Olomouc, Czechia

Martina Pospisilova


 

Average Co-Inventor Count = 11.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Martina Pospisilova: Innovator in Antitumor Compositions

Introduction

Martina Pospisilova is a prominent inventor based in Olomouc, Czech Republic. She has made significant contributions to the field of medical science, particularly in the development of antitumor compositions. Her innovative work focuses on utilizing hyaluronic acid and inorganic nanoparticles to create effective treatments for various types of cancer.

Latest Patents

Martina holds a patent for an antitumor composition based on hydrophobized hyaluronan and inorganic nanoparticles stabilized by oleic acid. This invention relates to a method of preparation and use of the composition, which serves as a carrier for inorganic nanoparticles. The composition is selectively cytotoxic to both suspension and adherent tumor cell lines, including those associated with colorectal carcinoma, lung carcinoma, hepatocellular carcinoma, and breast adenocarcinoma. The highest cytotoxic effects were observed with the composition based on an oleyl derivative of hyaluronan combined with superparamagnetic iron oxide nanoparticles (SPIONs). Additionally, this composition can be used for in vivo detection of accumulation in the body, particularly in tumors or the liver, and is sterilizable in its final package.

Career Highlights

Martina Pospisilova is currently associated with Contipro A.S., a company known for its innovative approaches in the field of biomedicine. Her work has garnered attention for its potential to improve cancer treatment outcomes through targeted therapies.

Collaborations

Martina collaborates with talented individuals such as Daniela Smejkalova and Kristina Nesporova, who contribute to her research and development efforts.

Conclusion

Martina Pospisilova's innovative work in antitumor compositions showcases her dedication to advancing medical science. Her contributions have the potential to significantly impact cancer treatment methodologies.

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