Cancer biomarker-triggered disintegrable DNA nanogels for intelligent drug delivery
Even though various techniques have been developed thus far for targeted delivery of therapeutics, design and fabrication of cancer biomarker-triggered disintegrable nanogels, which are exclusively composed of nucleic acid macromolecules, are still challenging nowadays. Here, we describe for the fir...
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sg-ntu-dr.10356-1714912023-11-03T02:11:19Z Cancer biomarker-triggered disintegrable DNA nanogels for intelligent drug delivery Zhang, Hao Ba, Sai Lee, Yiqin Jasmine Xie, Jianping Loh, Teck-Peng Li, Tianhu School of Physical and Mathematical Sciences Science::Chemistry DNA Nanotechnology Flap Endonuclease 1 Even though various techniques have been developed thus far for targeted delivery of therapeutics, design and fabrication of cancer biomarker-triggered disintegrable nanogels, which are exclusively composed of nucleic acid macromolecules, are still challenging nowadays. Here, we describe for the first time our creation of intelligent DNA nanogels whose backbones are sorely disintegrable by flap endonuclease 1 (FEN1), an enzymatic biomarker that is highly overexpressed in most cancer cells but not in their normal counterparts. It is the catalytic actions of intracellular FEN1 on bifurcated DNA structures that lead to the cancer-specific disintegration of our DNA nanogels and controlled release of drugs in target cancer cells. Consequently, the brand-new strategies introduced in the current report could break new ground in designing drug carriers for eliminating unwanted side effects of chemotherapeutic agents and live-cell probes for cancer risk assessment, diagnosis, and prognosis. 2023-11-03T01:52:20Z 2023-11-03T01:52:20Z 2020 Journal Article Zhang, H., Ba, S., Lee, Y. J., Xie, J., Loh, T. & Li, T. (2020). Cancer biomarker-triggered disintegrable DNA nanogels for intelligent drug delivery. Nano Letters, 20(11), 8399-8407. https://dx.doi.org/10.1021/acs.nanolett.0c03671 1530-6984 https://hdl.handle.net/10356/171491 10.1021/acs.nanolett.0c03671 33118827 2-s2.0-85095812033 11 20 8399 8407 en Nano Letters © 2020 American Chemical Society. All rights reserved. |
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Science::Chemistry DNA Nanotechnology Flap Endonuclease 1 Zhang, Hao Ba, Sai Lee, Yiqin Jasmine Xie, Jianping Loh, Teck-Peng Li, Tianhu Cancer biomarker-triggered disintegrable DNA nanogels for intelligent drug delivery |
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Even though various techniques have been developed thus far for targeted delivery of therapeutics, design and fabrication of cancer biomarker-triggered disintegrable nanogels, which are exclusively composed of nucleic acid macromolecules, are still challenging nowadays. Here, we describe for the first time our creation of intelligent DNA nanogels whose backbones are sorely disintegrable by flap endonuclease 1 (FEN1), an enzymatic biomarker that is highly overexpressed in most cancer cells but not in their normal counterparts. It is the catalytic actions of intracellular FEN1 on bifurcated DNA structures that lead to the cancer-specific disintegration of our DNA nanogels and controlled release of drugs in target cancer cells. Consequently, the brand-new strategies introduced in the current report could break new ground in designing drug carriers for eliminating unwanted side effects of chemotherapeutic agents and live-cell probes for cancer risk assessment, diagnosis, and prognosis. |
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School of Physical and Mathematical Sciences |
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School of Physical and Mathematical Sciences Zhang, Hao Ba, Sai Lee, Yiqin Jasmine Xie, Jianping Loh, Teck-Peng Li, Tianhu |
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Article |
author |
Zhang, Hao Ba, Sai Lee, Yiqin Jasmine Xie, Jianping Loh, Teck-Peng Li, Tianhu |
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Zhang, Hao |
title |
Cancer biomarker-triggered disintegrable DNA nanogels for intelligent drug delivery |
title_short |
Cancer biomarker-triggered disintegrable DNA nanogels for intelligent drug delivery |
title_full |
Cancer biomarker-triggered disintegrable DNA nanogels for intelligent drug delivery |
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Cancer biomarker-triggered disintegrable DNA nanogels for intelligent drug delivery |
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Cancer biomarker-triggered disintegrable DNA nanogels for intelligent drug delivery |
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cancer biomarker-triggered disintegrable dna nanogels for intelligent drug delivery |
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2023 |
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https://hdl.handle.net/10356/171491 |
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