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the gap between academic innovation and "real-world" therapeutic development. The successful candidate will be responsible for lead optimization of novel protein aggregate degraders, utilizing both
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, assesses findings, and compiles comprehensive reports. Maintains instruments, develops new methods, and optimizes existing ones. Keeps meticulous records of procedures and research findings. Demonstrates
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including (but not limited to): Design and conduct independent research projects focused on brain aging and age-related neurodegenerative diseases, particularly Alzheimer's disease. Apply and optimize
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generation proteomic analyses Build and optimize proteomic pipelines for neurodegenerative disease biological subtyping Perform genetic, epigenetic and protein biomarker analyses including a range of molecular