San Diego, CA, United States of America

Jerome Karpiak

This inventor holds 1 USPTO granted patent. Top assignee: University of California. Active years: 2016.


% Patents Active = 100.0

Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: Jerome Karpiak: Innovator in Polymerization Technology

Introduction

Jerome Karpiak is a notable inventor based in San Diego, California. He has made significant contributions to the field of polymer science, particularly in the development of advanced hydrogels. His innovative approach to polymerization has the potential to impact various applications in biomedical engineering.

Latest Patents

Jerome Karpiak holds a patent for a method titled "Single step polymerization of covalently bound multilayer matrices." This patent describes a technique for forming complex tissue using density gradient multilayer polymerization (DGMP). The method allows for the creation of strong hydrogels with smooth transitions between layers. The multicompartment hydrogel is formed by co-dissolving a polymer precursor with a constituent in multiple solvent fractions to create prepolymer solutions with different densities. These solutions are layered from high to low solvent density and irradiated to form a polymer. The resulting hydrogels can be utilized as biomimetic matrices.

Career Highlights

Jerome Karpiak is affiliated with the University of California, where he continues to advance his research in polymer science. His work has garnered attention for its innovative approach and practical applications in tissue engineering.

Collaborations

Jerome collaborates with esteemed colleagues such as Adah Almutairi and Yogesh Ner. Their combined expertise enhances the research and development of new polymer technologies.

Conclusion

Jerome Karpiak's contributions to polymerization technology exemplify the intersection of innovation and practical application in science. His work in developing advanced hydrogels holds promise for future advancements in biomedical fields.

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