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Deep Brain Stimulation For Substance Use Disorder: A Systematic Review And Meta-Analysis, Nour Shaheen, Ahmed Shaheen, Can Sarica, Arun Singh, Mario Zanaty, Karim Johari, Andrew Yang, Theresa Zesiewicz, Brian Dalm, Yarema Bezchlibnyk, Andres M Lozano, Oliver Flouty Aug 2023

Deep Brain Stimulation For Substance Use Disorder: A Systematic Review And Meta-Analysis, Nour Shaheen, Ahmed Shaheen, Can Sarica, Arun Singh, Mario Zanaty, Karim Johari, Andrew Yang, Theresa Zesiewicz, Brian Dalm, Yarema Bezchlibnyk, Andres M Lozano, Oliver Flouty

Department of Neurosurgery Faculty Papers

OBJECTIVE: Substance use disorder (SUD) is a significant public health issue with a high mortality rate. Deep brain stimulation (DBS) has shown promising results in treating SUD in certain cases. In this study, we conducted a meta-analysis to evaluate the efficacy of DBS in the treatment of SUD and reduction of relapse rates.

METHODS: We performed a thorough and methodical search of the existing scientific literature, adhering to the PRISMA guidelines, to identify 16 original studies that fulfilled our inclusion criteria. We used the evidence levels recommended by the Oxford Centre for Evidence-Based Medicine to assess bias. The R version …


Single-Cell Glia And Neuron Gene Expression In The Central Amygdala In Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis, Sean J. O'Sullivan, Evangelia Malahias, James Park, Ankita Srivastava, Beverly A.S. Reyes, Jonathan Gorky, Rajanikanth Vadigepalli, Elisabeth J. Van Bockstaele, James S. Schwaber Jul 2019

Single-Cell Glia And Neuron Gene Expression In The Central Amygdala In Opioid Withdrawal Suggests Inflammation With Correlated Gut Dysbiosis, Sean J. O'Sullivan, Evangelia Malahias, James Park, Ankita Srivastava, Beverly A.S. Reyes, Jonathan Gorky, Rajanikanth Vadigepalli, Elisabeth J. Van Bockstaele, James S. Schwaber

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Drug-seeking in opioid dependence is due in part to the severe negative emotion associated with the withdrawal syndrome. It is well-established that negative emotional states emerge from activity in the amygdala. More recently, gut microflora have been shown to contribute substantially to such emotions. We measured gene expression in single glia and neurons gathered from the amygdala using laser capture microdissection and simultaneously measured gut microflora in morphine-dependent and withdrawn rats to investigate drivers of negative emotion in opioid withdrawal. We found that neuroinflammatory genes, notably Tnf, were upregulated in the withdrawal condition and that astrocytes, in particular, were highly …