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Sumien, N.

Publications and source records attributed to Sumien, N..

2 recordsLinked to original sources

From General-Purpose to Disease-Specific Features: Aligning LLM Embeddings on a Disease-Specific Biomedical Knowledge Graph for Drug Repurposing

Identifying new therapeutic uses for existing drugs is a major challenge in biomedicine, especially for complex neurodegenerative conditions such as Alzheimer disease and related dementias (ADRD), where treatment options remain limited and relevant data are often sparse, heterogeneous, and difficult to integrate. Although general-purpose Large Language Model (LLM) embeddings encode rich semantic information, they often lack the task-specific biomedical context needed for inference tasks such as computational drug repurposing. We introduce Contextualizing LLM Embeddings via Attention-based gRaph learning (CLEAR), a multimodal representation-fusion framework that aligns LLM embeddings with the topological structure of a context-specific Knowledge Graph (KG). Across five benchmark datasets, CLEAR achieved state-of-the-art results, improving predictive performance (e.g., F1 score) by up to 30% over prior methods. We further applied CLEAR to identify FDA-approved drugs with potential for repurposing for ADRD, including Parkinson disease-related dementia and Lewy Body dementia. CLEAR learned a biologically coherent embedding space, prioritized leading ADRD drug candidates, and accurately summarized known therapeutic relationships for FDA-approved Alzheimer disease drugs. Overall, CLEAR shows that grounding biomedical LLM embeddings with context-specific KG signals can improve drug repurposing in data-sparse, real-world settings. GitHub: https://github.com/bozdaglab/CLEAR

bioinformatics↗

Behavioral profiling of hyperbaric oxygen as an intervention for chemotherapy-related functional impairments in male and female mice

Chemobrain or chemotherapy-related cognitive impairment (CRCI) affects up to 75% of cancer patients and survivors following chemotherapy treatments. Chemotherapy typically affects multiple domains including learning, memory, attention, executive function, and mood regulation, persisting for decades after treatment cessation and significantly diminishing cancer survivors quality of life. Despite its prevalence and long-term impact, effective interventions for CRCI remain limited. This study investigated the behavioral effects of HBO on mice exposed to chemotherapy drugs methotrexate (MTX) and 5-fluorouracil (5-FU). Adult male and female C57BL/6 mice received intraperitoneal injections of either saline or chemotherapy (Low-dose: MTX 37.5 mg/kg and 5-FU 50 mg/kg; High-dose: MTX 70 mg/kg and 5-FU 100 mg/kg) once a week for three weeks. Concurrently, subsets of mice underwent daily HBO (2.4 ATA, 90 minutes) five days a week for three weeks. Animals health was evaluated weekly, and behavioral assessment of cognitive, motor, and affective functions was conducted post-treatment. Our results showed that chemotherapy, especially at high-dose, impaired spatial memory and navigation, avoidance learning, fear discrimination, and anxiety regulation differently between males and females. HBO significantly alleviated chemotherapy-induced avoidance learning impairment in both sexes and improved coordinated running capacity in high-dose treated males. However, chemotherapy-HBO cotreatment increased spatial memory deficit in males and increased anxiety-like behaviors in females. In conclusion, even though HBO had some nuanced effects on the various domains, some reversal of CRCI effects were observed. Therefore, HBO should be further studied and considered as a potential treatment for chemobrain.

neuroscience↗