Princeton, NJ, United States of America

Kurt D Ristroph

USPTO Granted Patents = 3 

Average Co-Inventor Count = 4.4

ph-index = 1


Company Filing History:


Years Active: 2023-2025

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3 patents (USPTO):Explore Patents

Title: Kurt D Ristroph: Innovator in Nanoparticle Technology

Introduction

Kurt D Ristroph is a notable inventor based in Princeton, NJ (US). He has made significant contributions to the field of nanoparticle technology, particularly in the pharmaceutical sector. With a total of 3 patents, Ristroph's work focuses on innovative methods for encapsulating active pharmaceutical ingredients.

Latest Patents

Ristroph's latest patents include groundbreaking techniques such as "Hydrophobic ion pairing and flash nanoprecipitation for formation of controlled-release nanocarrier formulations." This patent presents methods for encapsulating water-soluble biologic and small molecule active pharmaceutical ingredients (APIs) into nanoparticles. By applying nanoprecipitation techniques and ion-pairing the nanoparticles with hydrophobic counterions, new API salts are produced that exhibit altered solubilities. Another significant patent is "Cellulosic polymer nanoparticles and methods of forming them," which involves nanoparticles that include a cellulosic polymer and a hydrophobic material, along with methods for their formation.

Career Highlights

Kurt D Ristroph is affiliated with Princeton University, where he continues to advance research in nanoparticle technology. His work has implications for the development of more effective drug delivery systems, enhancing the efficacy of pharmaceutical treatments.

Collaborations

Ristroph has collaborated with esteemed colleagues such as Robert K Prud'homme and Nathalie M Pinkerton, contributing to a rich environment of innovation and research.

Conclusion

Kurt D Ristroph's contributions to nanoparticle technology and his innovative patents position him as a key figure in the field. His work not only advances scientific understanding but also has the potential to improve pharmaceutical applications significantly.

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