Macrophage migration inhibitory factor is a potential therapeutic target for cisplatin induced peripheral neuropathy in breast cancer

Abstract Background Cisplatin (CP) is a potent chemotherapy drug used for the management of several cancers. However, the use of CP is associated with painful peripheral neuropathy. Effective therapies are currently unavailable for cisplatin-induced peripheral neuropathy (CisIPN). Given the known association between pro-inflammatory cytokines and CisIPN, we explored the role of the pro-inflammatory cytokine, the macrophage migration inhibitory factor (MIF), in CisIPN. Methods CisIPN was induced in normal and breast cancer mouse models. Circulating MIF levels in CisIPN mice were examined using ELISA. The effect of MIF inhibition on CisIPN severity was evaluated using small molecule inhibitors. Mechanical and cold sensitivities of CisIPN mice were examined using von Frey filament and cold acetone assays. Macrophage infiltration and expression of MIF in dorsal root ganglia (DRG) and sciatic nerves of CisIPN mice were examined using immunostaining. Molecular changes downstream of MIF were examined in Schwann Cells (SCs) using western blot. Results Circulating MIF levels were increased in CisIPN mice, indicating a potential role for MIF in CisIPN. Pharmacological inhibition of MIF suppressed the mechanical hypersensitivity component associated with CisIPN, substantiating a facilitatory role for MIF in CisIPN. There was no significant change observed in macrophage abundance in DRGs and sciatic nerves of CisIPN mice. ELISA, immunostaining, and western blot assays indicated that sensory neurons and SCs are potential sources for increased MIF in CisIPN. We also found fluctuations in ERK1/2 signaling downstream of MIF in SCs, suggesting it as a potential mechanism underlying MIF-dependent facilitation of CisIPN. Conclusion Overall, our results indicate that MIF facilitates CisIPN, suggesting its potential role as a therapeutic target for CisIPN.

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Journal
Neuro-Oncology Advances
Published
2026-09-10
DOI
https://doi.org/10.1093/noajnl/vdag243
Primary Topic
Macrophage Migration Inhibitory Factor
Type
article
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article

Macrophage migration inhibitory factor is a potential therapeutic target for cisplatin induced peripheral neuropathy in breast cancer

Bhadrapriya Sivakumar, Anand Krishnan, Shubham Dwivedi, Jay Patel et al.
Neuro-Oncology Advances
Macrophage Migration Inhibitory Factor
article

Macrophage migration inhibitory factor is a potential therapeutic target for cisplatin induced peripheral neuropathy in breast cancer

Bhadrapriya Sivakumar, Anand Krishnan, Shubham Dwivedi, Jay Patel, Snigdha Pathak, Shahid Ahmed, Bari Chowdhury, Nickson Joseph, Hya El-Baroudy, Nishi Bamania, Sandra Mitzkus, Isabelle Monsman, Ximena Mejia Delgadillo, Hanrong Li
article en

Abstract

Abstract Background Cisplatin (CP) is a potent chemotherapy drug used for the management of several cancers. However, the use of CP is associated with painful peripheral neuropathy. Effective therapies are currently unavailable for cisplatin-induced peripheral neuropathy (CisIPN). Given the known association between pro-inflammatory cytokines and CisIPN, we explored the role of the pro-inflammatory cytokine, the macrophage migration inhibitory factor (MIF), in CisIPN. Methods CisIPN was induced in normal and breast cancer mouse models. Circulating MIF levels in CisIPN mice were examined using ELISA. The effect of MIF inhibition on CisIPN severity was evaluated using small molecule inhibitors. Mechanical and cold sensitivities of CisIPN mice were examined using von Frey filament and cold acetone assays. Macrophage infiltration and expression of MIF in dorsal root ganglia (DRG) and sciatic nerves of CisIPN mice were examined using immunostaining. Molecular changes downstream of MIF were examined in Schwann Cells (SCs) using western blot. Results Circulating MIF levels were increased in CisIPN mice, indicating a potential role for MIF in CisIPN. Pharmacological inhibition of MIF suppressed the mechanical hypersensitivity component associated with CisIPN, substantiating a facilitatory role for MIF in CisIPN. There was no significant change observed in macrophage abundance in DRGs and sciatic nerves of CisIPN mice. ELISA, immunostaining, and western blot assays indicated that sensory neurons and SCs are potential sources for increased MIF in CisIPN. We also found fluctuations in ERK1/2 signaling downstream of MIF in SCs, suggesting it as a potential mechanism underlying MIF-dependent facilitation of CisIPN. Conclusion Overall, our results indicate that MIF facilitates CisIPN, suggesting its potential role as a therapeutic target for CisIPN.

Neuro-Oncology Advances
Cameco (Canada) (CA), University of Saskatchewan (CA), Saskatchewan Cancer Agency (CA)
Good health and well-being
Openalex Percentile: Top 17%
Macrophage Migration Inhibitory Factor
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