Buck Institute for Research On Aging, 8001 Redwood Blvd, Novato, CA, 94949, USA.
Astera Institute, Berkeley, CA, 94710, USA.
Geroscience. 2024 Oct;46(5):4647-4656. doi: 10.1007/s11357-024-01175-3. Epub 2024 Jun 14.
Translational research is commonly performed in the C57B6/J mouse strain, chosen for its genetic homogeneity and phenotypic uniformity. Here, we evaluate the suitability of the white-footed deer mouse (Peromyscus leucopus) as a model organism for aging research, offering a comparative analysis against C57B6/J and diversity outbred (DO) Mus musculus strains. Our study includes comparisons of body composition, skeletal muscle function, and cardiovascular parameters, shedding light on potential applications and limitations of P. leucopus in aging studies. Notably, P. leucopus exhibits distinct body composition characteristics, emphasizing reduced muscle force exertion and a unique metabolism, particularly in fat mass. Cardiovascular assessments showed changes in arterial stiffness, challenging conventional assumptions and highlighting the need for a nuanced interpretation of aging-related phenotypes. Our study also highlights inherent challenges associated with maintaining and phenotyping P. leucopus cohorts. Behavioral considerations, including anxiety-induced responses during handling and phenotyping assessment, pose obstacles in acquiring meaningful data. Moreover, the unique anatomy of P. leucopus necessitates careful adaptation of protocols designed for Mus musculus. While showcasing potential benefits, further extensive analyses across broader age ranges and larger cohorts are necessary to establish the reliability of P. leucopus as a robust and translatable model for aging studies.
转化研究通常在 C57B6/J 小鼠品系中进行,选择该品系是因为其遗传同质性和表型均一性。在这里,我们评估白足鼠(Peromyscus leucopus)作为衰老研究模型生物的适宜性,与 C57B6/J 和多样性近交系(DO)Mus musculus 品系进行了比较分析。我们的研究包括对身体成分、骨骼肌功能和心血管参数的比较,揭示了 P. leucopus 在衰老研究中的潜在应用和局限性。值得注意的是,P. leucopus 表现出独特的身体成分特征,强调肌肉力量的降低和独特的代谢,特别是在脂肪量方面。心血管评估显示动脉僵硬的变化,挑战了传统的假设,并强调需要对与衰老相关的表型进行细致的解释。我们的研究还强调了维持和表型分析 P. leucopus 群体所固有的挑战。行为方面的考虑因素,包括在处理和表型评估期间的焦虑反应,在获取有意义的数据方面构成了障碍。此外,P. leucopus 的独特解剖结构需要仔细调整为 Mus musculus 设计的方案。虽然展示了潜在的益处,但需要在更广泛的年龄范围和更大的群体中进行进一步的广泛分析,以确立 P. leucopus 作为衰老研究可靠和可转化模型的可靠性。