基于热敏聚氧乙烯的抗菌消炎和光热传导多功能水凝胶,可作为注射、原位固化和可调节的眼内透镜

IF 18 1区 医学 Q1 ENGINEERING, BIOMEDICAL
Chen Qin, Fan Fei, Youfei Wei, Yuemei Han, Di Hu, Quankui Lin
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引用次数: 0

摘要

白内障患者希望术后并发症更少,视力质量更高。然而,目前白内障手术后植入的眼内人工晶体(IOL)既不能像天然晶状体那样根据睫状肌收缩调节焦距,也不能预防术后并发症。在此,我们设计了一种掺杂了抗菌消炎和光热功能元素的热敏性聚氧乙烯混合水凝胶,并将其用作可注射、可原位固化和可调节的人工晶体(FHTAB IOL)。FHTAB IOL 由热敏三嵌段聚合物 F127DA 和少量 HAMA 以及 BP NS、TA 和 Ag NPs 组成。FHTAB 人工晶体可在近红外光照下通过可注射热凝胶注入白内障手术后的空晶状体囊内,然后在短时间蓝光照射下迅速固化形成全尺寸人工晶体。所设计的可注射 FHTAB 人工晶体具有高透明度和透射率,折射率与天然晶状体相似,并具有可调节特性。作为屈光介质,它在眼内无任何渗漏。此外,FHTAB IOL 中负载的 TA 和 Ag NPs 在体外和体内均显示出显著的抗菌和消炎效果。这项研究为多功能可调人工晶体的开发提供了一种潜在有效的新策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Thermo-sensitive Poloxamer based antibacterial anti-inflammatory and photothermal conductive multifunctional hydrogel as injectable, in situ curable and adjustable intraocular lens

Thermo-sensitive Poloxamer based antibacterial anti-inflammatory and photothermal conductive multifunctional hydrogel as injectable, in situ curable and adjustable intraocular lens

Cataract patients look forwards to fewer postoperative complications and higher vision quality after surgery. However, the current intraocular lens (IOL) implanted after cataract surgery neither can adjust focal length in response to ciliary muscle contraction as natural lens nor have the ability to prevent postoperative complications. Herein, a thermosensitve Poloxamer based hybrid hydrogel with antibacterial anti-inflammatory and photothermal functional elements doping was designed and used as injectable, in situ curable, and adjustable IOL (FHTAB IOL). The FHTAB IOL was composed of thermosensitve triblock-polymer F127DA and a small amount of HAMA, combined with BP NS, TA, and Ag NPs. FHTAB IOL can be injected into the empty lens capsule after cataract surgery via an injectable thermos-gel under NIR illumination and then be rapidly cured to form a full-size IOL under short-time blue light irradiation. The designed injectable FHTAB IOL possesses high transparency and transmittance, with a refractive index similar to the natural lens and adjustable properties. It was stabilized as a refractive medium without any leakage in the eye. In addition, the TA and Ag NPs loaded in the FHTAB IOL displayed significant antibacterial and anti-inflammatory effects in vitro and vivo. This study presents a potentially effective new strategy for the development of multifunctional adjustable IOLs.

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来源期刊
Bioactive Materials
Bioactive Materials Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
28.00
自引率
6.30%
发文量
436
审稿时长
20 days
期刊介绍: Bioactive Materials is a peer-reviewed research publication that focuses on advancements in bioactive materials. The journal accepts research papers, reviews, and rapid communications in the field of next-generation biomaterials that interact with cells, tissues, and organs in various living organisms. The primary goal of Bioactive Materials is to promote the science and engineering of biomaterials that exhibit adaptiveness to the biological environment. These materials are specifically designed to stimulate or direct appropriate cell and tissue responses or regulate interactions with microorganisms. The journal covers a wide range of bioactive materials, including those that are engineered or designed in terms of their physical form (e.g. particulate, fiber), topology (e.g. porosity, surface roughness), or dimensions (ranging from macro to nano-scales). Contributions are sought from the following categories of bioactive materials: Bioactive metals and alloys Bioactive inorganics: ceramics, glasses, and carbon-based materials Bioactive polymers and gels Bioactive materials derived from natural sources Bioactive composites These materials find applications in human and veterinary medicine, such as implants, tissue engineering scaffolds, cell/drug/gene carriers, as well as imaging and sensing devices.
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