- Research Article
- 10.24918/cs.2026.5
Learning in 3D: Using Student Designed 3D Modeling to Teach Biological Macromolecules in an Introductory Biology Course
- Jan 01, 2026
- CourseSource
- Emily M Nowicki + 2 more +2
Understanding the relationship between the structure and function of biological molecules (carbohydrates, lipids, proteins, and nucleic acids) is a fundamental concept covered in an undergraduate introductory biology course with which students often struggle. Students at this level often feel intimidated when asked to recall and differentiate between the specifics of each macromolecule including monomers, polymers, types of bonds or functional groups present, and the function of each. Demonstrating a deeper understanding of the material such as the relationship between structure and function is even more challenging since this requires higher-level conceptualization and synthesis skills. While lecturing can deliver an abundance of facts, providing students with hands-on opportunities to discover information themselves and practice putting together complex ideas often results in an increase in engagement and ultimately student satisfaction and confidence in the sciences. We developed a student-designed 3D modeling project in order to provide our students a hands-on approach to learning about biological macromolecules. The project begins with several low-stakes active learning activities and culminates with model design and peer teaching of an assigned macromolecule. Our observations and evaluations collected over the past twelve semesters of implementation in a small introductory biology course for science majors suggest that students who fully participate in this project show an increase in their perceived understanding of this material and engagement in the course. In this lesson we provide a detailed description of our activity including supporting materials and suggested adaptations for online or large classrooms. <em>Primary Image:</em> 3D printed phospholipids. Individual phospholipids were 3D printed and colored using permanent marker. Magnets were added after printing to represent intermolecular forces that allow phospholipid head groups to interact within the phospholipid bilayer of cells. Image credit: Emily M. Nowicki, picture taken in-house.
Read more