Walter Sophia, Baumgarten Patricia, Hegemann Niklas, Häseli Steffen P, Deubel Stefanie, Jelleschitz Julia, Höhn Annika, Berndt Nikolaus, Kuebler Wolfgang M, Grune Jana, Ott Christiane
Molecular Toxicology, German Institute of Human Nutrition Potsdam-Rehbruecke (DIfE), Nuthetal, Germany.
TraceAge-DFG Research Unit On Interactions of Essential Trace Elements in Healthy and Diseased Elderly, Potsdam, Germany.
Geroscience. 2025 Jan 30. doi: 10.1007/s11357-025-01543-7.
Research in aging often refers to animal models, particularly C57BL/6J (B6J) mice, considered gold standard. However, B6J mice are distributed by different suppliers, which results in divers substrains exhibiting notable phenotypic differences. To ensure a suitable phenotype of cardiac aging, we performed heart analyses of young (5 months) and old B6J mice (24 months) from two substrains: B6JRj (Janvier) and B6JCrl mice (Charles River). In hearts of both substrains, myocardial fibrosis increased with age; however, only in old B6JRj mice cardiac hypertrophy associated with a decreased ejection fraction was observed. Gene set enrichment analysis in heart tissue using proteomic data revealed different age-associated pathway changes between the substrains, especially in oxidative phosphorylation. Functional assessment of isolated cardiomyocytes verified cardiac impairment during aging in B6JRj mice. Overall, results demonstrate that cardiac aging manifests as a moderate systolic dysfunction in B6JRj mice, while B6JCrl mice display no functional changes with age.
衰老研究通常涉及动物模型,尤其是被视为金标准的C57BL/6J(B6J)小鼠。然而,B6J小鼠由不同供应商提供,这导致不同亚系表现出显著的表型差异。为确保心脏衰老的合适表型,我们对来自两个亚系的年轻(5个月)和老年B6J小鼠(24个月)进行了心脏分析:B6JRj(Janvier)和B6JCrl小鼠(Charles River)。在两个亚系的心脏中,心肌纤维化均随年龄增加;然而,仅在老年B6JRj小鼠中观察到与射血分数降低相关的心脏肥大。使用蛋白质组学数据对心脏组织进行基因集富集分析发现,亚系之间存在不同的年龄相关通路变化,尤其是在氧化磷酸化方面。对分离的心肌细胞进行功能评估证实了B6JRj小鼠衰老过程中的心脏功能损害。总体而言,结果表明,心脏衰老在B6JRj小鼠中表现为中度收缩功能障碍,而B6JCrl小鼠未显示出随年龄增长的功能变化。