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Brickman, P.

Publications and source records attributed to Brickman, P..

2 recordsLinked to original sources

How do selective serotonin reuptake inhibitors effect metabolism? A lesson for teaching non-majors about enzymes and metabolic pathways

Understanding foundational concepts in molecular biology and biochemistry can be challenging for many college students. For non-science majors, an introductory biology course may be their sole exposure to college-level science and only opportunity to learn about enzymes and metabolism. Framing these topics within issues that are personally relevant can make the material more meaningful and impactful for non-majors. There is a need to develop curricula that instructors of large-enrollment introductory biology courses can use to teach non-biology majors about enzymes and metabolism. Here, we designed and implemented a lesson that integrates enzyme function and metabolism within the context of selective serotonin reuptake inhibitors (SSRIs). SSRIs are a widely prescribed class of antidepressants whose efficacy can be influenced by enzymes. Genetic polymorphisms in the genes encoding these enzymes can result in individual differences in metabolic responses and lead to medication-induced weight gain. Framing the content in this way allows non-major students to connect enzyme function to genetics, energy balance, and metabolic processes through a health-related, societally relevant issue. In our lesson, students engaged in collaborative learning activities that emphasized interpreting biological data, graphing, and scientific reasoning. Pre- and post-assessment data from a conceptual inventory showed learning gains that exceeded baseline data and were greater than those observed with the traditional curriculum. Students also reported a more coherent understanding of enzyme function and a greater appreciation of the contents relevance to their own lives. This lesson provides an example of embedding biochemical concepts in real-world contexts for students who are non-science majors.

scientific communication and education↗

Development of Learning Objectives for Non-Major Introductory Biology Using a Delphi Method

Biology faculty have consensus-based guidelines based on Vision and Change principles about what to teach introductory biology majors. In contrast, faculty have not reached a consensus concerning the learning goals for introductory non-majors courses. Yet, more than 8 out of 10 undergraduates are not science majors. The goal of this study was to develop and evaluate learning objectives for non-majors introductory biology courses. We performed a modified-Delphi study of learning objectives (LOs) for non-majors biology. We engaged a total of 38 biology faculty experts from institutions across the US in three iterative rounds to identify, rate, discuss, and re-rate >300 LOs for non-majors biology courses. Faculty provided feedback to determine whether the LOs are critical for students to learn and if the LOs encompass what students need to learn about this issue, as well as if anything is missing. As a result of expert evaluation, 60.7% of LOs (164) were deemed critical. Experts also suggested 22 additional new LOs.

scientific communication and education↗