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Kurzawa-Akanbi, M.

Publications and source records attributed to Kurzawa-Akanbi, M..

2 recordsLinked to original sources

Oxidative Stress Susceptibility, Complement Dysregulation, and Metabolic Reprogramming in CFH Y402H Patient-Derived Choriocapillaris Endothelial Cells

Age-related macular degeneration (AMD) is a leading cause of central vision loss. Immunofluorescence and gene expression studies in human donor eyes have shown that choriocapillaris endothelial cells (CECs) are lost before retinal pigment epithelium (RPE) degeneration, leaving extracellular matrix-filled empty lumens known as "ghost vessels." To investigate disease mechanisms, we generated CECs from patient-specific induced pluripotent stem cells (iPSCs) carrying the high-risk CFH Y402H variant and CRISPR-Cas9-corrected isogenic controls. The iPSC-derived CECs expressed canonical endothelial markers, formed fenestrations, maintained barrier function, and assembled capillary-like structures. Although baseline metabolism was preserved, Y402H CECs showed heightened sensitivity to hydroquinone-induced oxidative stress, with increased cytotoxicity and deposition of the complement membrane attack complex (C5b-9). RNA sequencing revealed oxidative stress-driven upregulation of lipid biosynthesis, mTORC signalling, endothelial-to-mesenchymal transition, and angiogenic pathways, alongside an imbalance in the complement pathway. These findings demonstrate that the CFH Y402H polymorphism increases CEC vulnerability to environmental stress, linking complement dysregulation and metabolic reprogramming to choriocapillaris dysfunction in AMD and highlighting CECs as a potential therapeutic target.

Cell Biology↗

Aging-associated endo-lysosomal dysfunction drives inflammaging and neurodegeneration through the STING-IFN-I axis

All animals age. However, aging is a heterogeneous process and individual organisms age differently. Moreover, within the same organism, cells or organs do not age at the same time or speed. For instance, although neurodegeneration is a key trait of aging, neurological symptoms normally manifest long after multiple indicators of aging in peripheral tissues. The genetic determinants of aging remain poorly understood. Mutations in leucine-rich repeat kinase 2 (LRRK2) are major genetic risk factors for Parkinsons disease (PD). By analyzing PD patients and mice with LRRK2 gain of function mutation (LRRK2GoF), we demonstrate that PD is an accelerated aging disease characterized by systemic low-grade STING-dependent inflammation (inflammaging) that first manifests in the periphery then disrupts the blood brain barrier and progresses to the brain resulting in neurodegeneration. Mechanistically, we demonstrate that a primary consequence of aging or Lrrk2GoF is endolysosomal decline. This results in the cytosolic build-up of extraneous self-DNA and subsequent shedding of DNA-containing extracellular vesicles thereby triggering the cGAS- STING pathway cell-intrinsically and intercellularly in distant host cells. This study unveils the cGAS-STING pathway and LRRK2GoF as key determinants and potential targets for preventive or therapeutic strategies against accelerated aging, inflammaging and neurodegeneration.

immunology↗