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Magdalena Czekalska
Magdalena Czekalska
Nencki Institute of Experimental Biology
Bestätigte E-Mail-Adresse bei nencki.edu.pl
Titel
Zitiert von
Zitiert von
Jahr
RNA granules hitchhike on lysosomes for long-distance transport, using annexin A11 as a molecular tether
YC Liao, MS Fernandopulle, G Wang, H Choi, L Hao, CM Drerup, R Patel, ...
Cell 179 (1), 147-164. e20, 2019
4862019
Reentrant liquid condensate phase of proteins is stabilized by hydrophobic and non-ionic interactions
G Krainer, TJ Welsh, JA Joseph, P St George-Hyslop, AA Hyman, ...
Biophysical Journal 120 (3), 28a, 2021
3992021
Automated generation of libraries of nL droplets
TS Kaminski, S Jakiela, MA Czekalska, W Postek, P Garstecki
Lab on a Chip 12 (20), 3995-4002, 2012
672012
A droplet microfluidic system for sequential generation of lipid bilayers and transmembrane electrical recordings
MA Czekalska, TS Kaminski, S Jakiela, KT Sapra, H Bayley, P Garstecki
Lab on a Chip 15 (2), 541-548, 2015
582015
Direct digital sensing of protein biomarkers in solution
G Krainer, KL Saar, WE Arter, TJ Welsh, MA Czekalska, RPB Jacquat, ...
Nature Communications 14 (1), 653, 2023
262023
Passive and parallel microfluidic formation of droplet interface bilayers (DIBs) for measurement of leakage of small molecules through artificial phospholipid membranes
MA Czekalska, TS Kaminski, K Makuch, P Garstecki
Sensors and Actuators B: Chemical 286, 258-265, 2019
252019
An automated microfluidic system for the generation of droplet interface bilayer networks
MA Czekalska, TS Kaminski, M Horka, S Jakiela, P Garstecki
Micromachines 8 (3), 93, 2017
152017
One-step generation of multisomes from lipid-stabilized double emulsions
MA Czekalska, AMJ Jacobs, Z Toprakcioglu, L Kong, KN Baumann, ...
ACS Applied Materials & Interfaces 13 (5), 6739-6747, 2021
132021
α-Synuclein oligomers displace monomeric α-synuclein from lipid membranes
G Šneiderienė, MA Czekalska, CK Xu, AK Jayaram, G Krainer, ...
ACS nano 18 (27), 17469-17482, 2024
62024
Single-molecule digital sizing of proteins in solution
G Krainer, RPB Jacquat, MM Schneider, TJ Welsh, J Fan, QAE Peter, ...
Nature Communications 15 (1), 7740, 2024
32024
ANXA11 biomolecular condensates facilitate protein-lipid phase coupling on lysosomal membranes
J Nixon-Abell, FS Ruggeri, S Qamar, TW Herling, MA Czekalska, Y Shen, ...
BioRxiv, 2023.03. 22.533832, 2023
32023
Pharmacological inhibition of the m6A RNA reader, YTHDC1, as a novel approach to targeting biomolecular condensates in cancer
RC Centore, M Charles, M Arora, Y Chen, M Watson, J Sawant, C Kelley, ...
Cancer Research 84 (6_Supplement), 3231-3231, 2024
12024
Selective Inhibition of the m6a RNA Reader, YTHDC1, As a Novel Therapeutic Strategy for MYC-Driven Acute Myeloid Leukemia
M Arora, R Centore, M Charles, Y Chen, M Watson, M Czekalska, ...
Blood 144, 2207, 2024
2024
244 (PB232): Pharmacologic inhibition of YTHDC1 biomolecular condensates as a novel approach to targeting L-MYC driven small cell lung cancer
R Centore, M Charles, M Arora, Y Chen, M Watson, C Kelley, ...
European Journal of Cancer 211, 114762, 2024
2024
Microfluidics-based screening platform identifies a novel therapeutic approach to targeting EML4-ALK driven cancers
RC Centore, M Watson, J Doh, J Cattin, C Sgambato, A Alex, J Sawant, ...
Cancer Research 84 (6_Supplement), 1657-1657, 2024
2024
Thermodynamics of oligomeric alph-asynuclein-membrane interactions
G Musteikyte, C Xu, M Czekalska, Q Peter, G Krainer, S Devenish, ...
FEBS OPEN BIO 12, 126-126, 2022
2022
Droplet microfluidic systems for formation and studies of lipid bilayers
MA Czekalska
2019
AUTOMATED SYSTEM FOR RAPID GENERATION AND TRANSPORT OF LIBRARIES OF NANOLITER DROPLETS.
TS Kaminski, S Jakiela, MA Czekalska, WPP Garstecki
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
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