首页> 外文会议>International Symposium on Therapeutic Ultrasound (2002-) >Intramuscular Injection of Angiogenic Gene with Bubble Liposomes Followed by Ultrasound Exposure to Improve Angiogenesis
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Intramuscular Injection of Angiogenic Gene with Bubble Liposomes Followed by Ultrasound Exposure to Improve Angiogenesis

机译:肌内注射血管生成基因与泡沫脂质体,然后进行超声暴露以改善血管生成

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Ultrasound (US) in combination with microbubbles has recently engendered much attention as a safe method of gene delivery. Previously, we have developed polyethyleneglycol (PEG)-modified liposomes entrapping echo-contrast gas. We have called the liposomes "Bubble liposomes" (BLs). In this study, to assess the feasibility and the effectiveness of BLs for angiogenic gene delivery in clinical use, we tried to deliver bFGF (an angiogenic factor) expressing plasmid DNA into a mouse hindlimb ischemia model by the combination of BLs and US exposure. After femoral artery ligation, the hindlimb of ischemic mice were treated with BLs and US-mediated intramuscular gene transfer of bFGF expressing plasmid DNA. After the treatment, blood flow was determined over 2 weeks using laser doppler blood flow meter. As a result, the blood flow in the treated groups with BLs and US-mediated the gene transfer was quickly measured, and compared to other treatment groups (non-treated, bFGF alone, or bFGF+US). Furthermore, the number of CD31 positive cells was higher in the treatment groups with BLs and US-mediated the gene transfer than in other treatment groups. These results suggest that intramuscular injection of bFGF as an angiogenic gene with Bubble liposomes followed by ultrasound exposure improved angiogenesis in the ischemic muscle. Thus, gene transfer into the ischemic muscle by the combination of BLs and US exposure is an effective means of angiogenic gene therapy.
机译:超声(美国)与微泡结合使用,最近将注意力大量关注作为基因递送的安全方法。以前,我们已经开发了诱捕回波对比气体的聚乙二醇(PEG)型脂质体。我们已称为脂质体“泡沫脂质体”(BLS)。在本研究中,评估BLS在临床用途中用于血管生成基因递送的可行性和有效性,我们试图通过BLS和US暴露的组合将表达质粒DNA表​​达到小鼠后肢缺血模型中的BFGF(血管生成因子)。股动脉结扎后,用BLS和US介导的BFGF表达质粒DNA的BFGF肌肉内基因转移处理缺血小鼠的后肢。治疗后,使用激光多普勒血流量计超过2周测定血流量。结果,用BLS和US介导的处理基团中的血流快速测量基因转移,并与其他治疗组(单独非处理,BFGF或BFGF + US)进行比较。此外,用BLS和美国介导的CD31阳性细胞的数量较高,并且美国介导的基因转移大于其他治疗组。这些结果表明,肌内注射BFGF作为具有泡沫脂质体的血管生成基因,然后进行超声曝光改善缺血性肌肉中的血管生成。因此,基因通过BLS和美国接触的组合转移到缺血性肌肉中是血管生成基因治疗的有效手段。

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