Hall David J, Martin Charles G, Welford Michael, Debbert Stefan L
Chemistry Department, Lawrence University, Appleton, Wisconsin, 54911.
Biochem Mol Biol Educ. 2018 Sep;46(5):424-434. doi: 10.1002/bmb.21138.
The development of new medicines holds particular fascination for chemistry, biochemistry, and biology students interested in a career in medicine or the life sciences. The identification and refinement of lead compounds to treat diseases requires researchers to be facile in a number of different disciplines including organic synthesis, biochemistry, cell biology, and molecular biology. We have developed an interdisciplinary, inquiry-based laboratory spanning both organic chemistry and biochemistry classes that acquaints students with research in medicinal chemistry. The first part of the exercise takes place in the second semester of organic chemistry, where pairs of students design and execute their own multistep synthesis of a novel compound with anti-inflammatory and/or antimalarial potential. Later, in first semester biochemistry, many of the same students then test these synthesized compounds for cytotoxicity, inhibition of the enzyme nitric oxide synthase, and inhibition of the transcription factor NF-kB. Learning outcomes, measured by the Classroom Undergraduate Research Experience (CURE) survey, suggest that students participating in both classes had higher gains than an average student. © 2018 International Union of Biochemistry and Molecular Biology, 46(5):424-434, 2018.
对于有志于从事医学或生命科学职业的化学、生物化学和生物学专业学生而言,新药研发具有独特的吸引力。确定和优化用于治疗疾病的先导化合物,要求研究人员精通包括有机合成、生物化学、细胞生物学和分子生物学在内的多个不同学科。我们开发了一个跨学科的、基于探究的实验室,涵盖有机化学和生物化学课程,让学生了解药物化学研究。实验的第一部分在有机化学课程的第二学期进行,学生两人一组设计并自行开展多步合成一种具有抗炎和/或抗疟潜力的新型化合物。之后,在生物化学课程的第一学期,许多参与过有机化学实验的学生接着测试这些合成化合物的细胞毒性、对一氧化氮合酶的抑制作用以及对转录因子NF-κB的抑制作用。通过本科课堂研究体验(CURE)调查衡量的学习成果表明,同时参加这两门课程的学生比普通学生收获更多。© 2018国际生物化学与分子生物学联盟,46(5):424 - 434, 2018。