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Reduced Levels of Nitric Oxide Metabolites in Cerebrospinal Fluid Are Associated with Equine Protozoal Myeloencephalitis

机译:脑脊液中一氧化氮代谢物水平降低与马原生动物脊髓性脑炎相关

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Equine protozoal myeloencephalitis (EPM) is a disease of horses that is primarily associated with infection with the apicomplexan Sarcocystis neurona. Infection with this parasite alone is not sufficient to induce the disease, and the mechanism of neuropathogenesis associated with EPM has not been reported. Nitric oxide (NO) functions as a neurotransmitter, a vasodilator, and an immune effector and is produced in response to several parasitic protozoa. The purpose of this work was to determine if the concentration of NO metabolites (NOx?) in the cerebrospinal fluid (CSF) is correlated with the development of EPM. CSF NOx? levels were measured before and after transport-stressed, acclimated, or dexamethasone-treated horses (n = 3 per group) were experimentally infected with S. neurona sporocysts. CSF NOx? levels were also compared between horses that were diagnosed with EPM after natural infection with S. neurona and horses that did not have clinical signs of disease or that showed no evidence of infection with the parasite (n = 105). Among the experimentally infected animals, the mean CSF NOx? levels of the transport-stressed group, which had the most severe clinical signs, was reduced after infection, while these values were found to increase after infection in the remaining groups that had less severe signs of EPM. Under natural conditions, horses with EPM (n = 65) had a lower mean CSF NOx? concentration than clinically normal horses with antibodies (Abs) against S. neurona (n = 15) in CSF, and horses that developed ataxia (n = 81) had a significantly lower mean CSF NOx? concentration than horses that did not have neurologic signs (n = 24). In conclusion, lower CSF NOx? levels were associated with clinical EPM, suggesting that measurement of CSF NOx? levels could improve the accuracy of diagnostic tests that are based upon detection of S. neurona-specific Abs in CSF alone and that reduced NO levels could be causatively related to the development of EPM.
机译:马原生动物脊髓性脑炎(EPM)是一种与马相关的疾病,主要与apicomplexan 的感染有关。仅用这种寄生虫感染还不足以诱发该疾病,并且尚未报道与EPM相关的神经发病机制。一氧化氮(NO)充当神经递质,血管扩张剂和免疫效应物,是对几种寄生虫原生动物的反应而产生的。这项工作的目的是确定脑脊液(CSF)中NO代谢物(NO x )的浓度是否与EPM的发展。 CSF NO x 的水平在运输应激,适应或地塞米松治疗的马( n =每组3个)通过实验感染了 S。神经元孢子囊。还比较了在自然感染 S后被诊断出患有EPM的马之间的CSF NO x 水平。神经元和没有疾病临床症状或无寄生虫感染迹象的马( n = 105)。在实验感染的动物中,运输应激组的CSF NO x 平均水平是临床上最严重的症状,感染后降低,而其余一些EPM症状较轻的组发现这些值在感染后增加。在自然条件下,EPM( n = 65)的马的CSF NO x 浓度均低于具有 S抗体(Abs)的临床正常马。脑脊液中的神经元( n = 15),发生共济失调( n = 81)的马的平均CSF NO x 的浓度要比没有神经系统症状的马( n = 24)高。总之,较低的CSF NO x 水平与临床EPM相关,这表明CSF NO x < / em> 级别可以提高基于检测到 S的诊断测试的准确性。单独的脑脊液中神经元特异性抗体和NO水平降低可能与EPM的发展有因果关系。

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