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Hydrodynamic gene delivery to the liver: theoretical and practical issues for clinical application.

机译:流体动力学基因传递到肝脏:临床应用的理论和实践问题。

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摘要

Hydrodynamic gene delivery to the liver has potential as a safe and effective approach for clinical liver gene therapy. However, the simplicity of the technique in rodents - an intravenous injection - belies the theoretical and practical complexity for clinical application. A key issue is that outflow obstruction of the DNA solution from the liver is a critical factor for raising intrahepatic vascular pressure, which in turn provides the force to swell the liver and effect gene delivery. For conventional hydrodynamic gene delivery via tail vein injection, this outflow obstruction is provided naturally by the vascular resistance of the gut, spleen and pancreas. For regional hydrodynamic gene delivery to the liver, outflow obstruction to create a closed system requires surgical intervention, making it unlikely that minimally invasive techniques will be possible in the clinic. Intrinsic factors, in particular compliance (elasticity) of the liver are likely to be crucial in determining the degree of swelling for a given level of intrahepatic vascular pressure. Liver compliance is likely to be the major reason for the low level of hydrodynamic gene delivery in the pig model, and will influence the effectiveness of the approach in man, both in general and in different disease states.
机译:将水动力基因递送至肝脏具有作为临床肝基因治疗的安全有效方法的潜力。但是,啮齿动物技术的简单性-静脉内注射-掩盖了临床应用的理论和实践复杂性。一个关键问题是,DNA溶液从肝脏流出的阻碍是升高肝内血管压力的关键因素,这反过来又提供了使肝脏肿胀并影响基因传递的力量。对于通过尾静脉注射的常规流体动力学基因递送,这种流出阻塞是由肠,脾和胰腺的血管阻力自然提供的。为了将区域水动力基因传递到肝脏,需要建立一个封闭的系统以阻止流出物,这需要外科手术干预,因此在临床上不太可能采用微创技术。对于给定水平的肝内血管压力,内在因素,尤其是肝脏的顺应性(弹性)可能对决定肿胀程度至关重要。肝脏顺应性可能是猪模型中流体动力学基因传递水平低的主要原因,并且将影响该方法在人类中的有效性,无论是在一般情况下还是在不同疾病状态下。

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