Explore how DNA nanorobots enhance synthetic cell design by creating programmable channels for targeted drug delivery.
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Highlights: DNA nanorobots control artificial cell membranes, mimicking living cell functions It creates transpo
Explore how DNA nanorobots enhance synthetic cell design by creating programmable channels for targeted drug delivery.
Scientists at the University of Stuttgart have succeeded in controlling the structure and function of biological membranes with the help of 'DNA...
“mRNA VACCINES NANOPARTICLES KILL THE HEART CELLS” NATURE StudyIn the cover image the Italian Biochemist Gabirele Segalla who first in the world...
Two Nebraska researchers have launched a startup company aimed at bringing to market an innovative method for delivering therapeutics, gene editing...
Individuals with sickle cell disease – a chronic illness where misshapen, sticky blood cells clump together, reducing oxygen delivery to organs –...
People with sickle cell disease-a chronic condition causing misshapen blood cells to reduce oxygen delivery-face a higher risk of stroke and...
Nebraska researchers introduce Minovacca, pioneering programmable milk exosomes for targeted therapeutic delivery, offering hope for rare and common...
As a leading shopping hub for luxury appeal and way of living items, LMCHING is reshaping the appeal field by revealing cutting-edge devices and...
SINGAPORE - Media OutReach Newswire - 23 January 2025 - A groundbreaking study has revealed that INDIBA Proionic 448kHz + 20kHz technology...
Highlights: Tongue cancer organoids mimic patient-specific tumor biology Autophagy and cholesterol biosynthesis