Vancouver, Canada

Sheng Pan

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2023

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1 patent (USPTO):Explore Patents

Title: Sheng Pan - Innovator in Bioprinting Technology

Introduction

Sheng Pan is a prominent inventor based in Vancouver, Canada. He has made significant contributions to the field of bioprinting, particularly in the development of synthetic living tissue structures. His innovative work has the potential to revolutionize tissue engineering and regenerative medicine.

Latest Patents

Sheng Pan holds a patent for a groundbreaking invention titled "Continuously bioprinted multilayer tissue structure." This patent describes synthetic living tissue structures that consist of multiple layers of fibers deposited in solidified form from a 3D bioprinter. The fibers contain a variety of mammalian cells embedded within a biocompatible matrix. Notably, the structural integrity of the fibers is preserved during and after deposition without the need for additional crosslinking. The continuous bioprinting process allows for the creation of synthetic muscle tissue structures that exhibit contractile functionality.

Career Highlights

Sheng Pan is associated with Aspect Biosystems Ltd., a company at the forefront of bioprinting technology. His work at the company focuses on advancing the capabilities of 3D bioprinting to create complex tissue structures for medical applications. With his expertise, he has contributed to the development of innovative solutions that address critical challenges in tissue engineering.

Collaborations

Sheng Pan collaborates with talented individuals in his field, including Simon Travis Beyer and Tamer Mohamed. These collaborations enhance the research and development efforts at Aspect Biosystems Ltd., fostering an environment of innovation and creativity.

Conclusion

Sheng Pan is a key figure in the bioprinting landscape, with a patent that showcases his innovative approach to creating synthetic living tissues. His contributions have the potential to significantly impact the future of regenerative medicine and tissue engineering.

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