Millbury, MA, United States of America

Christina Bailey-Hytholt

This inventor holds 2 USPTO granted patents and 1 published patent application. Top assignee: Brown University. Active years: 2022-2025.

USPTO Granted Patents = 2 

% Patents Active = 100.0

Average Co-Inventor Count = 3.7

ph-index = 1


Company Filing History:


Years Active: 2022-2025

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2 patents (USPTO):Explore Patents

Title: Christina Bailey-Hytholt: Innovator in Molecular Interaction Studies and Antifungal Treatments.

Introduction

Christina Bailey-Hytholt is a prominent inventor based in Millbury, MA (US). She has made significant contributions to the fields of molecular interaction studies and antifungal treatments. With a total of 2 patents, her work is paving the way for advancements in medical research and treatment methodologies.

Latest Patents

One of her latest patents is titled "Placental lipid bilayer for cell-free molecular interaction studies." This invention provides a lipid bilayer that mimics the lipid composition of the placenta, creating an in vitro placenta model that utilizes the lipid composition of the placental cell membrane. Another notable patent is "Antifungal nanoparticles for targeted treatment of fungal infections." This invention offers functionalized antifungal-loaded liposomal formulations that target infections while minimizing damage to healthy human cells, limiting antimicrobial exposure, and reducing the development of antifungal resistance.

Career Highlights

Christina is affiliated with Brown University, where she continues to engage in innovative research. Her work is characterized by a commitment to improving health outcomes through scientific advancements.

Collaborations

She collaborates with esteemed colleagues such as Anita Shukla and Noel Vera-Gonzalez, contributing to a dynamic research environment that fosters innovation.

Conclusion

Christina Bailey-Hytholt's contributions to science and medicine through her patents reflect her dedication to addressing critical health challenges. Her innovative approaches are likely to have a lasting impact on the fields of molecular interaction and antifungal treatments.

Profile summary based on public USPTO records.
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