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nanoparticles interact with each other, even when they have complex, non-spherical shapes (such as rods, cubes, triangles, or stars). To do this, we will generate interaction data points using macroscopic
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course in the fall term in the design of mRNA-based products for delivery via lipid nanoparticles. The course will include an introduction to the principles of mRNA vaccines and therapeutics and practices
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silica–based micro- and nanoparticles designed for the incorporation of therapeutic agents (anti-inflammatory and antifibrotic drugs) and/or antibacterial agents. Where to apply Website https
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oligonucleotides, and investigate the biofilm eradication efficacy of functionalized lipid nanoparticles with both Z-DNA-targeting and antigene oligonucleotides Where to apply Website http://www.unipg.it
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structural analysis in cryoET data, with two interconnected aims: (1) detecting gold nanoparticle (AuNP) probes to improve reconstruction quality and identify molecular targets; (2) identifying the arrangement
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) detecting gold nanoparticle (AuNP) probes to improve reconstruction quality and identify molecular targets; (2) identifying the arrangement and connectivity of nucleosomes in chromatin that give rise
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models capable of incorporating the effects of morphology and nanoparticle distribution. The framework will be extended to include damage and softening phenomena induced by matrix–nanoparticle interactions
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) in Paris. It will be co-supervised by Catherine AMIENS, from the LCC's 'Engineering of Metallic Nanoparticles' team (https://www.lcc-toulouse.fr/ en/engineering-of-metal-nanoparticles-team-l/ ) and
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are seeking a Research Technologist who will work on a multidisciplinary team in the lab of Dr. Joel Sunshine developing degradable nanoparticle systems for gene delivery and immunotherapy. Responsibilities
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for Vascular Translational Science (https://lvts.fr/ ). Objective: We are seeking to recruit a chemist with expertise in nanoparticle synthesis, functionalisation and characterisation to join the replication