Baltimore, MD, United States of America

Maureen Wanjare

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: Maureen Wanjare: Innovator in Stem Cell Research

Introduction

Maureen Wanjare is a prominent inventor based in Baltimore, MD (US). She has made significant contributions to the field of stem cell research, particularly in the differentiation of human pluripotent stem cells into smooth muscle-like cells. Her innovative work has the potential to advance medical treatments and regenerative therapies.

Latest Patents

Wanjare holds a patent for her invention titled "Smooth muscle-like cells (SMLCs) derived from human pluripotent stem cells." This invention outlines a method for differentiating mammalian pluripotent stem cells into smooth muscle-like cells in vitro. The process involves several steps, including plating a single-cell suspension of PSCs, culturing the cells under specific conditions, and using growth factors to induce differentiation. The patent emphasizes the importance of shear force in enhancing the maturation and functionality of the cells.

Career Highlights

Maureen Wanjare is affiliated with The Johns Hopkins University, where she conducts her research. Her work has garnered attention for its innovative approach to stem cell differentiation and its implications for future medical applications. Wanjare's dedication to advancing scientific knowledge is evident in her research and patent contributions.

Collaborations

Wanjare collaborates with esteemed colleagues, including Sharon Gerecht and Donny Hanjaya-Putra. These partnerships enhance her research efforts and contribute to the advancement of stem cell technology.

Conclusion

Maureen Wanjare is a trailblazer in the field of stem cell research, with a focus on developing smooth muscle-like cells from pluripotent stem cells. Her innovative patent and collaborations reflect her commitment to advancing medical science. Her contributions are poised to make a lasting impact on regenerative medicine.

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