Worcester, MA, United States of America

Gyorgy Hutvagner


 


Average Co-Inventor Count = 3.7

ph-index = 8

Forward Citations = 585(Granted Patents)


Location History:

  • Worcester, MA (US) (2010 - 2013)
  • Castle Hill, AU (2015 - 2022)

Company Filing History:


Years Active: 2010-2022

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17 patents (USPTO):Explore Patents

Title: Gyorgy Hutvagner: Innovator in RNA Silencing Technologies

Introduction

Gyorgy Hutvagner is a prominent inventor based in Worcester, MA, known for his significant contributions to the field of RNA silencing. With a total of 17 patents to his name, Hutvagner has made remarkable strides in understanding and manipulating RNA interference mechanisms.

Latest Patents

Hutvagner's latest patents include groundbreaking inventions such as "Sequence-specific inhibition of small RNA function." This invention relates to a method for inhibiting RNA silencing in a target sequence-specific manner. It provides compositions for the inactivation of the RISC component of the RNA silencing pathway, enabling various methods for identifying and characterizing miRNAs and siRNAs. Another notable patent is "In vivo production of small interfering RNAs that mediate gene silencing." This invention offers engineered RNA precursors that, when expressed in a cell, produce targeted small interfering RNAs (siRNAs) that selectively silence specific genes using the cell's own RNA interference pathway.

Career Highlights

Hutvagner is affiliated with the University of Massachusetts, where he continues to advance research in RNA technologies. His work has been instrumental in developing therapeutic methods and compositions that incorporate RISC inactivators and therapeutic agents identified through his innovative research.

Collaborations

Some of Hutvagner's notable coworkers include Phillip D Zamore and Juanita McLachlan, who have collaborated with him on various research projects, contributing to the advancement of RNA silencing technologies.

Conclusion

Gyorgy Hutvagner's innovative work in RNA silencing has paved the way for new therapeutic approaches and a deeper understanding of gene regulation. His contributions continue to impact the field significantly.

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