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用于生产琼脂糖微垫的质量控制方法及装置

Quality Control Method and Device for Producing Agarose Micropads.

作者信息

Vo Martin, Kuo-Esser Lance, Dominguez Mauricio, Driggers Julia, Kuchinski Kennedy, Perez Sheny, Luck Taylor, Tran The, Tran Thang, Gerberry David, Wetzel Hanna, Escorcia Wilber

机构信息

Lake Erie College of Osteopathic Medicine, Erie, Pennsylvania, United States.

Chemistry Department, Xavier University, Cincinnati, Ohio, United States.

出版信息

MicroPubl Biol. 2024 Jan 26;2024. doi: 10.17912/micropub.biology.001081. eCollection 2024.

Abstract

In brightfield and fluorescence microscopy, capturing images that show well-focused and immobile microorganisms can be challenging. An agarose-based gel pad reduces the variability of results, especially in conditions like uneven specimen staging, variable fluid dynamics, and Brownian motion that plague conventional wet mount setups. To correct these discrepancies during image acquisition, we analyzed three micropad preparation setups. We tested the quality and consistency of pads and images resulting from each setup. Our examination reveals that improved gel pad flatness is associated with better image quality. Moreover, we observe increased consistency in gel pad construction connected to the use of a 3D-printed setup. These findings highlight the technical benefits arising from incorporating micropad-generating platforms that increase the consistency of results in imaging pipelines. Additionally, our use of a quantitative approach to examine pad flatness suggests its inclusion in quality control pipelines to reduce variation in gel pad construction and image quality over time and between investigators. Finally, our use of a 3D-printed setup coupled with a quantitative downstream routine suggests their application in microscopy experiments that involve model organisms relevant to human health and disease.

摘要

在明场和荧光显微镜下,捕捉聚焦良好且静止不动的微生物图像可能具有挑战性。基于琼脂糖的凝胶垫可减少结果的变异性,尤其是在标本放置不均匀、流体动力学变化以及困扰传统湿装设置的布朗运动等情况下。为了在图像采集过程中纠正这些差异,我们分析了三种微垫制备设置。我们测试了每种设置产生的垫子和图像的质量及一致性。我们的研究表明,凝胶垫平整度的提高与更好的图像质量相关。此外,我们观察到与使用3D打印设置相关的凝胶垫构建一致性有所提高。这些发现突出了采用微垫生成平台所带来的技术优势,这些平台可提高成像流程中结果的一致性。此外,我们使用定量方法来检查垫子平整度,这表明应将其纳入质量控制流程,以减少凝胶垫构建和图像质量随时间以及不同研究者之间的变化。最后,我们使用3D打印设置并结合定量下游程序,表明它们可应用于涉及与人类健康和疾病相关的模式生物的显微镜实验中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1834/10853819/d83860ca31a8/25789430-2024-micropub.biology.001081.jpg

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