-
461
Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No...
Published 2025“…The LP(HPMA)-coated capillary was employed in the clinical proteomics analysis of non-small cell lung cancer tissues and their corresponding paracancerous tissues via CZE-ESI-MS/MS. …”
-
462
Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No...
Published 2025“…The LP(HPMA)-coated capillary was employed in the clinical proteomics analysis of non-small cell lung cancer tissues and their corresponding paracancerous tissues via CZE-ESI-MS/MS. …”
-
463
Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No...
Published 2025“…The LP(HPMA)-coated capillary was employed in the clinical proteomics analysis of non-small cell lung cancer tissues and their corresponding paracancerous tissues via CZE-ESI-MS/MS. …”
-
464
Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No...
Published 2025“…The LP(HPMA)-coated capillary was employed in the clinical proteomics analysis of non-small cell lung cancer tissues and their corresponding paracancerous tissues via CZE-ESI-MS/MS. …”
-
465
Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No...
Published 2025“…The LP(HPMA)-coated capillary was employed in the clinical proteomics analysis of non-small cell lung cancer tissues and their corresponding paracancerous tissues via CZE-ESI-MS/MS. …”
-
466
Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No...
Published 2025“…The LP(HPMA)-coated capillary was employed in the clinical proteomics analysis of non-small cell lung cancer tissues and their corresponding paracancerous tissues via CZE-ESI-MS/MS. …”
-
467
Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No...
Published 2025“…The LP(HPMA)-coated capillary was employed in the clinical proteomics analysis of non-small cell lung cancer tissues and their corresponding paracancerous tissues via CZE-ESI-MS/MS. …”
-
468
Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No...
Published 2025“…The LP(HPMA)-coated capillary was employed in the clinical proteomics analysis of non-small cell lung cancer tissues and their corresponding paracancerous tissues via CZE-ESI-MS/MS. …”
-
469
Biocompatible and Antifouling Linear Poly(<i>N</i>‑(2-hydroxypropyl)methacrylamide)-Coated Capillaries via Aqueous RAFT Polymerization Method for Clinical Proteomics Analysis of No...
Published 2025“…The LP(HPMA)-coated capillary was employed in the clinical proteomics analysis of non-small cell lung cancer tissues and their corresponding paracancerous tissues via CZE-ESI-MS/MS. …”
-
470
<b>ATP and Small Amphiphilic Molecules Act as Molecular Matchmakers to Fine-Tune FET Protein Clusters</b>
Published 2025“…At moderate concentrations (5 mM), the size of the clusters decreases but stabilizes. At high concentrations (10 mM), the cluster size further diminishes. …”
-
471
-
472
-
473
-
474
Thermally Programmable Off-Equilibrium Pathways in Salt-Doped Polyelectrolyte Hydrogels
Published 2025Subjects: -
475
Thermally Programmable Off-Equilibrium Pathways in Salt-Doped Polyelectrolyte Hydrogels
Published 2025Subjects: -
476
-
477
-
478
-
479
-
480
Comparison of key metrics before and after featuring fusion layer improvement.
Published 2025Subjects: