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Near-infrared–actuated devices for remotely controlled drug delivery

机译:用于远程控制药物输送的近红外驱动设备

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摘要

A reservoir that could be remotely triggered to release a drug would enable the patient or physician to achieve on-demand, reproducible, repeated, and tunable dosing. Such a device would allow precise adjustment of dosage to desired effect, with a consequent minimization of toxicity, and could obviate repeated drug administrations or device implantations, enhancing patient compliance. It should exhibit low off-state leakage to minimize basal effects, and tunable on-state release profiles that could be adjusted from pulsatile to sustained in real time. Despite the clear clinical need for a device that meets these criteria, none has been reported to date to our knowledge. To address this deficiency, we developed an implantable reservoir capped by a nanocomposite membrane whose permeability was modulated by irradiation with a near-infrared laser. Irradiated devices could exhibit sustained on-state drug release for at least 3 h, and could reproducibly deliver short pulses over at least 10 cycles, with an on/off ratio of 30. Devices containing aspart, a fast-acting insulin analog, could achieve glycemic control after s.c. implantation in diabetic rats, with reproducible dosing controlled by the intensity and timing of irradiation over a 2-wk period. These devices can be loaded with a wide range of drug types, and therefore represent a platform technology that might be used to address a wide variety of clinical indications.
机译:可以远程触发释放药物的储器将使患者或医生能够实现按需,可重复,重复和可调剂量。这样的装置将允许剂量的精确调节以达到期望的效果,从而使毒性最小化,并且可以避免重复的药物施用或装置植入,从而提高了患者的依从性。它应该表现出低的关闭状态泄漏,以最大程度地减少基础效应,并且可以将可调的打开状态释放曲线从脉动调整为实时。尽管临床上对满足这些标准的设备有明确的需求,但据我们所知,迄今为止尚无任何报道。为了解决这一缺陷,我们开发了一种由纳米复合膜覆盖的可植入储库,该膜的渗透性通过近红外激光的照射进行调节。辐照过的设备可能会持续释放至少3小时的状态药物,并且可以在至少10个周期内可重复地传递短脉冲,开/关比为30。含有aspart(一种速效胰岛素类似物)的设备可以达到sc后的血糖控制植入糖尿病大鼠,可重复剂量受2周内照射的强度和时间控制。这些设备可以装载多种药物,因此代表了一种可用于解决多种临床适应症的平台技术。

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