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胰岛素对马属动物蹄叶结构完整性的体外效应。

Ex vivo effects of insulin on the structural integrity of equine digital lamellae.

作者信息

Sandow C, Fugler L A, Leise B, Riggs L, Monroe W T, Totaro N, Belknap J, Eades S

机构信息

Veterinary Clinical Sciences, School of Veterinary Medicine, Louisiana State University, Baton Rouge, Louisiana, USA.

Department of Biological and Agricultural Engineering, Louisiana State University, Baton Rouge, Louisiana, USA.

出版信息

Equine Vet J. 2019 Jan;51(1):131-135. doi: 10.1111/evj.12964. Epub 2018 Jun 1.

Abstract

BACKGROUND

Laminitis has a considerable impact on the equine industry. Endocrinopathic laminitis is the most common form and affected horses often have hyperinsulinaemia due to an underlying metabolic disorder.

OBJECTIVES

The aim of this study was to determine if insulin weakens the structural integrity of digital lamellae and to develop an ex vivo model for the study of hyperinsulinaemia-induced lamellar failure.

STUDY DESIGN

Ex vivo experiment.

METHODS

Biomechanical testing was used to assess the structural integrity of lamellar explants exposed to either medium alone (control) or medium supplemented with insulin. Lamellar explants comprised of hoof wall, lamellar tissue and distal phalanx were harvested from four adult horses with no evidence of inflammatory disease or pre-existing disease of the digit. Following an equilibration period, explants were incubated in medium or medium supplemented with insulin (2.5 μg/ml) for 8 h prior to biomechanical testing to obtain load (N), stress (MPa), elongation to failure (mm), and Young's modulus (MPa) for each explant. Significant differences were assessed using a mixed linear model with horses as a random factor and control or insulin-treated group as a fixed factor.

RESULTS

Lamellar explants incubated in medium supplemented with insulin failed at significantly lower load (P = 0.0001) and lower stress (P = 0.001) and had greater elongation to failure (P = 0.02).

MAIN LIMITATIONS

In addition to the ex vivo nature of the study, location-dependent variability in explant structural integrity and variable diffusion of nutrients due to explant size may have been limitations. However, the study design attempted to account for these limitations through random assignment of explants to treatment groups independent of location and by evaluating stress to failure.

CONCLUSIONS

Insulin weakens the structural integrity of equine lamellar explants and an ex vivo model for evaluation of hyperinsulinaemia-induced lamellar failure was established. The summary is available in Spanish - see Supporting Information.

摘要

背景

蹄叶炎对养马业有相当大的影响。内分泌性蹄叶炎是最常见的形式,患病马匹常因潜在的代谢紊乱而出现高胰岛素血症。

目的

本研究旨在确定胰岛素是否会削弱蹄叶的结构完整性,并建立一个用于研究高胰岛素血症诱导的蹄叶衰竭的体外模型。

研究设计

体外实验。

方法

采用生物力学测试来评估暴露于单独培养基(对照)或添加胰岛素的培养基中的蹄叶外植体的结构完整性。从四匹无炎症疾病或指部既往疾病迹象的成年马身上采集由蹄壁、蹄叶组织和远节指骨组成的蹄叶外植体。在平衡期后,外植体在培养基或添加胰岛素(2.5μg/ml)的培养基中孵育8小时,然后进行生物力学测试,以获得每个外植体的负荷(N)、应力(MPa)、断裂伸长(mm)和杨氏模量(MPa)。使用以马作为随机因素、对照或胰岛素处理组作为固定因素 的混合线性模型评估显著差异。

结果

在添加胰岛素的培养基中孵育的蹄叶外植体在显著更低的负荷(P = 0.0001)和更低的应力(P = 0.001)下发生断裂,并且具有更大的断裂伸长(P = 0.02)。

主要局限性

除了该研究的体外性质外,外植体结构完整性的位置依赖性变异性以及由于外植体大小导致的营养物质扩散差异可能都是局限性。然而,该研究设计试图通过将外植体随机分配到与位置无关的处理组并评估断裂应力来考虑这些局限性。

结论

胰岛素会削弱马蹄叶外植体的结构完整性,并建立了一个用于评估高胰岛素血症诱导的蹄叶衰竭的体外模型。总结内容有西班牙语版本 - 见补充信息。

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