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Activation of RAGE/STAT3 pathway by methylglyoxal contributes to spinal central sensitization and persistent pain induced by bortezomib.
- Source :
-
Experimental neurology [Exp Neurol] 2017 Oct; Vol. 296, pp. 74-82. Date of Electronic Publication: 2017 Jul 18. - Publication Year :
- 2017
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Abstract
- Bortezomib is a first-line chemotherapeutic drug widely used for multiple myeloma and other nonsolid malignancies. Although bortezomib-induced persistent pain is easily diagnosed in clinic, the pathogenic mechanism remains unclear. Here, we studied this issue with use of a rat model of systemic intraperitoneal administration of bortezomib for consecutive 5days. Consisted with our previous study, we found that bortezomib treatment markedly induced mechanical allodynia in rats. Furthermore, we first found that bortezomib treatment significantly induced the upregulation of methylglyoxal in spinal dorsal horn of rats. Spinal local application of methylglyoxal also induced mechanical allodynia and central sensitization in normal rats. Moreover, administration of bortezomib upregulated the expression of receptors for advanced glycation end products (RAGE) and phosphorylated STAT3 (p-STAT3) in dorsal horn. Importantly, intrathecal injection of metformin, a known scavenger of methylglyoxal, significantly attenuated the upregulation of methylglyoxal and RAGE in dorsal horn, central sensitization and mechanical allodynia induced by bortezomib treatment, and blockage of RAGE also prevented the upregulation of p-STAT3, central sensitization and mechanical allodynia induced by bortezomib treatment. In addition, inhibition of STAT3 activity by S3I-201 attenuated bortezomib-induced mechanical allodynia and central sensitization. Local knockdown of STAT3 also ameliorated the mechanical allodynia induced by bortezomib administration. Our results suggest that accumulation of methylglyoxal may activate the RAGE/STAT3 signaling pathway in dorsal horn, and contributes to the spinal central sensitization and persistent pain induced by bortezomib treatment.<br /> (Copyright © 2017 Elsevier Inc. All rights reserved.)
- Subjects :
- Animals
Antineoplastic Agents toxicity
Disease Models, Animal
Male
Nerve Fibers, Unmyelinated drug effects
Nerve Fibers, Unmyelinated physiology
Pain pathology
Pain Measurement drug effects
RNA, Small Interfering genetics
RNA, Small Interfering metabolism
Rats
Rats, Sprague-Dawley
Receptor for Advanced Glycation End Products genetics
Receptor for Advanced Glycation End Products metabolism
STAT3 Transcription Factor genetics
STAT3 Transcription Factor metabolism
Signal Transduction drug effects
Spinal Cord cytology
Spinal Cord drug effects
Synaptic Potentials drug effects
Synaptic Potentials genetics
Transduction, Genetic
Up-Regulation drug effects
Up-Regulation genetics
Bortezomib toxicity
Central Nervous System Sensitization drug effects
Pain chemically induced
Pain drug therapy
Pyruvaldehyde pharmacology
Pyruvaldehyde therapeutic use
Spinal Cord physiopathology
Subjects
Details
- Language :
- English
- ISSN :
- 1090-2430
- Volume :
- 296
- Database :
- MEDLINE
- Journal :
- Experimental neurology
- Publication Type :
- Academic Journal
- Accession number :
- 28729113
- Full Text :
- https://doi.org/10.1016/j.expneurol.2017.07.010