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Bio-orthogonal click-targeting nanocomposites for chemo-photothermal synergistic therapy in breast cancer

Chemo-photothermal synergistic treatment has a high potential to complement traditional cancer therapy and amplify its outcome. Precision in the delivery of these therapeutic agents to tumor cells has been indicated as being key to maximizing their therapeutic effects. Method: We developed a bio-ort...

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Autores principales: Qiao, Jianan, Tian, Fengchun, Deng, Yudi, Shang, Yunkai, Chen, Shijie, Chang, Enhao, Yao, Jing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7196291/
https://www.ncbi.nlm.nih.gov/pubmed/32373214
http://dx.doi.org/10.7150/thno.42445
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author Qiao, Jianan
Tian, Fengchun
Deng, Yudi
Shang, Yunkai
Chen, Shijie
Chang, Enhao
Yao, Jing
author_facet Qiao, Jianan
Tian, Fengchun
Deng, Yudi
Shang, Yunkai
Chen, Shijie
Chang, Enhao
Yao, Jing
author_sort Qiao, Jianan
collection PubMed
description Chemo-photothermal synergistic treatment has a high potential to complement traditional cancer therapy and amplify its outcome. Precision in the delivery of these therapeutic agents to tumor cells has been indicated as being key to maximizing their therapeutic effects. Method: We developed a bio-orthogonal copper-free click-targeting nanocomposite system (DLQ/DZ) that markedly improved specific co-delivery of the chemotherapeutic agent doxorubicin and the photosensitizer zinc phthalocyanine to breast cancer cells via a two-step mechanism. In the first step, an azide-modified sugar (tetraacetylated N-azidoacetyl-D-mannosamine, Ac4ManNAz) was injected intratumorally for glycoengineering of the tumor cell surface. Subsequently, DLQ/DZ was administered to achieve tumor enrichment via bio-orthogonal copper-free click-targeting. Results: During the first step in our experiments, high density azide groups (3.23×10(7)/cell) were successfully glycoengineered on the surface of tumor cells following Ac4ManNAz administration in vitro. Subsequently, the highly efficient bio-orthogonal click chemical reaction between receptor-like azide groups on tumor cells and DBCO on nanocomposites significantly enhanced the cellular uptake and tumor-specific distribution (4.6x increase) of the nanocomposites in vivo. Importantly, Ac4ManNAz+DLQ/DZ treatment augmented the anti-cancer effect of combined chemotherapy and PTT (96.1% inhibition rate), nearly ablating the tumor. Conclusions: This bio-orthogonal click-targeting combination strategy may provide a promising treatment approach for surficial breast cancers.
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spelling pubmed-71962912020-05-05 Bio-orthogonal click-targeting nanocomposites for chemo-photothermal synergistic therapy in breast cancer Qiao, Jianan Tian, Fengchun Deng, Yudi Shang, Yunkai Chen, Shijie Chang, Enhao Yao, Jing Theranostics Research Paper Chemo-photothermal synergistic treatment has a high potential to complement traditional cancer therapy and amplify its outcome. Precision in the delivery of these therapeutic agents to tumor cells has been indicated as being key to maximizing their therapeutic effects. Method: We developed a bio-orthogonal copper-free click-targeting nanocomposite system (DLQ/DZ) that markedly improved specific co-delivery of the chemotherapeutic agent doxorubicin and the photosensitizer zinc phthalocyanine to breast cancer cells via a two-step mechanism. In the first step, an azide-modified sugar (tetraacetylated N-azidoacetyl-D-mannosamine, Ac4ManNAz) was injected intratumorally for glycoengineering of the tumor cell surface. Subsequently, DLQ/DZ was administered to achieve tumor enrichment via bio-orthogonal copper-free click-targeting. Results: During the first step in our experiments, high density azide groups (3.23×10(7)/cell) were successfully glycoengineered on the surface of tumor cells following Ac4ManNAz administration in vitro. Subsequently, the highly efficient bio-orthogonal click chemical reaction between receptor-like azide groups on tumor cells and DBCO on nanocomposites significantly enhanced the cellular uptake and tumor-specific distribution (4.6x increase) of the nanocomposites in vivo. Importantly, Ac4ManNAz+DLQ/DZ treatment augmented the anti-cancer effect of combined chemotherapy and PTT (96.1% inhibition rate), nearly ablating the tumor. Conclusions: This bio-orthogonal click-targeting combination strategy may provide a promising treatment approach for surficial breast cancers. Ivyspring International Publisher 2020-04-06 /pmc/articles/PMC7196291/ /pubmed/32373214 http://dx.doi.org/10.7150/thno.42445 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Qiao, Jianan
Tian, Fengchun
Deng, Yudi
Shang, Yunkai
Chen, Shijie
Chang, Enhao
Yao, Jing
Bio-orthogonal click-targeting nanocomposites for chemo-photothermal synergistic therapy in breast cancer
title Bio-orthogonal click-targeting nanocomposites for chemo-photothermal synergistic therapy in breast cancer
title_full Bio-orthogonal click-targeting nanocomposites for chemo-photothermal synergistic therapy in breast cancer
title_fullStr Bio-orthogonal click-targeting nanocomposites for chemo-photothermal synergistic therapy in breast cancer
title_full_unstemmed Bio-orthogonal click-targeting nanocomposites for chemo-photothermal synergistic therapy in breast cancer
title_short Bio-orthogonal click-targeting nanocomposites for chemo-photothermal synergistic therapy in breast cancer
title_sort bio-orthogonal click-targeting nanocomposites for chemo-photothermal synergistic therapy in breast cancer
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7196291/
https://www.ncbi.nlm.nih.gov/pubmed/32373214
http://dx.doi.org/10.7150/thno.42445
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