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首页> 外文期刊>Experimental Eye Research >Mechanical properties of murine and porcine ocular tissues in compression
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Mechanical properties of murine and porcine ocular tissues in compression

机译:小鼠和猪眼组织受压的力学性能

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Sub-retinal implantation of foreign materials is becoming an increasingly common feature of novel therapies for retinal dysfunction. The ultimate compatibility of implants depends not only on their in vitro chemical compatibility, but also on how well the mechanical properties of the material match those of the native tissue. In order to optimize the mechanical properties of retinal implants, the mechanical properties of the mammalian retina itself must be carefully characterized. In this study, the compressive moduli of eye tissues, especially the retina, were probed using a dynamic mechanical analysis instrument in static mode. The retinal compressive modulus was lower than that of the sclera or cornea, but higher than that of the RPE and choroid. Compressive modulus remained relatively stable with age. Conversely, apparent retinal softening occurred at an early age in mice with inherited retinal degeneration. Compressive modulus is an important consideration for the design of retinal implants. Polymer scaffolds with moduli that are substantially different than that of the native tissue in which they will ultimately reside will be less likely to aid in the differentiation and development of the appropriate cell types in vitro and will have reduced biocompatibility in vivo.
机译:视网膜下异物的植入正成为用于视网膜功能障碍的新疗法的越来越普遍的特征。植入物的最终相容性不仅取决于其体外化学相容性,还取决于材料的机械性能与天然组织的机械性能匹配的程度。为了优化视网膜植入物的机械性能,必须仔细表征哺乳动物视网膜本身的机械性能。在这项研究中,使用动态机械分析仪以静态模式探查了眼组织尤其是视网膜的压缩模量。视网膜的压缩模量低于巩膜或角膜,但高于RPE和脉络膜。随着年龄的增长,压缩模量保持相对稳定。相反,在具有遗传性视网膜变性的小鼠中,视网膜的软化明显发生在早期。压缩模量是设计视网膜植入物的重要考虑因素。模数与最终将驻留的天然组织的聚合物支架实质上不同的聚合物支架将不太可能在体外帮助分化和发育合适的细胞类型,并且体内生物相容性降低。

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