首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Development and characterization of new nanoscaled ultrasound active lipid dispersions as contrast agents.
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Development and characterization of new nanoscaled ultrasound active lipid dispersions as contrast agents.

机译:新型纳米级超声活性脂质分散体作为造影剂的开发与表征。

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摘要

Ultrasound contrast agents are widely used in clinical diagnosis. In recent years, the use of ultrasound contrast agents as therapeutic agents has gained a lot of attention. Of special interest are ultrasound-enhanced gene delivery in various tissues (e.g. cardiac, vascular, skeletal muscle and tumor tissue), ultrasound-enhanced protein delivery (e.g. insulin delivery) and ultrasound-enhanced delivery of small chemicals (e.g. doxorubicin, vancomycin). Commercially available ultrasound contrast agents such as SonoVue(R) or Optison(R) are ranged in a size of 2-8 mum. These micronscaled agents show a good ultrasound contrast enhancement and thus they are used for diagnostic imaging. But they are not suitable for targeted drug delivery to tumor tissues or blood clots because for these applications particles smaller than 700 nm are needed. In the present study, we developed new nanoscaled ultrasound contrast agents with a size between 70 and 300 nm. The lipid formulations show excellent contrast intensities using diagnostic ultrasound of about 1.4 MHz. The negatively charged colloidal dispersions are long-time stable under physiological conditions without loss of ultrasound reflectivity. The adjustable supramolecular organization of the carriers depends on the composition and varies from micellar to liposomal structures. The small size and the circulation stability of these systems make them promising for novel diagnostics and controlled drug release applications.
机译:超声造影剂广泛用于临床诊断。近年来,使用超声造影剂作为治疗剂已经引起了很多关注。特别令人感兴趣的是在各种组织(例如心脏,血管,骨骼肌和肿瘤组织)中的超声增强基因传递,超声增强的蛋白传递(例如胰岛素传递)和小化学品(例如阿霉素,万古霉素)的超声增强传递。可商购获得的超声造影剂诸如SonoVue或Optison的尺寸范围为2-8微米。这些微米级试剂显示出良好的超声对比度增强,因此可用于诊断成像。但是它们不适用于将药物靶向递送至肿瘤组织或血凝块,因为对于这些应用,需要小于700 nm的颗粒。在本研究中,我们开发了尺寸在70至300 nm之间的新型纳米级超声造影剂。使用约1.4 MHz的诊断超声,脂质制剂显示出极好的对比强度。带负电的胶态分散体在生理条件下长期稳定,而不会损失超声反射率。载体的可调节的超分子组织取决于组成,并且从胶束结构到脂质体结构变化。这些系统的小尺寸和循环稳定性使它们有望用于新型诊断和受控药物释放应用。

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