小鼠右心室超声心动图综合评价

A. Kohut, Nishi H. Patel, Harpreet Singh
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引用次数: 27

摘要

无创高分辨率超声心动图用于评估小动物的心血管功能,由于基因工程小鼠模型的可用性越来越多地被使用。尽管美国超声心动图学会对人类的指导方针和标准值进行了修订,但对小鼠模型的评估并未按照任何标准协议进行。这些限制阻碍了临床前评估转化为临床有意义的结论。我们按照标准的临床指南对两种常用的小鼠模型右心脏进行了评估,并为心脏评估提供了实用的指导和样本值。方法采用Vevo®2100成像系统(VisualSonics MS400)高频(18-38 MHz)探头,在1-3%异氟醚麻醉下对CD1和C57BL/6小鼠进行右心超声心动图评价。我们提供了一个实用的指南,如何成像和评估右心脏的小鼠,经常用于评估发展的右心衰,由于肺动脉高压。结果CD1和C57BL/6小鼠之间存在显著差异。CD1小鼠(n = 11)右心室尺寸和肺动脉直径明显大于C57BL/6小鼠(n = 15)。两株右心收缩和舒张功能相似。结论本实用指南为超声心动图的临床前研究提供了初步的综合价值。此外,我们的结果表明,小鼠物种之间存在很高的可变性,在进行心脏评估时应仔细选择实验模型。
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Comprehensive Echocardiographic Assessment of the Right Ventricle in Murine Models
Background Non-invasive high-resolution echocardiography to evaluate cardiovascular function of small animals is increasingly being used due to availability of genetically engineered murine models. Even though guidelines and standard values for humans were revised by the American Society of Echocardiography, evaluations on murine models are not performed according to any standard protocols. These limitations are preventing translation of preclinical evaluations to clinical meaningful conclusions. We have assessed the right heart of two commonly used murine models according to standard clinical guidelines, and provided the practical guide and sample values for cardiac assessments. Methods Right heart echocardiography evaluations of CD1 and C57BL/6 mice were performed under 1–3% isoflurane anesthesia using Vevo® 2100 Imaging System with a high-frequency (18–38 MHz) probe (VisualSonics MS400). We have provided a practical guide on how to image and assess the right heart of a mouse which is frequently used to evaluate development of right heart failure due to pulmonary hypertension. Results Our results show significant differences between CD1 and C57BL/6 mice. Right ventricle structural assessment showed significantly larger (p < 0.05) size, and pulmonary artery diameter in CD1 mice (n = 11) compared to C57BL/6 mice (n = 15). Right heart systolic and diastolic functions were similar for both strains. Conclusion Our practical guide on how to image and assess the right heart of murine models provides the first comprehensive values which can be used for preclinical research studies using echocardiography. Additionally, our results indicate that there is a high variability between mouse species and experimental models should be carefully selected for cardiac evaluations.
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