Office | 089/2180-77547 (Frau Steger) |
Telephone | 089 / 2180-77561 |
Room | E1.066 |
izabela.kaminska “at” cup.lmu.de |
Publications
Alan M. Szalai; Giovanni Ferrari; Lars Richter; Jakob Hartmann; Merve-Zeynep Kesici; Bosong Ji; Kush Coshic; Martin R. J. Dagleish; Annika Jaeger; Aleksei Aksimentiev; Ingrid Tessmer; Izabela Kamińska; Andrés M. Vera; Philip Tinnefeld
Single-molecule dynamic structuralbiology with vertically arranged DNA on afluorescence microscope Journal Article
In: Nature Methods, 2024.
@article{Szalai2024,
title = {Single-molecule dynamic structuralbiology with vertically arranged DNA on afluorescence microscope},
author = {Alan M. Szalai and Giovanni Ferrari and Lars Richter and Jakob Hartmann and Merve-Zeynep Kesici and Bosong Ji and Kush Coshic and Martin R. J. Dagleish and Annika Jaeger and Aleksei Aksimentiev and Ingrid Tessmer and Izabela Kamińska and Andrés M. Vera and Philip Tinnefeld},
url = {https://rdcu.be/dZyyO },
doi = {https://doi.org/10.1038/s41592-024-02498-x},
year = {2024},
date = {2024-11-08},
urldate = {2024-11-08},
journal = {Nature Methods},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Melanie Meincke; Andre Bazzone; Stephan Holzhauser; Maria Barthmes; Lars Richter; Fabian Knechtel; Evelyn Ploetz; Michael George; Niels Fertig; Izabela Kamińska; Philip Tinnefeld
Integration of highly sensitive large-area graphene-based biosensors in an automated sensing platform Journal Article
In: Measurement, vol. 240, pp. 115592, 2024.
@article{,
title = {Integration of highly sensitive large-area graphene-based biosensors in an automated sensing platform},
author = {Melanie Meincke and Andre Bazzone and Stephan Holzhauser and Maria Barthmes and Lars Richter and Fabian Knechtel and Evelyn Ploetz and Michael George and Niels Fertig and Izabela Kamińska and Philip Tinnefeld},
doi = {https://doi.org/10.1016/j.measurement.2024.115592},
year = {2024},
date = {2024-08-28},
urldate = {2024-08-28},
journal = {Measurement},
volume = {240},
pages = {115592},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Karolina Gronkiewicz; Lars Richter; Fabian Knechtel; Patryk Pyrcz; Paul Leidinger; Sebastian Günther; Evelyn Ploetz; Philip Tinnefeld; Izabela Kamińska
Expanding the range of graphene energy transfer with multilayer graphene Journal Article
In: Nanoscale, 2024.
@article{nokey,
title = {Expanding the range of graphene energy transfer with multilayer graphene},
author = {Karolina Gronkiewicz and Lars Richter and Fabian Knechtel and Patryk Pyrcz and Paul Leidinger and Sebastian Günther and Evelyn Ploetz and Philip Tinnefeld and Izabela Kamińska},
url = {https://doi.org/10.1039/D4NR01723D},
doi = {10.1039/D4NR01723D},
year = {2024},
date = {2024-06-26},
journal = {Nanoscale},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Lars Richter; Alan M Szalai; C Lorena Manzanares-Palenzuela; Izabela Kamińska; Philip Tinnefeld
Exploring the Synergies of Single-Molecule Fluorescence and 2D Materials Coupled by DNA Journal Article
In: Adv Mater, pp. e2303152, 2023, ISSN: 1521-4095.
@article{pmid37670535,
title = {Exploring the Synergies of Single-Molecule Fluorescence and 2D Materials Coupled by DNA},
author = {Lars Richter and Alan M Szalai and C Lorena Manzanares-Palenzuela and Izabela Kamińska and Philip Tinnefeld},
doi = {10.1002/adma.202303152},
issn = {1521-4095},
year = {2023},
date = {2023-09-01},
urldate = {2023-09-01},
journal = {Adv Mater},
pages = {e2303152},
abstract = {The world of 2D materials is steadily growing, with numerous researchers attempting to discover, elucidate, and exploit their properties. Approaches relying on the detection of single fluorescent molecules offer a set of advantages, for instance, high sensitivity and specificity, that allow the drawing of conclusions with unprecedented precision. Herein, it is argued how the study of 2D materials benefits from fluorescence-based single-molecule modalities, and vice versa. A special focus is placed on DNA, serving as a versatile adaptor when anchoring single dye molecules to 2D materials. The existing literature on the fruitful combination of the two fields is reviewed, and an outlook on the additional synergies that can be created between them provided.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Jonas Zähringer; Fiona Cole; Johann Bohlen; Florian Steiner; Izabela Kamińska; Philip Tinnefeld
Combining pMINFLUX, graphene energy transfer and DNA-PAINT for nanometer precise 3D super-resolution microscopy Journal Article
In: Light Sci Appl, vol. 12, no. 1, pp. 70, 2023, ISSN: 2047-7538.
