Ordeig Olga, Chin Sau Yin, Kim Sohyun, Chitnis Parag V, Sia Samuel K
Department of Biomedical Engineering, Columbia University, 351 Engineering Terrace, 1210 Amsterdam Avenue, New York, NY 10027, United States.
Department of Bioengineering, George Mason University, 4400 University Drive, Fairfax, VA 22032, United States.
Sci Rep. 2016 Mar 11;6:22803. doi: 10.1038/srep22803.
Implantable devices have a large potential to improve human health, but they are often made of biofouling materials that necessitate special coatings, rely on electrical connections for external communication, and require a continuous power source. This paper demonstrates an alternative platform, which we call iTAG (implantable thermally actuated gel), where an implanted capsule can be wirelessly controlled by ultrasound to trigger the release of compounds. We constructed a millimeter-sized capsule containing a co-polymer gel (NiPAAm-co-AAm) that contracts above body temperature (i.e. at 45 °C) to release compounds through an opening. This gel-containing capsule is biocompatible and free of toxic electronic or battery components. An ultrasound hardware, with a focused ultrasound (FUS) transducer and a co-axial A-mode imaging transducer, was used to image the capsule (to monitor in real time its position, temperature, and effectiveness of dose delivery), as well as to trigger a rapid local rise in temperature, contraction of gel, and release of compounds in vitro and in vivo. The combination of this gel-based capsule and compact ultrasound hardware can serve as a platform for triggering local release of compounds, including potentially in deep tissue, to achieve tailored personalized therapy.
可植入设备在改善人类健康方面具有巨大潜力,但它们通常由生物污染材料制成,这就需要特殊涂层,依赖电连接进行外部通信,并且需要持续的电源。本文展示了一种替代平台,我们称之为iTAG(可植入热驱动凝胶),其中植入的胶囊可以通过超声波进行无线控制,以触发化合物的释放。我们构建了一个毫米级的胶囊,其中包含一种共聚物凝胶(N-异丙基丙烯酰胺-丙烯酸共聚物),该凝胶在体温以上(即45°C)会收缩,通过一个开口释放化合物。这种含凝胶的胶囊具有生物相容性,且不含有毒的电子或电池组件。一个带有聚焦超声(FUS)换能器和同轴A模式成像换能器的超声硬件,被用于对胶囊进行成像(实时监测其位置、温度和给药效果),以及在体外和体内触发凝胶的快速局部升温、收缩和化合物释放。这种基于凝胶的胶囊和紧凑型超声硬件的组合,可以作为一个触发化合物局部释放的平台,包括可能在深部组织中,以实现定制的个性化治疗。