Author:
Mueller Lauren E.,Wexler Roseanne S.,Lovejoy David A.,Stein Robert B.,Slee Andrew M.
Abstract
Abstract
Rationale
Corticotropin-releasing factor (CRF), the apical stress-inducing hormone, exacerbates stress and addictive behaviors. TCAP-1 is a peptide that directly inhibits both CRF-mediated stress and addiction-related behaviors; however, the direct action of TCAP-1 on morphine withdrawal-associated behaviors has not previously been examined.
Objective
To determine whether TCAP-1 administration attenuates behavioral and physiological consequences of morphine withdrawal in mice.
Methods
Mice were administered via subcutaneous route TCAP-1 either before or after initial morphine exposure, after which jumping behavior was quantified to assess the effects of TCAP-1 on naloxone-precipitated morphine withdrawal. As a comparison, mice were treated with nonpeptide CRF1 receptor antagonist CP-154,526. In one experiment, plasma corticosterone (CORT) was also measured as a physiological stress indicator.
Results
Pretreatment with TCAP-1 (10–250 nmol/kg) before morphine treatment significantly inhibited the development of naloxone-precipitated withdrawal. TCAP-1 (250–500 nmol/kg) treatment administered after morphine treatment attenuated the behavioral expression of naloxone-precipitated withdrawal. TCAP-1 (250 nmol/kg) treatment during morphine treatment was more effective than the optimal dosing of CP-154,526 (20 mg/kg) at suppressing the behavioral expression of naloxone-precipitated withdrawal, despite similar reduction of withdrawal-induced plasma CORT level increases.
Conclusions
These findings establish TCAP-1 as a potential therapeutic candidate for the prevention and treatment of morphine withdrawal.
Publisher
Springer Science and Business Media LLC
Reference85 articles.
1. Abdelhamid EE, Sultana M, Portoghese PS, Takemori AE (1991) Selective blockage of delta opioid receptors prevents the development of morphine tolerance and dependence in mice. J Pharmacol Exp Ther 258:299–303
2. Al Chawaf A, Xu K, Tan L, Vaccarino FJ, Lovejoy DA, Rotzinger S (2007) Corticotropin-releasing factor (CRF)-induced behaviors are modulated by intravenous administration of teneurin C-terminal associated peptide-1 (TCAP-1). Peptides 28:1406–1415. https://doi.org/10.1016/j.peptides.2007.05.014
3. Almela P, Navarro-Zaragoza J, García-Carmona JA, Mora L, Hidalgo J, Milanés MV, Laorden ML (2012) Role of corticotropin-releasing factor (CRF) receptor-1 on the catecholaminergic response to morphine withdrawal in the nucleus accumbens (NAc). PLoS ONE 7:e47089. https://doi.org/10.1371/journal.pone.0047089
4. Alsultan MM, Guo JJ (2022) Utilization, spending, and price of opioid medications in the US Medicaid Programs between 1991 and 2019. Am Health Drug Benefits 15:31–37
5. Ball SJ, Simpson K, Zhang J, Marsden J, Heidari K, Moran WP, Mauldin PD, McCauley JL (2021) J Public Health Manag Pract 27:379–384. https://doi.org/10.1097/phh.0000000000001203. High-Risk Opioid Prescribing Trends: Prescription Drug Monitoring Program Data From 2010 to 2018