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马草病病原体可能通过逆行轴突运输到达神经元的证据。

Evidence that the agent of equine grass sickness may reach neurons by retrograde axonal transport.

作者信息

Griffiths I R, Smith S, Doxey D L, Whitwell K, Love S

机构信息

Applied Neurobiology Group, University of Glasgow, Bearsden.

出版信息

Vet Rec. 1994 Nov 26;135(22):520-3. doi: 10.1136/vr.135.22.520.

Abstract

Sera from acute and chronic cases of natural grass sickness or normal horses were injected into the parotid salivary gland of ponies. This gland receives its sympathetic innervation from the ipsilateral cranial cervical ganglion. None of the ponies showed any local or systemic signs of illness. After one week the cranial cervical ganglia, stellate and coeliaco-mesenteric ganglia were removed for histological study. Pathological changes were found only in the cranial cervical ganglion ipsilateral to a parotid salivary gland which had received an injection of grass sickness serum. Four out of five batches of test sera from cases of acute natural grass sickness were associated with chromatolytic changes in neurons; the remaining batch of serum produced no abnormalities. The most severe chromatolytic changes were induced by two samples obtained from horses whose signs of grass sickness had been present for less than 12 hours. A serum sample from a chronic case of grass sickness of three weeks duration did not produce chromatolysis but was associated with a moderately severe inflammatory infiltrate and neuronophagia in the ipsilateral cranial cervical ganglion. One batch of serum was size fractionated to separate components with molecular weights above or below 30 kDa. Only the fraction containing components above 30 kDa induced chromatolytic changes.

摘要

将自然性青草病急性和慢性病例的血清或正常马匹的血清注入小马的腮腺。该腺体接受来自同侧颈上神经节的交感神经支配。所有小马均未表现出任何局部或全身疾病迹象。一周后,切除颈上神经节、星状神经节和腹腔肠系膜神经节进行组织学研究。仅在接受青草病血清注射的腮腺同侧的颈上神经节中发现了病理变化。来自急性自然性青草病病例的五批检测血清中有四批与神经元的染色质溶解变化有关;其余一批血清未产生异常。最严重的染色质溶解变化由从出现青草病症状不到12小时的马匹中获得的两份样本引起。一份来自持续三周的慢性青草病病例的血清样本未产生染色质溶解,但与同侧颈上神经节中中度严重的炎性浸润和噬神经元现象有关。将一批血清按大小分级以分离分子量高于或低于30 kDa的成分。只有含有高于30 kDa成分的级分诱导了染色质溶解变化。

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