Madison, WI, United States of America

Chad Koonce

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2015

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1 patent (USPTO):Explore Patents

Title: Chad Koonce: Innovator in Stem Cell Research

Introduction

Chad Koonce is a notable inventor based in Madison, WI (US). He has made significant contributions to the field of stem cell research, particularly in the area of metabolic maturation in stem cell-derived tissue cells. His innovative work has the potential to advance our understanding of cellular metabolism and its implications for regenerative medicine.

Latest Patents

Chad Koonce holds a patent for "Metabolic maturation in stem cell-derived tissue cells." This invention focuses on methods and compositions that promote the conversion of stem cells from glycolysis to aerobic respiration. The patent outlines specific media that can enhance the metabolic maturation of stem cell-derived cells, including human embryonic stem cells and human induced pluripotent stem cells. The media may contain various components such as fatty acids, L-carnitine, taurine, creatine, non-essential amino acids, L-glutamine, and antioxidants.

Career Highlights

Koonce is associated with Cellular Dynamics International, Inc., where he applies his expertise in stem cell technology. His work is pivotal in developing methods that could lead to improved therapies for various diseases. With a focus on metabolic pathways, Koonce's research is at the forefront of scientific innovation in regenerative medicine.

Collaborations

Chad Koonce collaborates with esteemed colleagues such as Steven James Kattman and Natsuyo Aoyama. These partnerships enhance the research efforts at Cellular Dynamics International, Inc. and contribute to the advancement of stem cell applications.

Conclusion

Chad Koonce's contributions to stem cell research exemplify the impact of innovative thinking in the field of biotechnology. His patent on metabolic maturation in stem cell-derived tissue cells represents a significant step forward in understanding cellular processes. The work he is doing has the potential to influence future therapies and improve patient outcomes.

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