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亚琛小型猪:表型、基因型、血液学和生化特征以及与哥廷根小型猪的比较。

The Aachen Minipig: Phenotype, Genotype, Hematological and Biochemical Characterization, and Comparison to the Göttingen Minipig.

作者信息

Pawlowsky Kerstin, Ernst Lisa, Steitz Julia, Stopinski Thaddäus, Kögel Babette, Henger Anna, Kluge Reinhart, Tolba René

机构信息

Institute for Laboratory Animal Science and Experimental Surgery, University Hospital, RWTH Aachen University, Aachen, Germany.

出版信息

Eur Surg Res. 2017;58(5-6):193-203. doi: 10.1159/000471483. Epub 2017 Apr 22.

Abstract

BACKGROUND

The pig is one of the most frequently used large animal models for biomedical research, especially in the field of translational research and surgical models. While standard livestock breeds are used in short-term and acute studies, minipig breeds are the preferred breeds in long-term and chronic studies due to their limited growth and body weight.

OBJECTIVE

In consideration of the 3R principle (refinement, reduction, replacement) and the increasing demand, the aim of this study was to generate a new, robust, non-specific-pathogen-free minipig breed, the Aachen minipig.

METHODS

Phenotype, genotype, and hematological as well as clinical chemistry parameters were characterized, and reference values of the Aachen minipig were generated and compared to the values in the commonly used Göttingen minipig. Organ weights of the heart, kidney, liver, lung, spleen, and brain were determined using a laboratory balance. Blood samples were collected for hematology and clinical chemistry. Assessment of genetic diversity was performed by microsatellite markers. Nasal swabs were collected from 11 individual minipigs representing 6 races for DNA extraction. DNA was quantified and the identity and origin of the Aachen minipigs at the genomic level was determined by microsatellites.

RESULTS

The Aachen minipig established here is based on the Mini-LEWE breed and consists of the Vietnamese potbelly pig, the Schwäbisch Hällisch Landpig, the German Landrace, and the Minnesota minipig. Relative organ weights (lung, heart, kidneys, brain), hematology (hemoglobin, hematocrit, platelet count, mean corpuscular hemoglobin concentration, segmented neutrophils, lymphocytes, eosinophils, basophils), and clinical chemistry parameters (sodium, calcium, chloride, alkaline phosphatase, aspartate aminotransferase, alanine aminotransferase, gamma-glutamyl transferase, lactate dehydrogenase, triglycerides, blood urea nitrogen, creatinine, total bilirubin, total protein, creatine kinase) of the Aachen minipigs and the Göttingen minipigs were not significantly different. Significant differences where only seen in relative organ weights (liver, spleen), hematology (red blood cell count, mean corpuscular volume, mean corpuscular hemoglobin, white blood cell count, banded neutrophils, monocytes), and clinical chemistry parameters (inorganic phosphorus, potassium, glucose, cholesterol, albumin, amylase).

CONCLUSION

The Aachen minipig is a suitable model for research due to its similarity to other minipig breeds, especially the Göttingen minipig. The reference values established in this study may be used for the comparison of scientific data and encourage the use of the Aachen minipig as an animal model for biomedical research.

摘要

背景

猪是生物医学研究中最常用的大型动物模型之一,尤其是在转化研究和手术模型领域。虽然标准家畜品种用于短期和急性研究,但小型猪品种因其生长和体重受限,是长期和慢性研究的首选品种。

目的

考虑到3R原则(优化、减少、替代)以及需求的增加,本研究的目的是培育一种新的、健壮的、无特定病原体的小型猪品种——亚琛小型猪。

方法

对表型、基因型、血液学以及临床化学参数进行了表征,生成了亚琛小型猪的参考值,并与常用的哥廷根小型猪的值进行了比较。使用实验室天平测定心脏、肾脏、肝脏、肺、脾脏和大脑的器官重量。采集血样进行血液学和临床化学检测。通过微卫星标记评估遗传多样性。从代表6个品种的11只个体小型猪中采集鼻拭子用于DNA提取。对DNA进行定量,并通过微卫星确定亚琛小型猪在基因组水平上的身份和起源。

结果

这里培育的亚琛小型猪基于Mini-LEWE品种,由越南大肚猪、施瓦本哈尔施塔特地方猪、德国长白猪和明尼苏达小型猪组成。亚琛小型猪和哥廷根小型猪的相对器官重量(肺、心脏、肾脏、大脑)、血液学指标(血红蛋白、血细胞比容、血小板计数、平均红细胞血红蛋白浓度、分叶中性粒细胞、淋巴细胞、嗜酸性粒细胞、嗜碱性粒细胞)以及临床化学参数(钠、钙、氯、碱性磷酸酶、天冬氨酸氨基转移酶、丙氨酸氨基转移酶、γ-谷氨酰转移酶、乳酸脱氢酶、甘油三酯、血尿素氮、肌酐、总胆红素、总蛋白、肌酸激酶)没有显著差异。仅在相对器官重量(肝脏、脾脏)、血液学指标(红细胞计数、平均红细胞体积、平均红细胞血红蛋白、白细胞计数、带状中性粒细胞、单核细胞)以及临床化学参数(无机磷、钾、葡萄糖、胆固醇、白蛋白、淀粉酶)方面存在显著差异。

结论

由于亚琛小型猪与其他小型猪品种,尤其是哥廷根小型猪相似,因此它是一种适合研究的模型。本研究中建立的参考值可用于科学数据的比较,并鼓励将亚琛小型猪用作生物医学研究的动物模型。

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