A review of polioencephalomalacia in ruminants: is the development of malacic lesions associated with excess sulfur intake independent of thiamine deficiency?

硫胺素 硫胺素缺乏 硫黄 生理学 生物 生物化学 内分泌学 化学 有机化学
作者
S. Amat,A. A. Olkowski,Metin Atila,Tyler J. O’Neill
出处
期刊:Veterinary medicine and animal sciences [Herbert Publications]
卷期号:1 (1): 1-1 被引量:18
标识
DOI:10.7243/2054-3425-1-1
摘要

Polioencephalomalacia (PEM), also known as cerebrocortical necrosis, is an important neurologic disease that affects ruminants.Thiamine deficiency and sulfur (S) toxicity have been well recognized as major etiological factors.The mechanism of thiamine deficiency associated PEM has been well elucidated.However, the role of S in PEM pathogenesis remains unclear, although the relationship between S toxicity and PEM has been established for 3 decades.The development of S-induced malacic lesions is believed to be independent of thiamine deficiency, since blood thiamine levels in affected individuals remain in the range of normal animals.However, cattle affected by S-induced PEM frequently respond to thiamine treatment in early disease stages.Thiamine supplementation is reported to reduce the incidence and severity of S-induced PEM.This suggests a possible metabolic relationship between excess S intake and thiamine in the development of malacic lesions.Such an association is further supported by recent studies reporting that high dietary S may increase the metabolic demand for thiamine pyrophosphate (TPP), a critical cofactor in several metabolic pathways.Systemic failure to synthesize metabolically requisite levels of TPP in the brain may be an important precursor in the pathogenesis of S-induced PEM.There is increasing evidence of the importance of thiamine in the pathogenesis of S-induced PEM.Thus, understanding the potential role of S-thiamine interaction in the development of malacic lesions is important step to determine the mechanism of S-induced PEM.The objective of this article is to provide an overview of thiamine deficiency and S toxicity associated PEM, and to discuss the potential role of S-thiamine interaction in the pathogenesis of S-induced PEM in ruminants.

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