Influence of dietary myoinositol on nerve conduction and inositol phospholipids in normal and diabetic rats.
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Summary
Comparison between the values before and with up to nine weeks of dosing revealed no alteration in conduction velocity, and no statistically significantly difference in sciatic nerve myoinositol was demonstrated, but the sorbitol and fructose concentrations were increased.
- Type
- article
- Published
- 1978-04-01
- Cited by
- 52
- References
- 34
- Access
- Open access
- OpenAlex
- https://openalex.org/W1964991932
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:15599990
Keywords
Nerve conduction velocity, Inositol, Endocrinology, Internal medicine, Sorbitol
References
- PHOSPHOINOSITIDES AND OTHER PHOSPHOLIPIDS IN SYMPATHETIC GANGLIA AND NERVE TRUNKS OF RATS
- Hypermyoinositolemic polyneuropathy in rats. A possible mechanism for uremic polyneuropathy.
- Serial in vivo determinations of nerve conduction velocity in rat tails. Physiological and pathological changes.
- Effects of insulin and dietary myoinositol on impaired peripheral motor nerve conduction velocity in acute streptozotocin diabetes.
- NERVE CONDUCTION CHANGES IN EXPERIMENTAL DIABETES.
- Neuropathy in experimental diabetes: an animal model.
- Peripheral nerve structure and function in experimental diabetes.
- The subcellular distribution of polyphosphoinositides in myelinated and unmyelinated rat brain.
- Phosphoinositide interconversion: a model for control of Na + and K + permeability in the nerve axon membrane.
- Sorbitol Pathway: Presence in Nerve and Cord with Substrate Accumulation in Diabetes
- The influence of age, sex, weight and relationship upon the number of medullated nerve fibers and on the size of the largest fibers in the ventral root of the second cervical nerve of the albino rat
- INCORPORATION OF 32P IN VITRO INTO TRIPHOSPHOINOSITIDE AND RELATED LIPIDS OF RAT SUPERIOR CERVICAL GANGLIA AND VAGUS NERVES
- PHYSIOLOGICAL SIGNIFICANCE OF POLYPHOSPHOINOSITIDES IN BRAIN *
- Free sugars in alloxan diabetic rat nerve.
- ALLOXAN DIABETIC NEUROPATHY: ELECTRON MICROSCOPIC STUDIES
- Raised plasma-myoinositol levels in uraemia and experimental neuropathy.
- Acute magnesium poisoning as a complication of chronic intermittent haemodialysis.
- Peripheral nerve abnormalities related to galactose administration in rats.
- Plasma-myoinositol concentrations in uraemic neuropathy.
- Increased fructose production by the brain in alloxan diabetes.
Cited by
- Age changes in the tibial and plantar nerves of the rat.
- The Polyol Paradigm and Complications of Diabetes
- Dietary myo-inositol and diabetic neuropathy.
- Acute hyperosmolar hyperglycemia causes axonal shrinkage and reduced nerve conduction velocity.
- Water content, vasoactive intestinal polypeptide and substance P in intact and crushed sciatic nerves of normal and streptozotocin-diabetic rats.
- Quantitative analysis of myelin and axolemma particle distribution in C57BL/Ks diabetic mice and the effects of ganglioside treatment.
- Potential role and therapeutic interests of myo-inositol in metabolic diseases.
- Nerve conduction velocity in experimental diabetes in the rat and rabbit.
- The effects of aldose reductase inhibition on nerve sorbitol and myoinositol concentrations in diabetic and galactosemic rats.
- Oral supplementation of myoinositol: effects on peripheral nerve function in human diabetics and on the concentration in plasma, erythrocytes, urine and muscle tissue in human diabetics and normals *
- The Axonopathy of Diabetic Neuropathy
- Does the Exposure to 2,5‐Hexanedione Hasten the Onset of Peripheral Neuropathy in Streptozotocin‐Induced Diabetic Rats?
- Development of diabetic neuropathy in the C57BL/Ks (db/db) mouse and its treatment with gangliosides.
- Pathology and pathogenetic mechanisms of diabetic neuropathy.
- Diabetic Peripheral Neuropathies: A Morphometric Overview
- Dietary myo-inositol intake and peripheral nerve function in diabetic neuropathy.
- An enzymatic fluorimetric assay for myo-inositol.
- The effects of Sorbinil on peripheral nerve conduction velocity, polyol concentrations and morphology in the streptozotocin-diabetic rat
- Alterations of Inositol Lipid Metabolism of Rat Sciatic Nerve in Streptozotocin‐Induced Diabetes
- The effect of aldose reductase inhibition on the pattern of nerve conduction deficits in diabetic rats.
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