2 results match your criteria: "University of Leipzig 04103 Leipzig[Affiliation]"

Background: Vascular endothelial growth factor D (VEGF-D) is a growth-factor involved in the development of blood vessels and lymphatics in tissues all over the human body. Interestingly, VEGF-D serum levels are increased in certain tumor entities. For tuberous sclerosis complex (TSC), a rare genetic disease associated with (benign) tumor growth, VEGF-D is already implemented as a diagnostic and therapeutic biomarker to monitor onset and progress of lymphangioleiomyomatosis (LAM), one of the noncancerous tumor manifestations in mainly female adult TSC patients.

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Throughout history, humanity has been threatened by countless epidemic and pandemic outbreaks of infectious diseases, from the Justinianic Plague to the Spanish flu to COVID-19. While numerous antimicrobial and antiviral drugs have been developed over the last 200 years to face these threats, the globalized and highly connected world of the 21st century demands for an ever-increasing efficiency in the detection and treatment of infectious diseases. Consequently, the rapidly evolving field of nanomedicine has taken up the challenge and developed a plethora of strategies to fight infectious diseases with the help of various nanomaterials such as noble metal nanoparticles, liposomes, nanogels, and virus capsids.

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