School of Engineering and Materials Science , Queen Mary University of London , Mile End, Eng, 215 , London E1 4NS , United Kingdom.
Ogarev Mordovia State University , 68 Bolshevistskaya Street , Saransk 430005 , Russia.
ACS Appl Mater Interfaces. 2018 Nov 7;10(44):37855-37864. doi: 10.1021/acsami.8b15109. Epub 2018 Oct 25.
This paper presents the synthesis of highly biocompatible and biodegradable poly(lactide- co-glycolide) (PLGA) microchamber arrays sensitive to low-intensity therapeutic ultrasound (1 MHz, 1-2 W, 1 min). A reliable method was elaborated that allowed the microchambers to be uniformly filled with epinephrine hydrochloride (EH), with the possibility of varying the cargo amount. The maximum load of EH was 4.5 μg per array of 5 mm × 5 mm (about 24 pg of EH per single microchamber). A gradual, spontaneous drug release was observed to start on the first day, which is especially important in the treatment of acute patients. Ultrasound triggered a sudden substantial release of EH from the films. In vivo real-time studies using a laser speckle contrast imaging system demonstrated changes in the hemodynamic parameters as a consequence of EH release under ultrasound exposure. We recorded a decrease in blood flow as a vascular response to EH release from a PLGA microchamber array implanted subcutaneously in a mouse. This response was immediate and delayed (1 and 2 days after the implantation of the array). The PLGA microchamber array is a new, promising drug depot implantable system that is sensitive to external stimuli.
本文介绍了一种对低强度治疗超声(1 MHz、1-2 W、1 分钟)敏感的高生物相容性和可生物降解的聚(乳酸-共-乙醇酸)(PLGA)微室阵列的合成。阐述了一种可靠的方法,可使微室均匀地填充盐酸肾上腺素(EH),并可以改变载药量。每个 5mm×5mm 的微室阵列的最大 EH 负载量为 4.5μg(约 24pg EH 每单个微室)。观察到药物的自发释放会在第一天开始,这在治疗急性患者时尤为重要。超声触发了 EH 从薄膜中的突然大量释放。使用激光散斑对比成像系统进行的体内实时研究表明,EH 从皮下植入的 PLGA 微室阵列中释放会导致血液动力学参数发生变化。我们记录了血流的减少,这是对皮下植入的 PLGA 微室阵列中 EH 释放的血管反应。这种反应是即时的,也有延迟(在植入微室阵列后的 1 天和 2 天)。PLGA 微室阵列是一种新的、有前途的药物储存植入系统,对外部刺激敏感。