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Ophthalmic drug delivery utilizing two-photon absorption: a novel approach to treat posterior capsule opacification

机译:使用双光子吸收的眼科药物递送:一种治疗后囊渗透的新方法

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Intraocular lens (IOL) implantation is the standard technique to treat cataract. Despite recent progress in surgical procedures, posterior capsule opacification is one of the sill remaining postoperative complications of cataract surgery. We present a novel strategy to reduce the incidence of posterior capsule opacification. A drug delivery polymer suitable for manufacturing intraocular lenses has been developed which enables repeated drug release in a non-invasive and controlled manner. The therapeutic molecules are attached through a UV light sensitive linkage to the polymer backbone which is mainly responsible for the optical properties of the intraocular lenses. However, UV light can not trigger the release of drug from the polymer due to the high absorption of the cornea. We developed linkers which enable drug release by two-photon absorption induced cleavage of the linker structure. Since the two-photon absorption requires high photon densities, this does not occur in ambient light conditions in daily life, but is easily triggered by focused laser beams from a pulsed laser. In this proof-of-principle study we have employed a cyclobutane type linker and investigated the properties of the therapeutic system with the approved drugs 5-fluorouracil and chlorambucil. The controlled drug delivery was successfully demonstrated in vitro and additional cell tests confirmed that the device itself shows no cytotoxicity until photochemical activation. This presented concept can provide a powerful method in ophthalmic drug delivery.
机译:人工晶状体(IOL)植入是治疗白内障的标准技术。尽管最近在外科手术方面进行了进展,但后胶囊透露率是白内障手术的窗洋术后并发症之一。我们提出了一种新的策略来减少后囊渗透透露率的发病率。已经开发出一种适用于制造人工晶状体的药物递送聚合物,其使得能够以非侵入性和受控的方式重复的药物释放。治疗分子通过UV光敏键连接到聚合物骨架,主要负责人工晶状体的光学性质。然而,由于角膜的高吸收,UV光不能引起来自聚合物的药物释放。我们开发了通过双光子吸收诱导的接头结构切割的药物释放的接头。由于双光子吸收需要高光子密度,因此在日常生活中的环境光条件下不会发生这种情况,而是通过来自脉冲激光的聚焦激光束容易地触发。在该原理证明研究中,我们使用了环丁烷型接头,并研究了具有批准的药物5-氟尿嘧啶和氯苯胺的治疗系统的性质。体外证明了受控药物递送,另外的细胞试验证实,该装置本身没有细胞毒性直至光化学活化。这呈现的概念可以在眼科药物递送中提供一种强大的方法。

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