Conclusions:
- Nerve terminals within the tumor microenvironment are viable targets for local infiltration analgesia.
- Targeting these nerve terminals offers a promising strategy for mitigating cancer pain, specifically CIBP.
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