https://ogma.newcastle.edu.au/vital/access/ /manager/Index ${session.getAttribute("locale")} 5 Regulating the uptake of poly(N-(2-hydroxypropyl) methacrylamide)-based micelles in cells cultured on micropatterned surfaces https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:48693 Wed 29 Mar 2023 09:21:41 AEDT ]]> A High Throughput Approach for Designing Polymers That Mimic the TRAIL Protein https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:51014 50 values ∼2 μM and resulted in the elevated levels of caspase-8 expected from this mechanism of cell death. Our results demonstrate the potential for HTP screening methods to be used in the design of polymers that can mimic a whole range of complex therapeutic proteins.]]> Wed 15 May 2024 08:50:44 AEST ]]> Albumin-micelles via a one-pot technology platform for the delivery of drugs https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:19522 Wed 11 Apr 2018 13:22:24 AEST ]]> Confinement of folding motifs within central blocks improves single chain polymer nanoparticle folding https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:54562 Thu 29 Feb 2024 14:46:31 AEDT ]]> Traceless pH-Sensitive Antibody Conjugation Inspired by Citraconic Anhydride https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:51060 Thu 17 Aug 2023 10:21:06 AEST ]]> Fluorescence enables high throughput screening of polyelectrolyte-protein binding affinities https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:51059 Thu 17 Aug 2023 10:20:13 AEST ]]> Enabling peristalsis of human colon tumor organoids on microfluidic chips https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:49688 Mon 29 May 2023 11:08:53 AEST ]]> Peptide-Conjugated Micelles Make Effective Mimics of the TRAIL Protein for Driving Apoptosis in Colon Cancer https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:54743 Mon 11 Mar 2024 14:25:43 AEDT ]]> PET-RAFT enables efficient and automated multiblock star synthesis https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:47911 95% conversion in each block extension. The improvement in control is likely due to the reabsorption of the free radical at the propagating chain end by the excited catalyst, which would otherwise lead to a termination product. Simple modeling shows the dramatic effect that this has in the case of star polymerizations. Because PET-RAFT is also tolerant to oxygen, we were able to automate the synthesis of up to heptablock stars at short block lengths, providing a useful technique for screening the effect of polymer composition on the solution structure.]]> Mon 06 Feb 2023 15:44:56 AEDT ]]> The Core-Shell Structure, Not Sugar, Drives the Thermal Stabilization of Single-Enzyme Nanoparticles https://ogma.newcastle.edu.au/vital/access/ /manager/Repository/uon:48886 Fri 14 Apr 2023 10:57:45 AEST ]]>