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一种用于评估与马的优先负重相关的板层信号传导的新型模型。

A novel model to assess lamellar signaling relevant to preferential weight bearing in the horse.

作者信息

Gardner A K, van Eps A W, Watts M R, Burns T A, Belknap J K

机构信息

College of Veterinary Medicine, The Ohio State University, 601 Vernon L. Tharp Street, Columbus, OH 43201, USA.

School of Veterinary Science, The University of Queensland, Gatton Campus, Gatton, QLD 4343, Australia.

出版信息

Vet J. 2017 Mar;221:62-67. doi: 10.1016/j.tvjl.2017.02.005. Epub 2017 Feb 14.

Abstract

Supporting limb laminitis (SLL) is a devastating sequela to severe unilateral lameness in equine patients. The manifestation of SLL, which usually only affects one limb, is unpredictable and the etiology is unknown. A novel, non-painful preferential weight bearing model designed to mimic the effects of severe unilateral forelimb lameness was developed to assess lamellar signaling events in the supporting limb (SL). A custom v-shaped insert was attached to the shoe of one forelimb to prevent normal weight bearing and redistribute weight onto the SL. Testing of the insert using a custom scale platform built into the floor of stocks confirmed increased distribution of weight on the SL compared with the unloaded forelimb (UL) and the contralateral (CH) and ipsilateral (IH) hind limbs in six Standardbred horses. In a second part of the study, eight healthy Standardbred horses were fitted with the insert and tied with consistent monitoring and free access to hay and water for 48 h, after which the lamellae were harvested. Real-time qPCR was performed to assess lamellar mRNA concentrations of inflammatory genes and immunoblotting and immunofluorescence were performed to assess lamellar protein concentration and cellular localization of hypoxia-related proteins, respectively. Lamellar mRNA concentrations of inflammatory signaling proteins did not differ between SL and either CH or IH samples. HIF-1α concentrations were greater (P < 0.05) in the SL compared to the CH. This work establishes an experimental model to study preferential weight bearing and initial results suggest that lamellar hypoxia may occur in the SL.

摘要

支持肢蹄叶炎(SLL)是马属动物严重单侧跛行的一种毁灭性后遗症。SLL通常仅影响一个肢体,其表现不可预测且病因不明。为了评估支持肢(SL)中的板层信号传导事件,开发了一种新型的、无痛的优先负重模型,旨在模拟严重单侧前肢跛行的影响。一个定制的V形插入物被附着在一个前肢的蹄铁上,以防止正常负重并将体重重新分配到支持肢上。使用安装在畜栏地面的定制秤平台对该插入物进行测试,结果证实,与六匹标准赛马的未负重前肢(UL)、对侧(CH)和同侧(IH)后肢相比,支持肢上的体重分布增加。在该研究的第二部分中,八匹健康的标准赛马被安装上插入物,并在持续监测且可自由获取干草和水的条件下拴系48小时,之后采集蹄叶。进行实时定量PCR以评估炎症基因的蹄叶mRNA浓度,并分别进行免疫印迹和免疫荧光以评估蹄叶蛋白浓度和缺氧相关蛋白的细胞定位。支持肢与对侧或同侧样本之间炎症信号蛋白的蹄叶mRNA浓度没有差异。与对侧相比,支持肢中的缺氧诱导因子-1α(HIF-1α)浓度更高(P < 0.05)。这项工作建立了一个研究优先负重的实验模型,初步结果表明支持肢可能会出现蹄叶缺氧。

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