Sung-Woo Hyung, Ui Jin Park, Jeong Hwan Ryu, Siwook Chung
Background/Objectives: Glucagon-like peptide-1 receptor agonists (GLP-1RAs) are increasingly encountered in pain practice, but reported pain improvement may reflect direct antinociception, weight loss, metabolic change, or disease-specific effects. This structured narrative review examined these possibilities and relevant safety issues. Methods: PubMed/MEDLINE, Embase, and Web of Science Core Collection were searched through 15 May 2026. Peer-reviewed human studies, key mechanistic preclinical studies, systematic reviews and meta-analyses, and professional guidance relevant to pain outcomes or procedural safety were considered. Metabolic-only and non-peer-reviewed reports were excluded, and human pain-primary evidence was prioritized. Results: Preclinical data support plausible mechanisms involving spinal microglia, interleukin-10, beta-endorphin, neuroinflammation, and sensory-neuron signaling, but direct analgesic efficacy at systemic clinical doses has not been demonstrated. In STEP 9 (n = 407), mean WOMAC pain scores at 68 weeks changed from baseline by -41.7 points with semaglutide 2.4 mg and -27.5 points with a placebo; body weight changed by -13.7% and -3.2%, respectively. Liraglutide produced additional weight loss without superior knee-pain reduction. Diabetic peripheral neuropathy evidence was mainly structural or neurophysiologic; idiopathic intracranial hypertension and ROSE-010-treated irritable bowel syndrome showed disease-specific signals, whereas fibromyalgia- and opioid-related findings remained observational or hypothesis-generating. Gastrointestinal dysmotility, reduced intake, and lean-mass loss may offset functional benefits. Conclusions: GLP-1RAs are not established analgesics. Current human signals are best interpreted as indirect metabolic-functional or disease-specific effects. Future trials should use validated pain-primary outcomes, control for weight loss, and monitor treatment-related harms.