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Testosterone Reactivity is Associated with Reduced Neural Response to Reward in Early Adolescence

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Journal Behav Brain Res
Date 2020 Mar 21
PMID 32194193
Citations 3
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Abstract

The marked increase in adolescent reward-seeking behavior has important implications for adaptive and maladaptive development. Reward-seeking is linked to increased testosterone and increased neural responses to reward cues. How acute testosterone changes modulate neural reward systems remains unclear. Based on previous work, adolescents, particularly males, showing an increase in endogenous testosterone reactivity were hypothesized to show increased neural response to reward in ventromedial prefrontal cortex, ventral striatum, and posterior cingulate cortex. Sixty-one healthy adolescents aged 10-13 (38 female, mean age = 12.01 [SD = 1.00]) completed a reward-cue processing task during fMRI. Saliva samples to be assayed for testosterone were collected immediately before and after scanning. Acute testosterone changes were not associated with variation in behavioral performance. Within ventromedial prefrontal and posterior cingulate cortices, increased acute testosterone change was associated with reduced discrimination between rewarded and un-rewarded trials. Results suggest that increasing levels of testosterone may result in reduced attention to/salience of task irrelevant information. In contrast to previous studies that found a positive association between testosterone and neural response to reward, the reward information in the current paradigm was irrelevant to success in task performance. These results are consistent with theoretical conceptualization of testosterone's role in reproduction, which involves a shift in salience to short-term relative to long-term goals. These data further emphasized the need to consider context in the study of hormones; specific behaviors will be up- or down-regulated by a hormone based on the fit of the behavior with the broader contextual goal being orchestrated by the hormone.

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References
1.
Silverman M, Jedd K, Luciana M . Neural networks involved in adolescent reward processing: An activation likelihood estimation meta-analysis of functional neuroimaging studies. Neuroimage. 2015; 122:427-39. PMC: 4618189. DOI: 10.1016/j.neuroimage.2015.07.083. View

2.
Levy D, Glimcher P . Comparing apples and oranges: using reward-specific and reward-general subjective value representation in the brain. J Neurosci. 2011; 31(41):14693-707. PMC: 3763520. DOI: 10.1523/JNEUROSCI.2218-11.2011. View

3.
Eatough E, Shirtcliff E, Hanson J, Pollak S . Hormonal reactivity to MRI scanning in adolescents. Psychoneuroendocrinology. 2009; 34(8):1242-6. PMC: 2747582. DOI: 10.1016/j.psyneuen.2009.03.006. View

4.
Bos P, Terburg D, van Honk J . Testosterone decreases trust in socially naive humans. Proc Natl Acad Sci U S A. 2010; 107(22):9991-5. PMC: 2890465. DOI: 10.1073/pnas.0911700107. View

5.
Nelson B, Kessel E, Jackson F, Hajcak G . The impact of an unpredictable context and intolerance of uncertainty on the electrocortical response to monetary gains and losses. Cogn Affect Behav Neurosci. 2015; 16(1):153-63. DOI: 10.3758/s13415-015-0382-3. View