Madison, WI, United States of America

Matt Riley


 

Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 5(Granted Patents)


Location History:

  • Middleton, WI (US) (2013 - 2016)
  • Madison, WI (US) (2018 - 2020)

Company Filing History:


Years Active: 2013-2020

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4 patents (USPTO):Explore Patents

Title: The Innovations of Matt Riley: Pioneering Cardiomyocyte Production

Introduction

Matt Riley is an accomplished inventor based in Madison, Wisconsin, known for his significant contributions to the field of stem cell research. With a total of four patents to his name, Riley has been at the forefront of developing innovative methods to enhance cardiomyocyte production from pluripotent stem cells.

Latest Patents

Riley's most recent patents focus on the production of cardiomyocytes, specifically detailing methods and compositions for differentiating pluripotent stem cells. One notable aspect of his work includes the use of ROCK inhibitors in large volume suspension cultures. This groundbreaking approach aims to reduce variability between different stem cell clones and batches of culture medium, thereby improving the consistency and reliability of cardiomyocyte production.

Career Highlights

Throughout his career, Matt Riley has worked with prestigious companies, including Cellular Dynamics International, Inc. and Fujifilm Cellular Dynamics, Inc. His work in these organizations has propelled advancements in cellular technology, demonstrating his commitment to innovative solutions in regenerative medicine.

Collaborations

Riley has collaborated with notable colleagues such as Casey Stankewicz and Nathaniel Beardsley. These collaborations have fostered an environment of creativity and innovation, enabling the development of processes that aim to transform the field of cardiomyocyte research.

Conclusion

Matt Riley stands out as a prominent figure in the world of inventions related to stem cell differentiation. His work not only enhances our understanding of cardiomyocytes but also holds the potential to impact regenerative medicine significantly. Through his innovations, he continues to inspire future advancements in biomedical research and applications.

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