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Targeted delivery of cancer-specific multimodal contrast agents for intraoperative detection of tumor boundaries and therapeutic margins

机译:靶向递送癌症特异性多峰造影剂,以术中检测肿瘤边界和治疗余量

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Background: Accurate assessment of tumor boundaries and intraoperative detection of therapeutic margins are important oncologic principles for minimal recurrence rates and improved long-term outcomes. However, many existing cancer imaging tools are based on preoperative image acquisition and do not provide real-time intraoperative information that supports critical decision-making in the operating room.rnMethod: Poly lactic-co-glycolic acid (PLGA) microbubbles (MBs) and nanobubbles (NBs) were synthesized by a modified double emulsion method. The MB and NB surfaces were conjugated with CC49 antibody to target TAG-72 antigen, a human glycoprotein complex expressed in many epithelial-derived cancers. Multiple imaging agents were encapsulated in MBs and NBs for multimodal imaging. Both one-step and multi-step cancer targeting strategies were explored. Active MBs/NBs were also fabricated for therapeutic margin assessment in cancer ablation therapies.rnResults: The multimodal contrast agents and the cancer-targeting strategies were tested on tissue simulating phantoms, LSI74 colon cancer cell cultures, and cancer xenograft nude mice. Concurrent multimodal imaging was demonstrated using fluorescence and ultrasound imaging modalities. Technical feasibility of using active MBs and portable imaging tools such as ultrasound for intraoperative therapeutic margin assessment was demonstrated in a biological tissue model.rnConclusion: The cancer-specific multimodal contrast agents described in this paper have the potential for intraoperative detection of tumor boundaries and therapeutic margins.
机译:背景:准确评估肿瘤边界和术中检测治疗余量是重要的肿瘤学原则,可将复发率降至最低并改善长期预后。但是,许多现有的癌症影像学工具都是基于术前图像采集的,无法提供支持手术室中关键决策的实时术中信息。方法:聚乳酸-乙醇酸(PLGA)微泡(MBs)和纳米气泡(NBs)通过改进的双乳液法合成。 MB和NB表面与CC49抗体缀合,以靶向TAG-72抗原,该抗原是在许多上皮来源的癌症中表达的人糖蛋白复合物。将多种成像剂封装在MB和NB中,以进行多峰成像。探索了单步和多步癌症靶向策略。结果:在模拟体模,LSI74结肠癌细胞培养和异种移植裸鼠的组织中,测试了多峰造影剂和癌症靶向策略,并制备了活性MBs / NBs用于癌症消融治疗中的治疗余量评估。并发多峰成像使用荧光和超声成像方法证实。在生物组织模型中证明了使用有源MB和便携式成像工具(如超声)进行术中治疗余量评估的技术可行性。结论:本文所述的癌症特异性多峰造影剂具有术中检测肿瘤边界和治疗的潜力利润。

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