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Alterations of Brain Structural Network Connectivity in Type 2 Diabetes Mellitus Patients With Mild Cognitive
Chang Li1,2, Jingna Zhang3, Mingguo Qiu3
1Department of Radiology, Daping Hospital, Army Medical University, Chongqing, China.
Abstract:
Patients with type 2 diabetes mellitus (T2DM) are highly susceptible to developing dementia, especially for those with mild cognitive impairment (MCI), but its underlying cause is still unclear. This study aims to investigate the early detection of white matter structural network changes in T2DM patients with MCI and assess the relationship between cognitive impairment and structural network alterations in T2DM patients. In this study, we performed a battery of neuropsychological tests and diffusion tensor MRI in 30 T2MD-MCI patients, 30 T2DM patients with normal cognition (T2DM-NC) and 30 age-, sex-, and education-matched healthy control (HC) individuals. Cognitive performance exhibited obvious differences among the three groups. The structural network was significantly disrupted in both global and regional levels in T2DM patients. The T2DM-MCI group showed more severe impairment of global network efficiency, and lower nodal efficiency and fewer connections within multiple regions like the limbic system, basal ganglia, and several cortical structures. Moreover, a subnetwork impaired in T2DM-MCI patients was characterized by cortical-limbic fibers, and commissural fibers and pathways within the frontal, temporal, and occipital lobes. These altered global and nodal parameters were significantly correlated with cognitive function in T2DM-MCI patients. In particular, executive dysfunction and working memory impairment in T2DM-MCI patients correlated with nodal efficiency in the right opercular part and triangular part of the inferior frontal gyrus, which indicated that white matter disruption in these regions may act as potential biomarkers for T2DM-associated MCI detection. Our investigation provides a novel insight into the neuropathological effects of white matter network disruption on cognition impairments induced by T2DM.
Insights
Type 2 diabetes mellitus (T2DM) patients with mild cognitive impairment (MCI) show disrupted white matter networks. These white matter changes correlate with cognitive decline, offering potential biomarkers for early detection in T2DM-MCI.
Area of Science:
- Neuroscience
- Medical Imaging
- Endocrinology
Background:
- Type 2 diabetes mellitus (T2DM) significantly increases dementia risk, particularly in individuals with mild cognitive impairment (MCI).
- The precise mechanisms linking T2DM, MCI, and cognitive decline remain incompletely understood.
- Early detection of neurological changes in T2DM patients is crucial for timely intervention.
Purpose of the Study:
- To investigate early white matter structural network alterations in T2DM patients with MCI.
- To assess the relationship between cognitive impairment and these structural network changes in T2DM.
- To identify potential neuroimaging biomarkers for T2DM-associated MCI.
Main Methods:
- Employed diffusion tensor MRI and comprehensive neuropsychological tests.
- Compared 30 T2DM patients with MCI (T2DM-MCI), 30 T2DM patients with normal cognition (T2DM-NC), and 30 healthy controls (HC).
- Analyzed global and regional white matter network efficiency and connectivity.
Main Results:
- Significant white matter structural network disruptions were observed in T2DM patients at both global and regional levels.
- T2DM-MCI patients exhibited more severe global network inefficiency, reduced nodal efficiency, and fewer connections in key brain regions (limbic system, basal ganglia, cortex).
- Impaired subnetworks involved cortical-limbic and commissural fibers; nodal efficiency in specific frontal regions correlated with executive dysfunction and working memory deficits.
Conclusions:
- White matter network disruption is a key neuropathological feature in T2DM-associated MCI.
- Alterations in specific white matter pathways, particularly in the frontal lobe, may serve as early biomarkers for T2DM-MCI.
- This study provides novel insights into the link between T2DM, white matter integrity, and cognitive impairment.
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