Department of Atomic and Molecular Physics, Manipal Academy of Higher Education, Manipal 576104, India.
Centre for Applied Nanosciences (CAN), Manipal Academy of Higher Education, Manipal 576104, India.
ACS Appl Bio Mater. 2024 Nov 18;7(11):7324-7331. doi: 10.1021/acsabm.4c00975. Epub 2024 Oct 19.
Topical administration is the commonly preferred method of administering ophthalmic formulations, with the majority of available medications in the form of eye drops or ointments. However, the topical application of ophthalmological medications has less bioavailability and a short residence time because of the physiological and anatomical constraints of the eye, making efficient ophthalmic drug delivery a challenging task. Microfluidic contact lenses have the advantage of delivering drugs into the eye in a controlled and on-demand manner. Here, we showcase the use of hydrogel-embedded microcavities on PDMS-based contact lenses for ocular drug delivery applications. The fabrication technique adopted here is the spontaneous formation of the spherical cavity by hydrogel monomer droplet, followed by the simultaneous thermal curing of hydrogel and PDMS, creating a spherical cavity as small as 150 μm. The spherical cavity is embedded with pH-responsive hydrogel for on-demand drug delivery. The drug loaded in the hydrogel matrix is released into the ocular environment by diffusion. The spherical cavity with a narrow opening restricts the diffusion to a minimum under normal ocular pH conditions(pH > 6). When the ocular pH reduces (pH < 6), the pH-responsive hydrogel inside the spherical cavity deswell and accelerates the drug release.
局部给药是眼科制剂常用的给药方法,大多数可用药物的剂型为眼药水或眼膏。然而,由于眼部的生理和解剖限制,眼科药物的局部应用生物利用度较低,停留时间较短,因此高效的眼科药物输送是一项具有挑战性的任务。微流控隐形眼镜具有以受控和按需方式将药物递送到眼睛中的优势。在这里,我们展示了在基于 PDMS 的隐形眼镜上使用水凝胶嵌入微腔进行眼部药物输送应用。这里采用的制造技术是通过水凝胶单体液滴的自发形成形成球形腔,然后同时对水凝胶和 PDMS 进行热固化,从而形成小至 150μm 的球形腔。球形腔中嵌入了对 pH 有响应的水凝胶,以实现按需药物输送。负载在水凝胶基质中的药物通过扩散释放到眼环境中。在正常的眼部 pH 条件下(pH > 6),具有狭窄开口的球形腔将扩散限制在最低限度。当眼部 pH 值降低(pH < 6)时,球形腔内的 pH 响应水凝胶溶胀并加速药物释放。