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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >A biodegradable multifunctional porous microsphere composed of carrageenan for promoting imageable trans-arterial chemoembolization
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A biodegradable multifunctional porous microsphere composed of carrageenan for promoting imageable trans-arterial chemoembolization

机译:一种可生物降解的多功能多孔微球,由角叉菜胶组成,用于促进可成像型转动动脉化疗栓塞

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摘要

Trans-arterial chemoembolization (TACE) has been a mainstream treatment for hepatocellular carcinoma (HCC), accordingly there are more requirements for embolic agents' properties, mainly concentrated on biodegradability and imaging function. A new kind of biodegradable multifunctional porous microspheres (BMPMs) with internal coarse plications are ingeniously designed and manufactured, consisting of carrageenan, inhexol and superparamagnetic iron oxide nanoparticle (SPIO). BMPMs' sound roundness and excellent swelling behavior guarantee them to be smoothly transported into appointed arteries' ends and achieve satisfactory embolization effect. Porous structure together with sulphate groups on BMPMs' skeleton weaved by cross-linked carrageenan contributes to a marvelous doxorubicin hydrochloride (Dox) loading capacity over 45 mg Dox per mL of swollen microspheres, as well as a controllable degradation rate by allowing enzymes to infiltrate into BMPMs through holes, degrading 20-35% after two months in vitro. Inner coarse plications enable BMPMs to effectively combine with iohexol via hydrophilic effect and SPIO by blocking, which can further exhibit a decent imaging performance under digital subtraction system (DSA) and magnetic resonance imaging (MRI) for optimization of current TACE and development of a more advanced imageable TACE (iTACE). Safety evaluation and animal experiment manifest that BMPMs are reliable enough and hold great potential and competitiveness of being used in curing HCC. (C) 2019 Elsevier B.V. All rights reserved.
机译:逆势动脉化疗栓塞(TACE)是肝细胞癌(HCC)的主流处理,因此对栓塞剂的性质有更多的要求,主要集中在生物降解性和成像功能上。一种新的可生物降解的多功能多孔微球(BMPMS)具有内部粗糙折叠,具有巧妙的设计和制造,由角叉菜胶,inhexol和超顺磁性氧化铁纳米粒子(SPIO)组成。 BMPMS的声音圆度和出色的膨胀行为保证它们将平稳地运输到指定的动脉的结束并实现令人满意的栓塞效果。通过交联角叉菜胶编织的BMPMS骨架上的硫酸盐基团的多孔结构有助于每毫升溶胀的微球(DOX)负载量超过45mg DOX的盐酸盐(DOX)负载量,以及通过允许酶渗透到可控的降解速率BMPMS穿过孔,在体外两个月后降解20-35%。内粗素使BMPM能够通过阻塞通过亲水效应和SPIO有效地与碘脂合并,这可以进一步在数字减法系统(DSA)和磁共振成像(MRI)下具有体面的成像性能,以优化当前的TACE和更多高级可想象的TACE(itace)。安全评估和动物实验表明,BMPMS足够可靠,并具有用于固化HCC的巨大潜力和竞争力。 (c)2019 Elsevier B.v.保留所有权利。

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