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3D Printed Absorber for Capturing Chemotherapy Drugs before They Spread through the Body

机译:3D打印吸收剂,用于在化学药物扩散到体内之前捕获化学药物

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摘要

Despite efforts to develop increasingly targeted and personalized cancer therapeutics, dosing of drugs in cancer chemotherapy is limited by systemic toxic side effects. We have designed, built, and deployed porous absorbers for capturing chemotherapy drugs from the bloodstream after these drugs have had their effect on a tumor, but before they are released into the body where they can cause hazardous side effects. The support structure of the absorbers was built using 3D printing technology. This structure was coated with a nanostructured block copolymer with outer blocks that anchor the polymer chains to the 3D printed support structure and a middle block that has an affinity for the drug. The middle block is polystyrenesulfonate which binds to doxorubicin, a widely used and effective chemotherapy drug with significant toxic side effects. The absorbers are designed for deployment during chemotherapy using minimally invasive image-guided endovascular surgical procedures. We show that the introduction of the absorbers into the blood of swine models enables the capture of 64 ± 6% of the administered drug (doxorubicin) without any immediate adverse effects. Problems related to blood clots, vein wall dissection, and other biocompatibility issues were not observed. This development represents a significant step forward in minimizing toxic side effects of chemotherapy.
机译:尽管努力开发越来越有针对性的和个性化的癌症治疗剂,但是在癌症化学疗法中药物的剂量受到全身毒性副作用的限制。我们已经设计,建造和部署了多孔吸收剂,用于从血液中吸收化疗药物,直到这些药物对肿瘤产生作用之后,才将其释放到体内,从而可能引起有害的副作用。吸收器的支撑结构是使用3D打印技术构建的。该结构涂有纳米结构嵌段共聚物,该共聚物具有将聚合物链锚固到3D打印的支撑结构上的外部嵌段和对药物具有亲和力的中间嵌段。中间的部分是聚苯乙烯磺酸盐,它与阿霉素结合,阿霉素是一种广泛使用的有效的化疗药物,具有明显的毒副作用。该吸收器设计用于在化疗期间使用微创图像引导的血管内外科手术程序进行部署。我们表明,将吸收剂引入猪模型的血液可以捕获64±6%的给药药物(阿霉素),而没有任何立即的不良影响。没有观察到与血块,静脉壁解剖和其他生物相容性问题有关的问题。这一发展代表了在最大程度降低化学疗法的毒副作用方面迈出的重要一步。

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