Open Journal of Molecular and Integrative Physiology

Open Journal of Molecular and Integrative Physiology

ISSN Print: 2162-2159
ISSN Online: 2162-2167
www.scirp.org/journal/ojmip
E-mail: ojmip@scirp.org
"Morphine has latent deleterious effects on the ventilatory responses to a hypoxic challenge*"
written by Walter J. May, Ryan B. Gruber, Joseph F. Discala, Veljko Puskovic, Fraser Henderson Jr., Lisa A. Palmer, Stephen J. Lewis,
published by Open Journal of Molecular and Integrative Physiology, Vol.3 No.4, 2013
has been cited by the following article(s):
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[2] L-cysteine ethylester reverses the adverse effects of morphine on breathing and arterial blood-gas chemistry while minimally affecting antinociception in …
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[3] Fentanyl activates opposing opioid and non-opioid receptor systems that control breathing
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[4] The Reducing Agent Dithiothreitol Modulates the Ventilatory Responses That Occur in Freely Moving Rats during and following a Hypoxic–Hypercapnic …
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[5] Opioids in Treatment of Refractory Dyspnea in Chronic Obstructive Pulmonary Disease: Yes, No or Maybe
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[6] Loss of ganglioglomerular nerve input to the carotid body impacts the hypoxic ventilatory response in freely-moving rats
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[7] Hypoxia releases S-nitrosocysteine from carotid body glomus cells—relevance to expression of the hypoxic ventilatory response
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[8] Hypercapnic signaling influences hypoxic signaling in the control of breathing in C57BL6 mice
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[9] Effects of Gabapentinoids on Heroin-Induced Ventilatory Depression and Reversal by Naloxone
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[10] EPD1504: a novel μ-opioid receptor partial agonist attenuates obsessive–compulsive disorder (OCD)-like behaviors
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[11] frontiers Frontiers in Molecular Neuroscience ORIGINAL RESEARCH published: 11 July 2022
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[12] D-cysteine ethyl ester reverses the deleterious effects of morphine on breathing and arterial blood–gas chemistry in freely-moving rats
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[13] S-Nitroso-L-Cysteine Stereoselectively Blunts the Deleterious Effects of Fentanyl on Breathing While Augmenting Antinociception in Freely-Moving Rats
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[14] D-Cysteine ethyl ester reverses the deleterious effects of morphine on breathing and arterial blood-gas chemistry in freely-moving rats
Frontiers in …, 2022
[15] S-nitroso-L-cysteine stereoselectively blunts the adverse effects of morphine on breathing and arterial blood gas chemistry while promoting analgesia
Biomedicine & …, 2022
[16] D-cysteine ethyl ester and D-cystine dimethyl ester reverse the deleterious effects of morphine on arterial blood-gas chemistry and Alveolar-arterial gradient in …
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[17] Nucleus Tractus Solitarius Neurons Activated by Hypercapnia and Hypoxia Lack Mu Opioid Receptor Expression
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[18] Neural Mechanisms Regulating Opioid-Induced Respiratory Depression and Therapeutic Strategies to Alleviate the Respiratory Side-Effects of Opioid Drugs
Control of Breathing during Sleep, 2022
[19] L-cysteine methyl ester overcomes the deleterious effects of morphine on ventilatory parameters and arterial blood-gas chemistry in unanesthetized rats
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[20] Ventilatory Responses after Loss of Chemoafferent or Sympathetic Inputs to Respiratory-Control Structures
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[21] Tempol Reverses the Negative Effects of Morphine on Arterial Blood-Gas Chemistry and Tissue Oxygen Saturation in Freely-Moving Rats
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[22] d-Cystine di (m) ethyl ester reverses the deleterious effects of morphine on ventilation and arterial blood gas chemistry while promoting antinociception
2021
[23] Glutathione ethyl ester reverses the deleterious effects of fentanyl on ventilation and arterial blood-gas chemistry while prolonging fentanyl-induced analgesia
2021
[24] Systemic Administration of Tempol Attenuates the Cardiorespiratory Depressant Effects of Fentanyl
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[25] Acute morphine blocks spinal respiratory motor plasticity via long‐latency mechanisms that require toll‐like receptor 4 signaling
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[26] Michael W. Jenkins1, 2, Faiza Khalid3, Santhosh M. Baby4, 9, Walter J. May5, Alex P. Young5
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[27] The role of carotid sinus nerve input in the hypoxic-hypercapnic ventilatory response in juvenile rats
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[28] Bilateral carotid sinus nerve transection exacerbates morphine-induced respiratory depression
European Journal of Pharmacology, 2018
[29] Endogenous opiates and behavior: 2014
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[30] Endogenous Opiates and Behavior: 2015
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[31] Role of nitric oxide-containing factors in the ventilatory and cardiovascular responses elicited by hypoxic challenge in isoflur
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[32] Role of nitric oxide-containing factors in the
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