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首页> 外文期刊>Biomaterials >Combined sonodynamic and antimetabolite therapy for the improved treatment of pancreatic cancer using oxygen loaded microbubbles as a delivery vehicle
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Combined sonodynamic and antimetabolite therapy for the improved treatment of pancreatic cancer using oxygen loaded microbubbles as a delivery vehicle

机译:氧气加载微泡的改善处理胰腺癌的改善治疗作为递送载体

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In this manuscript we describe the preparation of an oxygen-loaded microbubble (O2MB) platform for the targeted treatment of pancreatic cancer using both sonodynamic therapy (SDT) and antimetabolite therapy. O2MB were prepared with either the sensitiser Rose Bengal (O2MB-RB) or the antimetabolite 5-fluorouracil (O2MB-5FU) attached to the microbubble (MB) surface. The MB were characterised with respect to size, physical stability and oxygen retention. A statistically significant reduction in cell viability was observed when three different pancreatic cancer cell lines (BxPc-3, MIA PaCa-2 and PANC-1), cultured in an anaerobic cabinet, were treated with both SDT and antimetabolite therapy compared to either therapy alone. In addition, a statistically significant reduction in tumour growth was also observed when ectopic human xenograft BxPC-3 tumours in SCID mice were treated with the combined therapy compared to treatment with either therapy alone. These results illustrate not only the potential of combined SDT/antimetabolite therapy as a stand alone treatment option in pancreatic cancer, but also the capability of O-2-loaded MBs to deliver O-2 to the tumour microenvironment in order to enhance the efficacy of therapies that depend on O-2 to mediate their therapeutic effect. Furthermore, the use of MBs to facilitate delivery of O-2 as well as the sensitiser/antimetabolite, combined with the possibility to activate the sensitiser using externally applied ultrasound, provides a more targeted approach with improved efficacy and reduced side effects when compared with conventional systemic administration of antimetabolite drugs alone. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在该稿件中,我们描述了使用SONOYONGIC疗法(SDT)和抗体粘土治疗的含氧微泡(O2MB)平台的氧负载微泡(O2MB)平台。用敏感剂玫瑰叶(O2MB-RB)或抗体刚甲块5-氟尿嘧啶(O2MB-5FU)附着于微泡(MB)表面的抗体率5-氟尿嘧啶制备O2MB。相对于尺寸,物理稳定性和氧气保持表征MB。观察到细胞活力的统计学显着降低,当单独的治疗相比,当厌氧柜中培养的三种不同的胰腺癌细胞系(BxPC-3,MIA Paca-2和PANC-1)进行治疗。此外,当与单独治疗的治疗相比,将SCID小鼠中的异位人异卵移植BxPC-3肿瘤进行统计上显着降低肿瘤生长。这些结果不仅说明了SDT /抗体靶治疗的潜力作为胰腺癌中的单独治疗选择,而且还为O-2负载的MBS提供O-2给肿瘤微环境的能力,以提高疗效依赖于O-2的疗法介导其治疗效果。此外,使用MBS以促进O-2的递送以及敏感剂/抗体粘土,与使用外部施加的超声波激活敏感剂的可能性,提供更具靶向的方法,与常规相比,副作用提高,副作用减少单独的全身施用抗体标菌药物。 (c)2015 Elsevier Ltd.保留所有权利。

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