| Literature DB >> 28706481 |
Jianfei Nao1, Hongzan Sun2, Qiushi Wang2, Shuang Ma1, Shuo Zhang1, Xiaoyu Dong1, Ying Ma1, Xiaoming Wang2, Dongming Zheng1.
Abstract
Many studies have shown that healthy elderly subjects and patients with Alzheimer's disease (AD) who carry the apolipoprotein E (ApoE) ε4 allele have worse cognitive function and more severe brain atrophy than non-carriers. However, it remains unclear whether this ApoE polymorphism leads to changes of cognition and brain morphology in healthy young adults. In this study, we used an established model to measure verbal episodic memory and core executive function (EF) components (response inhibition, working memory and task switching) in 32 ApoE ε4 carriers and 40 non-carriers between 20 years and 40 years of age. To do this, we carried out an adapted auditory verbal learning test and three computerized EF tasks. High-resolution head magnetic resonance scans were performed in all participants and voxel-based morphometry (VBM) was used for image processing and analysis. Multivariate analysis of variance (ANOVA) performed on memory measures showed that the overall verbal episodic memory of ApoE ε4 carriers was significantly worse than non-carriers (Wilk's λ = 4.884, P = 0.004). No significant differences were detected in overall EF between the two groups. Post hoc analyses revealed group differences in terms of immediate recall, recognition and task switching, which favored non-carriers. VBM analysis showed gray matter (GM) bilateral reductions in the medial and dorsolateral frontal, parietal and left temporal cortices in the carrier group relative to the non-carrier group, which were most significant in the bilateral anterior and middle cingulate gyri. However, these changes in GM volume were not directly associated with changes in cognitive function. Our data show that the ApoE ε4 allele is associated with poorer performance in verbal episodic memory and task switching, and a reduction in GM volume in healthy young adults, suggesting that the effects of ApoE ε4 upon cognition and brain morphology exist long before the possible occurrence of AD.Entities:
Keywords: apolipoprotein E; executive function; magnetic resonance imaging; memory; polymorphism
Year: 2017 PMID: 28706481 PMCID: PMC5489690 DOI: 10.3389/fnhum.2017.00346
Source DB: PubMed Journal: Front Hum Neurosci ISSN: 1662-5161 Impact factor: 3.169
Demographic characteristics and MoCA scores of ε4+ and ε4− groups.
| Group | ε4+ ( | ε4− ( | ||
|---|---|---|---|---|
| Sex (male/female) | 12/20 | 16/24 | 0.047 | 0.829 |
| Age, y | 27.5 (5.0) | 28.1 (5.3) | −0.487 | 0.628 |
| Education, y | 16.6 (2.7) | 16.9 (2.8) | −0.429 | 0.669 |
| Right-handedness | 30 | 38 | 0.053 | 0.818 |
| MoCA score | 29.5 (0.7) | 29.7 (0.5) | −1.432 | 0.158 |
Data represent the mean (standard deviation). MoCA, Montreal Cognitive Assessment.
Mean (and standard deviation) scores and group differences in memory and EF measures between the two groups.
| Task | Measure | Cohen’s | ||||
|---|---|---|---|---|---|---|
| Keep track task | Total score | 7.2 (1.8) | 7.4 (1.6) | −0.397 | 0.693 | 0.117 |
| Stop-signal task | Stop signal reaction time (ms) | 255.0 (55.5) | 239.5 (45.3) | 1.303 | 0.197 | 0.306 |
| More-odd shifting task | Switch cost (ms) | 230.9 (85.9) | 174.2 (102.8) | 2.501 | 0.015 | 0.599 |
| AVLT | Total immediate recall | 35.5 (8.3) | 39.8 (6.2) | −2.454 | 0.017 | 0.586 |
| Long delayed recall | 15.0 (4.1) | 16.1 (2.7) | −1.366 | 0.178 | 0.316 | |
| Recognition | 16.3 (2.6) | 18.0 (1.7) | −1.718 | 0.002 | 0.774 |
Key: EF, executive function; AVLT, Auditory Verbal Learning Test.
Figure 1Regions showing a significant reduction of gray matter (GM) in the ApoEε4+ group compared with the ApoEε4− group. (A) Statistical map threshold at p < 0.05 family-wise error (FWE) corrected for multiple comparisons and more than 10 voxels. (B) Statistical map threshold at p < 0.001 (uncorrected) and more than 10 voxels. The left side of the image represents the left hemisphere of the brain. Slice positions are indicated in Montreal Neurological Institute (MNI) coordinate z in the upper left corner of each slice. The MNI coordinates and anatomical descriptions are presented in detail in Table 3.
Atrophic brain regions in the ApoEε4+ group vs. the ApoEε4− group.
| Anatomical structure | MNI coordinates | Volume (mm3) | |||
|---|---|---|---|---|---|
| L/R anterior/middle cingulate gyrus (BA 24/23) | −2 | 19 | 26 | 2086 | 6.25 |
| R Precuneus (BA 7/31) | 15 | −71 | 35 | 820 | 4.70 |
| R Precuneus (BA 7) | 5 | −66 | 59 | 581 | 4.08 |
| L Supramarginal Gyrus (BA 40) | −53 | −47 | 30 | 196 | 4.12 |
| R Superior Frontal Gyrus (BA 10) | 26 | 53 | −3 | 250 | 3.79 |
| L Medial Frontal Gyrus (BA 9) | −7 | 40 | 23 | 51 | 3.60 |
| L Middle Occipital Gyrus (BA 18) | −21 | −93 | 6 | 114 | 3.61 |
| L Transverse Temporal Gyrus (BA 42) | −65 | −12 | 12 | 122 | 3.59 |
| L Inferior Frontal Gyrus (BA44) | −57 | 8 | 12 | 81 | 3.28 |
Statistical map threshold at different .