Dalian, China

Rongshuai Jiang


Average Co-Inventor Count = 11.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: **Innovative Contributions of Rongshuai Jiang in Genetic Engineering**

Introduction

Rongshuai Jiang, an inventor based in Dalian, China, has made significant strides in the field of genetic engineering. His notable contribution is highlighted by a patent centered around the production of cordycepin and its derivative, 3'-deoxyinosine. This innovation not only showcases his technical prowess but also underlines the potential applications in biotechnology and pharmaceuticals.

Latest Patents

Rongshuai Jiang holds a patent titled "Engineering strain producing cordycepin and its derivative 3'-deoxyinosine, its preparation method and application." This invention addresses a novel engineering strain capable of producing cordycepin and its derivative efficiently. The preparation method involves several key steps, including codon optimization of genes Cm1 and Cm2, gene amplification, insertion into expression vectors, and subsequent screening to obtain the desired engineering strain. This innovative approach significantly enhances the green production process utilizing carbon dioxide, emphasizing sustainable bioprocessing methods.

Career Highlights

Rongshuai Jiang's career is marked by his affiliation with Dalian University, where he has contributed to advancing research in genetic engineering. His work provides a stepping stone for future explorations in biomanufacturing and showcases his commitment to using unique strains that improve the efficiency of cordycepin production.

Collaborations

Throughout his career, Jiang has collaborated with esteemed colleagues, including Qian Li and Huiping Tan. Their combined efforts enrich the research environment and drive innovation within their projects, allowing for a multidisciplinary approach to tackling complex biological challenges.

Conclusion

Rongshuai Jiang’s contributions through his patent in engineering strains for producing cordycepin and its derivatives place him at the forefront of biotechnological innovation. His work not only reflects personal achievement but also paves the way for advancements in sustainable production methods within the genetic engineering field, demonstrating the potential impact of collaboration and innovation in academia.

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