This inventor holds 1 USPTO granted patent and 3 published patent applications. Top assignees: Centre National De La Recherche Scientifique, Université De Paris. Active years: 2026.
Company Filing History:

Years Active: 2026
Title: Amanda Silva - Innovator in Fluidic Systems
Introduction
Amanda Silva is a prominent inventor based in Igny, France. She has made significant contributions to the field of fluidic systems, particularly in the production of extracellular vesicles. Her innovative approach combines engineering and biological principles to enhance the efficiency of vesicle production.
Latest Patents
Amanda holds a patent for a "Fluidic system for producing extracellular vesicles and associated method." This invention involves a fluidic system designed to produce extracellular vesicles from suspended producer cells. The system includes at least one container, a liquid medium, suspended producer cells, and a liquid medium agitator. The device is engineered to control the speed of the agitator, which is crucial for the growth of the suspended producer cells. The design ensures the generation of a turbulent flow in the container, applying shear stresses on the producer cells to facilitate the production of extracellular vesicles. The Kolmogorov length of the flow is maintained at less than or equal to 50 μm, optimizing the process.
Career Highlights
Throughout her career, Amanda has worked with esteemed institutions such as the Centre National de la Recherche Scientifique and Université de Paris. Her work has been instrumental in advancing research in fluidic systems and their applications in biotechnology.
Collaborations
Amanda has collaborated with notable colleagues, including Alice Grangier and Florence Gazeau. These partnerships have enriched her research and contributed to the development of innovative solutions in her field.
Conclusion
Amanda Silva is a trailblazer in the realm of fluidic systems, with her patent and collaborative efforts paving the way for advancements in the production of extracellular vesicles. Her work exemplifies the intersection of engineering and biology, showcasing the potential for innovation in scientific research.