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DNA sequencing of anatomy lab cadavers to provide hands-on precision medicine introduction to medical students

机译:解剖学实验室尸体的DNA测序,为医学生提供实践精密医学介绍

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Background Medical treatment informed by Precision Medicine is becoming a standard practice for many diseases, and patients are curious about the consequences of genomic variants in their genome. However, most medical students’ understanding of Precision Medicine derives from classroom lectures. This format does little to foster an understanding for the potential and limitations of Precision Medicine. To close this gap, we implemented a hands-on Precision Medicine training program utilizing exome sequencing to prepare a clinical genetic report of cadavers studied in the anatomy lab. The program reinforces Precision Medicine related learning objectives for the Genetics curriculum. Methods Pre-embalmed blood samples and embalmed tissue were obtained from cadavers (donors) used in the anatomy lab. DNA was isolated and sequenced and illustrative genetic reports provided to the students. The reports were used to facilitate discussion with students on the implications of pathogenic genomic variants and the potential correlation of these variants in each “donor” with any anatomical anomalies identified during cadaver dissection. Results In 75% of cases, analysis of whole exome sequencing data identified a variant associated with increased risk for a disease/abnormal condition noted in the donor’s cause of death or in the students’ anatomical findings. This provided students with real-world examples of the potential relationship between genomic variants and disease risk. Our students also noted that diseases associated with 92% of the pathogenic variants identified were not related to the anatomical findings, demonstrating the limitations of Precision Medicine. Conclusion With this study, we have established protocols and classroom procedures incorporating hands-on Precision Medicine training in the medical student curriculum and a template for other medical educators interested in enhancing their Precision Medicine training program. The program engaged students in discovering variants that were associated with the pathophysiology of the cadaver they were studying, which led to more exposure and understanding of the potential risks and benefits of genomic medicine.
机译:背景技术精密医学所通知的医疗正成为许多疾病的标准做法,患者对基因组在基因组中的后果造成的患者。然而,大多数医学生对精密药物的理解得出课堂讲座。这种格式几乎没有促进理解精确药物的潜在和限制。为了缩短这种差距,我们利用Exome测序实施了一项动手的精密医学培训计划,以制备在解剖学实验室中研究的尸体的临床遗传报告。该计划强化了遗传课程的精确药物相关的学习目标。方法从解剖学实验室中使用的尸体(供体)获得预压缩血液样品和栓塞组织。将DNA分离和测序,并向学生提供的说明性遗传报告。该报告用于促进与学生讨论致病基因组变体的影响,以及每个“供体”中这些变体的潜在相关性与在尸体解剖中确定的任何解剖学异常。结果75%的病例,整体exome测序数据的分析确定了捐助者死亡原因或学生解剖结果中患病/异常状况的增加相关的变体。这为学生提供了具有基因组变体和疾病风险之间的潜在关系的实际示例。我们的学生还注意到,鉴定了鉴定的92%的致病变异有关的疾病与解剖结果无关,展示了精密药的局限性。结论本研究,我们建立了在医学学生课程中纳入实际医学培训的协议和课堂程序,以及有兴趣加强其精确医学培训计划的其他医疗教育工作者的模板。该计划从事学生发现与他们正在学习的尸体的病理生理学相关的变体,这导致更多地接触和理解基因组医学的潜在风险和益处。

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