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Clinical Topic Hub

Longevity & Brain Health

Clinical Intelligence Hub • Expert Curation

Preserving cognitive function and neurovascular integrity is essential for long-term healthspan. We analyze publications exploring cellular neuroprotection, synaptic density, and biological interventions that support mental stamina, memory preservation, and brain age deceleration.

Can Gene Therapy Reset Key Aging Biomarkers in Primates?

A primate study on HMGB1 gene therapy reveals how resetting key aging biomarkers like APOE and SHBG could help manage age-related biological decline.

Scientific reportsPMID: 41936616DOI
Synergistic Multi-Pathway Targeting and Frailty Reduction: Molecular Analysis of the Combinatorial Drug SRN-901

Discover how the novel combinatorial drug SRN-901 targets multiple biological aging pathways to extend lifespan and reduce physical frailty in mouse models.

Drug design, development and therapyPMID: 42011226DOI
Rapamycin Side Effects: Does the Longevity Drug Blunt Exercise Gains?

A landmark clinical trial reveals that rapamycin side effects may include the unexpected blunting of physical strength and exercise gains in older adults.

Journal of cachexia, sarcopenia and musclePMID: 41985884DOI
Mindfulness for Depression: How Brain Scans Show It Breaks Ruminative Loops

A mindfulness-based cognitive therapy clinical trial maps brain dynamics, showing how structured meditation breaks rigid loops of depressive rumination.

Chromatin Degradation and the Rise of Cryptic Transcription in the Aging Genome

Explore how cryptic transcription in aging creates cellular noise, and how new genetic tools and epigenetic diagnostics help restore cellular health.

Cognitive Performance, Physical Frailty, and Functional Dependence in Older Adults: Clinical Insights from the FREEDOM Cohort

Discover how physical frailty and cognitive decline are closely linked in older adults, and learn the key modifiable risk factors to preserve autonomy.

Spatiotemporal Brain Atrophy Mapping in Lewy Body Diseases: Identifying Four Distinct Progression Subtypes

New brain atrophy mapping research identifies four distinct progression subtypes in Lewy body diseases, offering a predictive path for cognitive preservation.

Retinal Microvascular Mapping and Deep-Brain Structural Biomarkers of Neurodegeneration

RetiBrain, a novel AI cross-modal deep learning framework, predicts critical neuroimaging biomarkers of brain health from simple retinal color fundus photography.

Retinal Photography and Electrocardiography as Non-Invasive Deep Learning Biomarkers of Neurodegeneration and Cardiovascular Aging

Deep learning model RetiBrain predicts brain health biomarkers from retinal scans to enable early disease screenings.

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