Engineering Dna-Scaffolds For Delivery Of Anticancer Therapeutics

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Engineering DNA scaffolds for delivery of anticancer ...

    https://www.researchgate.net/publication/272846920_Engineering_DNA_scaffolds_for_delivery_of_anticancer_therapeutics
    As an emerging platform for drug delivery, DNA nanostructures have been extensively studied for delivering anticancer therapeutics, including small-molecule drug, nucleic acids and proteins.

Engineering DNA scaffolds for delivery of anticancer ...

    https://pubs.rsc.org/en/content/articlelanding/2015/bm/c4bm00459k
    Engineering DNA nanostructures with programmability in size, shape and surface chemistry holds tremendous promise in biomedical applications. As an emerging platform for drug delivery, DNA nanostructures have been extensively studied for delivering anticancer therapeutics, including small-molecule drug, nucleic acids and proteins.Author: Wujin Sun, Zhen Gu

Layer-by-Layer Assembled Antisense DNA Microsponge ...

    https://pubs.acs.org/doi/abs/10.1021/nn502596b
    Antisense oligonucleotides can be employed as a potential approach to effectively treat cancer. However, the inherent instability and inefficient systemic delivery methods for antisense therapeutics remain major challenges to their clinical application. Here, we present a polymerized oligonucleotides (ODNs) that self-assemble during their formation through an enzymatic elongation method ...Author: Young Hoon Roh, Jong Bum Lee, Jong Bum Lee, Kevin E. Shopsowitz, Erik C. Dreaden, Stephen W. Morton,...

Polymeric biomaterials for cancer nanotechnology Home

    https://pubs.rsc.org/en/journals/articlecollectionlanding?themeID=5beac7f7-26fb-42b6-b9aa-75af3d4c6aef
    Jun 10, 2015 · Engineering DNA scaffolds for delivery of anticancer therapeutics Wujin Sun and Zhen Gu DNA scaffolds with programmability in size, shape and surface chemistry have been engineered for the delivery of various anticancer therapeutics.

DNA Origami as an In Vivo Drug Delivery Vehicle for Cancer ...

    https://pubs.acs.org/doi/10.1021/nn502058j
    Engineering DNA scaffolds for delivery of anticancer therapeutics. Biomaterials Science 2015, 3 (7) , 1018-1024. DOI: 10.1039/C4BM00459K. Carlos E. Castro, Hai-Jun Su, Alexander E. Marras, Lifeng Zhou, Joshua Johnson. Mechanical design of DNA nanostructures.Author: Qian Zhang, Qiao Jiang, Na Li, Luru Dai, Qing Liu, Linlin Song, Jinye Wang, Yaqian Li, Jie Tian, Bao...

Rolling circle replication for engineering drug delivery ...

    https://www.future-science.com/doi/10.4155/tde.15.27
    Engineering DNA scaffolds for delivery of anticancer therapeutics. Biomater. ... 7 Roh YH, Lee JB, Shopsowitz KE et al. Layer-by-layer assembled anti-sense DNA microsponge particles for efficient delivery of cancer therapeutics. ACS Nano 8 ... ATP-responsive DNA-graphene hybrid nanoaggregates for anticancer drug delivery.Author: Wujin Sun, Yue Lu, Zhen Gu

Peptides as targeting probes against tumor vasculature for ...

    https://www.researchgate.net/publication/232715044_Peptides_as_targeting_probes_against_tumor_vasculature_for_diagnosis_and_drug_delivery
    Peptides as targeting probes against tumor vasculature for diagnosis and drug delivery ... Engineering DNA scaffolds for delivery of anticancer therapeutics ... studied for delivering anticancer ...

Design, Assembly, and Activity of Antisense DNA ...

    https://onlinelibrary.wiley.com/doi/abs/10.1002/smll.201101804
    Oct 25, 2011 · Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA ... Engineering DNA scaffolds for delivery of anticancer therapeutics, Biomaterials Science, 10.1039/C4BM00459K, 3, 7 ... Layer-by-Layer Assembled Antisense DNA Microsponge Particles for Efficient Delivery of Cancer Therapeutics, ...Author: Jung-Won Keum, Jin-Ho Ahn, Harry Bermudez

Enhanced Anticancer Efficacy by ATP‐Mediated Liposomal ...

    https://onlinelibrary.wiley.com/doi/full/10.1002/ange.201400268
    Wujin Sun and Zhen Gu, Engineering DNA scaffolds for delivery of anticancer therapeutics, Biomaterials Science, 10.1039/C4BM00459K, 3, 7, (1018-1024), (2015). CrossrefAuthor: Ran Mo, Tianyue Jiang, Zhen Gu

May 2018 – Biomaterials Science Blog

    https://blogs.rsc.org/bm/2018/05/
    His group studies controlled drug delivery, bio-inspired materials and nanobiotechnology, especially for cancer and diabetes treatment. To learn more about Zhen’s research, have a look at his recent publications in Biomaterials Science and our sister journals: Engineering DNA scaffolds for delivery of anticancer therapeutics Wujin Sun and Zhen Gu

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