Key result
Intravenous EMA200 produced dose-dependent analgesia in a rat model of prostate cancer-induced bone pain by reducing elevated angiotensin II levels and attenuating NGF/TrkA and MAPK signaling.
Why the study?
Does EMA200 improve analgesia in a rat model of prostate cancer-induced bone pain?
Does EMA200 improve analgesia in a rat model of prostate cancer-induced bone pain?
p-value: p=<0.05
EMA200, a selective AT2 receptor antagonist, produces dose-dependent analgesia in a rat model of prostate cancer-induced bone pain by modulating angiotensin II and NGF/TrkA signaling in dorsal root ganglia.
Premature for clinical use in cancer bone pain; leaves open translation of AT2 antagonism to human trials.
OBJECTIVE: The pathobiology of prostate cancer (PCa)-induced bone pain (PCIBP) has both inflammatory and neuropathic components. Previously, we showed that small molecule angiotensin II type 2 receptor (AT2 R) antagonists with >1,000-fold selectivity over the angiotensin II type 1 receptor produced dose-dependent analgesia in a rat model of neuropathic pain. Here, we assessed the analgesic efficacy and mode of action of the AT2 R antagonist, EMA200, in a rat model of PCIBP. METHODS: At 14-21 days after unilateral intratibial injection of AT3B PCa cells, rats exhibiting hindpaw hypersensitivity received single intravenous bolus doses of EMA200 (0.3-10 mg/kg) or vehicle, and analgesic efficacy was assessed. The mode of action was investigated using immunohistochemical, Western blot, and/or molecular biological methods in lumbar dorsal root ganglia (DRGs) removed from drug-naïve and EMA200-treated PCIBP rats relative to sham-control rats. RESULTS: Intravenous bolus doses of EMA200 produced dose-dependent analgesia in PCIBP rats. Lumbar DRG levels of angiotensin II, nerve growth factor (NGF), tyrosine kinase A (TrkA), phospho-p38 mitogen-activated protein kinase (MAPK), and phospho-p44/p42 MAPK, but not the AT2 R, were increased significantly (P < 0.05) in PCIBP rats, c.f. the corresponding levels for sham controls. EMA200 produced analgesia in PCIBP rats by reducing elevated angiotensin II levels in the lumbar DRGs to attenuate augmented angiotensin II/AT2 R signaling. This in turn reduced augmented NGF/TrkA signaling in the lumbar DRGs. The net result was inhibition of p38 MAPK and p44/p42 MAPK activation. CONCLUSION: Small molecule AT2 R antagonists are worthy of further investigation as novel analgesics for relief of intractable PCIBP and other pain types where hyperalgesia worsens symptoms.
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Muralidharan et al. (2013) studied Prostate cancer-induced bone pain. EMA200 (AT2 R antagonist) vs. Vehicle and sham-control was evaluated on Analgesic efficacy and mode of action (levels of angiotensin II, NGF, TrkA, and MAPK signaling) (p=<0.05). Intravenous EMA200 produced dose-dependent analgesia in a rat model of prostate cancer-induced bone pain by reducing elevated angiotensin II levels and attenuating NGF/TrkA and MAPK signaling.
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