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Biomacromolecules|July 30, 2011
Trimer-based design of pH-responsive protein cage results in soluble disassembled structuresTao Peng, Sierin LimMethods in Molecular Biology (Clifton, N.J.)|November 1, 2014
Determining the relaxivity values of protein cage-templated nanoparticles using magnetic resonance imagingBarindra Sana, Sierin LimNPG Asia Materials|March 29, 2020
Engineering protein nanocages as carriers for biomedical applicationsSathyamoorthy Bhaskar, Sierin LimRSC Advances|August 8, 2024
Ferritin cages as building blocks for higher-order assembly through copper-sulfur bonds for HER analysisRuoxuan Sun, Sierin LimEngineering Biology|March 27, 2023
Protein cages as building blocks for superstructuresRuoxuan Sun, Sierin LimWiley Interdisciplinary Reviews. Nanomedicine and Nanobiotechnology|April 6, 2021
Protein nanoparticles in molecular, cellular, and tissue imagingTanvi Sushil Kaku, Sierin LimBiochimica Et Biophysica Acta|September 6, 2015
The unique self-assembly/disassembly property of Archaeoglobus fulgidus ferritin and its implications on molecular release from the protein cageBarindra Sana, Eric Johnson, Sierin LimBiomaterials Science|July 30, 2015
Design of a reversible inversed pH-responsive caged proteinTao Peng, Hwankyu Lee, Sierin LimACS Applied Materials & Interfaces|March 15, 2017
Protein Nanocage as a pH-Switchable Pickering EmulsifierMridul Sarker, Nikodem Tomczak, Sierin LimBiomacromolecules|February 11, 2012
Isolating a trimer intermediate in the self-assembly of E2 protein cageTao Peng, Hwankyu Lee, Sierin LimPageof 8