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Red-Emitting Latex Nanoparticles by Stepwise Entrapment of β-Diketonate Europium Complexes
The core–shell structure of poly(St-co-MAA) nanoparticles containing β-diketonate Eu(3+) complexes were synthesized by a step-wise process. The β-diketonate Eu(3+) complexes of Eu (TFTB)(2)(MAA)P(Oct)(3) [europium (III); 4,4,4-Trifluoro-1-(2-thienyl)-1,3-butanedione = TFTB; trioctylphosphine = (P(Oc...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785750/ https://www.ncbi.nlm.nih.gov/pubmed/36555596 http://dx.doi.org/10.3390/ijms232415954 |
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author | Park, Hwan-Woo Han, Daewon Ahn, Jong-Pil Kim, Se-hoon Kang, Yoon-Joong Jeong, Young Gil Kim, Do Kyung |
author_facet | Park, Hwan-Woo Han, Daewon Ahn, Jong-Pil Kim, Se-hoon Kang, Yoon-Joong Jeong, Young Gil Kim, Do Kyung |
author_sort | Park, Hwan-Woo |
collection | PubMed |
description | The core–shell structure of poly(St-co-MAA) nanoparticles containing β-diketonate Eu(3+) complexes were synthesized by a step-wise process. The β-diketonate Eu(3+) complexes of Eu (TFTB)(2)(MAA)P(Oct)(3) [europium (III); 4,4,4-Trifluoro-1-(2-thienyl)-1,3-butanedione = TFTB; trioctylphosphine = (P(Oct)(3)); methacrylic acid = MAA] were incorporated to poly(St-co-MAA). The poly(St-co-MAA) has highly monodispersed with a size of 300 nm, and surface charges of the poly(St-co-MAA) are near to neutral. The narrow particle size distribution was due to the constant ionic strength of the polymerization medium. The activated carboxylic acid of poly(St-co-MAA) further chelated with europium complex and polymerize between acrylic groups of poly(St-co-MAA) and Eu(TFTB)(2)(MAA)P(Oct)(3). The E(m) spectra of europium complexes consist of multiple bands of E(m) at 585, 597, 612 and 650 nm, which are assigned to (5)D(0)→(7)F(J (J = 0–3)) transitions of Eu(3+), respectively. The maximum E(m) peak is at 621 nm, which indicates a strong red E(m) characteristic associated with the electric dipole (5)D(0)→(7)F(2) transition of Eu(3+) complexes. The cell-specific fluorescence of Eu(TFTB)(2)(MAA)P(Oct)(3)@poly(St-co-MAA) indicated endocytosis of Eu(TFTB)(2)(MAA)P(Oct)(3)@poly(St-co-MAA). There are fewer early apoptotic, late apoptotic and necrotic cells in each sample compared with live cells, regardless of the culture period. Eu(TFTB)(2)(MAA)P(Oct)(3)@poly(St-co-MAA) synthesized in this work can be excited in the full UV range with a maximum E(m) at 619 nm. Moreover, these particles can substitute red luminescent organic dyes for intracellular trafficking and cellular imaging agents. |
format | Online Article Text |
id | pubmed-9785750 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-97857502022-12-24 Red-Emitting Latex Nanoparticles by Stepwise Entrapment of β-Diketonate Europium Complexes Park, Hwan-Woo Han, Daewon Ahn, Jong-Pil Kim, Se-hoon Kang, Yoon-Joong Jeong, Young Gil Kim, Do Kyung Int J Mol Sci Article The core–shell structure of poly(St-co-MAA) nanoparticles containing β-diketonate Eu(3+) complexes were synthesized by a step-wise process. The β-diketonate Eu(3+) complexes of Eu (TFTB)(2)(MAA)P(Oct)(3) [europium (III); 4,4,4-Trifluoro-1-(2-thienyl)-1,3-butanedione = TFTB; trioctylphosphine = (P(Oct)(3)); methacrylic acid = MAA] were incorporated to poly(St-co-MAA). The poly(St-co-MAA) has highly monodispersed with a size of 300 nm, and surface charges of the poly(St-co-MAA) are near to neutral. The narrow particle size distribution was due to the constant ionic strength of the polymerization medium. The activated carboxylic acid of poly(St-co-MAA) further chelated with europium complex and polymerize between acrylic groups of poly(St-co-MAA) and Eu(TFTB)(2)(MAA)P(Oct)(3). The E(m) spectra of europium complexes consist of multiple bands of E(m) at 585, 597, 612 and 650 nm, which are assigned to (5)D(0)→(7)F(J (J = 0–3)) transitions of Eu(3+), respectively. The maximum E(m) peak is at 621 nm, which indicates a strong red E(m) characteristic associated with the electric dipole (5)D(0)→(7)F(2) transition of Eu(3+) complexes. The cell-specific fluorescence of Eu(TFTB)(2)(MAA)P(Oct)(3)@poly(St-co-MAA) indicated endocytosis of Eu(TFTB)(2)(MAA)P(Oct)(3)@poly(St-co-MAA). There are fewer early apoptotic, late apoptotic and necrotic cells in each sample compared with live cells, regardless of the culture period. Eu(TFTB)(2)(MAA)P(Oct)(3)@poly(St-co-MAA) synthesized in this work can be excited in the full UV range with a maximum E(m) at 619 nm. Moreover, these particles can substitute red luminescent organic dyes for intracellular trafficking and cellular imaging agents. MDPI 2022-12-15 /pmc/articles/PMC9785750/ /pubmed/36555596 http://dx.doi.org/10.3390/ijms232415954 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Park, Hwan-Woo Han, Daewon Ahn, Jong-Pil Kim, Se-hoon Kang, Yoon-Joong Jeong, Young Gil Kim, Do Kyung Red-Emitting Latex Nanoparticles by Stepwise Entrapment of β-Diketonate Europium Complexes |
title | Red-Emitting Latex Nanoparticles by Stepwise Entrapment of β-Diketonate Europium Complexes |
title_full | Red-Emitting Latex Nanoparticles by Stepwise Entrapment of β-Diketonate Europium Complexes |
title_fullStr | Red-Emitting Latex Nanoparticles by Stepwise Entrapment of β-Diketonate Europium Complexes |
title_full_unstemmed | Red-Emitting Latex Nanoparticles by Stepwise Entrapment of β-Diketonate Europium Complexes |
title_short | Red-Emitting Latex Nanoparticles by Stepwise Entrapment of β-Diketonate Europium Complexes |
title_sort | red-emitting latex nanoparticles by stepwise entrapment of β-diketonate europium complexes |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785750/ https://www.ncbi.nlm.nih.gov/pubmed/36555596 http://dx.doi.org/10.3390/ijms232415954 |
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