Chicago, IL, United States of America

Alexandra N Kolberg


Average Co-Inventor Count = 3.4

ph-index = 1


Company Filing History:


Years Active: 2024

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2 patents (USPTO):Explore Patents

Title: Innovations of Alexandra N Kolberg

Introduction

Alexandra N Kolberg is a prominent inventor based in Chicago, IL, known for her significant contributions to the field of neurobiology. She has been awarded two patents that focus on innovative solutions for neurological injuries and disorders. Her work emphasizes the development of biomaterials that can enhance neuronal survival and activity.

Latest Patents

One of her latest patents is titled "BDNF mimetic peptide amphiphiles." This invention provides peptide amphiphiles (PAs) and supramolecular PA nanostructures that mimic brain-derived neurotrophic factor (BDNF). BDNF is a crucial growth factor that promotes neuronal survival, maturation, and increased electrical activity. The injectable biomaterials comprising BDNF mimetic PAs are designed for the treatment or prevention of neurological injuries, diseases, and disorders.

Another significant patent is "Host-guest interactions for PA superstructure formation." This disclosure relates to compositions and superstructures that include peptide amphiphiles. It explores how host and guest peptide amphiphiles interact through non-covalent interactions to form supramolecular assemblies. The superstructures may also incorporate bioactive moieties that promote cell growth, migration, and differentiation.

Career Highlights

Alexandra N Kolberg is affiliated with Northwestern University, where she conducts her research and development work. Her innovative approach to biomaterials has positioned her as a key figure in her field.

Collaborations

She has collaborated with notable colleagues, including Samuel I Stupp and Tristan D Clemons, who share her passion for advancing neurobiological research.

Conclusion

Alexandra N Kolberg's contributions to the field of neurobiology through her patents demonstrate her commitment to improving treatments for neurological conditions. Her work continues to inspire advancements in biomaterials and their applications in medicine.

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