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Audrey G. Fikes; Melissa C. Srougi – Journal of Chemical Education, 2023
The application of chemistry concepts in biological settings plays an important role in the interdisciplinary field of drug discovery and development. This is true for molecular docking, where an understanding of intermolecular forces and noncovalent interactions is useful for rational drug design and development. Here we report the design and use…
Descriptors: Chemistry, Science Instruction, Molecular Structure, Drug Therapy
Andrew Phillips; Anusha Srinivas; Ilina Prentoska; Margaret O'Dea; Matthew Kustrup; Sarah Hurley; Savannah Bruno; Vy Nguyen; Pin-Kuang Lai – Biochemistry and Molecular Biology Education, 2024
Teaching chemistry and biology students about biologics design remains challenging despite its increasing importance in pharmaceutical development. Monoclonal antibodies, commonly called mAbs, are the most popular biologics. They have been developed into drugs to treat various diseases in the past decades. Multiple challenges exist for designing…
Descriptors: Teaching Methods, Biochemistry, Science Instruction, Computer Software
Weiss, Charles J. – Biochemistry and Molecular Biology Education, 2022
This article reports a workshop from the 2021 IUBMB/ASBMB Teaching Science with Big Data conference held virtually in June 2021 where participants learned to explore and visualize large quantities of protein PBD data using Jupyter notebooks and the Python programming language. This activity instructs participants using Jupyter notebooks, Python…
Descriptors: Visual Aids, Programming Languages, Data Analysis, Science Instruction
Kerwin, Sean M. – Biochemistry and Molecular Biology Education, 2019
A flexible and modular peptide modeling set was designed using freely available software tools. The set consists of space-filling models of all 20 naturally occurring amino acid side chains and a modular kit for constructing peptides employing C-alpha carbons and amide bond groups. Connectors that allow free rotation about phi and psi angles on…
Descriptors: Computer Software, Teaching Methods, Science Instruction, Computer Peripherals
Khorsand, Babak; Khammari, Anahita; Shirvanizadeh, Niloofar; Zahiri, Javad; Arab, Seyed Shahriar – Biochemistry and Molecular Biology Education, 2019
Today smartphones are inseparable parts of modern life and are capable of performing many desktop computers' tasks such as scientific analysis with greater convenience. Here, we present OligoCOOL, which is an Android application for analyzing nucleic sequences. This application enables users to perform several common biomedical analyses for a…
Descriptors: Teaching Methods, Science Instruction, Biochemistry, Telecommunications
Charlotte A. Dodson; Stephen E. Flower; Mark Thomas – Journal of Chemical Education, 2023
Industrial drug discovery teams encompass scientists from multiple specialties and require participants to communicate effectively across disciplinary boundaries. In this paper, we present an undergraduate or graduate classroom simulation of this environment. Over a series of five workshops, student teams of mixed scientific backgrounds perform…
Descriptors: Drug Therapy, Pharmacy, Teamwork, Interdisciplinary Approach
Peterson, Celeste N.; Tavana, Sara Z.; Akinleye, Olukemi P.; Johnson, Walter H.; Berkmen, Melanie B. – Biochemistry and Molecular Biology Education, 2020
Biology and biochemistry students must learn to visualize and comprehend the complex three-dimensional (3D) structures of macromolecules such as proteins or DNA. However, most tools available for teaching biomolecular structures typically operate in two dimensions. Here, we present protocols and pedagogical approaches for using immersive augmented…
Descriptors: Teaching Methods, Molecular Structure, Computer Software, Biochemistry
Mayes, Howard; Wong, Chung F. – Journal of Chemical Education, 2018
A new program, ECEP2D, for simulating the one-dimensional (1D) and two-dimensional (2D) patterns of the gel electrophoresis of a protein after it has been digested by one or more enzymes is introduced. With ECEP2D, students can gain deeper insights into gel electrophoresis by performing hands-on simulations. For example, students can visualize how…
Descriptors: Computer Software, Computer Simulation, Comparative Analysis, Biochemistry
Vater, Ashley; Mayoral, Jaime; Nunez-Castilla, Janelle; Labonte, Jason W.; Briggs, Laura A.; Gray, Jeffrey J.; Makarevitch, Irina; Rumjahn, Sharif M.; Siegel, Justin B. – Journal of Chemical Education, 2021
Including undergraduate research in STEM education is a well-supported and growing high-impact practice that has been made much more scalable through integrating these experiences into the classroom. Here we describe a new biochemistry Course-based Undergraduate Research Experience (CURE) that follows a design-to-data workflow with a strong…
Descriptors: Science Instruction, College Science, Undergraduate Study, Student Research
Jie Xu; Zhihua Shao; Song Jia; Jihong Sha; Jiao Li; Furong Gao; Xiujuan Shi; Juan Wang; Caixia Jin; Mei Jiang; Haibin Tian; Jinfeng Cao; Hu Pu; Lei Xu; Lixia Lu – Biochemistry and Molecular Biology Education, 2024
The laboratory practice "Primary culture and directional differentiation of rat bone marrow mesenchymal stem cells (BMSCs)" is part of a required course for sophomore medical students at Tongji university, which has been conducted since 2012. Blended learning has been widely applied in medical courses. Based on a student-centered…
Descriptors: Cytology, Biochemistry, Science Instruction, Laboratory Experiments
Nagaoka, Shin-ichi; Kokubo, Tatsunobu; Teramae, Hiroyuki; Nagashima?, Umpei – Journal of Chemical Education, 2018
At an advanced stage of learning quantum chemistry, undergraduate students usually encounter simple Hückel-molecular-orbital (HMO) theory, whose primitive approach gives very useful insight into the electronic structure of p-conjugated molecules. However, on one hand, computational HMO software, when programmed without using molecular symmetry,…
Descriptors: Visualization, Chemistry, Science Instruction, Molecular Structure
Argu¨ello, Jose´ M.; Dempski, Robert E. – Journal of Chemical Education, 2020
Facile visualization of biomolecules is an essential component of the undergraduate biochemistry curriculum. In the past, a number of tools have been used to display biomolecules. More recently, the advent of greater accessibility to virtual reality (VR) and augmented reality (AR) programs has created a new mechanism to visualize biomolecules.…
Descriptors: Visualization, Undergraduate Students, Biochemistry, Science Instruction
Clark, Daniel D.; Edwards, Daniel J. – Biochemistry and Molecular Biology Education, 2018
This article describes a simple exercise using a free, easy-to-use, established online program. The exercise helps to reinforce protein purification concepts and introduces undergraduates to pH as a parameter that affects anion-exchange chromatography. The exercise was tested with biochemistry majors at California State University-Chico. Given the…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Undergraduate Students
Romero, Rebecca M.; Bolger, Michael B.; Morningstar-Kywi, Noam; Haworth, Ian S. – Journal of Chemical Education, 2020
Drug design and development requires collaboration among scientists with diverse expertise. In early-stage drug design, establishment of promising drug candidates requires integration of structure-based molecular design with biopharmaceutics and ADMET (absorption, distribution, metabolism, excretion, and toxicity) principles. Much of this work is…
Descriptors: Computer Software, Educational Technology, Technology Uses in Education, Pharmacology
Coan, Heather A.; Goehle, Geoff; Youker, Robert T. – Journal of Teaching and Learning, 2020
The commercialization of virtual reality (VR) hardware has enabled the use of VR as an educational tool. We describe how a VR platform was used to create molecular visualizations using standard PDB files with the purpose of delivering biochemistry and cellular biology lessons for undergraduates. Specifically, we describe two new software modules,…
Descriptors: Biochemistry, Molecular Biology, Science Instruction, Teaching Methods