Escondido, CA, United States of America

Michele Ramirez Weinhouse


Average Co-Inventor Count = 10.0

ph-index = 1

Forward Citations = 14(Granted Patents)


Company Filing History:

goldMedal1 out of 832,912 
Other
 patents

Years Active: 2004

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1 patent (USPTO):Explore Patents

Title: Michele Ramirez Weinhouse: Innovator in Chemokine Receptor Research

Introduction

Michele Ramirez Weinhouse, an accomplished inventor based in Escondido, California, is recognized for her contributions to the field of medicinal chemistry. With a keen focus on developing therapeutic solutions, she has made significant strides in addressing complex health issues through innovative science.

Latest Patents

Michele holds a patent for "Diarylalkyl cyclic diamine derivatives as chemokine receptor antagonists." This patent describes cyclic diamines of a specific formula and their pharmacologically acceptable acid addition salts. The innovation is pivotal in the development of medical applications as these compounds inhibit the action of chemokines such as MIP-1α and/or MCP-1 on target cells. The therapeutic potential of these compounds is invaluable in treating diseases like atherosclerosis and rheumatoid arthritis, where infiltration of blood monocytes and lymphocytes into tissues occurs.

Career Highlights

With a strong background in pharmaceutical research, Michele has dedicated her career to exploring the complexities of disease mechanisms and drug design. Her innovative work in chemokine receptor antagonism stands out as a highlight, providing meaningful advancements in the treatment of chronic conditions.

Collaborations

Michele's ingenuity is often complemented by the expertise of her colleagues, including Tatsuki Shiota and Shinsuke Yamagami. Their collaborative efforts have enhanced the scope of research and development in her projects, fostering an environment of innovation and teamwork.

Conclusion

Michele Ramirez Weinhouse's work exemplifies the impact of invention in the medical field. Her dedication to discovering new therapeutic drugs not only highlights her expertise but also contributes significantly to advancing healthcare solutions for critical diseases. As she continues her innovative journey, her breakthroughs promise hope and progress in the pursuit of effective treatments.

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