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Design and Synthesis of New Sulfur-Containing Hyperbranched Polymer and Theranostic Nanomaterials for Bimodal Imaging and Treatment of Cancer

机译:用于癌症双峰成像和治疗的新型含硫超支化聚合物和治疗纳米材料的设计与合成

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摘要

In this study, we have synthesized a new hyperbranched polyester polymer containing sulfur-pendants (HBPE-S) in the branching points. This HBPE-S polymer is composed of spherical shaped, aliphatic three-dimensional architecture with carboxylic acid groups on the surface. The presence of sulfur pendants in the polymeric cavities demonstrated important role in the effective encapsulation of Bi-DOTA complexes ([Bi] = 5.21 μM), when compared to the previously reported polymer without sulfur pendants (HBPE, [Bi] = 1.07 x 10-3 μM). Higher X-ray blocking capability and excellent X-ray contrast images were obtained from Bi-DOTA encapsulating HBPE-S polymeric nanoparticles when compared with that of HBPE nanoparticles. In addition, the HBPE-S polymer’s spherical structure with amphiphilic cavities allow for the successful encapsulation of anti-tumor drugs and optical dyes, indicating suitable for delivery of wide-range of theranostic agents for cancer diagnosis and treatment. Therapeutic drug taxol encapsulating, folic acid decorated HBPE-S-Fol nanoparticles showed more than 80% of lung carcinoma cell death within 24 h of incubation. Cell viability and microscopic experiments also confirmed for the targeted delivery, thereby minimizing toxicity to healthy tissues. Taken together, new HBPE-S polymer and multimodal theranostic nanoplatforms were synthesized with enhanced X-ray blocking capability for the effective cancer targeting and treatment monitoring.
机译:在这项研究中,我们合成了一种新的超支化聚酯聚合物,该聚合物在分支点处含硫侧基(HBPE-S)。该HBPE-S聚合物由球形脂族三维结构组成,表面带有羧酸基团。与先前报道的不带硫侧基的聚合物(HBPE,[Bi] = 1.07 x 10)相比,聚合物腔体中硫侧基的存在在Bi-DOTA配合物的有效包封中发挥了重要作用([Bi] = 5.21μM)。 -3μM)。与HBPE纳米颗粒相比,Bi-DOTA封装的HBPE-S聚合物纳米颗粒具有更高的X射线阻挡能力和出色的X射线对比度图像。此外,HBPE-S聚合物的球形结构具有两亲性孔洞,可以成功地封装抗肿瘤药物和光学染料,这表明它适合用于癌症诊断和治疗的多种治疗性药物。包裹紫杉醇,叶酸修饰的HBPE-S-Fol纳米颗粒的治疗药物紫杉醇在孵育24小时内显示出80%以上的肺癌细胞死亡。细胞活力和显微镜实验也证实了靶向递送,从而将对健康组织的毒性降至最低。综上所述,合成了具有增强的X射线阻断能力的新型HBPE-S聚合物和多峰治疗药物纳米平台,可以有效地靶向癌症并进行治疗监测。

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