Simplify your online presence. Elevate your brand.

Clip 2020 Hanandi Sleiman Mcgill University Dna Nanomachine Fabrication

Clip 2020 Hanandi Sleiman Mcgill University Dna Nanomachine
Clip 2020 Hanandi Sleiman Mcgill University Dna Nanomachine

Clip 2020 Hanandi Sleiman Mcgill University Dna Nanomachine Original here: watch?v=uaoduexo8roher brother firas sleiman involved with geo fencing and e government: firassleiman htt. ‪mcgill university‬ ‪‪cited by 14,318‬‬ ‪dna nanotechnology‬ ‪nucleic acid therapeutics‬ ‪drug delivery‬ ‪supramolecular chem.‬ ‪cancer therapies‬.

Hanadi Sleiman Professor And Canada Research Chair Tier I In Dna
Hanadi Sleiman Professor And Canada Research Chair Tier I In Dna

Hanadi Sleiman Professor And Canada Research Chair Tier I In Dna Dna nanostructures for cellular delivery of therapeutics prof. hanadi sleiman, chemistry and canada research chair in dna nanoscience at mcgill university. 1 14 2020 9:00:00 am view mediasite showcase mediasite's the trusted cornerstone of any campus or enterprise video strategy. She joined the faculty at mcgill university in 1999, where her research group focuses on using the molecule dna as a template to assemble nanostructured materials. To do this, we study and control the fundamental self assembly properties of dna, polymers and supramolecular materials. using only a minimal set of dna strands, we build unique 3d structures for applications such as drug delivery and the organization of other materials. Here, we demonstrate a new approach for the design and assembly of a dynamic dna cube with an addressable cellular uptake profile. this cube can be selectively unzipped from a 3d to a flat.

A Better Way To Build Dna Scaffolds Newsroom Mcgill University
A Better Way To Build Dna Scaffolds Newsroom Mcgill University

A Better Way To Build Dna Scaffolds Newsroom Mcgill University To do this, we study and control the fundamental self assembly properties of dna, polymers and supramolecular materials. using only a minimal set of dna strands, we build unique 3d structures for applications such as drug delivery and the organization of other materials. Here, we demonstrate a new approach for the design and assembly of a dynamic dna cube with an addressable cellular uptake profile. this cube can be selectively unzipped from a 3d to a flat. Our construction methods are distinct, in that they combine the use of synthetic molecules with natural dna base pairing. this approach has led to dna minimal routes to materials that are practical and scalable. Hanadi farouk sleiman frs is a canadian chemist who is canada research chair in dna nanoscience at mcgill university. her research makes use of dna as a template for nanomaterials. she was awarded the natural sciences and engineering research council polanyi award in 2021. Professor hanadi sleiman's researchgroup has developed a different approach to build dna nanostructures. starting from a minimum number of dna components,they create 3d dna host structures, such as cages, nanotubes and spherical nucleic acids, that are promising for targeted drug delivery. Just as a printing press transfers ink to paper in a cyclical process, dna can translocate materials from one substrate to another while preserving spatial information.

Comments are closed.