Gainesville, FL, United States of America

Marlo Tan Walpole


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2003

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1 patent (USPTO):Explore Patents

Title: Marlo Tan Walpole: Innovator in Anti-Inflammatory Bioactive Glass Particulates

Introduction

Marlo Tan Walpole is a notable inventor based in Gainesville, FL (US). She has made significant contributions to the field of bioactive materials, particularly in the development of anti-inflammatory compositions. Her innovative work focuses on minimizing the inflammatory effects of TNF-α, which is crucial for various therapeutic applications.

Latest Patents

Walpole holds a patent for "Anti-inflammatory bioactive glass particulates." This patent discloses compositions and methods for systemically minimizing the inflammatory effects of TNF-α. The compositions include particles of bioactive glass with a particle size of less than about 20 µm, either alone or in combination with anti-inflammatory agents and other therapeutic agents. These compositions can be administered through various routes, including oral, intramuscular, intraperitoneal, or intravenous methods. When administered to a patient, the particles elevate levels of IL-6 without causing elevated levels of TNF-α.

Career Highlights

Marlo Tan Walpole is associated with Usbiomaterials Corporation, where she continues to advance her research and development efforts. Her work is pivotal in creating innovative solutions for inflammatory conditions, showcasing her expertise in bioactive materials.

Collaborations

Walpole collaborates with esteemed colleagues, including David C. Greenspan and Sean Lee. These partnerships enhance her research capabilities and contribute to the advancement of her innovative projects.

Conclusion

Marlo Tan Walpole is a pioneering inventor whose work in anti-inflammatory bioactive glass particulates has the potential to transform therapeutic approaches to inflammation. Her contributions to the field are significant and reflect her dedication to innovation in biomedical materials.

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