Istvan Mandity
Istvan Mandity
Semmelweis University Institute of Organic Chemistry/ Research Centre for Natural Sciences
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Effects of the alternating backbone configuration on the secondary structure and self-assembly of β-peptides
TA Martinek, IM Mándity, L Fülöp, GK Tóth, E Vass, M Hollósi, E Forró, ...
Journal of the American Chemical Society 128 (41), 13539-13544, 2006
Chain-length-dependent helical motifs and self-association of β-peptides with constrained side chains
A Hetényi, IM Mándity, TA Martinek, GK Tóth, F Fülöp
Journal of the American Chemical Society 127 (2), 547-553, 2005
Design of peptidic foldamer helices: A stereochemical patterning approach
IM Mándity, E Wéber, TA Martinek, G Olajos, G Tóth, E Vass, F Fülöp
Angewandte Chemie International Edition 48 (12), 2171-2175, 2009
Secondary structure dependent self‐assembly of β‐peptides into nanosized fibrils and membranes
TA Martinek, A Hetényi, L Fülöp, IM Mándity, GK Tóth, I Dékány, F Fülöp
Angewandte Chemie 118 (15), 2456-2460, 2006
Unique α, β‐and α, α, β, β‐Peptide Foldamers Based on cis‐β‐Aminocyclopentanecarboxylic Acid
Ł Berlicki, L Pilsl, E Wéber, IM Mándity, C Cabrele, TA Martinek, F Fülöp, ...
Angewandte Chemie International Edition 51 (9), 2208-2212, 2012
Strategic application of residence‐time control in continuous‐flow reactors
IM Mándity, SB Ötvös, F Fülöp
ChemistryOpen 4 (3), 212-223, 2015
Highly Efficient 1, 4‐Addition of Aldehydes to Nitroolefins: Organocatalysis in Continuous Flow by Solid‐Supported Peptidic Catalysts
SB Ötvös, IM Mándity, F Fülöp
ChemSusChem 5 (2), 266-269, 2012
Carbon dots from citric acid and its intermediates formed by thermal decomposition
R Ludmerczki, S Mura, CM Carbonaro, IM Mandity, M Carraro, N Senes, ...
Chemistry–A European Journal 25 (51), 11963-11974, 2019
Building β-peptide H10/12 foldamer helices with six-membered cyclic side-chains: Fine-tuning of folding and self-assembly
IM Mándity, L Fülöp, E Vass, GK Tóth, TA Martinek, F Fülöp
Organic Letters 12 (23), 5584-5587, 2010
An overview of peptide and peptoid foldamers in medicinal chemistry
IM Mándity, F Fülöp
Expert opinion on drug discovery 10 (11), 1163-1177, 2015
Continuous‐flow solid‐phase peptide synthesis: a revolutionary reduction of the amino acid excess
IM Mándity, B Olasz, SB Ötvös, F Fülöp
ChemSusChem 7 (11), 3172-3176, 2014
Highly functionalized cyclic β-amino acid moieties as promising scaffolds in peptide research and drug design
L Kiss, IM Mándity, F Fülöp
Amino Acids 49 (9), 1441-1455, 2017
Asymmetric aldol reaction in a continuous-flow reactor catalyzed by a highly reusable heterogeneous peptide
SB Ötvös, IM Mándity, F Fülöp
Journal of catalysis 295, 179-185, 2012
A foldamer-dendrimer conjugate neutralizes synaptotoxic β-amyloid oligomers
L Fülöp, IM Mándity, G Juhász, V Szegedi, A Hetényi, E Wéber, Z Bozsó, ...
Public Library of Science 7 (7), e39485, 2012
Harnessing the versatility of continuous‐flow processes: Selective and efficient reactions
IM Mandity, SB Ötvös, G Szőlősi, F Fülöp
The Chemical Record 16 (3), 1018-1033, 2016
Alkyne–Azide Cycloadditions with Copper Powder in a High‐Pressure Continuous‐Flow Reactor: High‐Temperature Conditions versus the Role of Additives
SB Ötvös, IM Mándity, L Kiss, F Fülöp
Chemistry–An Asian Journal 8 (4), 800-808, 2013
Highly Selective Continuous‐Flow Synthesis of Potentially Bioactive Deuterated Chalcone Derivatives
CT Hsieh, SB Oetvoes, YC Wu, IM Mandity, FR Chang, F Fueloep
ChemPlusChem 80 (5), 859-864, 2015
Efficient continuous-flow synthesis of novel 1, 2, 3-triazole-substituted β-aminocyclohexanecarboxylic acid derivatives with gram-scale production
SB Ötvös, Á Georgiádes, IM Mándity, L Kiss, F Fülöp
Beilstein journal of organic chemistry 9 (1), 1508-1516, 2013
Physicochemical profiling of baicalin along with the development and characterization of cyclodextrin inclusion complexes
G Jakab, D Bogdán, K Mazák, R Deme, Z Mucsi, IM Mándity, B Noszál, ...
AAPS PharmSciTech 20 (8), 1-12, 2019
A simple, efficient, and selective deuteration via a flow chemistry approach
IM Mándity, TA Martinek, F Darvas, F Fülöp
Tetrahedron Letters 50 (30), 4372-4374, 2009
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