Orange, MA, United States of America

Deborah Deane


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 1999

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1 patent (USPTO):Explore Patents

Title: **The Innovative Contributions of Deborah Deane in Cell Harvesting Techniques**

Introduction

Deborah Deane, an accomplished inventor based in Orange, MA, has made significant strides in the field of biotechnology. Her innovative approach to harvesting mammalian cells has resulted in a patent that showcases her expertise and dedication to advancing medical science.

Latest Patents

Deborah holds a patent for a "High Flow Technique for Harvesting Mammalian Cells." This groundbreaking invention is rooted in the understanding that traditional perfusion methods often leave substantial portions of porcine livers intact, leading to insufficient cell recovery. By employing an increased perfusion flow rate, occluding main blood vessels, extending enzymatic digestion time, and utilizing vigorous tissue dissociation techniques, Deborah's method significantly enhances the yield of viable cells.

Career Highlights

Deborah's career is marked by her role at Circe Biomedical, Inc., a company dedicated to developing innovative solutions in the biomedical field. Her focused research and development efforts demonstrate her commitment to improving techniques for cell recovery and contribute to the broader goals of medical advancements.

Collaborations

Throughout her career, Deborah has collaborated with esteemed colleagues, including Kermit M. Borland and Barbara A. Chandler. These partnerships highlight the importance of teamwork in driving innovation and achieving breakthroughs in complex scientific endeavors.

Conclusion

In conclusion, Deborah Deane's contributions to cell harvesting techniques underscore her position as a leading inventor in the biotechnology sector. Her patented innovation not only strives to improve cell recovery methods but also has the potential to significantly impact medical research and treatments in the future.

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