Stony Point, NY, United States of America

Shaoli Che


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2013-2017

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2 patents (USPTO):Explore Patents

Title: Innovations by Inventor Shaoli Che

Introduction

Shaoli Che is an accomplished inventor based in Stony Point, NY (US). She has made significant contributions to the field of molecular biology, particularly in the amplification and detection of microRNAs. With a total of 2 patents to her name, her work has the potential to advance research in various biological applications.

Latest Patents

Shaoli Che's latest patents focus on methods and compositions for the amplification and detection of microRNAs. One of her notable inventions is a method and system for amplifying non-coding RNA, microRNA, and small polynucleotide sequences. This is achieved through the generation of a pool of signature sequences targeting the desired sequences. The target sequences can be amplified using DNA synthesis, RNA synthesis, or a combination of both. The amplification of these signature sequences provides an efficient and reproducible mechanism to determine the presence or absence of target miRNAs, analyze their quantities, and conduct miRNA profiling. Additionally, her methods may be utilized for screening unknown non-coding RNAs, including novel miRNAs.

Career Highlights

Shaoli Che is currently associated with the Research Foundation for Mental Hygiene, Inc. Her work in this organization has allowed her to focus on innovative research that addresses critical issues in mental health and biological sciences.

Collaborations

Shaoli Che collaborates with Stephen D. Ginsberg, who is also involved in research related to mental hygiene and molecular biology. Their partnership enhances the scope and impact of their research endeavors.

Conclusion

Shaoli Che's contributions to the field of molecular biology through her innovative patents demonstrate her commitment to advancing scientific knowledge. Her work has the potential to significantly impact the understanding and treatment of various biological conditions.

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