@article{pmid36898993,
title = {Combining pMINFLUX, graphene energy transfer and DNA-PAINT for nanometer precise 3D super-resolution microscopy},
author = {Jonas Zähringer and Fiona Cole and Johann Bohlen and Florian Steiner and Izabela Kamińska and Philip Tinnefeld},
doi = {10.1038/s41377-023-01111-8},
issn = {2047-7538},
year = {2023},
date = {2023-03-01},
urldate = {2023-03-01},
journal = {Light Sci Appl},
volume = {12},
number = {1},
pages = {70},
abstract = {3D super-resolution microscopy with nanometric resolution is a key to fully complement ultrastructural techniques with fluorescence imaging. Here, we achieve 3D super-resolution by combining the 2D localization of pMINFLUX with the axial information of graphene energy transfer (GET) and the single-molecule switching by DNA-PAINT. We demonstrate <2 nm localization precision in all 3 dimension with axial precision reaching below 0.3 nm. In 3D DNA-PAINT measurements, structural features, i.e., individual docking strands at distances of 3 nm, are directly resolved on DNA origami structures. pMINFLUX and GET represent a particular synergetic combination for super-resolution imaging near the surface such as for cell adhesion and membrane complexes as the information of each photon is used for both 2D and axial localization information. Furthermore, we introduce local PAINT (L-PAINT), in which DNA-PAINT imager strands are equipped with an additional binding sequence for local upconcentration improving signal-to-background ratio and imaging speed of local clusters. L-PAINT is demonstrated by imaging a triangular structure with 6 nm side lengths within seconds.},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Izabela Kamińska; Johann Bohlen; Renukka Yaadav; Patrick Schüler; Mario Raab; Tim Schröder; Jonas Zähringer; Karolina Zielonka; Stefan Krause; Philip Tinnefeld
Graphene Energy Transfer for Single-Molecule Biophysics, Biosensing, and Super-Resolution Microscopy Journal Article
In: Advanced Materials, vol. 33, no. 24, pp. 2101099, 2021.
@article{Kaminska2021,
title = {Graphene Energy Transfer for Single-Molecule Biophysics, Biosensing, and Super-Resolution Microscopy},
author = {Izabela Kamińska and Johann Bohlen and Renukka Yaadav and Patrick Schüler and Mario Raab and Tim Schröder and Jonas Zähringer and Karolina Zielonka and Stefan Krause and Philip Tinnefeld},
doi = {10.1002/adma.202101099},
year = {2021},
date = {2021-05-01},
urldate = {2021-05-01},
journal = {Advanced Materials},
volume = {33},
number = {24},
pages = {2101099},
publisher = {Wiley},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Stefan Krause; Evelyn Ploetz; Johann Bohlen; Patrick Schüler; Renukka Yaadav; Florian Selbach; Florian Steiner; Izabela Kamińska; Philip Tinnefeld
Graphene-on-Glass Preparation and Cleaning Methods Characterized by Single-Molecule DNA Origami Fluorescent Probes and Raman Spectroscopy Journal Article
In: ACS Nano, vol. 15, no. 4, pp. 6430–6438, 2021.
@article{Krause2021,
title = {Graphene-on-Glass Preparation and Cleaning Methods Characterized by Single-Molecule DNA Origami Fluorescent Probes and Raman Spectroscopy},
author = {Stefan Krause and Evelyn Ploetz and Johann Bohlen and Patrick Schüler and Renukka Yaadav and Florian Selbach and Florian Steiner and Izabela Kamińska and Philip Tinnefeld},
doi = {10.1021/acsnano.0c08383},
year = {2021},
date = {2021-04-01},
urldate = {2021-04-01},
journal = {ACS Nano},
volume = {15},
number = {4},
pages = {6430--6438},
publisher = {American Chemical Society (ACS)},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
I. Kaminska; J. Bohlen; S. Rocchetti; F. Selbach; G. P. Acuna; P. Tinnefeld
Distance Dependence of Single-Molecule Energy Transfer to Graphene Measured with DNA Origami Nanopositioners Journal Article
In: Nano Letters, vol. 19, no. 7, pp. 4257–4262, 2019.
