Department of Biochemistry and Cell Biology, Geisel School of Medicine, Dartmouth College.
Department of Biochemistry and Cell Biology, Geisel School of Medicine, Dartmouth College;
J Vis Exp. 2024 Jun 28(208). doi: 10.3791/67086.
Animal models expand the scope of biomedical research, furthering our understanding of developmental, molecular, and cellular biology and enabling researchers to model human disease. Recording and tracking individual animals allows researchers to reduce the number of animals required for study and refine practices to improve animal wellbeing. Several well-documented methods exist for marking and tracking mammals, including ear punching and ear tags. However, methods for marking aquatic amphibian species are limited, with the existing resources being outdated, ineffective, or prohibitively costly. In this manuscript, we outline methods and best practices for marking Xenopus laevis with a rotary tattoo machine. Proper tattooing results in high-quality tattoos, making individuals easily distinguishable for researchers and posing minimal risk to animals' health. We also highlight the causes of poor-quality tattoos, which can result in tattoos that fade quickly and cause unnecessary harm to animals. This approach allows researchers and veterinarians to mark amphibians, enabling them to track biological replicates and transgenic lines and to keep accurate records of animal health.
动物模型拓展了生物医学研究的范围,使我们能够深入了解发育、分子和细胞生物学,并使研究人员能够模拟人类疾病。记录和跟踪个体动物可以减少研究所需的动物数量,并改进实践以提高动物福利。有几种经过充分记录的方法可用于标记和跟踪哺乳动物,包括耳打孔和耳标。然而,用于标记水生两栖动物物种的方法有限,现有的资源已经过时、无效或过于昂贵。在本文中,我们概述了使用旋转纹身机标记非洲爪蟾(Xenopus laevis)的方法和最佳实践。正确的纹身会产生高质量的纹身,使个体易于研究人员区分,并且对动物的健康造成的风险最小。我们还强调了导致纹身质量差的原因,这些原因可能导致纹身迅速褪色,并对动物造成不必要的伤害。这种方法使研究人员和兽医能够对两栖动物进行标记,从而能够跟踪生物重复和转基因系,并准确记录动物的健康状况。