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Fentanyl Overdose Causes Prolonged Cardiopulmonary Dysregulation in Male SKH1 Mice

Overview
Publisher MDPI
Specialty Chemistry
Date 2024 Jul 27
PMID 39065791
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Abstract

Fentanyl overdose is a survivable condition that commonly resolves without chronic overt changes in phenotype. While the acute physiological effects of fentanyl overdose, such as opioid-induced respiratory depression (OIRD) and Wooden Chest Syndrome, represent immediate risks of lethality, little is known about longer-term systemic or organ-level impacts for survivors. In this study, we investigated the effects of a single, bolus fentanyl overdose on components of the cardiopulmonary system up to one week post. SKH1 mice were administered subcutaneous fentanyl at the highest non-lethal dose (62 mg/kg), LD10 (110 mg/kg), or LD50 (135 mg/kg), before euthanasia at 40 min, 6 h, 24 h, or 7 d post-exposure. The cerebral cortex, heart, lungs, and plasma were assayed using an immune monitoring 48-plex panel. The results showed significantly dysregulated cytokine, chemokine, and growth factor concentrations compared to time-matched controls, principally in hearts, then lungs and plasma to a lesser extent, for the length of the study, with the cortex largely unaffected. Major significant analytes contributing to variance included eotaxin-1, IL-33, and betacellulin, which were generally downregulated across time. The results of this study suggest that cardiopulmonary toxicity may persist from a single fentanyl overdose and have wide implications for the endurance of the expanding population of survivors.

References
1.
Zhao H, Qin W, Wang P, Wen Z . Eosinopenia is a predictive factor for the severity of acute ischemic stroke. Neural Regen Res. 2019; 14(10):1772-1779. PMC: 6585555. DOI: 10.4103/1673-5374.258411. View

2.
Sullivan M . Depression Effects on Long-term Prescription Opioid Use, Abuse, and Addiction. Clin J Pain. 2018; 34(9):878-884. DOI: 10.1097/AJP.0000000000000603. View

3.
Chen D, Tang T, Deng H, Yang X, Tang Z . Interleukin-7 Biology and Its Effects on Immune Cells: Mediator of Generation, Differentiation, Survival, and Homeostasis. Front Immunol. 2021; 12:747324. PMC: 8674869. DOI: 10.3389/fimmu.2021.747324. View

4.
Veeraveedu P, Sanada S, Okuda K, Fu H, Matsuzaki T, Araki R . Ablation of IL-33 gene exacerbate myocardial remodeling in mice with heart failure induced by mechanical stress. Biochem Pharmacol. 2017; 138:73-80. DOI: 10.1016/j.bcp.2017.04.022. View

5.
Rothenberg M, MacLean J, Pearlman E, Luster A, Leder P . Targeted disruption of the chemokine eotaxin partially reduces antigen-induced tissue eosinophilia. J Exp Med. 1997; 185(4):785-90. PMC: 2196140. DOI: 10.1084/jem.185.4.785. View