@article{Kaminska2019,
title = {Distance Dependence of Single-Molecule Energy Transfer to Graphene Measured with DNA Origami Nanopositioners},
author = {I. Kaminska and J. Bohlen and S. Rocchetti and F. Selbach and G. P. Acuna and P. Tinnefeld},
doi = {10.1021/acs.nanolett.9b00172},
year = {2019},
date = {2019-06-01},
journal = {Nano Letters},
volume = {19},
number = {7},
pages = {4257--4262},
publisher = {American Chemical Society (ACS)},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Sebastian Isbaner; Narain Karedla; Izabela Kaminska; Daja Ruhlandt; Mario Raab; Johann Bohlen; Alexey Chizhik; Ingo Gregor; Philip Tinnefeld; Jörg Enderlein; Roman Tsukanov
Axial Colocalization of Single Molecules with Nanometer Accuracy Using Metal-Induced Energy Transfer Journal Article
In: Nano Letters, vol. 18, no. 4, pp. 2616–2622, 2018.
@article{Isbaner2018,
title = {Axial Colocalization of Single Molecules with Nanometer Accuracy Using Metal-Induced Energy Transfer},
author = {Sebastian Isbaner and Narain Karedla and Izabela Kaminska and Daja Ruhlandt and Mario Raab and Johann Bohlen and Alexey Chizhik and Ingo Gregor and Philip Tinnefeld and Jörg Enderlein and Roman Tsukanov},
doi = {10.1021/acs.nanolett.8b00425},
year = {2018},
date = {2018-03-01},
journal = {Nano Letters},
volume = {18},
number = {4},
pages = {2616--2622},
publisher = {American Chemical Society (ACS)},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Izabela Kaminska; Carolin Vietz; Álvaro Cuartero-González; Philip Tinnefeld; Antonio I. Fernández-Domínguez; Guillermo P. Acuna
Strong plasmonic enhancement of single molecule photostability in silver dimer optical antennas Journal Article
In: Nanophotonics, vol. 7, no. 3, pp. 643–649, 2018.
@article{Kaminska2018a,
title = {Strong plasmonic enhancement of single molecule photostability in silver dimer optical antennas},
author = {Izabela Kaminska and Carolin Vietz and Álvaro Cuartero-González and Philip Tinnefeld and Antonio I. Fernández-Domínguez and Guillermo P. Acuna},
doi = {10.1515/nanoph-2017-0081},
year = {2018},
date = {2018-02-01},
journal = {Nanophotonics},
volume = {7},
number = {3},
pages = {643--649},
publisher = {Walter de Gruyter GmbH},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Izabela Kaminska; Johann Bohlen; Sebastian Mackowski; Philip Tinnefeld; Guillermo P. Acuna
Strong Plasmonic Enhancement of a Single Peridinin–Chlorophyll a–Protein Complex on DNA Origami-Based Optical Antennas Journal Article
In: ACS Nano, vol. 12, no. 2, pp. 1650–1655, 2018.
@article{Kaminska2018,
title = {Strong Plasmonic Enhancement of a Single Peridinin–Chlorophyll a–Protein Complex on DNA Origami-Based Optical Antennas},
author = {Izabela Kaminska and Johann Bohlen and Sebastian Mackowski and Philip Tinnefeld and Guillermo P. Acuna},
doi = {10.1021/acsnano.7b08233},
year = {2018},
date = {2018-01-01},
journal = {ACS Nano},
volume = {12},
number = {2},
pages = {1650--1655},
publisher = {American Chemical Society (ACS)},
keywords = {},
pubstate = {published},
tppubtype = {article}
}
Carolin Vietz; Izabela Kaminska; Maria Sanz Paz; Philip Tinnefeld; Guillermo P. Acuna
Broadband Fluorescence Enhancement with Self-Assembled Silver Nanoparticle Optical Antennas Journal Article
In: ACS Nano, vol. 11, no. 5, pp. 4969–4975, 2017.
@article{Vietz2017a,
title = {Broadband Fluorescence Enhancement with Self-Assembled Silver Nanoparticle Optical Antennas},
author = {Carolin Vietz and Izabela Kaminska and Maria Sanz Paz and Philip Tinnefeld and Guillermo P. Acuna},
doi = {10.1021/acsnano.7b01621},
year = {2017},
date = {2017-04-01},
journal = {ACS Nano},
volume = {11},
number = {5},
pages = {4969--4975},
publisher = {American Chemical Society (ACS)},
keywords = {},
pubstate = {published},
tppubtype = {article}
}