The role of intracellular trafficking of CdSe/ZnS QDs on their consequent toxicity profile
- Author
- Bella B Manshian, Thomas Martens (UGent) , Karsten Kantner, Kevin Braeckmans (UGent) , Stefaan De Smedt (UGent) , Jo Demeester (UGent) , Gareth JS Jenkins, Wolfgang J Parak, Beatriz Pelaz, Shareen H Doak, Uwe Himmelreich and Stefaan J Soenen
- Organization
- Project
- Abstract
- Background: Nanoparticle interactions with cellular membranes and the kinetics of their transport and localization are important determinants of their functionality and their biological consequences. Understanding these phenomena is fundamental for the translation of such NPs from in vitro to in vivo systems for bioimaging and medical applications. Two CdSe/ZnS quantum dots (QD) with differing surface functionality - (NH2 or COOH moieties) were used here for investigating the intracellular uptake and transport kinetics of these QDs. Results: In water, the COOH- and NH2-QDs were negatively and positively charged, respectively, while in serum-containing medium the NH2-QDs were agglomerated, whereas the COOH- QDs remained dispersed. Though intracellular levels of NH2- and COOH-QDs were very similar after 24 h exposure, COOH-QDs appeared to be continuously internalised and transported by endosomes and lysosomes, while NH2-QDs mainly remained in the lysosomes. The results of (intra) cellular QD trafficking were correlated to their toxicity profiles investigating levels of reactive oxygen species (ROS), mitochondrial ROS, autophagy, changes to cellular morphology and alterations in genes involved in cellular stress, toxicity and cytoskeletal integrity. The continuous flux of COOH-QDs perhaps explains their higher toxicity compared to the NH2-QDs, mainly resulting in mitochondrial ROS and cytoskeletal remodelling which are phenomena that occur early during cellular exposure. Conclusions: Together, these data reveal that although cellular QD levels were similar after 24 h, differences in the nature and extent of their cellular trafficking resulted in differences in consequent gene alterations and toxicological effects.
- Keywords
- Quantum dot NPs, Intracellular localization, Endosomal uptake, Gene alterations, Nanotoxicity, SEMICONDUCTOR QUANTUM DOTS, COATED GOLD NANOPARTICLES, PARTICLE FUNCTIONALITY, OXIDE NANOPARTICLES, CELLULAR UPTAKE, LIVING CELLS, CYTOTOXICITY, AUTOPHAGY, THERAPY, CANCER
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Please use this url to cite or link to this publication: http://hdl.handle.net/1854/LU-8539052
- MLA
- Manshian, Bella B., et al. “The Role of Intracellular Trafficking of CdSe/ZnS QDs on Their Consequent Toxicity Profile.” JOURNAL OF NANOBIOTECHNOLOGY, vol. 15, no. 1, 2017, doi:10.1186/s12951-017-0279-0.
- APA
- Manshian, B. B., Martens, T., Kantner, K., Braeckmans, K., De Smedt, S., Demeester, J., … Soenen, S. J. (2017). The role of intracellular trafficking of CdSe/ZnS QDs on their consequent toxicity profile. JOURNAL OF NANOBIOTECHNOLOGY, 15(1). https://doi.org/10.1186/s12951-017-0279-0
- Chicago author-date
- Manshian, Bella B, Thomas Martens, Karsten Kantner, Kevin Braeckmans, Stefaan De Smedt, Jo Demeester, Gareth JS Jenkins, et al. 2017. “The Role of Intracellular Trafficking of CdSe/ZnS QDs on Their Consequent Toxicity Profile.” JOURNAL OF NANOBIOTECHNOLOGY 15 (1). https://doi.org/10.1186/s12951-017-0279-0.
- Chicago author-date (all authors)
- Manshian, Bella B, Thomas Martens, Karsten Kantner, Kevin Braeckmans, Stefaan De Smedt, Jo Demeester, Gareth JS Jenkins, Wolfgang J Parak, Beatriz Pelaz, Shareen H Doak, Uwe Himmelreich, and Stefaan J Soenen. 2017. “The Role of Intracellular Trafficking of CdSe/ZnS QDs on Their Consequent Toxicity Profile.” JOURNAL OF NANOBIOTECHNOLOGY 15 (1). doi:10.1186/s12951-017-0279-0.
- Vancouver
- 1.Manshian BB, Martens T, Kantner K, Braeckmans K, De Smedt S, Demeester J, et al. The role of intracellular trafficking of CdSe/ZnS QDs on their consequent toxicity profile. JOURNAL OF NANOBIOTECHNOLOGY. 2017;15(1).
- IEEE
- [1]B. B. Manshian et al., “The role of intracellular trafficking of CdSe/ZnS QDs on their consequent toxicity profile,” JOURNAL OF NANOBIOTECHNOLOGY, vol. 15, no. 1, 2017.
@article{8539052,
abstract = {{Background: Nanoparticle interactions with cellular membranes and the kinetics of their transport and localization are important determinants of their functionality and their biological consequences. Understanding these phenomena is fundamental for the translation of such NPs from in vitro to in vivo systems for bioimaging and medical applications. Two CdSe/ZnS quantum dots (QD) with differing surface functionality - (NH2 or COOH moieties) were used here for investigating the intracellular uptake and transport kinetics of these QDs.
Results: In water, the COOH- and NH2-QDs were negatively and positively charged, respectively, while in serum-containing medium the NH2-QDs were agglomerated, whereas the COOH- QDs remained dispersed. Though intracellular levels of NH2- and COOH-QDs were very similar after 24 h exposure, COOH-QDs appeared to be continuously internalised and transported by endosomes and lysosomes, while NH2-QDs mainly remained in the lysosomes. The results of (intra) cellular QD trafficking were correlated to their toxicity profiles investigating levels of reactive oxygen species (ROS), mitochondrial ROS, autophagy, changes to cellular morphology and alterations in genes involved in cellular stress, toxicity and cytoskeletal integrity. The continuous flux of COOH-QDs perhaps explains their higher toxicity compared to the NH2-QDs, mainly resulting in mitochondrial ROS and cytoskeletal remodelling which are phenomena that occur early during cellular exposure.
Conclusions: Together, these data reveal that although cellular QD levels were similar after 24 h, differences in the nature and extent of their cellular trafficking resulted in differences in consequent gene alterations and toxicological effects.}},
articleno = {{45}},
author = {{Manshian, Bella B and Martens, Thomas and Kantner, Karsten and Braeckmans, Kevin and De Smedt, Stefaan and Demeester, Jo and Jenkins, Gareth JS and Parak, Wolfgang J and Pelaz, Beatriz and Doak, Shareen H and Himmelreich, Uwe and Soenen, Stefaan J}},
issn = {{1477-3155}},
journal = {{JOURNAL OF NANOBIOTECHNOLOGY}},
keywords = {{Quantum dot NPs,Intracellular localization,Endosomal uptake,Gene alterations,Nanotoxicity,SEMICONDUCTOR QUANTUM DOTS,COATED GOLD NANOPARTICLES,PARTICLE FUNCTIONALITY,OXIDE NANOPARTICLES,CELLULAR UPTAKE,LIVING CELLS,CYTOTOXICITY,AUTOPHAGY,THERAPY,CANCER}},
language = {{eng}},
number = {{1}},
pages = {{14}},
title = {{The role of intracellular trafficking of CdSe/ZnS QDs on their consequent toxicity profile}},
url = {{http://doi.org/10.1186/s12951-017-0279-0}},
volume = {{15}},
year = {{2017}},
}
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