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Deoxyglucose-conjugated persistent luminescent nanoparticles for theragnostic application in fibrosarcoma tumor model

Deoxyglucose conjugated nanoparticles with persistent luminescence have shown theragnostic potential. In this study, deoxyglucose-conjugated nano-particles with persistent luminescence properties were synthesized, and their theragnostic potential was evaluated in fibrosarcoma cancer cells and a tumo...

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Autores principales: Sharma, K. S., Melwani, Pooja K., Yadav, Hansa D., Joshi, Rashmi, Shetake, Neena G., Dubey, Akhil K., Singh, Bheeshma Pratap, Phapale, Suhas, Phadnis, Prasad P., Vatsa, Rajesh K., Ningthoujam, Raghumani Singh, Pandey, Badri N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10141588/
https://www.ncbi.nlm.nih.gov/pubmed/37123999
http://dx.doi.org/10.1039/d3ra01169k
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author Sharma, K. S.
Melwani, Pooja K.
Yadav, Hansa D.
Joshi, Rashmi
Shetake, Neena G.
Dubey, Akhil K.
Singh, Bheeshma Pratap
Phapale, Suhas
Phadnis, Prasad P.
Vatsa, Rajesh K.
Ningthoujam, Raghumani Singh
Pandey, Badri N.
author_facet Sharma, K. S.
Melwani, Pooja K.
Yadav, Hansa D.
Joshi, Rashmi
Shetake, Neena G.
Dubey, Akhil K.
Singh, Bheeshma Pratap
Phapale, Suhas
Phadnis, Prasad P.
Vatsa, Rajesh K.
Ningthoujam, Raghumani Singh
Pandey, Badri N.
author_sort Sharma, K. S.
collection PubMed
description Deoxyglucose conjugated nanoparticles with persistent luminescence have shown theragnostic potential. In this study, deoxyglucose-conjugated nano-particles with persistent luminescence properties were synthesized, and their theragnostic potential was evaluated in fibrosarcoma cancer cells and a tumor model. The uptake of nano-formulation was found to be higher in mouse fibrosarcoma (WEHI-164) cells cultured in a medium without glucose. Nanoparticles showed a higher killing ability for cancer cells compared to normal cells. A significant accumulation of nanoparticles to the tumor site in mice was evident by the increased tumor/normal leg ratio, resulting in a significant decrease in tumor volume and weight. Histopathological studies showed a significant decrease in the number of dividing mitotic cells but a greater number of apoptotic/necrotic cells in nanoparticle-treated tumor tissues, which was correlated with a lower magnitude of Ki-67 expression (a proliferation marker). Consequently, our results showed the potential of our nano-formulation for cancer theragnosis.
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spelling pubmed-101415882023-04-29 Deoxyglucose-conjugated persistent luminescent nanoparticles for theragnostic application in fibrosarcoma tumor model Sharma, K. S. Melwani, Pooja K. Yadav, Hansa D. Joshi, Rashmi Shetake, Neena G. Dubey, Akhil K. Singh, Bheeshma Pratap Phapale, Suhas Phadnis, Prasad P. Vatsa, Rajesh K. Ningthoujam, Raghumani Singh Pandey, Badri N. RSC Adv Chemistry Deoxyglucose conjugated nanoparticles with persistent luminescence have shown theragnostic potential. In this study, deoxyglucose-conjugated nano-particles with persistent luminescence properties were synthesized, and their theragnostic potential was evaluated in fibrosarcoma cancer cells and a tumor model. The uptake of nano-formulation was found to be higher in mouse fibrosarcoma (WEHI-164) cells cultured in a medium without glucose. Nanoparticles showed a higher killing ability for cancer cells compared to normal cells. A significant accumulation of nanoparticles to the tumor site in mice was evident by the increased tumor/normal leg ratio, resulting in a significant decrease in tumor volume and weight. Histopathological studies showed a significant decrease in the number of dividing mitotic cells but a greater number of apoptotic/necrotic cells in nanoparticle-treated tumor tissues, which was correlated with a lower magnitude of Ki-67 expression (a proliferation marker). Consequently, our results showed the potential of our nano-formulation for cancer theragnosis. The Royal Society of Chemistry 2023-04-28 /pmc/articles/PMC10141588/ /pubmed/37123999 http://dx.doi.org/10.1039/d3ra01169k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Sharma, K. S.
Melwani, Pooja K.
Yadav, Hansa D.
Joshi, Rashmi
Shetake, Neena G.
Dubey, Akhil K.
Singh, Bheeshma Pratap
Phapale, Suhas
Phadnis, Prasad P.
Vatsa, Rajesh K.
Ningthoujam, Raghumani Singh
Pandey, Badri N.
Deoxyglucose-conjugated persistent luminescent nanoparticles for theragnostic application in fibrosarcoma tumor model
title Deoxyglucose-conjugated persistent luminescent nanoparticles for theragnostic application in fibrosarcoma tumor model
title_full Deoxyglucose-conjugated persistent luminescent nanoparticles for theragnostic application in fibrosarcoma tumor model
title_fullStr Deoxyglucose-conjugated persistent luminescent nanoparticles for theragnostic application in fibrosarcoma tumor model
title_full_unstemmed Deoxyglucose-conjugated persistent luminescent nanoparticles for theragnostic application in fibrosarcoma tumor model
title_short Deoxyglucose-conjugated persistent luminescent nanoparticles for theragnostic application in fibrosarcoma tumor model
title_sort deoxyglucose-conjugated persistent luminescent nanoparticles for theragnostic application in fibrosarcoma tumor model
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10141588/
https://www.ncbi.nlm.nih.gov/pubmed/37123999
http://dx.doi.org/10.1039/d3ra01169k
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