Saskatoon, Canada

Carla Jann Siobhan Barber


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: Celebrating the Innovations of Carla Jann Siobhan Barber

Introduction

Carla Jann Siobhan Barber, a distinguished inventor based in Saskatoon, Canada, has made significant contributions to the field of biochemistry through her innovative research. With her keen intellect and scientific acumen, she has focused on the production of cyclic peptides, which are crucial components in various pharmaceutical applications.

Latest Patents

Carla holds a patent for "Cyclic peptide production," which describes an enzyme that is instrumental in producing cyclic peptides from linear peptide precursors. This enzyme is particularly valuable for the synthesis of segetalins from their linear presegetalin precursors. Furthermore, the linear presegetalin precursors may originate from other linear forms further upstream in the biosynthetic pathway of segetalins, demonstrating the complexity and ingenuity of her work.

Career Highlights

Currently, Carla is affiliated with the National Research Council of Canada, where she engages in cutting-edge research and development. Her role at this esteemed institution allows her to impact the scientific community significantly and promote advancements in peptide chemistry.

Collaborations

Throughout her career, Carla has collaborated with notable colleagues, including Darwin Wilfred Reed and Janet Anne Condie. These partnerships have fostered a conducive environment for innovation and knowledge exchange, further enhancing the quality and scope of her research endeavors.

Conclusion

Carla Jann Siobhan Barber stands as a testament to the impactful work being done in the field of cyclic peptide production. Her patent contributions and collaborative efforts at the National Research Council of Canada highlight her position as a leading inventor in her area of expertise. As scientific exploration continues, her work is poised to inspire future innovations in peptide synthesis and beyond.

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