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首页> 外文期刊>Theranostics >Radiopaque and uniform alginate microspheres loaded with tantalum nanoparticles for real-time imaging during transcatheter arterial embolization
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Radiopaque and uniform alginate microspheres loaded with tantalum nanoparticles for real-time imaging during transcatheter arterial embolization

机译:不透射线且均匀的藻酸盐微球载有钽纳米颗粒,用于经导管动脉栓塞期间的实时成像

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One restriction to the development and application of transcatheter arterial chemoembolization (TACE) therapy is the lack of an inherently radiopaque embolic whose location and distribution can be precisely visualized in real time and be used for non-invasive examination after surgery. Methods: A one-step electrospray method was developed to fabricate calcium alginate microspheres loaded with tantalum nanoparticles (Ta@CaAlg). The parameters of electrospraying were assessed. The in vivo X-ray imaging capability and embolic effect of Ta@CaAlg microspheres were evaluated in the renal arteries of normal rabbits by digital radiography and computed tomography. Doxorubicin hydrochloride (Dox) was chosen as a model drug, and the drug loading capacity and release behavior of these microspheres was valuated in vitro. Results: Spherical Ta@CaAlg microspheres with monodisperse sizes ranging from 150 to 1200 μm were fabricated by electrospraying. The results of an in vivo study showed that Ta@CaAlg microspheres possessed the qualities of both embolic agents and contrast media. They could not only feed back the real-time location and distribution of the embolic microspheres but also maintained clear X-ray imaging of embolized sites for up to 4 weeks as assessed by digital radiography and computed tomography. Digital subtraction angiography showed that they had an excellent embolic effect. Ta@CaAlg microspheres could be loaded with Dox to form “3-in-1” embolic microspheres. The maximum Dox loading was 97.3 mg Dox per mL beads and loaded microspheres exhibited pH-dependent release profiles. Conclusion: The X-ray opacity and drug-loading capability of Ta@CaAlg microspheres offers great promise in direct, real-time, in vivo investigation for TACE and long-term non-invasive re-examination.
机译:经导管动脉化学栓塞(TACE)治疗的开发和应用的一个限制是缺乏固有的不透射线栓塞,其位置和分布可以实时精确地可视化,并可以在手术后用于无创检查。方法:开发了一种一步电喷雾方法来制备载有钽纳米颗粒(Ta @ CaAlg)的海藻酸钙微球。评估电喷雾的参数。 Ta @ CaAlg微球的体内X射线成像能力和栓塞作用通过数字X射线摄影和计算机断层扫描技术评估了正常兔的肾动脉。选择盐酸阿霉素(Dox)作为模型药物,并在体外评估这些微球的载药量和释放行为。结果:通过电喷雾制备了单分散尺寸范围为150至1200μm的球形Ta @ CaAlg微球。体内研究的结果表明,Ta @ CaAlg微球具有栓塞剂和造影剂的特性。他们不仅可以反馈栓塞微球的实时位置和分布,还可以通过数字射线照相和计算机断层扫描评估长达4周的栓塞部位的清晰X射线成像。数字减影血管造影显示它们具有出色的栓塞效果。 Ta @ CaAlg微球可以装载Dox形成“三合一”栓塞微球。最大Dox负载量为97.3 mg Dox / mL珠,负载的微球具有pH依赖性释放曲线。结论:Ta @ CaAlg微球的X射线不透明性和载药能力为TACE和长期无创性复查的直接,实时,体内研究提供了广阔的前景。

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