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Kappa Opioid-Oxytocin Interactions During Long-Term Partner Separation: Insights from PET Imaging in Titi Monkeys (Plecturocebus cupreus)

Paulus, J. P.; Manca, C.; D Almeida, A.; Caceres, A.; Sosnowski, M. J.; Hobson, B. A.; Chaudhari, A. J.; Bales, K. L.

2026-08-05 neuroscience
10.64898/2026.07.30.739928 bioRxiv
Show abstract

Social bonds are fundamental to health and well-being, and their disruption through partner separation is associated with significant physiological and psychological consequences. The kappa opioid receptor (KOR) system has been proposed as a key modulator of oxytocin (OT) release during partner separation, with prolonged separation hypothesized to trigger KOR downregulation in the paraventricular nucleus of the hypothalamus that disinhibits OT release over time (Bales & Rogers, 2022). However, this model has been difficult to assess non-invasively in primates. The present study used positron emission tomography (PET) with the KOR-selective radiotracer [11C]GR103545 to examine KOR availability in vivo across brain regions implicated in social bonding and separation distress in 16 pair-bonded titi monkeys using a within-subject two-week separation paradigm. Plasma OT, cerebrospinal fluid OT, and plasma cortisol were collected at each scan as complementary indices of peripheral and central OT signaling and physiological stress. We hypothesized that long-term separation would downregulate KORs in the hypothalamus and pituitary, indexed by reduced non-displaceable binding potential (BPND), consistent with the Bales and Rogers model, and increase plasma OT consistent with KOR downregulation disinhibiting OT release. Partner separation significantly elevated plasma cortisol in both sexes, confirming the physiological stress of the manipulation. A significant Condition x Sex interaction was observed for plasma OT, reflecting a crossover pattern in which males, who had significantly higher plasma OT than females at baseline, showed a significant decrease during separation while females showed a non-significant increase, though the sex difference during separation did not reach significance. KOR availability was significantly reduced in the nucleus accumbens during separation, with a non-significant trend toward reduction in the anterior cingulate cortex, while no significant condition effects were observed in the remaining a priori chosen regions. No significant sex effects or Condition x Sex interactions were observed in any a priori chosen PET region. Together, these findings provide the first in vivo neuroimaging evidence of KOR system engagement during partner separation in a pair-bonded primate species, and reveal a sex-dependent OT response to separation that extends and adds nuance to the Bales and Rogers (2022) framework.

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