Related Experiment Video
Updated: Sep 9, 2025

Assessment of Morphine-induced Hyperalgesia and Analgesic Tolerance in Mice Using Thermal and Mechanical Nociceptive Modalities
Published on: July 29, 2014
Mechanisms of Remifentanil-Induced Postoperative Hyperalgesia: A Comprehensive Review
Kexin Zhu1,2, Xiaolin Wen1,2, Xuan Mei1,2
1School of Clinical Medicine, Chengdu Medical College, Chengdu, Sichuan Province, People's Republic of China.
Remifentanil, a widely used ultra-short-acting μ-opioid receptor agonist in clinical anesthesia, is strongly associated with postoperative hyperalgesia (remifentanil-induced hyperalgesia, RIH), posing significant challenges to postoperative pain management. RIH is characterized by an abnormally heightened pain perception following opioid withdrawal, and its underlying mechanisms are complex and multifactorial. Current research highlights the roles of central sensitization, peripheral sensitization, and multiple interacting molecular pathways. These include NMDA receptor activation, glial cell activation, neuroinflammation, disinhibition of inhibitory neurotransmission, and dysfunction of the descending pain modulation system. Additionally, alterations in ion channel expression, synaptic plasticity enhancement, and peripheral responses to inflammatory mediators contribute critically to RIH development. Individual factors such as age, sex, genetic polymorphisms, and surgical type significantly influence the risk of RIH. Although substantial progress has been made in elucidating the molecular mechanisms of RIH, a unified theoretical framework and effective clinical strategies remain lacking. Future studies should emphasize multi-omics approaches and clinically relevant experimental models to uncover key regulatory targets and provide a theoretical basis for individualized analgesic interventions.
Remifentanil, a widely used ultra-short-acting μ-opioid receptor agonist in clinical anesthesia, is strongly associated with postoperative hyperalgesia (remifentanil-induced hyperalgesia, RIH), posing significant challenges to postoperative pain management. RIH is characterized by an abnormally heightened pain perception following opioid withdrawal, and its underlying mechanisms are complex and multifactorial. Current research highlights the roles of central sensitization, peripheral sensitization, and multiple interacting molecular pathways. These include NMDA receptor activation, glial cell activation, neuroinflammation, disinhibition of inhibitory neurotransmission, and dysfunction of the descending pain modulation system. Additionally, alterations in ion channel expression, synaptic plasticity enhancement, and peripheral responses to inflammatory mediators contribute critically to RIH development. Individual factors such as age, sex, genetic polymorphisms, and surgical type significantly influence the risk of RIH. Although substantial progress has been made in elucidating the molecular mechanisms of RIH, a unified theoretical framework and effective clinical strategies remain lacking. Future studies should emphasize multi-omics approaches and clinically relevant experimental models to uncover key regulatory targets and provide a theoretical basis for individualized analgesic interventions.
Related Concept Videos
Analgesia and Pain Management
Opioid Analgesics: Synthetic and Semisynthetic Opioids
Parenteral Anesthetics: Overview
Local Anesthetics: Clinical Application as Epidural Anesthesia
Since epidural anesthetics can be infused through an epidural catheter, all types of drugs, including short-acting ones, can be administered. Chloroprocaine and lidocaine are examples of short and long-duration anesthetics, respectively. Bupivacaine...
General Anesthesia: Overview
General anesthesia induces unconsciousness in the whole body, while the others target specific areas or sensations. It is administered to minimize adverse effects, maintain...
Local Anesthetics: Adverse Effects
Once absorbed into the systemic circulation, local anesthetics can affect the organs that depend on the functioning of sodium...

