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UV-blocking spectacle lens protects against UV-induced decline of visual performance

机译:防紫外线眼镜片可防止紫外线导致的视觉性能下降

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Purpose: Excessive exposure to sunlight may be a risk factor for ocular diseases and reduced visual performance. This study was designed to examine the ability of an ultraviolet (UV)-blocking spectacle lens to prevent visual acuity decline and ocular surface disorders in a mouse model of UVB-induced photokeratitis. Methods: Mice were divided into 4 groups (10 mice per group): (1) a blank control group (no exposure to UV radiation), (2) a UVBo lens group (mice exposed to UVB rays, but without lens protection), (3) a UVB/UV400 group (mice exposed to UVB rays and protected using the CR-39? spectacle lens [UV400 coating]), and (4) a UVB/photochromic group (mice exposed to UVB rays and protected using the CR-39? spectacle lens [photochromic coating]). We investigated UVB-induced changes in visual acuity and in corneal smoothness, opacity, and lissamine green staining. We also evaluated the correlation between visual acuity decline and changes to the corneal surface parameters. Tissue sections were prepared and stained immunohistochemically to evaluate the structural integrity of the cornea and conjunctiva. Results: In blank controls, the cornea remained undamaged, whereas in UVB-exposed mice, the corneal surface was disrupted; this disruption significantly correlated with a concomitant decline in visual acuity. Both the UVB/UV400 and UVB/photochromic groups had sharper visual acuity and a healthier corneal surface than the UVBo lens group. Eyes in both protected groups also showed better corneal and conjunctival structural integrity than unprotected eyes. Furthermore, there were fewer apoptotic cells and less polymorphonuclear leukocyte infiltration in corneas protected by the spectacle lenses. Conclusions: The model established herein reliably determines the protective effect of UV-blocking ophthalmic biomaterials, because the in vivo protection against UV-induced ocular damage and visual acuity decline was easily defined.
机译:目的:过度暴露于阳光下可能是眼部疾病和视觉性能下降的危险因素。这项研究旨在检查在紫外线(UVB)诱发的光性角膜炎的小鼠模型中,阻挡紫外线(UV)的眼镜片预防视力下降和眼表疾病的能力。方法:将小鼠分为4组(每组10只小鼠):( 1)空白对照组(不暴露于紫外线),(2)UVB /不合并晶状体组(小鼠暴露于UVB射线,但不保护镜片) ),(3)一个UVB / UV400基团(暴露于UVB射线并用CR-39?眼镜镜片[UV400涂层]保护的小鼠)和(4)一个UVB /光致变色基团(暴露于UVB射线并由以下物质保护的小鼠) CR-39?眼镜镜片[光致变色涂层])。我们调查了UVB诱导的视敏度以及角膜平滑度,不透明性和lissamine绿色染色的变化。我们还评估了视力下降与角膜表面参数变化之间的相关性。准备组织切片并进行免疫组织化学染色以评估角膜和结膜的结构完整性。结果:在空白对照组中,角膜未受损,而在暴露于UVB的小鼠中,角膜表面被破坏。这种中断与视力下降相关。 UVB / UV400和UVB /光致变色组均比不使用UVB /无镜片组具有更敏锐的视力和更健康的角膜表面。与未保护的眼睛相比,两个保护组的眼睛还表现出更好的角膜和结膜结构完整性。此外,在由眼镜镜片保护的角膜中,凋亡细胞较少,多形核白细胞浸润较少。结论:本文建立的模型可靠地确定了阻隔紫外线的眼用生物材料的保护作用,因为体内对紫外线引起的眼损伤和视力下降的保护很容易定义。

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