Marinesco bodies and substantia nigra neuron density in Parkinson's disease

R D Abbott1,2, J S Nelson2, G W Ross2,3,4,5

  • 1Center for Epidemiologic Research in Asia, Shiga University of Medical Science, Otsu, Japan.

Abstract

Insights

Marinesco bodies (MB) are less frequent in Parkinson's disease (PD) and decrease with PD duration. This study investigated the association between MB and substantia nigra neuron density in aging men with PD.

Area of Science:

  • Neuroscience
  • Neuropathology

Background:

  • Marinesco bodies (MB) are intranuclear inclusions found in substantia nigra (SN) neurons.
  • MB frequency increases with normal aging and is elevated in neurodegenerative disorders like Alzheimer's disease and dementia with Lewy bodies.
  • MB presence coincides with SN neuron cell death, but their role in this process remains unclear.

Purpose of the Study:

  • To investigate the association between Marinesco bodies (MB) and substantia nigra (SN) neuron density in Parkinson's disease (PD).
  • To examine the relationship between MB frequency, PD duration, and SN neuron loss in aging men.

Main Methods:

  • Analysis of SN transverse sections from 131 autopsied men aged 73-99 years.
  • Quantification of Marinesco body (MB) frequency and substantia nigra (SN) neuron density.
  • Correlation of MB frequency and neuron density with Parkinson's disease status and duration.

Main Results:

  • Marinesco body (MB) frequency was significantly lower in individuals with Parkinson's disease (PD) compared to those without (2.3% vs. 6.6%).
  • MB frequency declined further with increasing PD duration.
  • Reduced SN neuron density, particularly in the ventrolateral quadrant, was observed when MB frequency was low, a pattern unique to PD.

Conclusions:

  • Marinesco body (MB) frequency is low in Parkinson's disease (PD) and decreases with disease progression.
  • The specific relationship between MB and PD pathogenesis requires further investigation.
  • MB may serve as a potential biomarker or indicator in understanding PD processes.

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