Giraldo Alejandro, Talavera López Jesús, Fernandez-Del-Palacio Maria Josefa, García-Nicolás Obdulio, Seva Juan, Brooks Gavin, Moraleda José María
Institute for Cardiovascular and Metabolic Research, School of Biological Sciences, University of Reading;
Departamento de Medicina y Cirugía Animal, Facultad de Veterinaria, Universidad de Murcia;
J Vis Exp. 2018 Jan 21(131):56699. doi: 10.3791/56699.
Cell and gene therapy are exciting and promising strategies for the purpose of cardiac regeneration in the setting of heart failure with reduced ejection fraction (HFrEF). Before they can be considered for use, and implemented in humans, extensive preclinical studies are required in large animal models to evaluate the safety, efficacy, and fate of the injectate (e.g., stem cells) once delivered into the myocardium. Small rodent models offer advantages (e.g., cost effectiveness, amenability for genetic manipulation); however, given inherent limitations of these models, the findings in these rarely translate into the clinic. Conversely, large animal models such as rabbits, have advantages (e.g., similar cardiac electrophysiology compared to humans and other large animals), whilst retaining a good cost-effective balance. Here, we demonstrate how to perform a percutaneous contrast echocardiography-guided intramyocardial injection (IMI) technique, which is minimally invasive, safe, well tolerated, and very effective in the targeted delivery of injectates, including cells, into several locations within the myocardium of a rabbit model. For the implementation of this technique, we also have taken advantage of a widely available clinical echocardiography system. After putting in practice the protocol described here, a researcher with basic ultrasound knowledge will become competent in the performance of this versatile and minimally invasive technique for routine use in experiments, aimed at hypothesis testing of the capabilities of cardiac regenerative therapeutics in the rabbit model. Once competency is achieved, the whole procedure can be performed within 25 min after anaesthetizing the rabbit.
细胞和基因疗法是用于射血分数降低的心力衰竭(HFrEF)患者心脏再生的令人兴奋且有前景的策略。在考虑将它们用于人体并实施之前,需要在大型动物模型中进行广泛的临床前研究,以评估注射物(如干细胞)一旦注入心肌后的安全性、有效性和归宿。小型啮齿动物模型具有优势(如成本效益、易于进行基因操作);然而,鉴于这些模型的固有局限性,这些模型中的研究结果很少能转化到临床应用中。相反,大型动物模型如兔子具有优势(如与人类和其他大型动物相比,心脏电生理相似),同时保持良好的成本效益平衡。在此,我们展示如何进行经皮对比超声心动图引导的心肌内注射(IMI)技术,该技术微创、安全、耐受性良好,并且在将包括细胞在内的注射物靶向递送至兔子模型心肌内的多个位置时非常有效。为了实施该技术,我们还利用了一种广泛可用的临床超声心动图系统。在实践此处描述的方案后,具有基本超声知识的研究人员将能够熟练掌握这种多功能且微创的技术,以便在实验中常规使用,旨在对兔子模型中心脏再生疗法的能力进行假设检验。一旦达到熟练程度,在对兔子进行麻醉后,整个过程可在25分钟内完成。