[Use of milk haptoglobin concentration as an indicator in animal health monitoring of dairy cows].

IF 0.4 4区 农林科学 Q4 VETERINARY SCIENCES Tieraerztliche Praxis Ausgabe Grosstiere Nutztiere Pub Date : 2023-12-01 Epub Date: 2023-12-06 DOI:10.1055/a-2199-1754
Sarah Plattner, Martin Kammer, Emil Walleser, Stefan Plattner, Nicola Panne, Christian Baumgartner, Dörte Döpfer, Rolf Mansfeld
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Abstract

Objective: The aim of the present study was to investigate relationships between elevated haptoglobin concentrations in milk and clinical as well as laboratory parameters in early lactating dairy cows. Furthermore, cut-off values should be identified for the differentiation of healthy and affected animals.

Material and methods: 1462 dairy cows between 5.-65. days in milk were examined on 68 Bavarian farms. Milk and blood samples were taken once a week for a 7-week period per farm and body-condition-scoring, backfat thickness measurement and Metricheck examination, to evaluate uterine health, were performed. Milk samples were analysed for milk fat, milk protein, lactose, urea, ß-hydroxybutyrate and non-esterified fatty acids (indirect measurement, based on IR spectra), cell count, and milk haptoglobin. Blood samples were analysed for creatinine, aspartate aminotransferase, gamma-glutamyl transferase, glutamate dehydrogenase, total protein, albumin, creatine kinase, ß-hydroxybutyrate, non-esterified fatty acids, and blood haptoglobin.Cluster analyses were performed to determine cut-off values for haptoglobin.

Results: Besides milk haptoglobin (µg/ml) and blood haptoglobin (µg/ml), cell count (cells/ml milk), milk fat (%), milk protein (%), non-esterified fatty acids in blood (mmol/l), lactation number, days in milk, breed, season, and milk yield (kg) were included as significant input variables (p<0.005) in the cluster analyses. Cluster analysis, using k-means resp. k-prototypes algorithms, resulted in 5 (clusters 1-5 M1) resp. 4 different clusters (clusters 0-3 M2 and 0-3 B).A cut-off value of 0.5 µg/ml haptoglobin in milk was determined for the differentiation of healthy and affected animals.

Conclusion and clinical relevance: As milk is an easily available substrate, routine determination of haptoglobin in milk might be a suitable parameter for animal health monitoring. Using the detected cut-off value, apparently healthy animals with subclinical inflammatory diseases can be identified more quickly.

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[乳中触珠蛋白浓度作为奶牛健康监测指标的应用]。
目的:本研究的目的是探讨乳中接触珠蛋白浓度升高与早期泌乳奶牛临床和实验室参数的关系。此外,还应确定区分健康动物和患病动物的临界值。材料与方法:奶牛1462头,年龄在5 -65岁之间。对68个巴伐利亚农场的牛奶进行了检测。每个农场每周采集一次牛奶和血液样本,为期7周,并进行身体状况评分、背部脂肪厚度测量和Metricheck检查,以评估子宫健康。分析牛奶样品的乳脂、乳蛋白、乳糖、尿素、ß-羟基丁酸酯和非酯化脂肪酸(基于红外光谱的间接测量)、细胞计数和乳触珠蛋白。分析血液肌酐、天冬氨酸转氨酶、γ -谷氨酰转移酶、谷氨酸脱氢酶、总蛋白、白蛋白、肌酸激酶、ß-羟基丁酸、非酯化脂肪酸和血触珠蛋白。采用聚类分析确定触珠蛋白的临界值。结果:除乳珠蛋白(µg/ml)和血珠蛋白(µg/ml)外,细胞计数(细胞/ml奶)、乳脂(%)、乳蛋白(%)、血液非酯化脂肪酸(mmol/l)、泌乳次数、泌乳天数、品种、季节、产奶量(kg)均为显著输入变量(p1)。4种不同的聚类(聚类0-3 M2和0-3 B),确定牛奶中接触珠蛋白的临界值为0.5µg/ml,以区分健康动物和患病动物。结论及临床意义:由于牛奶是一种容易获得的底物,因此常规测定牛奶中的触珠蛋白可能是动物健康监测的一个合适参数。利用检测到的临界值,可以更快地识别出表面健康的亚临床炎症性疾病动物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
82
期刊介绍: Die Tierärztliche Praxis wendet sich mit ihren beiden Reihen als einzige veterinärmedizinische Fachzeitschrift explizit an den Großtier- bzw. Kleintierpraktiker und garantiert damit eine zielgruppengenaue Ansprache. Für den Spezialisten bietet sie Original- oder Übersichtsartikel zu neuen Therapie- und Operationsverfahren oder den Einsatz moderner bildgebender Verfahren. Der weniger spezialisierte Tierarzt oder Berufseinsteiger findet auf seinen Berufsalltag zugeschnittene praxisbezogene Beiträge in der Fortbildungsrubrik „Aus Studium und Praxis“. Mit dem hervorgehobenen „Fazit für die Praxis“ am Ende jedes Artikels verschafft sich auch der eilige Leser einen raschen Überblick über die wichtigsten Inhalte dieser modern konzipierten Fachzeitschrift mit den vielen hochwertigen, überwiegend farbigen Abbildungen. In jedem Heft ermöglicht ein ATF-anerkannter Fortbildungsartikel den Erwerb einer ATF-Stunde (Akademie für tierärztliche Fortbildung).
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