Somerville, MA, United States of America

Kristen Nobles


Average Co-Inventor Count = 8.0

ph-index = 1


Company Filing History:


Years Active: 2009

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1 patent (USPTO):Explore Patents

Title: **The Innovations of Kristen Nobles: A Pioneer in Biopharmaceutical Cleaning Procedures**

Introduction

Kristen Nobles, an accomplished inventor based in Somerville, MA, has made significant contributions to the field of biopharmaceuticals. With her expertise and creativity, she has developed an innovative solution to improve cleaning procedures in biopharmaceutical manufacturing.

Latest Patents

Kristen holds a patent for her invention titled "Bench Scale Apparatus to Model and Develop Biopharmaceutical Cleaning Procedures." This apparatus is designed for testing cleaning procedures for various materials within the industry. It features a meticulously designed rack to retain multiple test coupons at a predetermined angle, an upper tray that effectively distributes cleaning solutions, a lower tray that collects the solution passing over the coupons, and a flow meter to gauge solution flow rates. Additionally, the apparatus is equipped with a thermostatic heater to maintain specific temperatures and a variable speed pump that transports the solution from a reservoir to the upper tray.

Career Highlights

Kristen currently works at Wyeth Research Ireland Limited, where her expertise in biopharmaceuticals is fully utilized. Her innovative approach and thorough research have positioned her as a key contributor to advancements in cleaning procedures essential in biopharmaceutical production.

Collaborations

At Wyeth Research Ireland Limited, Kristen collaborates with fellow researchers such as Alfredo J Canhoto and Rod J Azadan. Together, they work to refine and enhance cleaning protocols that ensure the highest standards of safety and efficacy in biopharmaceutical manufacturing.

Conclusion

Kristen Nobles stands as a notable figure in the field of biopharmaceutical innovations. Her dedication to improving cleaning processes through her patented apparatus directly impacts the efficiency and safety of biopharmaceutical manufacturing. Her collaborations and ongoing research continue to pave the way for further advancements in this vital area.

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