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Influence of genetic background on ex vivo and in vivo cardiac function in several commonly used inbred mouse strains

机译:遗传背景对几种常用近交系小鼠品系离体和体内心脏功能的影响

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摘要

Inbred mouse strains play a critical role in biomedical research. Genetic homogeneity within inbred strains and their general amenability to genetic manipulation have made them an ideal resource for dissecting the physiological function(s) of individual genes. However, the inbreeding that makes inbred mice so useful also results in genetic divergence between them. This genetic divergence is often unaccounted for but may be a confounding factor when comparing studies that have utilized distinct inbred strains. Here, we compared the cardiac function of C57BL/6J mice to seven other commonly used inbred mouse strains: FVB/NJ, DBA/2J, C3H/HeJ, BALB/cJ, 129X1/SvJ, C57BL/10SnJ, and 129S1/SvImJ. The assays used to compare cardiac function were the ex vivo isolated Langendorff heart preparation and in vivo real-time hemodynamic analysis using conductance micromanometry. We report significant strain-dependent differences in cardiac function between C57BL/6J and other commonly used inbred strains. C57BL/6J maintained better cardiac function than most inbred strains after ex vivo ischemia, particularly compared with 129S1/SvImJ, 129X1/SvJ, and C57BL/10SnJ strains. However, during in vivo acute hypoxia 129X1/SvJ and 129S1/SvImJ maintained relatively normal cardiac function, whereas C57BL/6J animals showed dramatic cardiac decompensation. Additionally, C3H/HeJ showed rapid and marked cardiac decompensation in response to esmolol infusion compared with effects of other strains. These findings demonstrate the complex effects of genetic divergence between inbred strains on cardiac function. These results may help inform analysis of gene ablation or transgenic studies and further demonstrate specific quantitative traits that could be useful in discovery of genetic modifiers relevant to cardiac health and disease.
机译:近交小鼠品系在生物医学研究中起着至关重要的作用。自交系内的遗传同质性及其对遗传操作的一般适应性使它们成为解剖单个基因的生理功能的理想资源。然而,使近交小鼠如此有用的近交也导致它们之间的遗传差异。这种遗传差异通常无法解释,但在比较利用不同近交系的研究时可能是一个混淆因素。在这里,我们将C57BL / 6J小鼠的心脏功能与其他七个常用的近交小鼠品系进行了比较:FVB / NJ,DBA / 2J,C3H / HeJ,BALB / cJ,129X1 / SvJ,C57BL / 10SnJ和129S1 / SvImJ。用于比较心脏功能的测定方法是离体分离的Langendorff心脏制剂和使用电导微测压法的体内实时血液动力学分析。我们报道了C57BL / 6J与其他常用近交系之间心脏功能的明显依赖应变的差异。 C57BL / 6J在离体缺血后比大多数近交系保持更好的心脏功能,尤其是与129S1 / SvImJ,129X1 / SvJ和C57BL / 10SnJ系相比。但是,在体内急性缺氧状态下,129X1 / SvJ和129S1 / SvImJ保持相对正常的心脏功能,而C57BL / 6J动物表现出剧烈的心脏代偿失调。此外,与其他菌株的作用相比,C3H / HeJ对艾司洛尔的输注有快速而明显的心脏代偿失调。这些发现证明了近交菌株之间遗传差异对心脏功能的复杂影响。这些结果可能有助于为基因消融或转基因研究提供信息,并进一步证明特定的定量特征,可用于发现与心脏健康和疾病相关的基因修饰剂。

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