Akron, OH, United States of America

Wen Tang


Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Innovations of Inventor Wen Tang

Introduction

Wen Tang is an accomplished inventor based in Akron, OH (US). She has made significant contributions to the field of bioactive materials through her innovative research and patents. Her work focuses on the development of advanced materials that can enhance the functionality of various applications, particularly in the medical field.

Latest Patents

Wen Tang holds a patent titled "Composition and methods for tethering bioactive peptides to metal oxide surfaces." This invention involves a series of multivalent dendrons that contain a bioactive peptide domain and surface-binding catechol domains. These dendrons are synthesized through solid-phase methods and exhibit a strong binding affinity to metal oxide surfaces such as TiO, ZrO, CeO, FeO, and SiO2. Additionally, they can bind to other inorganic surfaces like hydroxyapatite, silver, fluorapatite, calcium carbonate, and gold. The catechol-bearing dendrons provide a rapid and efficient method for functionalizing a wide range of inorganic materials with bioactive peptides, making them suitable for coating orthopedic implants and fixation devices. Wen Tang has 1 patent to her name.

Career Highlights

Wen Tang is affiliated with the University of Akron, where she conducts her research and contributes to the academic community. Her work has garnered attention for its potential applications in improving medical devices and enhancing patient outcomes.

Collaborations

Wen Tang collaborates with Matthew L Becker, who is also involved in research related to bioactive materials. Their partnership has led to advancements in the understanding and application of bioactive peptides in various fields.

Conclusion

Wen Tang's innovative work in the field of bioactive materials demonstrates her commitment to advancing technology for medical applications. Her contributions have the potential to significantly impact the development of orthopedic implants and other medical devices.

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