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Sheppard, M.

Publications and source records attributed to Sheppard, M..

3 recordsLinked to original sources

Early life stress alters lifespan trajectories of amygdala development: a cross-species model of amygdala burnout

Early-life stress is associated with alterations in amygdala volume, but findings vary across studies and species. Rodent models typically report increased amygdala volume, whereas human studies often find reductions or mixed effects. We propose the amygdala burnout hypothesis, which suggests that early-life stress alters amygdala developmental trajectories, producing initial volumetric increases that are followed by reductions later in life. To test this hypothesis, we examined amygdala development across rodent and human cohorts spanning adolescence to older adulthood. In rodents, chronic stress was associated with increased amygdala nuclei volumes during adolescence. Comparable increases were observed in adolescents from the IMAGEN consortium, with evidence of a dose-dependent association between childhood stress and amygdala developmental trajectories. In contrast, analyses of older adults from the UK Biobank revealed reduced bilateral amygdala volume associated with early-life stress. Together, these findings support a developmental model that reconciles previously conflicting observations across species and age groups. Early-life stress is associated with alterations in amygdala volume, but findings vary across studies and species. Rodent models typically report increased amygdala volume, whereas human studies often find reductions or mixed effects. We propose the amygdala burnout hypothesis, which suggests that early-life stress alters amygdala developmental trajectories, producing initial volumetric increases that are followed by reductions later in life. To test this hypothesis, we examined amygdala development across rodent and human cohorts spanning adolescence to older adulthood. In rodents, chronic stress was associated with increased amygdala nuclei volumes during adolescence. Comparable increases were observed in adolescents from the IMAGEN consortium, with evidence of a dose-dependent association between childhood stress and amygdala developmental trajectories. In contrast, analyses of older adults from the UK Biobank revealed reduced bilateral amygdala volume associated with early-life stress. Together, these findings support a developmental model that reconciles previously conflicting observations across species and age groups.

neuroscience↗

Sex-specific associations of childhood adversity with frontostriatal network organization and anhedonia in young adulthood

IntroductionAnhedonia is a transdiagnostic psychiatric symptom linked to increased functional connectivity between the prefrontal cortex and striatum. Here, we examined how dimensions of early adversity contribute to this profile of connectivity. MethodsIn a European community sample of young adults (IMAGEN), we examined cross-sectional (n=613) and longitudinal (n=332) associations of adversity dimensions with resting-state fMRI-derived connectivity. We selected 10 ROIs from anhedonia literature, defined in the functional images as 4mm-radius spheres. We then used network-based regression models to identify clusters of ROI-ROI connections associated with threat and deprivation scores, using interaction terms to examine sex and age-specific associations. We also examined associations between adversity and anhedonia, operationalized using factor analysis of six items from self-report surveys. ResultsAt age 18-22, we identified sex-specific associations between deprivation and connectivity for a cluster of 9 ROI-ROI connections (p-FWE=0.038), primarily involving the nucleus accumbens. Specifically, we observed positive associations between deprivation and connectivity in males, and negative associations in females. In the longitudinal analysis, negative deprivation associations in females attenuated with age for a cluster of 14 connections (p-FWE=0.009). A cluster of 17 connections also had initial positive associations with threat in females that attenuated with age (p-FWE=0.008). No such longitudinal changes were observed in males. Higher deprivation was linked to increased later anhedonia in males but not females (p=0.026). ConclusionCompared to females, young adult males may be more vulnerable to developing anhedonia after experiencing deprivation in childhood. Dimensions of early adversity are linked to distinct pathways of frontostriatal development.

neuroscience↗

Angiotensin II Induces Abdominal Aortic Branch Aneurysms in Fibrillin-1C1041G/+ Mice

BackgroundMice harboring a missense variant (C1041G) of fibrillin-1 (Fbn1) have been used extensively for aortopathy research, but do not mimic all facets of the human disease. The role of increased angiotensin II (AngII) or blood pressure in determining the arterial phenotype of these mice remains incompletely defined. The purpose of this study was to determine whether AngII, either directly or indirectly through increased blood pressure, promotes pathology in the proximal thoracic aorta and beyond. MethodsFbn1+/+ and Fbn1C1041G/+ littermates were infused with either AngII or norepinephrine (NE) via subcutaneously implanted osmotic pumps. Micro computed tomography (microCT) was used to visualize vascular pathologies. Maximal arterial dimensions were measured using in situ or microCT images. ResultsAngII infusion dramatically augmented aortopathy in Fbn1C1041G/+ mice. Aortic dissection was visible within 3 days of AngII infusion. Over 50% of male Fbn1C1041G/+ mice died during AngII infusion, primarily due to aortic rupture in either the thoracic or abdominal regions. Surviving males had increased ascending and suprarenal aortic diameters and developed pathological lesions at the celiac and superior mesenteric branches of the abdominal aorta. Female mice had a much lower incidence of death but had increased ascending aortic and branch diameters. Although NE infusion also increased systolic blood pressure, it did not affect mortality or enlarge aortic or branch diameters in Fbn1C1041G/+ mice. MicroCT identified novel pathological changes during AngII infusion, including development of aortic branch aneurysms in the celiac and superior mesenteric arteries; however, the maximal diameters of the adjacent suprarenal aorta showed only modest increases in male Fbn1C1041G/+ mice. ConclusionAngII exacerbated aortic pathology in Fbn1C1041G/+ mice. It also promoted development of pathologies at aortic branch points, including the celiac and superior mesenteric arteries.

pathology↗