Uppsala, Sweden

Emma Michaelsson

USPTO Granted Patents = 1 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):

Title: Emma Michaelsson: Innovator in Chromatographic Applications

Introduction

Emma Michaelsson is a notable inventor based in Uppsala, Sweden. She has made significant contributions to the field of bioprocessing, particularly in the development of innovative materials for chromatographic applications. Her work focuses on enhancing the separation and purification of biomolecules, which is crucial in various scientific and medical fields.

Latest Patents

Emma holds a patent for her invention titled "Large pore agarose." This invention relates to porous cross-linked agarose gel beads that have a low agarose content. The method for preparing these beads and their application in chromatographic processes is groundbreaking. The beads are specifically designed for the separation and purification of biomolecules from biological samples. Due to their high porosity, they are especially effective for isolating larger particles, such as virus particles, including adenovirus. Emma's innovative approach has the potential to improve the efficiency of biomolecule separation in research and clinical settings.

Career Highlights

Emma Michaelsson is currently employed at Cytiva Bioprocess R&D AB, where she continues to advance her research and development efforts. Her work at Cytiva has allowed her to collaborate with leading experts in the field and contribute to the company's mission of providing innovative solutions for bioprocessing.

Collaborations

Emma has worked alongside talented colleagues, including David Jansson and Jesper Ulf Hansson. Their collaborative efforts have fostered a dynamic research environment that encourages innovation and the sharing of ideas.

Conclusion

Emma Michaelsson is a pioneering inventor whose work in chromatographic applications is making a significant impact in the field of bioprocessing. Her patented invention of large pore agarose gel beads exemplifies her commitment to advancing scientific research and improving biomolecule separation techniques.

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