Current Research on Opioid Receptor Function

Современные исследования функций опиоидных рецепторов
Xiaozhou He, Ying Xia, Yuan Feng, Yilin Yang, Dongman Chao, Lawrence H. Lazarus
2012-01-31

delta-opioid receptor (DOR)kappa-opioid receptor (KOR)mu-opioid receptor (MOR)neuroprotection and cardioprotectionopioid receptors
The use of opioid analgesics has a long history in clinical settings, although the comprehensive action of opioid receptors is still less understood. Nonetheless, recent studies have generated fresh insights into opioid receptor-mediated functions and their underlying mechanisms. Three major opioid receptors (μ-opioid receptor, MOR; δ-opioid receptor, DOR; and κ-opioid receptor, KOR) have been cloned in many species. Each opioid receptor is functionally sub-classified into several pharmacological subtypes, although, specific gene corresponding each of these receptor subtypes is still unidentified as only a single gene has been isolated for each opioid receptor. In addition to pain modulation and addiction, opioid receptors are widely involved in various physiological and pathophysiological activities, including the regulation of membrane ionic homeostasis, cell proliferation, emotional response, epileptic seizures, immune function, feeding, obesity, respiratory and cardiovascular control as well as some neurodegenerative disorders. In some species, they play an essential role in hibernation. One of the most exciting findings of the past decade is the opioid-receptor, especially DOR, mediated neuroprotection and cardioprotection. The upregulation of DOR expression and DOR activation increase the neuronal tolerance to hypoxic/ischemic stress. The DOR signal triggers (depending on stress duration and severity) different mechanisms at multiple levels to preserve neuronal survival, including the stabilization of homeostasis and increased pro-survival signaling (e.g., PKC-ERK-Bcl 2) and antioxidative capacity. In the heart, PKC and KATP channels are involved in the opioid receptor-mediated cardioprotection. The DOR-mediated neuroprotection and cardioprotection have the potential to significantly alter the clinical pharmacology in terms of prevention and treatment of life-threatening conditions like stroke and myocardial infarction. The main purpose of this article is to review the recent work done on opioids and their receptor functions. It shall provide an informative reference for better understanding the opioid system and further elucidation of the opioid receptor function from a physiological and pharmacological point of view.
1
DOR upregulation and activation increase neuronal tolerance to hypoxic and ischemic stress through homeostasis stabilization, pro-survival signaling such as PKC–ERK–Bcl-2, and enhanced antioxidative capacity.
2
DOR-mediated neuroprotection and cardioprotection may support new preventive and therapeutic approaches for life-threatening conditions such as stroke and myocardial infarction.
3
Opioid receptor-mediated cardioprotection involves protein kinase C and ATP-sensitive potassium channels.
4
Opioid receptors regulate diverse physiological and pathological processes beyond analgesia and addiction, including ionic homeostasis, proliferation, emotion, seizures, immunity, feeding, obesity, cardiorespiratory control, neurodegeneration, and hibernation.
5
Three major opioid receptors—MOR, DOR, and KOR—have been cloned, but the genes corresponding to their pharmacological subtypes remain unidentified beyond one gene per receptor.

opioid receptors (MOR, DOR, and KOR)

opioid receptor-mediated physiological and pathophysiological functions and underlying mechanisms, especially DOR-mediated neuroprotection and cardioprotection

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2012-01-31
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Xiaozhou He
Ying Xia
Yuan Feng
Yilin Yang
Dongman Chao
Lawrence H. Lazarus
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