Richmond, TX, United States of America

Alyssa Baevich

This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: William Marsh Rice University. Active years: 2012.

USPTO Granted Patents = 1 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2012

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1 patent (USPTO):Explore Patents

Title: Alyssa Baevich: Innovator in Terpene Synthesis

Introduction

Alyssa Baevich is a notable inventor based in Richmond, TX (US). She has made significant contributions to the field of terpene synthesis, particularly through her innovative methods for producing nerolidol. Her work is characterized by a focus on utilizing yeast strains to enhance production efficiency.

Latest Patents

Alyssa holds a patent for the synthesis of nerolidol, a terpene and terpene derivative. The patent describes a method that involves culturing a yeast strain that lacks functional squalene synthase while overproducing HMG CoA reductase in a synthetic medium devoid of uracil. This method not only facilitates the production of nerolidol but also allows for the potential generation of other chemicals. The pH of the medium can be adjusted to an acidic level to further boost nerolidol production. Additionally, the method includes the possibility of using a polyaromatic resin to adsorb nerolidol or other chemicals from the medium.

Career Highlights

Alyssa is affiliated with William Marsh Rice University, where she continues her research and development in the field of terpene synthesis. Her innovative approach has garnered attention in the scientific community, contributing to advancements in biochemistry and industrial applications.

Collaborations

Alyssa has collaborated with notable colleagues, including Caroline Virginia McNeil and Pietro Morlacchi. These partnerships have enriched her research and expanded the scope of her work in terpene synthesis.

Conclusion

Alyssa Baevich is a pioneering inventor whose work in nerolidol synthesis exemplifies the intersection of innovation and practical application in biochemistry. Her contributions continue to influence the field and inspire future research endeavors.

Profile summary based on public USPTO records.
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