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发育、退化和再生视网膜中光感受器突触的定量和定性评估

Quantitative and Qualitative Evaluation of Photoreceptor Synapses in Developing, Degenerating and Regenerating Retinas.

作者信息

Akiba Ryutaro, Matsuyama Take, Tu Hung-Ya, Hashiguchi Tomoyo, Sho Junki, Yamamoto Shuichi, Takahashi Masayo, Mandai Michiko

机构信息

Laboratory for Retinal Regeneration, RIKEN Center for Biosystems Dynamics Research, Kobe, Japan.

Department of Ophthalmology and Visual Science, Chiba University Graduate School of Medicine, Chiba, Japan.

出版信息

Front Cell Neurosci. 2019 Feb 11;13:16. doi: 10.3389/fncel.2019.00016. eCollection 2019.

Abstract

Quantitative and qualitative evaluation of synapses is crucial to understand neural connectivity. This is particularly relevant now, in view of the recent advances in regenerative biology and medicine. There is an urgent need to evaluate synapses to access the extent and functionality of reconstructed neural network. Most of the currently used synapse evaluation methods provide only all-or-none assessments. However, very often synapses appear in a wide spectrum of transient states such as during synaptogenesis or neural degeneration. Robust evaluation of synapse quantity and quality is therefore highly sought after. In this paper we introduce QUANTOS, a new method that can evaluate the number, likelihood, and maturity of photoreceptor ribbon synapses based on graphical properties of immunohistochemistry images. QUANTOS is composed of ImageJ Fiji macros, and R scripts which are both open-source and free software. We used QUANTOS to evaluate synaptogenesis in developing and degenerating retinas, as well as synaptogenesis of mouse iPSC-retinas after transplantation to a retinal degeneration mouse model. Our analysis shows that while mouse iPSC-retinas are largely incapable of forming synapses , they can form extensive synapses following transplantation. The synapses detected after transplantation seem to be in an intermediate state between mature and immature compared to wildtype retina. Furthermore, using QUANTOS we tested whether environmental light can affect photoreceptor synaptogenesis. We found that the onset of synaptogenesis was earlier under cyclic light (LD) condition when compared to constant dark (DD), resulting in more synapses at earlier developmental stages. The effect of light was also supported by micro electroretinography showing larger responses under LD condition. The number of synapses was also increased after transplantation of mouse iPSC-retinas to mice under LD condition. Our new probabilistic assessment of synapses may prove to be a valuable tool to gain critical insights into neural-network reconstruction and help develop treatments for neurodegenerative disorders.

摘要

对突触进行定量和定性评估对于理解神经连接至关重要。鉴于再生生物学和医学的最新进展,这一点在当下尤为重要。迫切需要评估突触以了解重建神经网络的范围和功能。目前大多数常用的突触评估方法仅提供全有或全无的评估。然而,突触常常出现在广泛的过渡状态中,例如在突触发生或神经退行性变期间。因此,对突触数量和质量进行稳健评估的需求非常迫切。在本文中,我们介绍了QUANTOS,这是一种基于免疫组织化学图像的图形属性来评估光感受器带状突触的数量、可能性和成熟度的新方法。QUANTOS由ImageJ Fiji宏和R脚本组成,它们都是开源的免费软件。我们使用QUANTOS评估发育中和退化视网膜中的突触发生,以及将小鼠诱导多能干细胞来源的视网膜移植到视网膜退化小鼠模型后的突触发生情况。我们的分析表明,虽然小鼠诱导多能干细胞来源的视网膜在很大程度上无法形成突触,但移植后它们可以形成广泛的突触。与野生型视网膜相比,移植后检测到的突触似乎处于成熟和未成熟之间的中间状态。此外,我们使用QUANTOS测试了环境光是否会影响光感受器突触发生。我们发现,与持续黑暗(DD)条件相比,在循环光照(LD)条件下突触发生的起始更早,从而在发育早期阶段产生更多的突触。微光视网膜电图也支持光照的影响,显示在LD条件下反应更大。在LD条件下将小鼠诱导多能干细胞来源的视网膜移植到小鼠体内后,突触数量也增加了。我们对突触的新概率评估可能被证明是一种有价值的工具,有助于深入了解神经网络重建,并帮助开发神经退行性疾病的治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2a7d/6378395/f2a267a8e4d3/fncel-13-00016-g0001.jpg

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