This inventor holds 1 USPTO granted patent. Top assignee: Indian Institute of Science. Active years: 2023.
Company Filing History:
Years Active: 2023
Title: Innovator Spotlight: Pallavi Dasgupta
Introduction
Pallavi Dasgupta is a prominent inventor based in Bengaluru, India. She has made significant contributions to the field of electrochemical measurement, particularly in the quantification of creatinine in serum. Her innovative work has the potential to enhance diagnostic methods in medical laboratories.
Latest Patents
Pallavi holds a patent for her invention titled "Electrochemical measurement of creatinine in serum." This patent describes methods and devices for quantifying creatinine in a test sample. The process involves contacting the test sample with a sensing composition to obtain a product that includes a hydantoin-transition metal complex and ammonia. The sensing composition consists of creatinine deaminase and a transition metal salt. The enzymatic reaction of creatinine deaminase with creatinine produces N-methyl hydantoin and ammonia. The N-methyl hydantoin subsequently forms a hydantoin-transition metal complex with the transition metal salt. By applying a potential difference to the product, a current signal is measured, which is indicative of the concentration of N-methyl hydantoin. This concentration is then correlated with the concentration of creatinine to quantify it in the test sample.
Career Highlights
Pallavi is affiliated with the Indian Institute of Science, where she conducts her research and development activities. Her work is characterized by a strong focus on practical applications that can lead to advancements in healthcare diagnostics.
Collaborations
Pallavi collaborates with esteemed colleagues such as Patnam Krishnaswamy and Vinay Kumar. These partnerships enhance her research efforts and contribute to the innovative environment at the Indian Institute of Science.
Conclusion
Pallavi Dasgupta is a trailblazer in the field of electrochemical measurement, with her patent offering valuable insights into the quantification of creatinine. Her contributions are poised to make a significant impact on medical diagnostics and patient care.
