4.6 Article

Parkinson's disease patient-specific neuronal networks carrying the LRRK2 G2019S mutation unveil early functional alterations that predate neurodegeneration

Journal

NPJ PARKINSONS DISEASE
Volume 7, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41531-021-00198-3

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Funding

  1. European Research Council-ERC [2012-StG-311736-PD-HUMMODEL]
  2. European Union [713140]
  3. Spanish Ministry of Economy and Competitiveness-MINECO [RTI2018-095377-B-100, FIS2016-78507-C2-2-P, PID2019-108842GB-C21]
  4. Spanish Ministry of Economy and Competitiveness-MINECO/AEI/FEDER, UE [BFU2016-80870-P]
  5. Instituto de Salud Carlos III-ISCIII/FEDER [RD16/0011/0024, RD16/0011/0025]
  6. AGAUR [2017-SGR-899, 2017-SGR1061]
  7. CERCA Program/Generalitat de Catalunya
  8. Beatriu de Pinos fellowship from the Agency for Management of University and Research Grants (AGAUR) of the Government of Catalonia [2017 BP 00133]
  9. Spanish Ministry of Economy and Competitiveness (MINECO) [BES-2017-080579]
  10. Spanish Economy and Competitiveness-MINECO [BES2014-069603]
  11. Spanish Ministry of Economy and Competitiveness [AEI/10.13039/501100011033 (PID2019108792GB-I00)]

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This study reveals that early dysfunction in neuronal networks in Parkinson’s disease may initiate downstream degenerative pathways before dopamine neuron loss, providing a potential window of opportunity for pre-symptomatic assessment of chronic degenerative diseases.
A deeper understanding of early disease mechanisms occurring in Parkinson's disease (PD) is needed to reveal restorative targets. Here we report that human induced pluripotent stem cell (iPSC)-derived dopaminergic neurons (DAn) obtained from healthy individuals or patients harboring LRRK2 PD-causing mutation can create highly complex networks with evident signs of functional maturation over time. Compared to control neuronal networks, LRRK2 PD patients' networks displayed an elevated bursting behavior, in the absence of neurodegeneration. By combining functional calcium imaging, biophysical modeling, and DAn-lineage tracing, we found a decrease in DAn neurite density that triggered overall functional alterations in PD neuronal networks. Our data implicate early dysfunction as a prime focus that may contribute to the initiation of downstream degenerative pathways preceding DAn loss in PD, highlighting a potential window of opportunity for pre-symptomatic assessment of chronic degenerative diseases.

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