Edenvale, South Africa

Sarah Helen Taylor



Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2012

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Sarah Helen Taylor

Introduction

Sarah Helen Taylor is a notable inventor based in Edenvale, South Africa. She has made significant contributions to the field of gene silencing through her innovative research and patents. Her work has implications for genetic engineering and therapeutic applications.

Latest Patents

Sarah Helen Taylor holds a patent for the "Use of double stranded RNA hairpin duplexes in gene silencing." This patent describes a DNA polynucleotide with a modified sequence of a target gene. The modification involves chemically altering one type of nucleotide in the target gene sequence. The patent also details a complementary sequence of the unmodified target gene, where either sequence can be in reverse orientation to the other. The RNA sequence transcribed from the DNA polynucleotide forms a duplex between the modified and complementary sequences. This results in a long double stranded RNA (IdsRNA) duplex capable of inhibiting the expression of the target gene. The patent outlines the production of IdsRNA duplexes, which can be utilized in gene silencing.

Career Highlights

Throughout her career, Sarah has worked with prestigious institutions, including the University of the Witwatersrand in Johannesburg. Her research has focused on advancing the understanding of gene silencing mechanisms and their applications in biotechnology.

Collaborations

Sarah has collaborated with notable colleagues such as Patrick Arbuthnot and Marc Saul Weinberg. These collaborations have further enriched her research and contributed to the advancement of her innovative work.

Conclusion

Sarah Helen Taylor's contributions to the field of gene silencing through her patent and research collaborations highlight her role as a pioneering inventor. Her work continues to influence advancements in genetic engineering and therapeutic strategies.

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