Nanotechnology in multimodal theranostic capsule endoscopy

S. Cochran, T. Button, B. Cox, D. Cumming, D. Gourevich, H. Lay, H. Mulvana, I. Näthke, F. Stewart
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Abstract

Video capsule endoscopy (VCE) has become a clinically accepted diagnostic modality in the last 20 years and has established a technological roadmap for other capsule endoscopy (CE) devices, incorporating microscale technology, a local power supply and wireless communication. However, VCE does not provide a therapeutic function and research in therapeutic capsule endoscopy (TCE) has been limited. This paper proposes a new route towards viable TCE based on multiple CE devices including essential nanoscale components. A first device is used for multimodal diagnosis, with quantitative microultrasound as a complement to video imaging. Ultrasound-enhanced fluorescent marking of sites of pathology allows follow-up with a second device for therapy. This is based on fluorescence imaging and ultrasound-mediated targeted drug delivery. Subsequent treatment verification and monitoring with a third device exploits the minimally invasive nature of CE. Clinical implementation of a complete patient pathway remains the subject of research but several key components have been prepared in early prototype form. These are described, along with gaps that remain to be filled.
纳米技术在多模态胶囊内窥镜治疗中的应用
视频胶囊内窥镜(VCE)在过去20年中已成为临床接受的诊断方式,并为其他胶囊内窥镜(CE)设备建立了技术路线图,包括微尺度技术,本地电源和无线通信。然而,VCE没有提供治疗功能,治疗性胶囊内窥镜(TCE)的研究有限。本文提出了一种基于包含必要纳米级元件的多个CE器件的可行TCE的新途径。第一种设备用于多模态诊断,定量微超声作为视频成像的补充。病理部位的超声增强荧光标记允许使用第二种治疗设备进行随访。这是基于荧光成像和超声介导的靶向药物递送。随后使用第三个设备进行治疗验证和监测,利用CE的微创性质。临床实施一个完整的病人途径仍然是研究的主题,但几个关键组成部分已经准备在早期的原型形式。本文描述了这些问题以及有待填补的空白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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