San Diego, CA, United States of America

Peter Maligres


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 16(Granted Patents)


Company Filing History:


Years Active: 1993

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Peter Maligres in Nucleic Acid Cleavage

Introduction: Peter Maligres, an esteemed inventor based in San Diego, CA, is known for his groundbreaking work in the field of nucleic acid chemistry. With a focus on propargylic and allenic sulfones, Maligres has positioned himself as a notable figure in the scientific community through his innovative research and patent contributions.

Latest Patents: Maligres holds a significant patent for "Propargylic and allenic sulfones." This invention reveals compounds that possess the unique ability to selectively cleave nucleic acids, particularly deoxyribonucleic acid (DNA). His work in this area has opened new avenues for synthetic modifications, allowing for precise cleavage at designated sequenced sites on nucleic acids. This has potential applications in molecular biology and genetic research.

Career Highlights: Peter Maligres is associated with the Trustees of the University of Pennsylvania, where he conducts research that bridges the gap between theoretical chemistry and practical application in the field of biotechnology. His dedication to advancing scientific understanding has earned him recognition among peers and established a reputation for innovation in nucleic acid technology.

Collaborations: Throughout his career, Maligres has collaborated with notable scientists, including K C Nicolaou and Guido Zaccarello. These partnerships have fostered a rich exchange of ideas and have significantly contributed to the advancements in his research area.

Conclusion: Peter Maligres is an influential inventor whose work on propargylic and allenic sulfones has made substantial contributions to the understanding of nucleic acid cleavage. His innovative approach, coupled with collaborative efforts, continues to influence future research in biochemistry and molecular genetics. As the field progresses, the implications of his work will undoubtedly support advancements in genetic manipulation and therapeutic developments.

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