Related Experiment Video
Updated: Aug 8, 2026

Gene-environment Interaction Models to Unmask Susceptibility Mechanisms in Parkinson's Disease
Published on: January 7, 2014
Heterozygous P0 deficiency protects mice from vincristine-induced polyneuropathy
Nurcan Uçeyler1, Igor Kobsar, Lydia Biko
1Department of Neurology, Julius-Maximilians Universität, Würzburg, Germany. ueceyler_n@klinik.uni-wuerburg.de
Abstract:
Patients with hereditary neuropathies are more susceptible to vincristine (VIN)-induced neuropathy than patients without this comorbidity. The heterozygous P0(+/-) mouse is an animal model of a distinct form of inherited neuropathies. These mice produce only 50% of the major myelin protein protein zero (P0) and display signs of demyelination in motor nerves at 4 months of age. Here we investigated the development of neuropathic signs in P0(+/-) and wild-type (wt) mice after VIN treatment. Neuropathy was induced by daily intraperitoneal injections of VIN (0.5 mg/kg body weight) over 10 days. Behavioral and electrophysiological tests were performed at regular time points. Wt mice developed significant hypersensitivity to heat and mechanical stimuli between days 7 and 38 after the first VIN injection. Surprisingly, P0(+/-) mice did not show sensory or motor signs of neuropathy over the whole testing period. Immunohistochemical analysis showed an increase in macrophage numbers in sciatic nerve sections of wt mice after VIN, whereas P0(+/-) mice had higher baseline levels of macrophages without changes after VIN treatment. Semithin sections revealed a decrease in the number of small-diameter myelinated fibers in the sciatic nerves of wt mice after VIN application, whereas P0(+/-) mice had higher baseline values of this fiber subtype that did not change under treatment. Dorsal root ganglion neurons of both genotypes showed an up-regulation of voltage-gated sodium channel immunoreactivity after VIN application without differences between the genotypes. Thus, the P0(+/-) phenotype seems to be protected against VIN-induced neuropathy. The mechanism of this neuroprotection remains elusive.
Insights
Mice with a genetic condition affecting myelin protein zero (P0) showed protection against vincristine (VIN)-induced neuropathy. This suggests a potential mechanism for preventing chemotherapy-related nerve damage.
Area of Science:
- Neuroscience
- Genetics
- Pharmacology
Background:
- Hereditary neuropathies increase susceptibility to chemotherapy-induced nerve damage.
- The heterozygous P0(+/-) mouse model exhibits reduced myelin protein zero (P0) and demyelination.
- Vincristine (VIN) is a chemotherapy agent known to cause neuropathy.
Purpose of the Study:
- To investigate the development of vincristine-induced neuropathy in P0(+/-) mice compared to wild-type (wt) mice.
- To determine if the P0(+/-) genetic background confers neuroprotection against VIN toxicity.
Main Methods:
- Daily intraperitoneal injections of vincristine (0.5 mg/kg) for 10 days in P0(+/-) and wt mice.
- Behavioral and electrophysiological assessments to evaluate neuropathic signs.
- Immunohistochemistry and semithin section analysis of sciatic nerves and dorsal root ganglion neurons.
Main Results:
- Wild-type mice developed significant hypersensitivity and nerve fiber damage after VIN treatment.
- P0(+/-) mice surprisingly showed no sensory or motor signs of neuropathy following VIN administration.
- P0(+/-) mice exhibited higher baseline macrophage levels and small-diameter myelinated fibers, which remained unchanged post-VIN.
Conclusions:
- The P0(+/-) mouse model appears protected against vincristine-induced neuropathy.
- The underlying mechanism for this observed neuroprotection warrants further investigation.
Related Concept Videos
In-vitro Mutagenesis
Mouse Models of Cancer Study
The development of transgenic, knockout, and knock-in mice has led to an exponential increase in their use as model organisms in research,...

