Febo Marcelo, Mahar Rohit, Rodriguez Nicholas A, Buraima Joy, Pompilus Marjory, Pinto Aeja M, Grudny Matteo M, Bruijnzeel Adriaan W, Merritt Matthew E
Department of Psychiatry, McKnight Brain Institute, University of Florida College of Medicine, Gainesville, FL, United States.
Department of Chemistry, Hemvati Nandan Bahuguna Garhwal University (A Central University), Srinagar Garhwal, Uttarakhand, India.
Front Aging Neurosci. 2024 Mar 8;16:1356086. doi: 10.3389/fnagi.2024.1356086. eCollection 2024.
The differential expression of emotional reactivity from early to late adulthood may involve maturation of prefrontal cortical responses to negative valence stimuli. In mice, age-related changes in affective behaviors have been reported, but the functional neural circuitry warrants further investigation.
We assessed age variations in affective behaviors and functional connectivity in male and female C57BL6/J mice. Mice aged 10, 30 and 60 weeks (wo) were tested over 8 weeks for open field activity, sucrose preference, social interactions, fear conditioning, and functional neuroimaging. Prefrontal cortical and hippocampal tissues were excised for metabolomics.
Our results indicate that young and old mice differ significantly in affective behavioral, functional connectome and prefrontal cortical-hippocampal metabolome. Young mice show a greater responsivity to novel environmental and social stimuli compared to older mice. Conversely, late middle-aged mice (60wo group) display variable patterns of fear conditioning and during re-testing in a modified context. Functional connectivity between a temporal cortical/auditory cortex network and subregions of the anterior cingulate cortex and ventral hippocampus, and a greater network modularity and assortative mixing of nodes was stronger in young versus older adult mice. Metabolome analyses identified differences in several essential amino acids between 10wo mice and the other age groups.
The results support differential expression of 'emotionality' across distinct stages of the mouse lifespan involving greater prefrontal-hippocampal connectivity and neurochemistry.
从成年早期到晚期,情绪反应性的差异表达可能涉及前额叶皮质对负性价刺激反应的成熟。在小鼠中,已经报道了与年龄相关的情感行为变化,但功能性神经回路仍需进一步研究。
我们评估了雄性和雌性C57BL6/J小鼠在情感行为和功能连接性方面的年龄差异。对10周、30周和60周龄的小鼠进行了为期8周的旷场活动、蔗糖偏好、社交互动、恐惧条件反射和功能性神经成像测试。切除前额叶皮质和海马组织进行代谢组学分析。
我们的结果表明,年轻和年老小鼠在情感行为、功能连接组和前额叶皮质-海马代谢组方面存在显著差异。与年老小鼠相比,年轻小鼠对新环境和社交刺激表现出更大的反应性。相反,中年晚期小鼠(60周龄组)在恐惧条件反射和在改良环境中重新测试时表现出不同的模式。颞叶皮质/听觉皮质网络与前扣带回皮质和腹侧海马亚区域之间的功能连接,以及年轻成年小鼠与老年成年小鼠相比更强的网络模块性和节点的 assortative 混合。代谢组学分析确定了10周龄小鼠与其他年龄组之间几种必需氨基酸的差异。
结果支持了小鼠寿命不同阶段“情绪性”的差异表达,涉及更强的前额叶-海马连接性和神经化学。