Alzheimer & Parkinson
Mitochondrial accumulation and lysosomal dysfunction result in mitochondrial plaques in Alzheimer's disease
Dysfunctional mitophagy is proposed as a key component of Alzheimer's disease (AD) pathology, yet direct in vivo evidence and mechanistic insights are still lacking. Here we show that AD model mice expressing a mitophagy reporter (APP/PSEN1/mt-Keima) develop large accumulation of acidic and neutral mitochondria within neuronal processes that form a previously unrecognized pathological structure termed mitochondrial plaques (MPs). The development of MPs is driven by abnormal mitochondrial buildup...
Shared striatal neurons exhibit context-specific dynamics for internally and externally driven actions
Animals can initiate movements either in response to external cues or from internal drive, yet how the brain flexibly supports both remains unclear. Disorders such as Parkinson's disease disrupt these modes differently, suggesting distinct underlying mechanisms. These differences could arise from specialized circuits or from shared neuronal populations that shift their dynamics across contexts. To distinguish between these possibilities, we performed two-photon calcium imaging in the...
Parent-of-origin effects in Alzheimer's liability dissociate neurocognitive and cardiovascular traits in at-risk individuals
Alzheimer's disease (AD) has a higher prevalence in women than men and is more frequently inherited from mothers than fathers. Yet, while neuroimaging and biomarker studies link maternal family history to stronger AD-related alterations, epidemiological studies suggest that paternal history confers comparable or even greater risk. Here, we leverage the deeply profiled PREVENT-AD cohort to derive three intermediate phenotypes of AD susceptibility. Drawing on nearly 1,000 individual study visits,...
Non-transgenic rodent models associated with Alzheimer's disease: applications, evaluation, and perspectives
Alzheimer's disease (AD) is a progressive neurodegenerative disorder. Familial AD accounts for less than 1% of cases, while sporadic AD (SAD) accounts for over 95%. Mild cognitive impairment (MCI) is the critical transition phase from normal aging to AD dementia. Understanding the pathological progression from MCI to AD and the mechanisms underlying SAD is essential. Rodent models, including transgenic and non-transgenic models, are vital tools for developing effective AD therapies. However,...
The Human Retina in Alzheimer's Disease: Pathology, Mechanisms, and Biomarkers
Alzheimer's disease (AD) is characterized by progressive neurodegeneration and synaptic dysfunction that begins decades before clinical symptoms emerge. While AD research has traditionally focused on the brain, increasing evidence suggests that the retina undergoes pathological remodeling that shares features with cerebral changes. Advances in retinal imaging, including optical coherence tomography (OCT), OCT angiography, and hyperspectral approaches, have identified structural, vascular, and...
Gating of Somatosensory Neural Oscillations Across the Lifespan: A Narrative Review
Healthy and pathological aging are associated with progressive changes in cortical inhibition, yet the underlying neural mechanisms remain incompletely understood. Somatosensory gating (SG), the brain's suppression of redundant tactile input, provides a pre-attentive marker of inhibitory function. Paired-pulse paradigms concurrent with noninvasive magnetoencephalography (MEG) provide a millisecond portrayal of the neural dynamics underlying somatosensory processing and the gating of such...
Is amyloid beta peptide a driver of inflammaging?
Inflammaging, the chronic subclinical systemic inflammation accompanying aging, represents a critical pathogenetic mechanism underlying age-related neurodegenerative diseases. While amyloid beta (Aβ) peptides are established contributors to neuroinflammation in Alzheimer's disease, their role in aging-related subclinical inflammation remains insufficiently elucidated. In humans, Aβ exhibits dual functions: it supports neuronal activity, survival, and protection against neurotrauma, while also...
Modernizing cognitive assessment in Alzheimer's disease
No abstract
Pharmacological potential of wogonin in rotenone induced mice model of Parkinson's disease via targeting GSK-3beta
Wogonin, a naturally occurring flavonoid derived from Scutellaria species and widely used in traditional East Asian medicine for its anti-inflammatory and antioxidant effects. Although wogonin has demonstrated efficacy against oxidative stress and inflammation, its mechanistic role in Parkinson's disease (PD) remains incompletely understood. The present study investigated the neuroprotective potential of wogonin in a rotenone-induced mice model of PD, with particular emphasis on modulation of...
The Drosophila CEBPG homolog Irbp18 partners with crc (ATF4) to mediate the integrated stress response in degenerative disease models
The integrated stress response (ISR) coordinates cellular adaptation to diverse stress conditions. In Drosophila, two bZIP transcription factors, Xrp1 and crc (ATF4 homolog), are induced during ISR. Crc protein can dimerize with two CEBP factors in vitro, but the in vivo relevance of those interactions remained unknown. Here, we report that the CEBPG homolog, Irbp18, is an essential partner of crc during ISR. Specifically, Irbp18 is broadly required for the transcriptional induction of ISR...
