Related Experiment Video
Updated: May 7, 2026

Modified Spared Nerve Injury Surgery Model of Neuropathic Pain in Mice
Published on: January 25, 2022
Bortezomib-induced painful peripheral neuropathy: an electrophysiological, behavioral, morphological and mechanistic
Valentina A Carozzi1, Cynthia L Renn, Michela Bardini
1Department of Surgery and Translational Medicine, University of Milan Bicocca, Monza, Italy.
Abstract:
Bortezomib is the first proteasome inhibitor with significant antineoplastic activity for the treatment of relapsed/refractory multiple myeloma as well as other hematological and solid neoplasms. Peripheral neurological complications manifesting with paresthesias, burning sensations, dysesthesias, numbness, sensory loss, reduced proprioception and vibratory sensitivity are among the major limiting side effects associated with bortezomib therapy. Although bortezomib-induced painful peripheral neuropathy is clinically easy to diagnose and reliable models are available, its pathophysiology remains partly unclear. In this study we used well-characterized immune-competent and immune-compromised mouse models of bortezomib-induced painful peripheral neuropathy. To characterize the drug-induced pathological changes in the peripheral nervous system, we examined the involvement of spinal cord neuronal function in the development of neuropathic pain and investigated the relevance of the immune response in painful peripheral neuropathy induced by bortezomib. We found that bortezomib treatment induced morphological changes in the spinal cord, dorsal roots, dorsal root ganglia (DRG) and peripheral nerves. Neurophysiological abnormalities and specific functional alterations in Aδ and C fibers were also observed in peripheral nerve fibers. Mice developed mechanical allodynia and functional abnormalities of wide dynamic range neurons in the dorsal horn of spinal cord. Bortezomib induced increased expression of the neuronal stress marker activating transcription factor-3 in most DRG. Moreover, the immunodeficient animals treated with bortezomib developed a painful peripheral neuropathy with the same features observed in the immunocompetent mice. In conclusion, this study extends the knowledge of the sites of damage induced in the nervous system by bortezomib administration. Moreover, a selective functional vulnerability of peripheral nerve fiber subpopulations was found as well as a change in the electrical activity of wide dynamic range neurons of dorsal horn of spinal cord. Finally, the immune response is not a key factor in the development of morphological and functional damage induced by bortezomib in the peripheral nervous system.
Insights
Bortezomib causes painful peripheral neuropathy by damaging the nervous system, affecting nerve fibers and spinal cord neurons. This study found the immune response is not a key factor in this bortezomib-induced nerve damage.
Area of Science:
- Neuroscience
- Pharmacology
- Oncology
Background:
- Bortezomib is a proteasome inhibitor used for multiple myeloma and other cancers.
- Peripheral neuropathy is a significant side effect limiting bortezomib treatment.
- The exact pathophysiology of bortezomib-induced painful peripheral neuropathy is not fully understood.
Purpose of the Study:
- To investigate the pathological changes in the peripheral nervous system caused by bortezomib.
- To examine the role of spinal cord neuronal function in bortezomib-induced neuropathic pain.
- To determine the relevance of the immune response in bortezomib-induced painful peripheral neuropathy.
Main Methods:
- Utilized immune-competent and immune-compromised mouse models of bortezomib-induced neuropathy.
- Examined morphological and neurophysiological changes in the spinal cord, dorsal roots, dorsal root ganglia (DRG), and peripheral nerves.
- Assessed mechanical allodynia and neuronal activity in the dorsal horn.
Main Results:
- Bortezomib induced morphological and neurophysiological changes in the peripheral nervous system, including spinal cord and DRG.
- Functional alterations were observed in Aδ and C fibers, and mechanical allodynia developed.
- Increased expression of neuronal stress marker ATF3 was noted in DRG; immune-deficient mice showed similar neuropathy, indicating the immune response is not critical.
Conclusions:
- Bortezomib damages multiple sites in the nervous system, including peripheral nerves and spinal cord.
- Specific nerve fiber subpopulations exhibit functional vulnerability, and dorsal horn neurons show altered electrical activity.
- The immune response does not play a key role in the development of bortezomib-induced peripheral neuropathy.
More Related Videos
08:16Partial Sciatic Nerve Ligation: A Mouse Model of Chronic Neuropathic Pain to Study the Antinociceptive Effect of Novel Therapies
Published on: October 6, 2022
09:39Establishing a Mouse Model of a Pure Small Fiber Neuropathy with the Ultrapotent Agonist of Transient Receptor Potential Vanilloid Type 1
Published on: February 13, 2018