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温度梯度诱导的细胞自发脱离:为细胞培养水平的抗菌药物测试准备方法

Spontaneous Cell Detachment from Temperature Gradients: Getting the Method Ready for Antimicrobial Drug Testing at Cell Culture Level.

作者信息

Urbán Csongor Tibor, Bakhshi Sichani Soroush, Ueda Modaffore Gabriela, Glorieux Christ, Gruber Jonas, Yongabi Derick, Lettinga Minne Paul, Wagner Patrick

机构信息

Laboratory for Soft Matter and Biophysics ZMB, Department of Physics and Astronomy, KU Leuven, Celestijnenlaan 200 D, B-3001 Leuven, Belgium.

Department of Fundamental Chemistry, Institute of Chemistry, University of São Paulo, Prof. Lineu Prestes Ave., 748, São Paulo 05508-000, SP, Brazil.

出版信息

Sensors (Basel). 2025 May 4;25(9):2902. doi: 10.3390/s25092902.

Abstract

Spontaneous cell detachment describes an effect in which eukaryotic cells first sediment onto a heated chip and then detach from it spontaneously and collectively after a sharply defined dwell time . This behavior is triggered by the temperature gradient between the chip and the colder supernatant liquid. Notably, allows distinguishing between different yeast strains and cancer-cell lines. At the same time, it also varies in the presence of nutrients and cytotoxins, suggesting an added value of this method for pharmacological studies. In the present work, we study the role of fluid convection on the detachment of yeast cells experimentally and by simulations using a sample compartment with a variable aspect ratio. Hereby, we found that the absolute chip temperature, the strength of the temperature gradient and the number of cells inside the sample compartment all affect the dwell time . To demonstrate the concept, we show that the spontaneous-detachment method can measure the impact of an antibiotic and an antiseptic drug on yeast cultures and corroborate this with reference assays.

摘要

自发细胞脱离描述了一种效应,即真核细胞首先沉积在加热的芯片上,然后在明确定义的停留时间后自发且集体地从芯片上脱离。这种行为是由芯片与较冷的上清液之间的温度梯度触发的。值得注意的是,这允许区分不同的酵母菌株和癌细胞系。同时,在有营养物质和细胞毒素存在的情况下它也会发生变化,这表明该方法在药理学研究方面具有附加价值。在本工作中,我们通过实验以及使用具有可变纵横比的样品隔室进行模拟,研究了流体对流对酵母细胞脱离的作用。据此,我们发现芯片的绝对温度、温度梯度的强度以及样品隔室内的细胞数量都会影响停留时间。为了证明这一概念,我们表明自发脱离方法可以测量抗生素和抗菌药物对酵母培养物的影响,并通过参考测定法加以证实。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbc4/12074233/814a95c13f82/sensors-25-02902-g001.jpg

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