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A Fluorescence-Guided Laser Ablation System for Removal of Residual Cancer in a Mouse Model of Soft Tissue Sarcoma.

机译:一种用于去除软组织肉瘤小鼠模型残余癌症的荧光引导激光消融系统。

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摘要

The treatment of soft tissue sarcoma (STS) generally involves tumor excision with a wide margin. Although advances in fluorescence imaging make real-time detection of cancer possible, removal is limited by the precision of the human eye and hand. Here, we describe a novel pulsed Nd:YAG laser ablation system that, when used in conjunction with a previously described molecular imaging system, can identify and ablate cancer in vivo. Mice with primary STS were injected with the protease-activatable probe LUM015 to label tumors. Resected tissues from the mice were then imaged and treated with the laser using the paired fluorescence-imaging/ laser ablation device, generating ablation clefts with sub-millimeter precision and minimal underlying tissue damage. Laser ablation was guided by fluorescence to target tumor tissues, avoiding normal structures. The selective ablation of tumor implants in vivo improved recurrence-free survival after tumor resection in a cohort of 14 mice compared to 12 mice that received no ablative therapy. This prototype system has the potential to be modified so that it can be used during surgery to improve recurrence-free survival in patients with cancer.
机译:软组织肉瘤(STS)的治疗通常涉及肿瘤切除,切缘较宽。尽管荧光成像技术的进步使癌症的实时检测成为可能,但去除仍受到人眼和手部精度的限制。在这里,我们描述了一种新型的脉冲Nd:YAG激光消融系统,当与先前描述的分子成像系统结合使用时,可以在体内识别和消融癌症。向具有原发性STS的小鼠注射可蛋白酶激活的探针LUM015,以标记肿瘤。然后将成年小鼠的切除组织成像,并使用成对的荧光成像/激光消融设备用激光进行治疗,以亚毫米级的精度产生消融裂痕,并使基础组织的损伤降至最低。激光消融由荧光引导至目标肿瘤组织,避免了正常结构。与未接受消融治疗的12只小鼠相比,在体内进行选择性切除的肿瘤植入物在14只小鼠的队列中提高了无肿瘤生存率。该原型系统具有被修改的潜力,因此可以在手术期间用于改善癌症患者的无复发生存率。

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