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A General Method for Evaluating Deep Brain Stimulation Effects on Intravenous Methamphetamine Self-Administration
Published on: January 22, 2016
Neuro-immune communication at the core of craving-associated brain structural network reconfiguration in
Yanyao Du1, Jiaqi Zhang2, Dan Cao3
1Department of Radiology, Second Xiangya Hospital of Central South University, Changsha, Hunan 410011, PR China.
Abstract:
Methamphetamine (MA) use disorder is a chronic neurotoxic brain disease characterized by a high risk of relapse driven by intense cravings. However, the neurobiological signatures of cravings remain unclear, limiting the effectiveness of various treatment methods. Diffusion MRI (dMRI) scans from 62 MA users and 57 healthy controls (HC) were used in this study. The MA users were longitudinally followed up during their period of long-term abstinence (duration of long-term abstinence: 347.52±99.25 days). We systematically quantified the control ability of each brain region for craving-associated state transitions using network control theory from a causal perspective. Craving-associated structural alterations (CSA) were investigated through multivariate group comparisons and biological relevance analysis. The neural mechanisms underlying CSA were elucidated using transcriptomic and neurochemical analyses. We observed that long-term abstinence-induced structural alterations significantly influenced the state transition energy involved in the cognitive control response to external information, which correlated with changes in craving scores (r ∼ 0.35, P <0.01). Our causal network analysis further supported the crucial role of the prefrontal cortex (PFC) in craving mechanisms. Notably, while the PFC is central to the craving, the CSAs were distributed widely across multiple brain regions (PFDR<0.05), with strong alterations in somatomotor regions (PFDR<0.05) and moderate alterations in high-level association networks (PFDR<0.05). Additionally, transcriptomic, chemical compounds, cell-type analyses, and molecular imaging collectively highlight the influence of neuro-immune communication on human craving modulation. Our results offer an integrative, multi-scale perspective on unraveling the neural underpinnings of craving and suggest that neuro-immune signaling may be a promising target for future human addiction therapeutics.
Insights
Long-term abstinence from methamphetamine alters brain structure, impacting cognitive control and craving. Neuro-immune signaling emerges as a key factor in modulating addiction cravings.
Area of Science:
- Neuroscience
- Addiction Research
- Brain Imaging
Background:
- Methamphetamine (MA) use disorder is a chronic brain disease with high relapse rates due to intense cravings.
- The neurobiological basis of these cravings is not fully understood, hindering effective treatment development.
Purpose of the Study:
- To investigate the neurobiological signatures of cravings in individuals with MA use disorder.
- To explore the role of structural brain alterations during long-term abstinence in craving mechanisms.
Main Methods:
- Diffusion MRI (dMRI) scans were analyzed from 62 MA users and 57 healthy controls.
- Network control theory was applied to quantify regional brain control ability for craving-associated state transitions.
- Multivariate group comparisons, transcriptomic, and neurochemical analyses elucidated neural mechanisms.
Main Results:
- Long-term abstinence induced structural alterations affecting cognitive control and state transitions, correlating with reduced craving scores.
- The prefrontal cortex (PFC) plays a central role in craving, with widespread craving-associated structural alterations (CSA) observed in somatomotor and association networks.
- Neuro-immune communication pathways were identified as significant modulators of craving.
Conclusions:
- Structural brain changes during abstinence influence cognitive control over cravings.
- The findings highlight the PFC's critical role and widespread network involvement in MA cravings.
- Neuro-immune signaling presents a potential therapeutic target for methamphetamine use disorder.
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