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A Proposal for Teaching Undergraduate Chemistry Students Carbohydrate Biochemistry by Problem-Based Learning Activities

机译:基于问题的学习活动对化学生进行碳水化合物生物化学教学的建议

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This article presents a problem-based learning (PBL) approach to teaching elementary biochemistry to Undergraduate students.The activity was based on "the foods we eat." It was used to engage students' curiosity and to initiate learning about a subject that could be used by the future teachers in the high school. The experimental activities (8-12 hours) were related to the questions: (i) what does the Benedict's Reagent detect? and (ii) What is determined by glucose oxidase (GOD)? We also ask the students to compare the results with those obtained with the Lugol reagent, which detects starch. Usually, students inferred that the Benedict reagent detects reducing sugars, while GOD could be used to detect glucose. However, in GOD assay, an open question was left, because the results could be due to contamination of the sugars (particularly galactose) with glucose. Though not stressed, GOD does not oxidize the carbohydrates tested and all the positive results are due to contamination. The activities presented here can be easily done in the high school, because they are simple and non-expensive. Furthermore, in the case of Benedict reaction, it is possible to follow the reduction of Cu (II) "macroscopically" by following the formation of the brick-orange precipitate. The concrete observation of a chemical reaction can motivate and facilitate students Understanding about chemistry of life.
机译:本文介绍了一种基于问题的学习(PBL)方法,向大学生教授基础生物化学。该活动基于“我们吃的食物”。它被用来激发学生的好奇心,并开始学习可以由未来的高中老师使用的主题。实验活动(8-12小时)与以下问题有关:(i)本尼迪克特的试剂能检测到什么? (ii)葡萄糖氧化酶(GOD)决定什么?我们还要求学生将结果与使用Lugol试剂(可检测淀粉)获得的结果进行比较。通常,学生推断本尼迪克特试剂可检测还原糖,而GOD可用于检测葡萄糖。然而,在GOD分析中,还有一个悬而未决的问题,因为结果可能是由于糖(特别是半乳糖)被葡萄糖污染所致。尽管没有强调,但神不会氧化被测碳水化合物,所有积极的结果都是由于污染。这里介绍的活动很简单,而且很便宜,因此可以在高中轻松完成。此外,在本尼迪克特反应的情况下,可以通过跟随形成桔黄色沉淀物而“宏观地”跟随Cu(II)的还原。对化学反应的具体观察可以激发和促进学生对生命化学的理解。

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