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April 24, 2026Brain Communications0 citationsOpen Access

Lower synaptic density in mood circuitry underlies depression in Parkinson’s disease

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SCSalih CayirMNMika NaganawaTVTommaso Volpi

Key Points

  • This research aims to understand how lower synaptic density in mood-related brain areas contributes to depression in Parkinson’s disease.
  • Used PET imaging with [11C]UCB-J to assess synaptic density in different groups: PD with depression, PD without depression, and healthy controls.
  • Compared the binding potential in mood circuitry across the groups.
  • Evaluated correlations between synaptic density and symptom severity in all PD participants.
  • Participants with depression showed significantly lower synaptic density in the dorsolateral prefrontal cortex, anterior cingulate cortex, amygdala, and hippocampus.
  • Negative correlations were found between synaptic density and severity of depressive symptoms.
  • Findings provide in vivo evidence that supports the link between synaptic density and mood disorders in Parkinson’s disease.

Abstract

Abstract Depression in Parkinson’s disease (PD) is often reported as being more debilitating than the motor symptoms and has been shown to accelerate disease progression. Identifying its underlying neurobiology is crucial in the discovery of mechanism-informed treatments. We hypothesize that lower synaptic density in mood circuitry drives symptoms of depression in PD. To test this hypothesis, we used PET imaging and 11CUCB-J - a radiotracer that binds to synaptic vesicle protein 2A (SV2A) to image synaptic density across patients with PD and depressive symptoms (PDd; n=10), PD patients without depressive symptoms (PDnd; n=20) and healthy controls (HCs; n=18). The primary outcome was binding potential (BPND) in mood circuitry. Participants with PDd exhibited significantly lower synaptic density compared to HC and PDnd in the dorsolateral prefrontal cortex (dlPFC) (-22.0%, p 0.001; -19.9%, p =0.002), anterior cingulate cortex (ACC) (-27.9%, p 0.001; -24.0%, p =0.002), amygdala (-25.1%, p 0.001; -18.9%, p =0.006), and hippocampus (-28.1%, p 0.001; -20.3%, p =0.003). Synaptic density was significantly and negatively correlated with the severity of depressive symptoms across all participants with PD (n=30) in the dlPFC (r=-0.59, p =0.002), ACC (r=-0.68, p 0.001), amygdala (r=-0.53, p =0.004), and hippocampus (r=-0.56, p =0.003). These findings provide the first in vivo evidence that lower synaptic density in mood-related brain regions may contribute to depression in PD. If confirmed, they would support the evaluation of interventions that target synaptic loss/induce synaptic plasticity in individuals with PD and comorbid depression.

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Cite This Study

Cayir et al. (2026) studied this question.

synapsesocial.com/papers/69eb099a553a5433e34b3fa1https://doi.org/10.1093/braincomms/fcag136
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