JCI - Therapeutic manipulation of peroxynitrite attenuates the development of opiate-induced antinociceptive tolerance in mice
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Involvement of the nociceptin opioid peptide receptor in morphine-induced antinociception, tolerance and physical dependence in female mice
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The mitochondrial calcium uniporter contributes to morphine tolerance through pCREB and CPEB1 in rat spinal cord dorsal horn - British Journal of Anaesthesia
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Usefulness of knockout mice to clarify the role of the opioid system in chronic pain - Maldonado - 2018 - British Journal of Pharmacology - Wiley Online Library
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Full article: Emerging Drugs for the Treatment of Amyotrophic Lateral Sclerosis: A Focus on Recent Phase 2 Trials
![](https://pubs.acs.org/cms/10.1021/acschemneuro.1c00691/asset/images/large/cn1c00691_0004.jpeg)
Contribution of Opioid and Nitrergic Systems to m-Trifluoromethyl diphenyl Diselenide Attenuates Morphine-Induced Tolerance in Mice
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Opioids: cellular mechanisms of tolerance and physical dependence - ScienceDirect
When it comes to opiates, just say NO. - Document - Gale Academic OneFile
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Monoclonal Antibodies Counteract Opioid-Induced Behavioral and Toxic Effects in Mice and Rats
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Reactive Oxygen Species in Inflammation and Tissue Injury
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Ptchd1 mediates opioid tolerance via cholesterol-dependent effects on μ- opioid receptor trafficking
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Reactive Oxygen Species in Metabolic and Inflammatory Signaling
![](https://pubs.acs.org/cms/10.1021/acschemneuro.1c00691/asset/images/large/cn1c00691_0006.jpeg)
Contribution of Opioid and Nitrergic Systems to m-Trifluoromethyl diphenyl Diselenide Attenuates Morphine-Induced Tolerance in Mice
![](https://bpspubs.onlinelibrary.wiley.com/cms/asset/8c01c98b-fa63-42e8-9346-f48ede28b8d1/bph14088-fig-0004-m.jpg)
Usefulness of knockout mice to clarify the role of the opioid system in chronic pain - Maldonado - 2018 - British Journal of Pharmacology - Wiley Online Library
![](https://www.ahajournals.org/cms/asset/4b458fa8-2dc2-422b-9a05-5efc09fc309e/877fig04.gif)
Reactive Oxygen Species in Metabolic and Inflammatory Signaling
![](https://pubs.acs.org/cms/10.1021/acschemneuro.9b00539/asset/images/medium/cn9b00539_0001.gif)
Liproxstatin-1 Attenuates Morphine Tolerance through Inhibiting Spinal Ferroptosis-like Cell Death