Dietary folic acid prevents peripheral neuropathy in mouse models of neural tube defects and type 2 diabetes
Abstract
Folate-mediated one-carbon metabolism is implicated in several pathologies including neural tube defects (NTDs), cancer, and neurodegenerative disorders, whereas diabetes is associated with NTDs and peripheral neuropathy (PN). The development of peripheral neuropathy was assessed in Shmt1 +/− and Shmt1 −/− mice, which are models of human folic acid–responsive NTDs, and diabetic ( Lepr db ) mice to determine whether NTDs and PN have a shared etiology. From 6 wk of age, male and female mice with reduced Shmt1 expression exhibited PN, with greater severity in females compared to males. The neuropathic progression was distinct from diabetic peripheral neuropathy (DPN) observed in Lepr db mice. Excess dietary folic acid prevented PN in both Shmt1 −/− and Lepr db/db mice, whereas dietary uridine caused demyelinating PN in mice independent of genotype and folate status. The transcriptome from L3-L5 dorsal root ganglia (DRG) exhibited distinct sex-specific differences in glial cell gene expression when comparing Shmt1 +/+ and Shmt1 −/− mice. DRG sensory neurons exhibited changes in the expression of solute carriers and ion channels involved in nociception, neurotransmission, and structural support. We conclude that reduced thymidylate synthesis causes folic acid–responsive NTDs and PN in mice and that diabetes sensitizes mice to folic acid–responsive PN. Diabetes induces a special nutritional requirement for high intake of folic acid to prevent PN.
Article Details
Journal Info
Proceedings of the National Academy of Sciences
National Academy of Sciences
Authors (7)
Joydeep Chakraborty
Department of Biomedical Sciences, Florida State University
Adhideb Ghosh
Eunice B. Awuah
Division of Nutritional Sciences, Cornell University
Sally P. Stabler
Department of Medicine, University of Colorado, Anschutz Medical Campus
Martha S. Field
Division of Nutritional Sciences, Cornell University
Regan L. Bailey
Institute for Connecting Nutrition and Health, Florida State University
Patrick J. Stover
Department of Biomedical Sciences, Florida State University