Rousou Charis, Schuurmans Carl C L, Urtti Arto, Mastrobattista Enrico, Storm Gert, Moonen Chrit, Kaarniranta Kai, Deckers Roel
Departments of Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Utrecht University, Heidelberglaan 8, 3584 CS Utrecht, The Netherlands.
Division of Imaging and Oncology, University Medical Center Utrecht, Heidelberglaan 100, 3584 CX Utrecht, The Netherlands.
Pharmaceutics. 2021 Oct 25;13(11):1782. doi: 10.3390/pharmaceutics13111782.
The unique anatomy of the eye and the presence of various biological barriers make efficacious ocular drug delivery challenging, particularly in the treatment of posterior eye diseases. This review focuses on the combination of ultrasound and microbubbles (USMB) as a minimally invasive method to improve the efficacy and targeting of ocular drug delivery. An extensive overview is given of the in vitro and in vivo studies investigating the mechanical effects of ultrasound-driven microbubbles aiming to: (i) temporarily disrupt the blood-retina barrier in order to enhance the delivery of systemically administered drugs into the eye, (ii) induce intracellular uptake of anticancer drugs and macromolecules and (iii) achieve targeted delivery of genes, for the treatment of ocular malignancies and degenerative diseases. Finally, the safety and tolerability aspects of USMB, essential for the translation of USMB to the clinic, are discussed.
眼睛独特的解剖结构以及各种生物屏障的存在,使得有效的眼部药物递送具有挑战性,尤其是在治疗后部眼病方面。本综述重点关注超声与微泡(USMB)相结合作为一种微创方法,以提高眼部药物递送的疗效和靶向性。本文广泛概述了体外和体内研究,这些研究调查了超声驱动微泡的机械效应,目的在于:(i)暂时破坏血视网膜屏障,以增强全身给药药物进入眼内的递送;(ii)诱导抗癌药物和大分子的细胞内摄取;(iii)实现基因的靶向递送,用于治疗眼部恶性肿瘤和退行性疾病。最后,讨论了USMB的安全性和耐受性方面,这对于将USMB转化为临床应用至关重要。