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Matthew J. Tamasi
Matthew J. Tamasi
PhD Candidate, Rutgers University
Verified email at scarletmail.rutgers.edu
Title
Cited by
Cited by
Year
Machine learning on a robotic platform for the design of polymer–protein hybrids
MJ Tamasi, RA Patel, CH Borca, S Kosuri, H Mugnier, R Upadhya, ...
Advanced Materials 34 (30), 2201809, 2022
1152022
Automation and data-driven design of polymer therapeutics
R Upadhya, S Kosuri, M Tamasi, TA Meyer, S Atta, MA Webb, AJ Gormley
Advanced drug delivery reviews 171, 1-28, 2021
882021
Machine‐assisted discovery of Chondroitinase ABC complexes toward sustained neural regeneration
S Kosuri, CH Borca, H Mugnier, M Tamasi, RA Patel, I Perez, S Kumar, ...
Advanced healthcare materials 11 (10), 2102101, 2022
472022
Automation of controlled/living radical polymerization
M Tamasi, S Kosuri, J DiStefano, R Chapman, AJ Gormley
Advanced Intelligent Systems 2 (2), 1900126, 2020
472020
A user’s guide to machine learning for polymeric biomaterials
TA Meyer, C Ramirez, MJ Tamasi, AJ Gormley
ACS Polymers Au 3 (2), 141-157, 2022
372022
Biologic formulation in a self-driving biomaterials lab
MJ Tamasi, AJ Gormley
Cell Reports Physical Science, 101041, 2022
142022
A fully automated platform for photoinitiated RAFT polymerization
J Lee, P Mulay, MJ Tamasi, J Yeow, MM Stevens, AJ Gormley
Digital Discovery 2 (1), 219-233, 2023
122023
Data-Driven Design of Protein-Like Single-Chain Polymer Nanoparticles
R Upadhya, MJ Tamasi, E Di_Mare, S Murthy, AJ Gormley
ChemRxiv, 2022
52022
Examining polymer‐protein biophysical interactions with small‐angle x‐ray scattering and quartz crystal microbalance with dissipation
R Upadhya, E Di Mare, MJ Tamasi, S Kosuri, NS Murthy, AJ Gormley
Journal of Biomedical Materials Research Part A 111 (4), 440-450, 2023
32023
AAV6 mediated Gsx1 expression in neural stem progenitor cells promotes neurogenesis and restores locomotor function after contusion spinal cord injury
Z Finkel, F Esteban, B Rodriguez, T Clifford, A Joseph, H Alostaz, ...
Neurotherapeutics, e00362, 2024
12024
Machine‐Assisted Discovery of Chondroitinase ABC Complexes toward Sustained Neural Regeneration (Adv. Healthcare Mater. 10/2022)
S Kosuri, CH Borca, H Mugnier, M Tamasi, RA Patel, I Perez, S Kumar, ...
Advanced Healthcare Materials 11 (10), 2270051, 2022
12022
High throughput screening of random heteropolymers that stabilize enzymes
S Kosuri, M Tamasi, AJ Gormley
Transactions of the Annual Meeting of the Society for Biomaterials and the …, 2019
12019
Method and systems for a machine-assisted discovery of chondroitinase abc complexes towards sustained neural regeneration
AJ Gormley, M Tamasi, S Kosuri, MA Webb, CH Borca, RA Patel
US Patent App. 18/645,966, 2024
2024
Methods and systems for stabilizing proteins using intelligent automation
A Gormley, M Tamasi
US Patent App. 17/922,938, 2023
2023
Structural Assessment of Polymer-Enzyme Complex Nanoparticle Stability
NS Murthy, R Upadhya, S Kosuri, M Tamasi, AJ Gormley
Transactions of the Society for Biomaterials 2022, 2022
2022
High throughput identification of synthetic polymers with globular and protein-like features
R Upadhya, NS Murthy, S Kosuri, M Tamasi, AJ Gormley
42nd Society for Biomaterials Annual Meeting and Exposition 2019: The …, 2019
2019
Adaptation of liquid handling robotics for high throughput customizable raft-polymerization
M Tamasi, S Kosuri, R Upadhya, A Gormley
42nd Society for Biomaterials Annual Meeting and Exposition 2019: The …, 2019
2019
Active Learning Driven Design of Enzyme Stabilizing Polymers
M Tamasi, S Kosuri, DAJG Sabarish Selvarajan
Machine Learning Guided Synthesis and Testing of Novel Heteropolymers that Stabilize Chondroitinase ABC
S Kosuri, CH Borca, H Mugnier, M Tamasi, RA Patel, I Perez, Z Finkel, ...
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