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New Intrinsically Radiopaque Hydrophilic Microspheres for Embolization:Synthesis and Characterization

机译:用于栓塞的新型本能不透射线的亲水性微球:合成与表征

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Polymeric particles currently used for embolization procedures have the disadvantage that they are radiolucent,that is,invisible on X-ray images,and consequently the interventional radiologist has to resort to angiography to(indirectly)monitor the fate of the particles.Here,we introduce intrinsically radiopaque hydrophilic microspheres.Since these microspheres can directly be visualized on X-ray images,using these microspheres for embolization purposes will allow superprecise location of the embolic material,both during and after the procedure.The microspheres,which are prepared by suspension polymerization,are based on the radiopaque monomer 2-[4-iodobenzoyl]-oxo-ethylmethacrylate and hydroxyethylmethacrylate(HEMA)and/or 1-vinyl-2-pyrrolidinone(NVP)as hydrophilic component.It has been shown that for clinically relevant X-ray visibility the spheres should contain at least 20 wt % iodine.At this iodine content,copolymerization with HEMA results in spheres that hardly imbibe water(EQ = 1.08).When HEMA is replaced by NVP,the volume swelling ratio can be significantly increased(to 1.33).
机译:当前用于栓塞程序的聚合物颗粒的缺点是它们是射线可透的,即在X射线图像上不可见,因此,介入放射科医生必须借助血管造影术来(间接)监测颗粒的命运。由于可以在X射线图像上直接看到这些微球,因此将这些微球用于栓塞目的,可以使栓塞材料在手术过程中和手术过程中都能精确定位。通过悬浮聚合制备的微球,是以不透射线的单体2- [4-碘苯甲酰基]-氧代乙基甲基丙烯酸酯和甲基丙烯酸羟乙酯(HEMA)和/或1-乙烯基-2-吡咯烷酮(NVP)为亲水成分。可见性,球体应至少包含20 wt%的碘。在此碘含量下,与HEMA的共聚反应会导致几乎不吸收水的球体(EQ = 1 .08)。当用NVP代替HEMA时,体积溶胀率可以显着提高(至1.33)。

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