Dublin, Ireland

Grainne Cunniffe

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Grainne Cunniffe: Innovator in Porous Scaffold Technology

Introduction

Grainne Cunniffe is a notable inventor based in Dublin, Ireland. She has made significant contributions to the field of biomedical engineering, particularly in the development of methods for creating porous scaffolds for tissue repair. Her innovative approach addresses critical needs in the medical community, especially concerning osseous, chondral, and osteochondral defects.

Latest Patents

Cunniffe holds a patent for a method titled "Method for making a porous scaffold suitable for use in repair of osseous, chondral, or osteochondral defects in a mammal." This patent describes a process that involves providing micronized extracellular matrix (ECM) tissue, mixing it with a liquid to create a slurry, and then freeze-drying the slurry to produce a porous scaffold. The resulting scaffold is designed to facilitate the repair of various types of tissue defects in mammals, showcasing her innovative approach to biomedical solutions.

Career Highlights

Throughout her career, Grainne Cunniffe has worked with prestigious institutions, including Trinity College Dublin and the College of Holy and Undivided Trinity of Queen Elizabeth Near Dublin. Her work in these institutions has allowed her to advance her research and contribute to the scientific community significantly.

Collaborations

Cunniffe has collaborated with notable colleagues such as Daniel John Kelly and Henrique Almeida. These partnerships have further enriched her research and development efforts in the field of tissue engineering.

Conclusion

Grainne Cunniffe's contributions to the field of biomedical engineering, particularly through her patented methods for creating porous scaffolds, highlight her role as an innovator. Her work not only advances scientific knowledge but also has the potential to improve medical treatments for tissue repair.

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