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Short-term culturing of teleost crystalline lenses combined with high-resolution optical measurements

机译:硬骨膜晶状体的短期培养结合高分辨率光学测量

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摘要

Culturing whole lenses is a frequently used method for studying regulatory events on the lens in controlled environments. The evaluation methods used often fall under two categories, molecular or optical. The main benefit from optical measurements is that they directly detect changes in the lens’ main function, i.e. refracting light. However, these measurements often have rather low resolution or yield results open for subjective interpretation. Here we present a short-term crystalline lens culturing technique combined with a high-resolution optical measuring method. There are two main advantages of using teleost lenses compared to mammalian lenses. Teleost tissue generally has a higher tolerance than mammalian tissue with regard to temperature and nutrient fluctuations. Teleost lenses are structurally more robust and can be excised from the eye without disturbing form or function. The technique is developed for short-term culturing (3?h), however, the lenses appear viable for at least 24?h and longer culturing may be possible. The technique is resistant to small variations in osmolarity and yields quantitative datasets for further analyses and statistical treatment.
机译:培养整个晶状体是研究受控环境中晶状体调节事件的常用方法。所使用的评估方法通常分为分子或光学两类。光学测量的主要好处在于,它们可以直接检测镜头主要功能(即折射光)的变化。但是,这些测量值通常具有相当低的分辨率,或者产生的结果易于主观解释。在这里,我们提出了一种结合了高分辨率光学测量方法的短期晶状体培养技术。与哺乳动物镜片相比,使用硬骨性镜片有两个主要优点。就温度和养分波动而言,硬骨组织通常比哺乳动物组织具有更高的耐受性。 Teleost镜头在结构上更坚固,可以从眼睛中切除,而不会影响其形状或功能。该技术是为短期培养(3?h)而开发的,但是,晶状体似乎可以存活至少24?h,并且可以进行更长的培养。该技术可抵抗渗透压的微小变化,并产生用于进一步分析和统计处理的定量数据集。

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