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Neuropathic pain in a Fabry disease rat model
James J. Miller, Kazuhiro Aoki, Francie Moehring, Carly A. Murphy, Crystal L. O’Hara, Michael Tiemeyer, Cheryl L. Stucky, Nancy M. Dahms
James J. Miller, Kazuhiro Aoki, Francie Moehring, Carly A. Murphy, Crystal L. O’Hara, Michael Tiemeyer, Cheryl L. Stucky, Nancy M. Dahms
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Research Article Neuroscience

Neuropathic pain in a Fabry disease rat model

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Abstract

Fabry disease, the most common lysosomal storage disease, affects multiple organs and results in a shortened life span. This disease is caused by a deficiency of the lysosomal enzyme α-galactosidase A, which leads to glycosphingolipid accumulation in many cell types. Neuropathic pain is an early and severely debilitating symptom in patients with Fabry disease, but the cellular and molecular mechanisms that cause the pain are unknown. We generated a rat model of Fabry disease, the first nonmouse model to our knowledge. Fabry rats had substantial serum and tissue accumulation of α-galactosyl glycosphingolipids and had pronounced mechanical pain behavior. Additionally, Fabry rat dorsal root ganglia displayed global N-glycan alterations, sensory neurons were laden with inclusions, and sensory neuron somata exhibited prominent sensitization to mechanical force. We found that the cation channel transient receptor potential ankyrin 1 (TRPA1) is sensitized in Fabry rat sensory neurons and that TRPA1 antagonism reversed the behavioral mechanical sensitization. This study points toward TRPA1 as a potentially novel target to treat the pain experienced by patients with Fabry disease.

Authors

James J. Miller, Kazuhiro Aoki, Francie Moehring, Carly A. Murphy, Crystal L. O’Hara, Michael Tiemeyer, Cheryl L. Stucky, Nancy M. Dahms

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Figure 3

Glycosphingolipids (GSLs) in Fabry rat serum and RBCs.

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Glycosphingolipids (GSLs) in Fabry rat serum and RBCs.
GSLs were extract...
GSLs were extracted from serum (A) and RBC (B) from 13-week-old male rats (n = 3 WT, n = 3 KO). Following purification and permethylation, GSLs were analyzed and quantified by nanospray ionization–mass spectrometry. Note the log scale on the y axis in B. Shown are mean ± SEM, and means were compared using unpaired, 2-tailed t tests to determine genotype differences in GSLs. If GSL means in KO rats were statistically elevated above WT means, the fold increase is shown above in red. GSLs detected in KO, but not WT, serum and RBCs are highlighted with light blue boxes. Lyso-Gb3, globotriaosylsphingosine; Gb3, globotriaosylceramide; Gb4, globotetraosylceramide; GM3, monosialoganglioside GM3; CMH, ceramide monohexoside; CDH, ceramide dihexoside; Gal, galactose; GT1, trisialoganglioside GT1; GD1, disialoganglioside GD1; GM1, monosialoganglioside GM1.*P < 0.05, ***P < 0.001.

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