Bibliographic Details
Title: |
LRRK2 G2019S Mutated iPSC-Derived Endothelial Cells Exhibit Increased α-Synuclein, Mitochondrial Impairment, and Altered Inflammatory Responses. |
Authors: |
Sonninen, Tuuli-Maria, Peltonen, Sanni, Niskanen, Jonna, Hämäläinen, Riikka H., Koistinaho, Jari, Lehtonen, Šárka |
Source: |
International Journal of Molecular Sciences; Dec2024, Vol. 25 Issue 23, p12874, 21p |
Subject Terms: |
PARKINSON'S disease, ENDOTHELIAL cells, WASTE products, CENTRAL nervous system, DARDARIN |
Abstract: |
The blood–brain barrier (BBB) serves as an interface between the bloodstream and the central nervous system. It limits the movement of molecules and immune cells, regulates the entry of nutrients, and removes waste products from the brain. The dysfunction of the BBB has been identified in Parkinson's disease (PD) but the role of the BBB and endothelial cells (ECs) has not been well studied. LRRK2 G2019S mutation is the most common PD causing mutation with similar pathophysiology than in sporadic cases. How the mutation affects EC function has not been investigated previously in patient cells. In the study, we used iPSC-derived ECs from PD patients with the LRRK2 mutation as well as cells from healthy individuals. We report that PD patients' ECs have higher levels of α-synuclein and an decreased maximal and ATP-linked respiration and altered response to inflammatory exposure, especially to TNFα. In addition, transcriptomic analysis showed upregulation of fatty-acid-synthesis-related pathways in PD patients' ECs and the downregulation of lncRNA MEG3, both of which have been associated with PD. Altogether, PD patients' ECs manifest some of the PD-related hallmarks and are likely to contribute to the pathogenesis of PD. [ABSTRACT FROM AUTHOR] |
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Database: |
Complementary Index |
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