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Stem Cell Labeling using Polyethylenimine Conjugated (α-NaYbF(4):Tm(3+))/CaF(2) Upconversion Nanoparticles

We report on a polyethylenimine (PEI) covalently conjugated (α-NaYbF4:Tm(3+))/CaF(2) upconversion nanoparticle (PEI-UCNP) and its use for labeling rat mesenchymal stem cells (rMSCs). The PEI-UCNPs absorb and emit near-infrared light, allowing for improved in vivo imaging depth over conventional prob...

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Detalles Bibliográficos
Autores principales: Zhao, Liang, Kutikov, Artem, Shen, Jie, Duan, Chunying, Song, Jie, Han, Gang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3630525/
https://www.ncbi.nlm.nih.gov/pubmed/23606911
http://dx.doi.org/10.7150/thno.5432
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author Zhao, Liang
Kutikov, Artem
Shen, Jie
Duan, Chunying
Song, Jie
Han, Gang
author_facet Zhao, Liang
Kutikov, Artem
Shen, Jie
Duan, Chunying
Song, Jie
Han, Gang
author_sort Zhao, Liang
collection PubMed
description We report on a polyethylenimine (PEI) covalently conjugated (α-NaYbF4:Tm(3+))/CaF(2) upconversion nanoparticle (PEI-UCNP) and its use for labeling rat mesenchymal stem cells (rMSCs). The PEI-UCNPs absorb and emit near-infrared light, allowing for improved in vivo imaging depth over conventional probes. We found that such covalent surface conjugation by PEI results in a much more stable PEI-UCNP suspension in PBS compared to conventional electrostatic layer by layer (LbL) self-assembling coating approach. We systematically examined the effects of nanoparticle dose and exposure time on rat mesenchymal stem cell (rMSC) cytotoxicity. The exocytosis of PEI-UCNPs from labeled rMSCs and the impact of PEI-UCNP uptake on rMSC differentiation was also investigated. Our data show that incubation of 100-µg/mL PEI-UCNPs with rMSCs for 4 h led to efficient labeling of the MSCs, and such a level of PEI-UCNP exposure imposed little cytotoxicity to rMSCs (95% viability). However, extended incubation of PEI-UCNPs at the 100 µg/mL dose for 24 hour resulted in some cytotoxicity to rMSCs (60% viability). PEI-UCNP labeled rMSCs also exhibited normal early proliferation, and the internalized PEI-UCNPs did not leak out to cause unintended labeling of adjacent cells during a 14-day transwell culture experiment. Finally, PEI-UCNP labeled rMSCs were able to undergo osteogenic and adipogenic differentiation upon in vitro induction, although the osteogenesis of labeled rMSCs appeared to be less potent than that of the unlabeled rMSCs. Taken together, PEI-UCNPs are promising agents for stem cell labeling and tracking.
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spelling pubmed-36305252013-04-19 Stem Cell Labeling using Polyethylenimine Conjugated (α-NaYbF(4):Tm(3+))/CaF(2) Upconversion Nanoparticles Zhao, Liang Kutikov, Artem Shen, Jie Duan, Chunying Song, Jie Han, Gang Theranostics Research Paper We report on a polyethylenimine (PEI) covalently conjugated (α-NaYbF4:Tm(3+))/CaF(2) upconversion nanoparticle (PEI-UCNP) and its use for labeling rat mesenchymal stem cells (rMSCs). The PEI-UCNPs absorb and emit near-infrared light, allowing for improved in vivo imaging depth over conventional probes. We found that such covalent surface conjugation by PEI results in a much more stable PEI-UCNP suspension in PBS compared to conventional electrostatic layer by layer (LbL) self-assembling coating approach. We systematically examined the effects of nanoparticle dose and exposure time on rat mesenchymal stem cell (rMSC) cytotoxicity. The exocytosis of PEI-UCNPs from labeled rMSCs and the impact of PEI-UCNP uptake on rMSC differentiation was also investigated. Our data show that incubation of 100-µg/mL PEI-UCNPs with rMSCs for 4 h led to efficient labeling of the MSCs, and such a level of PEI-UCNP exposure imposed little cytotoxicity to rMSCs (95% viability). However, extended incubation of PEI-UCNPs at the 100 µg/mL dose for 24 hour resulted in some cytotoxicity to rMSCs (60% viability). PEI-UCNP labeled rMSCs also exhibited normal early proliferation, and the internalized PEI-UCNPs did not leak out to cause unintended labeling of adjacent cells during a 14-day transwell culture experiment. Finally, PEI-UCNP labeled rMSCs were able to undergo osteogenic and adipogenic differentiation upon in vitro induction, although the osteogenesis of labeled rMSCs appeared to be less potent than that of the unlabeled rMSCs. Taken together, PEI-UCNPs are promising agents for stem cell labeling and tracking. Ivyspring International Publisher 2013-03-20 /pmc/articles/PMC3630525/ /pubmed/23606911 http://dx.doi.org/10.7150/thno.5432 Text en © Ivyspring International Publisher. This is an open-access article distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by-nc-nd/3.0/). Reproduction is permitted for personal, noncommercial use, provided that the article is in whole, unmodified, and properly cited.
spellingShingle Research Paper
Zhao, Liang
Kutikov, Artem
Shen, Jie
Duan, Chunying
Song, Jie
Han, Gang
Stem Cell Labeling using Polyethylenimine Conjugated (α-NaYbF(4):Tm(3+))/CaF(2) Upconversion Nanoparticles
title Stem Cell Labeling using Polyethylenimine Conjugated (α-NaYbF(4):Tm(3+))/CaF(2) Upconversion Nanoparticles
title_full Stem Cell Labeling using Polyethylenimine Conjugated (α-NaYbF(4):Tm(3+))/CaF(2) Upconversion Nanoparticles
title_fullStr Stem Cell Labeling using Polyethylenimine Conjugated (α-NaYbF(4):Tm(3+))/CaF(2) Upconversion Nanoparticles
title_full_unstemmed Stem Cell Labeling using Polyethylenimine Conjugated (α-NaYbF(4):Tm(3+))/CaF(2) Upconversion Nanoparticles
title_short Stem Cell Labeling using Polyethylenimine Conjugated (α-NaYbF(4):Tm(3+))/CaF(2) Upconversion Nanoparticles
title_sort stem cell labeling using polyethylenimine conjugated (α-naybf(4):tm(3+))/caf(2) upconversion nanoparticles
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3630525/
https://www.ncbi.nlm.nih.gov/pubmed/23606911
http://dx.doi.org/10.7150/thno.5432
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