| Literature DB >> 31191441 |
Janik Goltermann1, Ronny Redlich1, Katharina Dohm1, Dario Zaremba1, Jonathan Repple1, Claas Kaehler1,2, Dominik Grotegerd1, Katharina Förster1, Susanne Meinert1, Verena Enneking1, Emily Schlaghecken1, Lara Fleischer1, Tim Hahn1, Harald Kugel3, Andreas Jansen4,5,6, Axel Krug4, Katharina Brosch4, Igor Nenadic4, Simon Schmitt4, Frederike Stein4, Tina Meller4, Dilara Yüksel4, Elena Fischer4, Marcella Rietschel7, Stephanie H Witt7, Andreas J Forstner8,9,10, Markus M Nöthen8, Tilo Kircher4, Anbupalam Thalamuthu11, Bernhard T Baune1,12,13, Udo Dannlowski1, Nils Opel1.
Abstract
Theoretical background: The Apolipoprotein E (APOE) ε4 genotype is known to be one of the strongest single-gene predictors for Alzheimer disease, which is characterized by widespread brain structural degeneration progressing along with cognitive impairment. The ε4 allele status has been associated with brain structural alterations and lower cognitive ability in non-demented subjects. However, it remains unclear to what extent the visuospatial cognitive domain is affected, from what age onward changes are detectable and if alterations may interact with cognitive deficits in major depressive disorder (MDD). The current work investigated the effect of APOE ε4 homozygosity on visuospatial working memory (vWM) capacity, and on hippocampal morphometry. Furthermore, potential moderating roles of age and MDD were assessed.Entities:
Keywords: Alzheimer; apolipoprotein E; cognitive deficits; hippocampus; major depression; structural MRI; visuospatial working memory
Year: 2019 PMID: 31191441 PMCID: PMC6545528 DOI: 10.3389/fneur.2019.00552
Source DB: PubMed Journal: Front Neurol ISSN: 1664-2295 Impact factor: 4.003
Figure 1Sample flowchart showing all data exclusion steps for both genotype groups.
Demographic characteristics of the final study sample.
| Male | 7 | 41.86 (15.25) | 7 | 41.71 (15.13) |
| Female | 5 | 35.40 (18.12) | 5 | 35.40 (18.12) |
| Total | 12 | 39.17 (16.03) | 12 | 39.08 (15.96) |
| Male | 8 | 24.50 (2.78) | 8 | 24.50 (2.78) |
| Female | 11 | 36.64 (12.49) | 11 | 36.64 (12.49) |
| Total | 19 | 31.53 (11.30) | 19 | 31.53 (11.30) |
Figure 2Mean Corsi block span capacity over APOE genotype and diagnosis groups. Error bars represent 95% confidence intervals.
Figure 3VBM whole brain results showing clusters with a positive correlation of gray matter density with Corsi span in the general linear model. Results are presented below an exploratory uncorrected significance threshold of p < 0.001 with a minimum cluster size of 20 voxels. Clusters are located in the left temporal inferior and fusiform gyrus and left hippocampus, and in the right parahippocampus, hippocampus, and fusiform gyrus.
Figure 4Mean hippocampal volume (A), and mean total intracranial volume (TIV) volume (B) differences over APOE genotypes. Depicted hippocampal volumes were calculated as mean volumes between left and right laterality. Error bars represent 95% confidence intervals. VBM results of the contrast that ε4 homozygotes have lower gray matter density than non-ε4 carriers are depicted at the bottom (C). Presented clusters correspond to the clusters described in Table 2.
Clusters above exploratory uncorrected significance threshold p < 0.001 with minimum voxel number of 20 for the contrast of lower gray matter density in homozygous APOE ε4 carriers.
| Supramarginal gyrus | 51 | −52 | −30 | 30 | 4.62 | 0.000 |
| Angular gyrus | 26 | 33 | −57 | 34 | 4.24 | 0.000 |
| Supramarginal gyrus | 119 | 48 | −40 | 42 | 3.74 | 0.000 |
| Precuneus | 20 | 6 | −58 | 68 | 3.70 | 0.000 |
| Superior frontal gyrus | 31 | 20 | 69 | 15 | 3.66 | 0.000 |
| Calcarine | 311 | −24 | −62 | 8 | 3.64 | 0.000 |
| Cerebellum | 46 | 2 | −50 | −58 | 3.40 | 0.000 |
| Middle temporal gyrus | 26 | −63 | −22 | 0 | 3.24 | 0.001 |
Uncorrected p-values of peak voxel differences are reported.