Hopkinton, MA, United States of America

Fangnian Wang


Average Co-Inventor Count = 4.4

ph-index = 1

Forward Citations = 1(Granted Patents)


Location History:

  • Millis, MA (US) (2019)
  • Hopkinton, MA (US) (2020)

Company Filing History:


Years Active: 2019-2020

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2 patents (USPTO):

Title: Innovations by Fangnian Wang in Molecular Systems

Introduction

Fangnian Wang is an accomplished inventor based in Hopkinton, MA (US). He has made significant contributions to the field of molecular systems, particularly in the area of sample processing and nucleic acid amplification. With a total of 2 patents, his work has advanced the methodologies used in quantitative analysis of blood samples.

Latest Patents

Fangnian Wang's latest patents include innovative technologies that enhance the efficiency and accuracy of sample processing. One of his notable patents is focused on "Cell surface marker depletion in a sample processing device." This patent provides methods, devices, and kits for conducting a quantitative analysis of a whole blood sample, with various modifications described to improve the process. Another significant patent involves "Devices comprising bacteriophage PHI6 internal control compositions," which offers control compositions used in nucleic acid amplification. This patent also details various modifications to the compositions and methods, along with the devices and kits utilized.

Career Highlights

Fangnian Wang is currently employed at Roche Molecular Systems, Inc., where he continues to innovate and develop new technologies. His work at Roche has positioned him as a key player in the advancement of molecular diagnostics.

Collaborations

Fangnian has collaborated with notable colleagues, including Nancy J Schoenbrunner and Jinshuang Lu, contributing to a dynamic research environment that fosters innovation.

Conclusion

Fangnian Wang's contributions to molecular systems through his patents and work at Roche Molecular Systems, Inc. highlight his role as a leading inventor in the field. His innovative approaches continue to shape the future of sample processing and nucleic acid amplification.

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