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首页> 外文期刊>Molecular therapy: the journal of the American Society of Gene Therapy >Femtosecond infrared laser-an efficient and safe in vivo gene delivery system for prolonged expression.
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Femtosecond infrared laser-an efficient and safe in vivo gene delivery system for prolonged expression.

机译:飞秒红外激光-一种有效且安全的体内基因传递系统,可延长表达时间。

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摘要

The major advantages of "naked DNA gene therapy" are its simplicity and a low or negligible immune response. Gene delivery by DNA electroporation (EP) involves injection of DNA and the application of a brief electric pulse to enhance cellular permeability. Although EP is an efficient gene transduction technique in rodents, it requires much higher voltages (>500 V) in larger animals, and hence, in practice it would be hazardous for human patients, as it would cause serious tissue damage. To overcome the obstacles associated with EP-mediated gene delivery in vivo, we developed a new method of gene transduction that uses laser energy. The femtosecond infrared titanium sapphire laser beam was developed specifically for enhancing in vivo gene delivery without risks of tissue damage. System optimization revealed that injection of 10 micro g naked DNA into the tibial muscle of mice followed by application of the laser beam for 5 s, focused to 2 mm depth upon an area of 95 x 95 micro m(2), resulted in the highest intensity and duration of gene expression with no histological or biochemical evidence of muscle damage. We assessed the potential clinical application of LBGT technology by using it to transfer the murine erythropoietin (mEpo) gene into mice. LBGT-mediated mEpo gene delivery resulted in elevated (>22%) hematocrit levels that were sustained for 8 weeks. Gene expression following LBGT was detected for >100 days. Hence, LBGT is a simple, safe, effective, and reproducible method for therapeutic gene delivery with significant clinical potential.
机译:“裸DNA基因疗法”的主要优点是其简单性和低或可忽略的免疫反应。通过DNA电穿孔(EP)进行的基因传递涉及DNA的注入和短暂电脉冲的施加,以增强细胞的通透性。尽管EP在啮齿动物中是一种有效的基因转导技术,但在大型动物中它需要更高的电压(> 500 V),因此,在实践中,它会对人类患者造成危害,因为它将导致严重的组织损伤。为了克服与体内EP介导的基因传递相关的障碍,我们开发了一种利用激光能量进行基因转导的新方法。飞秒红外钛蓝宝石激光束是专门为增强体内基因传递而开发的,没有组织损伤的风险。系统优化表明,向小鼠的胫骨肌肉中注入10 micro g裸DNA,然后施加激光束5 s,聚焦到2 mm深度,深度为95 x 95 micro m(2),结果是基因表达的强度和持续时间,没有肌肉损伤的组织学或生化证据。我们通过使用LBGT技术将鼠促红细胞生成素(mEpo)基因转移到小鼠中来评估其潜在的临床应用。 LBGT介导的mEpo基因递送导致持续8周的血细胞比容升高(> 22%)。检测到LBGT后的基因表达> 100天。因此,LBGT是一种简单,安全,有效且可重现的具有重大临床潜力的治疗性基因传递方法。

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