A wearable patch for continuous levodopa monitoring in sweat: Towards exertion and power-free pharmacodynamic assessment in Parkinson's disease
Precision management of Parkinson's disease (PD) requires frequent levodopa (L-dopa) dose adjustments, yet current monitoring relies on subjective symptom reporting and infrequent blood testing. Here, we present a soft, fingertip-mounted wearable platform for continuous, noninvasive L-dopa monitoring. By combining osmotically harvested passive sweat with soft hydrogels, a potentiometric sensing strategy, and individualized calibration, the platform estimates blood L-dopa information from sweat...
In-cell cryo-electron tomography reveals differential effects of type I and type II kinase inhibitors on LRRK2 filament formation and microtubule association
Mutations in leucine-rich repeat kinase 2 (LRRK2) are a leading contributor to developing familial and idiopathic Parkinson's disease (PD). Most PD-causing LRRK2 mutations increase the kinase activity, leading to increased phosphorylation of Rab GTPases, disrupting vesicular trafficking, cytoskeletal dynamics, and autophagy. Under homeostatic conditions, the bulk of WT and PD-mutant LRRK2 is found in the cellular cytosol. However, exogenously expressed LRRK2 can form microtubule-associated...
Targeting the NLRP3 Inflammasome in Alzheimer's Disease: Mechanistic Insights and Therapeutic Advances
Alzheimer's disease (AD) is the leading cause of dementia, yet current therapies provide limited clinical benefit. Neuroinflammation, as an early and sustained driver of AD, places the NLRP3 inflammasome at the center of pathological and therapeutic focus. In this review, we synthesize recent advances in the structure, assembly, and activation of the NLRP3 inflammasome, and evaluate its contribution to AD using evidence from human brain tissues, cerebrospinal fluid, and diverse AD animal models....
Corrigendum to "DTI-ALPS index and its association with neuroinflammatory and neurodegenerative biomarkers and tau-PET in Alzheimer's continuum" [NSC 609C (2026) 101-115]
No abstract
Dissecting divergent outcomes in stem cell-derived dopamine cell therapy trials for Parkinson's disease
Fetal tissue transplantation established proof-of-concept for dopamine cell replacement in Parkinson's disease but yielded inconsistent outcomes due to limited tissue availability and cellular heterogeneity. Advances in generating high-purity dopamine progenitors from pluripotent stem cells have enabled standardized products that show safety and motor improvement in clinical trials. However, these trials revealed divergent outcomes arising at three levels: between clinical studies, driven by...
Integrated identification and validation of HSP90AA1 as a therapeutic target of Astragalus membranaceus in Alzheimer's disease
Alzheimer's disease (AD) is a multifactorial neurodegenerative disorder lacking effective disease-modifying therapies. Astragalus membranaceus (AM) has shown potential neuroprotective effects, but its underlying mechanisms remain incompletely understood. In this study, a meta-analysis, network pharmacology, molecular simulation, and experimental validation were integrated to investigate the therapeutic potential of AM in AD. Meta-analysis of three randomized controlled trials showed that AM...
Early detection of Alzheimer's disease with circular RNA from blood
No abstract
Alzheimer's trial results lend momentum to drugs targeting tau
First drug to lower the protein and slow cognitive decline created buzz despite puzzling data.
Single-cell multiomics connects 3D genome and transcriptome alterations in Alzheimer's disease
Alzheimer's disease (AD) disrupts brain function through cell type-specific transcriptomic and epigenomic alterations, yet the contribution of three-dimensional (3D) genome organization to AD remains poorly understood. We applied GAGE-seq (genome architecture and gene expression by sequencing) to jointly profile gene expression and 3D chromatin structure in single cells from postmortem brain tissue from AD patients and age-matched individuals without AD, revealing chromatin reorganization linked...
Dual-function PROTAC suppresses ferroptosis and restores neuronal function via brain-targeted delivery
Targeted protein degradation (TPD) via proteolysis-targeting chimeras (PROTACs) offers a promising strategy for modulating disease-associated proteins, yet effective brain-preferred protein degradation remains challenging. Herein, we report a dual-function PROTAC, dACSL4, and its nose-to-brain delivery for brain-preferred protein degradation and therapeutic suppression of ferroptosis in neurodegeneration. dACSL4 selectively degrades acyl-CoA synthetase long-chain family member 4 (ACSL4) while...
Alzheimer and Parkinson: Latest results from PubMed
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