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Scientific Reports|March 17, 2022
Optimizing the sensitivity and resolution of hyaluronan analysis with solid-state nanoporesFelipe Rivas, Paul L DeAngelis, Elaheh Rahbar, et al.American Journal of Physiology. Cell Physiology|February 23, 2022
Methods for isolating and analyzing physiological hyaluronan: a reviewFelipe Rivas, Dorothea Erxleben, Ian Smith, et al.Proteoglycan Research|December 9, 2024
High-fidelity and iterative affinity extraction of hyaluronanDorothea A Erxleben, Felipe Rivas, Ian Smith, et al.Nature Communications|March 14, 2018
Label-free analysis of physiological hyaluronan size distribution with a solid-state nanopore sensorFelipe Rivas, Osama K Zahid, Heidi L Reesink, et al.Arthritis Research & Therapy|August 21, 2021
Hyaluronic acid synthesis, degradation, and crosslinking in equine osteoarthritis: TNF-α-TSG-6-mediated HC-HA formationDiana C Fasanello, Jin Su, Siyu Deng, et al.Analytical Chemistry|January 12, 2024
Targeted Analysis of the Size Distribution of Heavy Chain-Modified Hyaluronan with Solid-State NanoporesDorothea A Erxleben, Rebecca J Dodd, Anthony J Day, et al.Nature Communications|December 5, 2019
Self-regenerating giant hyaluronan polymer brushesWenbin Wei, Jessica L Faubel, Hemaa Selvakumar, et al.Journal of Biomechanics|March 8, 2011
A model of a radially expanding and contracting lymphangionElaheh Rahbar, James E MooreNanomedicine : Nanotechnology, Biology, and Medicine|April 27, 2021
Solid-state nanopore analysis of human genomic DNA shows unaltered global 5-hydroxymethylcytosine content associated with early-stage breast cancerOsama K Zahid, Felipe Rivas, Fanny Wang, et al.Methods in Molecular Biology (Clifton, N.J.)|June 15, 2013
Methods for the Pasteurella glycosaminoglycan synthases: enzymes that polymerize hyaluronan, chondroitin, or heparosan chainsPaul L DeAngelisPageof 19