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Published on: July 19, 2017
Placebo Effects Are Small on Average in the 7.5% CO2 Inhalational Model of Generalized Anxiety
Nathan T M Huneke1,2,3, Cosmina Cross1, Harry A Fagan1,2,3
1Southern Health National Health Service Foundation Trust, Southampton, UK.
Background:
Anxiety disorders are highly prevalent and socio-economically costly. Novel pharmacological treatments for these disorders are needed because many patients do not respond to current agents or experience unwanted side effects. However, a barrier to treatment development is the variable and large placebo response rate seen in trials of novel anxiolytics. Despite this, the mechanisms that drive placebo responses in anxiety disorders have been little investigated, possibly due to low availability of convenient experimental paradigms. We aimed to develop and test a novel protocol for inducing placebo anxiolysis in the 7.5% CO2 inhalational model of generalized anxiety in healthy volunteers.
Methods:
Following a baseline 20-minute CO2 challenge, 32 healthy volunteers were administered a placebo intranasal spray labelled as either the anxiolytic "lorazepam" or "saline." Following this, participants surreptitiously underwent a 20-minute inhalation of normal air. Post-conditioning, a second dose of the placebo was administered, after which participants completed another CO2 challenge.
Results:
Participants administered sham "lorazepam" reported significant positive expectations of reduced anxiety (P = .001), but there was no group-level placebo effect on anxiety following CO2 challenge post-conditioning (Ps > .350). Surprisingly, we found many participants exhibited unexpected worsening of anxiety, despite positive expectations.
Conclusions:
Contrary to our hypothesis, our novel paradigm did not induce a placebo response, on average. It is possible that effects of 7.5% CO2 inhalation on prefrontal cortex function or behavior in line with a Bayesian predictive coding framework attenuated the effect of expectations on subsequent placebo response. Future studies are needed to explore these possibilities.
Insights
Researchers developed a new method to test placebo effects for anxiety but found no average placebo response. Some participants experienced worsening anxiety despite expecting relief, suggesting complex interactions in the brain.
Area of Science:
- Neuroscience
- Psychiatry
- Pharmacology
Background:
- Anxiety disorders are common and costly, necessitating new treatments.
- Current treatments have limitations, and high placebo response rates hinder drug development.
- Mechanisms of placebo effects in anxiety are poorly understood due to limited experimental models.
Purpose of the Study:
- To develop and validate a novel protocol for inducing placebo anxiolysis.
- To investigate placebo responses in healthy volunteers using a 7.5% CO2 inhalational model.
Main Methods:
- 32 healthy volunteers underwent a 7.5% CO2 challenge.
- Participants received placebo nasal spray labeled as lorazepam or saline.
- A second CO2 challenge was administered after placebo administration and normal air inhalation.
Main Results:
- Participants expecting relief from sham lorazepam showed positive expectations (P=.001).
- No significant group-level placebo effect on anxiety was observed post-conditioning (P>.350).
- Unexpected anxiety worsening occurred in some participants despite positive expectations.
Conclusions:
- The novel paradigm did not reliably induce placebo anxiolysis.
- CO2 inhalation effects on prefrontal cortex function may have attenuated placebo responses.
- Further research is needed to understand the interplay of expectations and neurobiology in placebo effects.
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