Department of Chemistry and Chemical Biology, Northeastern University, 360 Huntington Ave, Boston, MA, 02115, USA.
Sibley School of Mechanical and Aerospace Engineering, Cornell University, 413 Upson Hall, 124 Hoy Rd, Ithaca, NY, 14850, USA.
Adv Sci (Weinh). 2023 Dec;10(35):e2303279. doi: 10.1002/advs.202303279. Epub 2023 Oct 28.
Positioned within the eye, the lens supports vision by transmitting and focusing light onto the retina. As an adaptive glassy material, the lens is constituted primarily by densely-packed, polydisperse crystallin proteins that organize to resist aggregation and crystallization at high volume fractions, yet the details of how crystallins coordinate with one another to template and maintain this transparent microstructure remain unclear. The role of individual crystallin subtypes (α, β, and γ) and paired subtype compositions, including how they experience and resist crowding-induced turbidity in solution, is explored using combinations of spectrophotometry, hard-sphere simulations, and surface pressure measurements. After assaying crystallin combinations, β-crystallins emerged as a principal component in all mixtures that enabled dense fluid-like packing and short-range order necessary for transparency. These findings helped inform the design of lens-like hydrogel systems, which are used to monitor and manipulate the loss of transparency under different crowding conditions. When taken together, the findings illustrate the design and characterization of adaptive materials made from lens proteins that can be used to better understand mechanisms regulating transparency.
晶状体位于眼睛内,通过传输和聚焦光线到视网膜上支持视觉。作为一种适应性的玻璃状物质,晶状体主要由密集、多分散的晶状体蛋白组成,这些蛋白组织起来以抵抗在高体积分数下的聚集和结晶,但关于晶状体蛋白如何相互协调来模板化和维持这种透明的微观结构的细节仍然不清楚。使用分光光度法、硬球模拟和表面压力测量的组合,研究了单个晶状体蛋白亚型(α、β 和 γ)和配对亚型组成的作用,包括它们在溶液中如何经历和抵抗拥挤诱导的混浊。在对晶状体蛋白组合进行检测后,β-晶状体蛋白在所有混合物中都作为一个主要成分出现,这些混合物能够实现密集的流体状包装和透明度所必需的短程有序。这些发现有助于指导类晶状体水凝胶系统的设计,这些系统用于监测和操纵在不同拥挤条件下的透明度丧失。总的来说,这些发现说明了可以用来更好地理解调节透明度的机制的自适应材料的设计和表征,这些材料是由晶状体蛋白制成的。