Ulmschneider, Martin
74  Ergebnisse:
Personensuche X
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2

A least-squares-fitting procedure for an efficient preclini..:

Jorgensen, Christian ; Troendle, Evan P ; Ulmschneider, Jakob P..
Jorgensen , C , Troendle , E P , Ulmschneider , J P , Searson , P C & Ulmschneider , M B 2023 , ' A least-squares-fitting procedure for an efficient preclinical ranking of passive transport across the blood–brain barrier endothelium ' , Journal of Computer-Aided Molecular Design , vol. 37 , no. 11 , pp. 537-549 . https://doi.org/10.1007/s10822-023-00525-1.  , 2023
 
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4

Integrated Design of a Membrane-Lytic Peptide-Based Intrave..:

Chen, Charles H ; Liu, Yu Han ; Eskandari, Arvin...
Chen , C H , Liu , Y H , Eskandari , A , Ghimire , J , Lin , L C W , Fang , Z S , Wimley , W C , Ulmschneider , J P , Suntharalingam , K , Hu , C M J & Ulmschneider , M B 2022 , ' Integrated Design of a Membrane-Lytic Peptide-Based Intravenous Nanotherapeutic Suppresses Triple-Negative Breast Cancer ' , Advanced Science , vol. 9 , no. 13 , 2105506 . https://doi.org/10.1002/advs.202105506.  , 2022
 
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5

Atomistic Model of Solute Transport across the Blood-Brain ..:

Jorgensen, Christian ; Ulmschneider, Martin B ; Searson, Peter C
Jorgensen , C , Ulmschneider , M B & Searson , P C 2022 , ' Atomistic Model of Solute Transport across the Blood-Brain Barrier ' , ACS Omega , vol. 7 , no. 1 , pp. 1100-1112 . https://doi.org/10.1021/acsomega.1c05679.  , 2022
 
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6

Integrated Design of a Membrane-Lytic Peptide-Based Intrave..:

Chen, Charles H ; Liu, Yu Han ; Eskandari, Arvin...
Chen , C H , Liu , Y H , Eskandari , A , Ghimire , J , Lin , L C W , Fang , Z S , Wimley , W C , Ulmschneider , J P , Suntharalingam , K , Hu , C M J & Ulmschneider , M B 2022 , ' Integrated Design of a Membrane-Lytic Peptide-Based Intravenous Nanotherapeutic Suppresses Triple-Negative Breast Cancer ' , Advanced Science , vol. 9 , no. 13 , 2105506 . https://doi.org/10.1002/advs.202105506.  , 2022
 
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8

Atomistic Model of Solute Transport across the Blood-Brain ..:

Jorgensen, Christian ; Ulmschneider, Martin B ; Searson, Peter C
Jorgensen , C , Ulmschneider , M B & Searson , P C 2022 , ' Atomistic Model of Solute Transport across the Blood-Brain Barrier ' , ACS Omega , vol. 7 , no. 1 , pp. 1100-1112 . https://doi.org/10.1021/acsomega.1c05679.  , 2022
 
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10

Simulation-Guided Rational de Novo Design of a Small Pore-F..:

Chen, Charles H ; Starr, Charles G ; Troendle, Evan...
Chen , C H , Starr , C G , Troendle , E , Wiedman , G , Wimley , W C , Ulmschneider , J P & Ulmschneider , M B 2019 , ' Simulation-Guided Rational de Novo Design of a Small Pore-Forming Antimicrobial Peptide ' , Journal of the American Chemical Society , vol. 141 , no. 12 , pp. 4839-4848 . https://doi.org/10.1021/jacs.8b11939.  , 2019
 
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11

An experimentally validated approach to calculate the blood..:

Wang, Yukun ; Gallagher, Erin ; Jorgensen, Christian...
Wang , Y , Gallagher , E , Jorgensen , C , Troendle , E P , Hu , D , Searson , P C & Ulmschneider , M B 2019 , ' An experimentally validated approach to calculate the blood-brain barrier permeability of small molecules ' , Scientific Reports , vol. 9 , no. 1 , 6117 . https://doi.org/10.1038/s41598-019-42272-0.  , 2019
 
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12

Simulation-Guided Rational de Novo Design of a Small Pore-F..:

Chen, Charles H ; Starr, Charles G ; Troendle, Evan...
Chen , C H , Starr , C G , Troendle , E , Wiedman , G , Wimley , W C , Ulmschneider , J P & Ulmschneider , M B 2019 , ' Simulation-Guided Rational de Novo Design of a Small Pore-Forming Antimicrobial Peptide ' , Journal of the American Chemical Society , vol. 141 , no. 12 , pp. 4839-4848 . https://doi.org/10.1021/jacs.8b11939.  , 2019
 
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15

An experimentally validated approach to calculate the blood..:

Wang, Yukun ; Gallagher, Erin ; Jorgensen, Christian...
Wang , Y , Gallagher , E , Jorgensen , C , Troendle , E P , Hu , D , Searson , P C & Ulmschneider , M B 2019 , ' An experimentally validated approach to calculate the blood-brain barrier permeability of small molecules ' , Scientific Reports , vol. 9 , no. 1 , 6117 . https://doi.org/10.1038/s41598-019-42272-0.  , 2019
 
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