Verona, MA, United States of America

Tanja Dominko


Average Co-Inventor Count = 11.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: **Innovative Contributions of Tanja Dominko**

Introduction

Tanja Dominko, an accomplished inventor based in Verona, MA, has made significant strides in the field of biomaterials and regenerative medicine. With her innovative approach, she has designed a patented invention that merges plant science with cellular biology, broadening the horizons for tissue engineering and regenerative applications.

Latest Patents

Dominko holds a patent titled "Functionalization of Plant Tissues for Human Cell Expansion." This groundbreaking invention discloses the decellularization of plant tissues and their subsequent functionalization to promote human cell adhesion. By providing suitable scaffolds for human cells, her work opens new possibilities across various sectors, including research tools for tissue engineering, regenerative medicine, and fundamental cellular biology.

Career Highlights

Throughout her career, Tanja has been associated with prominent research institutions, notably the Wisconsin Alumni Research Foundation and Kansas State University Research Foundation. Her engagement with these organizations has provided her with opportunities to collaborate on cutting-edge research and further her contributions to science and innovation.

Collaborations

Tanja has worked alongside esteemed colleagues such as William Leo Murphy and Gianluca Fontana. Their combined expertise has fostered a collaborative environment that drives innovation and enhances the impact of their research efforts within the scientific community.

Conclusion

In summary, Tanja Dominko exemplifies the essence of innovation through her dedication to developing new materials for human use. Her patented invention not only demonstrates her inventive capabilities but also contributes to the advancement of tissue engineering and regenerative medicine. As she continues to collaborate with key figures in the field, her work is set to inspire future developments in biomaterials and beyond.

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