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Nutritional Neuroscience
An International Journal on Nutrition, Diet and Nervous System
Volume 19, 2016 - Issue 4
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Original Articles

Vitamin B12-responsive neuropathies: A case series

Pages 162-168 | Published online: 24 Feb 2015
 

Abstract

Objectives: Neuropathies often accompany vitamin B12 deficiency. Since many neuropathies are linked to oxidative stress and since B12 has both antioxidant and neurotrophic properties, B12 may also be effective treatment in non-deficient subjects. Thus, the characteristics and predictors of B12-responsive neuropathies and their relationship to disorders associated with increased oxidative stress (oxidant risks) were examined.

Methods: Retrospective review of 78 subjects with neurological abnormalities treated with B12 and evaluated by the measurement of B12 and the B12-dependent metabolites, methylmalonic acid (MMA), and homocysteine.

Results: Sixty-five subjects had neurological improvement (83%), including 35 with other known causes of neuropathy. Only two responders had B12-responsive macrocytosis. Pretherapy B12, MMA, and homocysteine values were normal in 72, 33 and 54% of responders, with all three normal in 23%. Moreover, B12 therapy did not significantly decrease elevated MMA and homocysteine levels in 20 and 37%, respectively, of responders tested but did decrease both metabolites in 75% of evaluable non-responders. At least one oxidant risk was present in 41 of the 46 responders with normal B12 levels (89%). Oral therapy was effective, but parenteral B12 improved responses in four subjects.

Discussion: B12-responsive neuropathies are thus (1) common even when confounding disorders are present; (2) dissociated from the presence of hematological abnormalities; (3) dissociated from the presence of B12-responsive metabolical abnormalities; and (4) associated with the presence of oxidant risks when B12 levels are normal. Since no predictors of responses to B12 therapy were identified, empiric trials with parenteral B12 should be considered in appropriate subjects.

Acknowledgements

The author thanks D. Bonke (Merck, Darmstadt, Germany) for his suggestion regarding the possible effect of oxidative stress on B12 metabolism and Dr R. Green (UC Davis, Sacremento, CA, USA) for his suggestion on the possible therapeutic use of reduced forms of vitamin B12.

Disclaimer statements

Contributors None.

Funding None.

Conflicts of interest None.

Ethics approval None.

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