Charlestown, MA, United States of America

Ivona T Olszak

USPTO Granted Patents = 2 

Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 5(Granted Patents)


Company Filing History:


Years Active: 2007-2011

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2 patents (USPTO):Explore Patents

Title: The Innovative Contributions of Ivona T Olszak

Introduction

Ivona T Olszak is a notable inventor based in Charlestown, MA (US). She has made significant contributions to the field of cell biology, particularly in the modulation of cell movement. With a total of two patents to her name, her work has implications for various medical treatments.

Latest Patents

Olszak's latest patents focus on the CaR receptor as a mediator of migratory cell chemotaxis and/or chemokinesis. This invention relates to methods and compositions for modulating the movement of eukaryotic cells with migratory capacity. Specifically, it addresses the modulation of movement of CaR receptor-expressing cells of hematopoietic, neural, epithelial, endothelial, or mesenchymal origin at specific sites in a subject. The invention is particularly useful in treating conditions that require modulation of migratory-cell movement associated with specific sites, such as sites of inflammation. It also includes methods for manipulating hematopoietic progenitor cells and related products, enhancing their mobilization and improving targeting efficiency to the bone marrow.

Career Highlights

Throughout her career, Olszak has worked with prestigious institutions, including The General Hospital Corporation and Brigham and Women's Hospital, Inc. Her research has contributed to advancements in understanding cell movement and its implications for health and disease.

Collaborations

Olszak has collaborated with notable colleagues such as Mark C Poznansky and David T Scadden, further enhancing the impact of her research through teamwork and shared expertise.

Conclusion

Ivona T Olszak's innovative work in cell biology and her patents on the CaR receptor highlight her significant contributions to medical science. Her research continues to pave the way for advancements in treatments that require precise modulation of cell movement.

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