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Glucose Transport in Cultured Animal Cells: An Exercise for the Undergraduate Cell Biology Laboratory

机译:培养动物细胞中的葡萄糖转运:针对本科生细胞生物学实验室的一项运动

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摘要

Membrane transport is a fundamental concept that undergraduate students of cell biology understand better with laboratory experience. Formal teaching exercises commonly used to illustrate this concept are unbiological, qualitative, or intricate and time consuming to prepare. We have developed an exercise that uses uptake of radiolabeled nutrient analogues by attachment-dependent animal cells cultured on multiwell trays. This system can readily be manipulated within a typical 3-h laboratory period to yield reproducible, biologically relevant, quantitative data regarding key aspects of membrane transport. Each 24-well tray of cultures allows a group of two to four students to compare eight conditions in triplicate. If different groups of students test different conditions or different types of cells, data can be shared for an even broader experience. The exercise is also readily adaptable for open-ended student projects. Here we illustrate the exercise measuring uptake of the nonmetabolizable glucose analogue [3H]-2-deoxy-d-glucose. Students successfully tested the effects of competing sugars, putative inhibitors of the GLUT1 transporter, and changes in cell physiology that might be expected to affect glucose transport in epithelial cells and fibroblasts. In this exercise students find the nutritional and medical implications of glucose transport and its regulation intriguing. They also learn to handle radioisotopes and cultured cells.
机译:膜运输是一个基本概念,细胞生物学的大学生可以通过实验室经验更好地理解膜运输。通常用来说明该概念的形式化教学练习是不生物学的,定性的或复杂且费时的准备。我们已经开发了一种利用多孔托盘上培养的依附依赖性动物细胞摄取放射性标记的营养类似物的运动。该系统可以在典型的3小时实验室时间内轻松进行操作,以产生有关膜运输关键方面的可再现的,生物学相关的定量数据。每个24孔培养皿可让一组2至4名学生一式三份地比较八个条件。如果不同的学生群体测试不同的条件或不同类型的单元,则可以共享数据以获得更广泛的体验。该练习也很容易适应开放式学生项目。在这里,我们举例说明了测量不可代谢的葡萄糖类似物[3H] -2-脱氧-d-葡萄糖摄取的运动。学生成功地测试了竞争性糖,GLUT1转运蛋白的假定抑制剂以及细胞生理变化的影响,这些变化有望影响上皮细胞和成纤维细胞中的葡萄糖转运。在本练习中,学生发现葡萄糖转运及其调节机制的营养和医学意义。他们还学会处理放射性同位素和培养的细胞。

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