下一代智能眼科生物材料:从被动反应到主动相互作用和闭环控制
Pengbo Zhang1,2, Yan Nie1,2, Xiaofang Wang3
1Department of Ophthalmology, West China Hospital, Sichuan University, Chengdu, China.
Bioactive materials
|November 14, 2025
概括
眼科生物材料正在从被动植入物演变为智能,适应性系统. 未来的闭环眼疗法将整合传感,决策和自主疾病管理的启动.
科学领域:
- 生物材料科学 生物材料科学
- 眼科医生 眼科 眼科
- 再生医学是一种再生医学.
背景情况:
- 传统的眼科生物材料在很大程度上是惰性的,缺乏适应动态眼部微环境的能力.
- 当前对刺激有反应的材料往往是反应性或预编程的,无法提供自主控制.
- 眼睛的微环境对材料性能提出了复杂的生化和生物力学挑战.
研究的目的:
- 介绍眼科生物材料的进化框架,从被动到闭环系统.
- 综合刺激响应和智能生物材料平台的进展,用于眼部应用.
- 确定下一代自我适应眼疗法的设计原则和挑战.
主要方法:
- 文学综合和概念框架的发展.
- 基于响应和控制的生物材料生成的分析.
- 识别智能眼科系统的关键设计原则.
主要成果:
- 眼科生物材料正在经历三代的转变:被动,交互和闭环.
- 闭环系统整合了传感,机载决策和自主功能的执行.
- 关键的挑战包括系统层面的整合和实现真正的自我适应.
结论:
- 智能,自我适应的眼科生物材料为下一代眼科疗法提供了概念基础.
- 未来的研究应该专注于闭环系统的合理设计原则.
- 自主控制是眼科生物材料开发的关键前沿.
相关概念视频
Modified-Release Drug Delivery Systems: Stimuli-Activated
124
Stimuli-activated drug delivery systems are designed to release drugs in response to specific physical, chemical, or biological stimuli. These systems often utilize hydrogels—three-dimensional, hydrophilic polymer networks capable of swelling in aqueous environments and retaining significant fluid volumes. Upon exposure to particular stimuli, these hydrogels undergo structural transitions that allow the embedded drug to be released. Due to this adaptive behavior, such systems are also...
124
Ophthalmic Drug Delivery Systems
224
Ophthalmic drug delivery faces major limitations due to poor absorption across the corneal membrane. This process is primarily driven by diffusion and is influenced by two main factors: the physicochemical properties of the drug and tear drainage. Most ophthalmic drugs, such as pilocarpine, epinephrine, atropine, and local anesthetics, are weak bases. They are typically formulated at an acidic pH to enhance chemical stability. However, this leads to high ionization, reducing their ability to...
224


