Glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared II window
Photothermal and photodynamic therapies are established as alternative approaches to combating bacterial infections; however, the heat and reactive oxygen species generated by the photoagents act on both normal and bacterial cells. A targeting strategy is thus required to minimize side effects and e...
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sg-ntu-dr.10356-1388152023-12-29T06:54:20Z Glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared II window Hou, Shuai Mahadevegowda, Surendra Hittanahalli Mai, Van Cuong Chan‐Park, Mary Bee Eng Duan, Hongwei School of Chemical and Biomedical Engineering Nanyang Environment and Water Research Institute Engineering::Chemical engineering Copper Sulfide Nanocrystals Glycoconjugates Photothermal and photodynamic therapies are established as alternative approaches to combating bacterial infections; however, the heat and reactive oxygen species generated by the photoagents act on both normal and bacterial cells. A targeting strategy is thus required to minimize side effects and enhance the antibacterial efficiency. Glycoconjugates specifically interacting with bacterial lectins have emerged as a new class of materials for targeting bacteria. In this paper, galactosylated plasmonic copper sulfide nanocrystals (Cu2−xS NCs) are used to target Pseudomonas aeruginosa via galactose–LecA interactions and kill the bacteria by simultaneous photothermal and photodynamic therapy. Galactosylated Cu2−xS NCs are obtained by functionalizing the nanocrystals with tri‐thiogalactoside glycoclusters. The excellent specificity of galactosylated nanoparticles toward LecA with a LecA‐deficient P. aeruginosa strain as the control is first demonstrated. Afterward, a laser in the near‐infrared II window is used to kill the bacteria, and the critical role of targeted binding in efficient killing of bacteria is highlighted. This approach can be readily generalized to the targeting of other pathogens which have highly specific carbohydrate‐binding lectins. MOE (Min. of Education, S’pore) MOH (Min. of Health, S’pore) Accepted version 2020-05-13T02:49:00Z 2020-05-13T02:49:00Z 2019 Journal Article Hou, S., Mahadevegowda, S. H., Mai, V. C., Chan‐Park, M. B., & Duan, H. (2019). Glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared II window. Advanced Therapeutics, 2(8), 1900052-. doi:10.1002/adtp.201900052 2366-3987 https://hdl.handle.net/10356/138815 10.1002/adtp.201900052 8 2 1900052 en Advanced Therapeutics This is the peer reviewed version of the following article: Hou, S., Mahadevegowda, S. H., Mai, V. C., Chan‐Park, M. B., & Duan, H. (2019). Glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared II window. Advanced Therapeutics, 2(8), 1900052-. doi:10.1002/adtp.201900052, which has been published in final form at :10.1002/adtp.201900052. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions. application/pdf |
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Engineering::Chemical engineering Copper Sulfide Nanocrystals Glycoconjugates Hou, Shuai Mahadevegowda, Surendra Hittanahalli Mai, Van Cuong Chan‐Park, Mary Bee Eng Duan, Hongwei Glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared II window |
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Photothermal and photodynamic therapies are established as alternative approaches to combating bacterial infections; however, the heat and reactive oxygen species generated by the photoagents act on both normal and bacterial cells. A targeting strategy is thus required to minimize side effects and enhance the antibacterial efficiency. Glycoconjugates specifically interacting with bacterial lectins have emerged as a new class of materials for targeting bacteria. In this paper, galactosylated plasmonic copper sulfide nanocrystals (Cu2−xS NCs) are used to target Pseudomonas aeruginosa via galactose–LecA interactions and kill the bacteria by simultaneous photothermal and photodynamic therapy. Galactosylated Cu2−xS NCs are obtained by functionalizing the nanocrystals with tri‐thiogalactoside glycoclusters. The excellent specificity of galactosylated nanoparticles toward LecA with a LecA‐deficient P. aeruginosa strain as the control is first demonstrated. Afterward, a laser in the near‐infrared II window is used to kill the bacteria, and the critical role of targeted binding in efficient killing of bacteria is highlighted. This approach can be readily generalized to the targeting of other pathogens which have highly specific carbohydrate‐binding lectins. |
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School of Chemical and Biomedical Engineering |
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School of Chemical and Biomedical Engineering Hou, Shuai Mahadevegowda, Surendra Hittanahalli Mai, Van Cuong Chan‐Park, Mary Bee Eng Duan, Hongwei |
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Article |
author |
Hou, Shuai Mahadevegowda, Surendra Hittanahalli Mai, Van Cuong Chan‐Park, Mary Bee Eng Duan, Hongwei |
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Hou, Shuai |
title |
Glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared II window |
title_short |
Glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared II window |
title_full |
Glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared II window |
title_fullStr |
Glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared II window |
title_full_unstemmed |
Glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared II window |
title_sort |
glycosylated copper sulfide nanocrystals for targeted photokilling of bacteria in the near‐infrared ii window |
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2020 |
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https://hdl.handle.net/10356/138815 |
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1787136800243843072 |