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Spatiotemporal dynamics of DNA nanocage uptake in zebrafish embryos for targeted tissue bioimaging applications

Three-dimensional DNA nanocages have attracted significant attention for various biomedical applications including targeted bioimaging in vivo. Despite the numerous advantages, the use and in vivo exploration of DNA nanocages are limited as the cellular targeting and intracellular fate of these DNA...

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Autores principales: Kansara, Krupa, Mansuri, Abdulkhalik, Rajwar, Anjali, Vaswani, Payal, Singh, Ramesh, Kumar, Ashutosh, Bhatia, Dhiraj
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10153486/
https://www.ncbi.nlm.nih.gov/pubmed/37143798
http://dx.doi.org/10.1039/d2na00905f
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author Kansara, Krupa
Mansuri, Abdulkhalik
Rajwar, Anjali
Vaswani, Payal
Singh, Ramesh
Kumar, Ashutosh
Bhatia, Dhiraj
author_facet Kansara, Krupa
Mansuri, Abdulkhalik
Rajwar, Anjali
Vaswani, Payal
Singh, Ramesh
Kumar, Ashutosh
Bhatia, Dhiraj
author_sort Kansara, Krupa
collection PubMed
description Three-dimensional DNA nanocages have attracted significant attention for various biomedical applications including targeted bioimaging in vivo. Despite the numerous advantages, the use and in vivo exploration of DNA nanocages are limited as the cellular targeting and intracellular fate of these DNA nanocages within various model systems have not been explored well. Herein, using a zebrafish model system, we provide a detailed understanding of time-, tissue- and geometry-dependent DNA nanocage uptake in developing embryos and larvae. Of all the geometries tested, tetrahedrons showed significant internalization in 72 hours post-fertilized larvae upon exposure, without disturbing the expression of genes involved in embryo development. Our study provides a detailed understanding of the time and tissue-specific uptake of DNA nanocages in the zebrafish embryos and larvae. These findings will provide valuable insights into the internalization and biocompatible potential of DNA nanocages and will help to predict their candidature for biomedical applications.
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spelling pubmed-101534862023-05-03 Spatiotemporal dynamics of DNA nanocage uptake in zebrafish embryos for targeted tissue bioimaging applications Kansara, Krupa Mansuri, Abdulkhalik Rajwar, Anjali Vaswani, Payal Singh, Ramesh Kumar, Ashutosh Bhatia, Dhiraj Nanoscale Adv Chemistry Three-dimensional DNA nanocages have attracted significant attention for various biomedical applications including targeted bioimaging in vivo. Despite the numerous advantages, the use and in vivo exploration of DNA nanocages are limited as the cellular targeting and intracellular fate of these DNA nanocages within various model systems have not been explored well. Herein, using a zebrafish model system, we provide a detailed understanding of time-, tissue- and geometry-dependent DNA nanocage uptake in developing embryos and larvae. Of all the geometries tested, tetrahedrons showed significant internalization in 72 hours post-fertilized larvae upon exposure, without disturbing the expression of genes involved in embryo development. Our study provides a detailed understanding of the time and tissue-specific uptake of DNA nanocages in the zebrafish embryos and larvae. These findings will provide valuable insights into the internalization and biocompatible potential of DNA nanocages and will help to predict their candidature for biomedical applications. RSC 2023-04-17 /pmc/articles/PMC10153486/ /pubmed/37143798 http://dx.doi.org/10.1039/d2na00905f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Kansara, Krupa
Mansuri, Abdulkhalik
Rajwar, Anjali
Vaswani, Payal
Singh, Ramesh
Kumar, Ashutosh
Bhatia, Dhiraj
Spatiotemporal dynamics of DNA nanocage uptake in zebrafish embryos for targeted tissue bioimaging applications
title Spatiotemporal dynamics of DNA nanocage uptake in zebrafish embryos for targeted tissue bioimaging applications
title_full Spatiotemporal dynamics of DNA nanocage uptake in zebrafish embryos for targeted tissue bioimaging applications
title_fullStr Spatiotemporal dynamics of DNA nanocage uptake in zebrafish embryos for targeted tissue bioimaging applications
title_full_unstemmed Spatiotemporal dynamics of DNA nanocage uptake in zebrafish embryos for targeted tissue bioimaging applications
title_short Spatiotemporal dynamics of DNA nanocage uptake in zebrafish embryos for targeted tissue bioimaging applications
title_sort spatiotemporal dynamics of dna nanocage uptake in zebrafish embryos for targeted tissue bioimaging applications
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10153486/
https://www.ncbi.nlm.nih.gov/pubmed/37143798
http://dx.doi.org/10.1039/d2na00905f
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