Acton, MA, United States of America

Valerie Mason



Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 121(Granted Patents)


Company Filing History:


Years Active: 1996

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1 patent (USPTO):Explore Patents

Title: Valerie Mason: Innovator in Tissue Engineering

Introduction

Valerie Mason is a notable inventor based in Acton, MA (US), recognized for her contributions to the field of tissue engineering. With a focus on developing innovative solutions for medical applications, she has made significant strides in creating tissue equivalents.

Latest Patents

Valerie holds a patent for the "Preparation of tissue equivalents by contraction of a collagen gel." This invention outlines a method for producing tissue equivalents by applying a solution of collagen without cells to a permeable membrane. The process involves gelling to create a collagen gel on the membrane, followed by the application of a mixture of collagen and a contractile agent, which allows for controlled radial contraction. A suitable contractile agent identified in her patent is fibroblast cells. The invention also details the production of a skin tissue equivalent by disposing human epidermal cells on the contracted collagen gel, facilitating epidermalization. Additionally, the patent describes the use of a nutrient medium to support cell growth and the arrangement of absorbent members adjacent to the permeable membrane.

Career Highlights

Valerie Mason is currently employed at Organogenesis, Inc., where she continues to advance her research in tissue engineering. Her work has contributed to the development of innovative medical solutions that enhance patient care and treatment options.

Collaborations

Throughout her career, Valerie has collaborated with esteemed colleagues, including Paul D. Kemp and Eugene Bell, who have also made significant contributions to the field of tissue engineering.

Conclusion

Valerie Mason's innovative work in the preparation of tissue equivalents showcases her dedication to advancing medical technology. Her contributions have the potential to impact the future of regenerative medicine significantly.

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