Publication detail

Improving cytocompatibility of CdTe quantum dots by Schiff-base-coordinated lanthanides surface doping

BUCHTELOVÁ, H. STRMISKA, V. ŠKUBALOVÁ, Z. DOSTÁLOVÁ, S. MICHÁLEK, P. KŘÍŽKOVÁ, S. HYNEK, D. KALINA, L. RICHTERA, L. MOULICK, A. ADAM, V. HEGER, Z.

Original Title

Improving cytocompatibility of CdTe quantum dots by Schiff-base-coordinated lanthanides surface doping

Type

journal article in Web of Science

Language

English

Original Abstract

Background: Suitable fluorophores are the core of fluorescence imaging. Among the most exciting, yet controversial, labels are quantum dots (QDs) with their unique optical and chemical properties, but also considerable toxicity. This hinders QDs applicability in living systems. Surface chemistry has a profound impact on biological behavior of QDs. This study describes a two-step synthesis of QDs formed by CdTe core doped with Schiff base ligand for lanthanides [Ln (Yb3+, Tb3+ and Gd3+)] as novel cytocompatible fluorophores. Results: Microwave-assisted synthesis resulted in water-soluble nanocrystals with high colloidal and fluorescence stability with quantum yields of 40.9-58.0%. Despite induction of endocytosis and cytoplasm accumulation of Yb- and TbQDs, surface doping resulted in significant enhancement in cytocompatibility when compared to the un-doped CdTe QDs. Furthermore, only negligible antimigratory properties without triggering formation of reactive oxygen species were found, particularly for TbQDs. Ln-doped QDs did not cause observable hemolysis, adsorbed only a low degree of plasma proteins onto their surface and did not possess significant genotoxicity. To validate the applicability of Ln-doped QDs for in vitro visualization of receptor status of living cells, we performed a site-directed conjugation of antibodies towards immuno-labeling of clinically relevant target-human norepinephrine transporter (hNET), over-expressed in neuroendocrine tumors like neuroblastoma. Immuno-performance of modified TbQDs was successfully tested in distinct types of cells varying in hNET expression and also in neuroblastoma cells with hNET expression up-regulated by vorinostat. Conclusion: For the first time we show that Ln-doping of CdTe QDs can significantly alleviate their cytotoxic effects. The obtained results imply great potential of Ln-doped QDs as cytocompatible and stable fluorophores for various bio-labeling applications.

Keywords

Cellular labeling; Cytotoxicity; Inorganic fluorophore; Nanocrystal; Surface dopant

Authors

BUCHTELOVÁ, H.; STRMISKA, V.; ŠKUBALOVÁ, Z.; DOSTÁLOVÁ, S.; MICHÁLEK, P.; KŘÍŽKOVÁ, S.; HYNEK, D.; KALINA, L.; RICHTERA, L.; MOULICK, A.; ADAM, V.; HEGER, Z.

Released

19. 4. 2018

Publisher

BioMed Central

ISBN

1477-3155

Periodical

Journal of Nanobiotechnology

Year of study

16

Number

43

State

United Kingdom of Great Britain and Northern Ireland

Pages from

1

Pages to

14

Pages count

14

URL

Full text in the Digital Library

BibTex

@article{BUT147671,
  author="Hana {Michálková} and Vladislav {Strmiska} and Zuzana {Škubalová} and Simona {Dostálová} and Petr {Michálek} and Soňa {Křížková} and David {Hynek} and Lukáš {Kalina} and Lukáš {Richtera} and Amitava {Moulick} and Vojtěch {Adam} and Zbyněk {Heger}",
  title="Improving cytocompatibility of CdTe quantum dots by Schiff-base-coordinated lanthanides surface doping",
  journal="Journal of Nanobiotechnology",
  year="2018",
  volume="16",
  number="43",
  pages="1--14",
  doi="10.1186/s12951-018-0369-7",
  issn="1477-3155",
  url="http://link.springer.com/article/10.1186/s12951-018-0369-7"
}