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Boron-Doped Carbon Nanodots as a Theranostic Agent for Colon Cancer Stem Cells

[Image: see text] Carbon nanodots have drawn a great deal of attention due to their green and expedient opportunities in biological and chemical sciences. Their high fluorescence capabilities and low toxicity for living cells and tissues make them excellent imaging agents. In addition, they have a f...

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Autores principales: Ozkasapoglu, Sezgin, Caglayan, Mehmet Gokhan, Akkurt, Fatih, Ensarioğlu, Hilal Kabadayi, Vatansever, H. Seda, Celikkan, Huseyin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10448486/
https://www.ncbi.nlm.nih.gov/pubmed/37636927
http://dx.doi.org/10.1021/acsomega.3c03154
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author Ozkasapoglu, Sezgin
Caglayan, Mehmet Gokhan
Akkurt, Fatih
Ensarioğlu, Hilal Kabadayi
Vatansever, H. Seda
Celikkan, Huseyin
author_facet Ozkasapoglu, Sezgin
Caglayan, Mehmet Gokhan
Akkurt, Fatih
Ensarioğlu, Hilal Kabadayi
Vatansever, H. Seda
Celikkan, Huseyin
author_sort Ozkasapoglu, Sezgin
collection PubMed
description [Image: see text] Carbon nanodots have drawn a great deal of attention due to their green and expedient opportunities in biological and chemical sciences. Their high fluorescence capabilities and low toxicity for living cells and tissues make them excellent imaging agents. In addition, they have a fluorimetric response against inorganic and organic species. Boron-doped carbon nanodots (B-CDs) with high fluorescence yield were produced from phenylboronic acid and glutamine as boron and carbon sources, respectively, by a hydrothermal method. First, the effects of the temperature on their fluorescence yield and the structural characteristics of B-CDs were investigated. Second, their cytotoxicity and cell death and proliferation behaviors were examined. The cytotoxicity was evaluated by the MTT assay. The cellular properties were evaluated with the distribution of caspase 3, Ki67, lamin B1, P16, and cytochrome c after the indirect immunoperoxidase technique. After the MTT assay, 1:1 dilution of all applicants for 24 h was used in the study. After immunohistochemical analyses, the application of B-CDs synthesized at 230 °C did not change control cell (Vero) proliferation, and also apoptosis was not triggered. Colo 320 CD133+ and CD133– cell-triggered apoptosis and cellular senescence were found to be synthesis temperature dependent. In addition, Colo 320 CD133– cells were affected relatively more than CD133+ cells from B-CDs. While B-CDs did not affect the control cells, the colon cancer stem cells (Colo 320 CD133+) were affected in a time-dependent manner. Therefore, the use of the synthesized B-CD product may be an alternative method for controlling or eliminating cancer stem cells in the tumor tissue.
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spelling pubmed-104484862023-08-25 Boron-Doped Carbon Nanodots as a Theranostic Agent for Colon Cancer Stem Cells Ozkasapoglu, Sezgin Caglayan, Mehmet Gokhan Akkurt, Fatih Ensarioğlu, Hilal Kabadayi Vatansever, H. Seda Celikkan, Huseyin ACS Omega [Image: see text] Carbon nanodots have drawn a great deal of attention due to their green and expedient opportunities in biological and chemical sciences. Their high fluorescence capabilities and low toxicity for living cells and tissues make them excellent imaging agents. In addition, they have a fluorimetric response against inorganic and organic species. Boron-doped carbon nanodots (B-CDs) with high fluorescence yield were produced from phenylboronic acid and glutamine as boron and carbon sources, respectively, by a hydrothermal method. First, the effects of the temperature on their fluorescence yield and the structural characteristics of B-CDs were investigated. Second, their cytotoxicity and cell death and proliferation behaviors were examined. The cytotoxicity was evaluated by the MTT assay. The cellular properties were evaluated with the distribution of caspase 3, Ki67, lamin B1, P16, and cytochrome c after the indirect immunoperoxidase technique. After the MTT assay, 1:1 dilution of all applicants for 24 h was used in the study. After immunohistochemical analyses, the application of B-CDs synthesized at 230 °C did not change control cell (Vero) proliferation, and also apoptosis was not triggered. Colo 320 CD133+ and CD133– cell-triggered apoptosis and cellular senescence were found to be synthesis temperature dependent. In addition, Colo 320 CD133– cells were affected relatively more than CD133+ cells from B-CDs. While B-CDs did not affect the control cells, the colon cancer stem cells (Colo 320 CD133+) were affected in a time-dependent manner. Therefore, the use of the synthesized B-CD product may be an alternative method for controlling or eliminating cancer stem cells in the tumor tissue. American Chemical Society 2023-08-10 /pmc/articles/PMC10448486/ /pubmed/37636927 http://dx.doi.org/10.1021/acsomega.3c03154 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Ozkasapoglu, Sezgin
Caglayan, Mehmet Gokhan
Akkurt, Fatih
Ensarioğlu, Hilal Kabadayi
Vatansever, H. Seda
Celikkan, Huseyin
Boron-Doped Carbon Nanodots as a Theranostic Agent for Colon Cancer Stem Cells
title Boron-Doped Carbon Nanodots as a Theranostic Agent for Colon Cancer Stem Cells
title_full Boron-Doped Carbon Nanodots as a Theranostic Agent for Colon Cancer Stem Cells
title_fullStr Boron-Doped Carbon Nanodots as a Theranostic Agent for Colon Cancer Stem Cells
title_full_unstemmed Boron-Doped Carbon Nanodots as a Theranostic Agent for Colon Cancer Stem Cells
title_short Boron-Doped Carbon Nanodots as a Theranostic Agent for Colon Cancer Stem Cells
title_sort boron-doped carbon nanodots as a theranostic agent for colon cancer stem cells
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10448486/
https://www.ncbi.nlm.nih.gov/pubmed/37636927
http://dx.doi.org/10.1021/acsomega.3c03154
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