Greenwood, IN, United States of America

Meghan Frey

USPTO Granted Patents = 14 

Average Co-Inventor Count = 8.5

ph-index = 1

Forward Citations = 1(Granted Patents)


Location History:

  • Greenwood, IN (US) (2018 - 2021)
  • Indianapolis, IN (US) (2024)

Company Filing History:


Years Active: 2018-2024

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14 patents (USPTO):

Title: **The Innovative Contributions of Meghan L. Frey**

Introduction

Meghan L. Frey, based in Indianapolis, Indiana, has made significant strides in the field of biotechnology with her innovative research and development efforts. As an accomplished inventor, her contributions are underscored by her patent on short/small hairpin RNA molecules, which hold promise for agricultural applications and beyond.

Latest Patents

Meghan L. Frey holds a patent concerning short/small hairpin RNA (shRNA) molecules. This patent encompasses compositions and methods related to novel RNA inhibition molecules, as well as polynucleotides that encode these molecules. The primary application of this invention is to inhibit target genes by suppressing the expression of their mRNA. These novel shRNA molecules can be employed in various applications, including the control of insect pests and the development of transgenic plants that are safeguarded by these innovative RNA inhibition methods.

Career Highlights

Throughout her career, Meghan has held positions at renowned organizations that have facilitated her growth as an inventor. Notably, she has worked with Dow Agrosciences LLC, where she focused on agricultural innovations, and Queensland University of Technology, fostering her research capabilities and collaborations in biotechnology.

Collaborations

In her journey as an inventor, Meghan has collaborated with Elane Fishilevich, sharing insights and expertise that have further enhanced their collective impact in the field. Their partnership is a testament to the collaborative spirit prevalent in scientific research and innovation.

Conclusion

Meghan L. Frey continues to be a pioneering figure in her domain, contributing valuable knowledge and inventions that advance agricultural biotechnology. Her achievements, particularly her patent on RNA inhibition molecules, highlight the importance of innovation in tackling real-world challenges, such as pest control and sustainable agricultural practices. As the field evolves, Frey's work will undoubtedly inspire future inventors and researchers alike.

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