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Nerve Excitability Assessment in Chemotherapy-induced Neurotoxicity
Published on: April 26, 2012
Cilastatin Modulates DPEP1- and IQGAP1-Associated Neuro-Glio-Vascular Inflammation in Oxaliplatin-Induced Peripheral
Rita Martín-Ramírez1,2, María Ángeles González-Nicolás3,4, Karen Álvarez-Tosco1,2,5
1Laboratorio de Biología del Desarrollo, UD de Bioquímica y Biología Molecular, Universidad de La Laguna, 38206 San Cristóbal de La Laguna, Spain.
Abstract:
Oxaliplatin-induced peripheral neurotoxicity (OIPN) represents a major challenge in cancer therapy, characterized by dorsal root ganglia (DRG) inflammation and disruption of neuro-glio-vascular unit function. In this study, we investigated the involvement of the scaffold protein IQ Motif Containing GTPase Activating Protein 1 (IQGAP1) and dehydropeptidase-1 (DPEP1) in the DRG response to oxaliplatin (OxPt) and the modulatory effect of cilastatin. Behavioral assessment showed a robust nocifensive response to cold stimuli in OxPt-treated rats, attenuated by cilastatin co-treatment. Our confocal study revealed different cellular and subcellular expression patterns of IQGAP1 and DPEP1 in neurons, glia, and endothelial cells, where both signals overlap approximately one-third. OxPt enhanced cytosolic aggregation of IQGAP1 in neurons and upregulation of signal in glia, accompanied by co-expression of TNFα and IL-6, indicating involvement in the inflammatory process. DPEP1 showed altered subcellular distribution in OxPt-treated animals, suggesting a potential role in the inflammatory cascade. Notably, IQGAP1 expression was diminished in endothelial membranes under OxPt, while cilastatin preserved endothelial IQGAP1-CD31 colocalization, suggesting partial restoration of blood-nerve barrier integrity. These findings identify IQGAP1 and DPEP1 as key players in DRG inflammation and position cilastatin as a promising modulator of OIPN through neuro-glio-vascular stabilization.
Insights
Oxaliplatin-induced peripheral neurotoxicity (OIPN) involves IQGAP1 and DPEP1 in dorsal root ganglia (DRG) inflammation. Cilastatin may mitigate OIPN by stabilizing the neuro-glio-vascular unit.
Area of Science:
- Neuroscience
- Pharmacology
- Cell Biology
Background:
- Oxaliplatin-induced peripheral neurotoxicity (OIPN) is a significant clinical challenge.
- OIPN involves dorsal root ganglia (DRG) inflammation and neuro-glio-vascular unit dysfunction.
Purpose of the Study:
- Investigate IQ Motif Containing GTPase Activating Protein 1 (IQGAP1) and dehydropeptidase-1 (DPEP1) roles in OIPN.
- Evaluate cilastatin's modulatory effect on OIPN in the DRG.
Main Methods:
- Behavioral assessment of cold stimulus response in oxaliplatin (OxPt)-treated rats.
- Confocal microscopy to analyze IQGAP1 and DPEP1 expression in DRG neurons, glia, and endothelial cells.
- Immunohistochemical analysis of inflammatory markers (TNFα, IL-6) and endothelial markers (CD31).
Main Results:
- OxPt induced neurotoxicity, characterized by altered IQGAP1 and DPEP1 expression and localization in DRG.
- OxPt treatment upregulated IQGAP1 and inflammatory cytokines (TNFα, IL-6) in glial cells.
- Cilastatin attenuated cold hypersensitivity and preserved endothelial IQGAP1-CD31 colocalization, suggesting blood-nerve barrier protection.
Conclusions:
- IQGAP1 and DPEP1 are implicated in DRG inflammation during OIPN.
- Cilastatin shows potential in mitigating OIPN by stabilizing the neuro-glio-vascular unit.
- Targeting IQGAP1 and DPEP1 pathways may offer novel therapeutic strategies for OIPN.
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