Tianyue Jiang
University of North Carolina at Chapel Hill
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Publication
Featured researches published by Tianyue Jiang.
Journal of the American Chemical Society | 2014
Wujin Sun; Tianyue Jiang; Yue Lu; Margaret Reiff; Ran Mo; Zhen Gu
A bioinspired cocoon-like anticancer drug delivery system consisting of a deoxyribonuclease (DNase)-degradable DNA nanoclew (NCl) embedded with an acid-responsive DNase I nanocapsule (NCa) was developed for targeted cancer treatment. The NCl was assembled from a long-chain single-stranded DNA synthesized by rolling-circle amplification (RCA). Multiple GC-pair sequences were integrated into the NCl for enhanced loading capacity of the anticancer drug doxorubicin (DOX). Meanwhile, negatively charged DNase I was encapsulated in a positively charged acid-degradable polymeric nanogel to facilitate decoration of DNase I into the NCl by electrostatic interactions. In an acidic environment, the activity of DNase I was activated through the acid-triggered shedding of the polymeric shell of the NCa, resulting in the cocoon-like self-degradation of the NCl and promoting the release of DOX for enhanced therapeutic efficacy.
Angewandte Chemie | 2014
Ran Mo; Tianyue Jiang; Zhen Gu
A liposome-based co-delivery system composed of a fusogenic liposome encapsulating ATP-responsive elements with chemotherapeutics and a liposome containing ATP was developed for ATP-mediated drug release triggered by liposomal fusion. The fusogenic liposome had a protein-DNA complex core containing an ATP-responsive DNA scaffold with doxorubicin (DOX) and could release DOX through a conformational change from the duplex to the aptamer/ATP complex in the presence of ATP. A cell-penetrating peptide-modified fusogenic liposomal membrane was coated on the core, which had an acid-triggered fusogenic potential with the ATP-loaded liposomes or endosomes/lysosomes. Directly delivering extrinsic liposomal ATP promoted the drug release from the fusogenic liposome in the acidic intracellular compartments upon a pH-sensitive membrane fusion and anticancer efficacy was enhanced both in vitro and in vivo.
Advanced Materials | 2015
Tianyue Jiang; Wujin Sun; Qiuwen Zhu; Nancy A. Burns; Saad A. Khan; Ran Mo; Zhen Gu
A cellular protease (furin)-mediated graphene-based nanosystem is developed for co-delivery of a membrane-associated cytokine (tumor-necrosis-factor-related apoptosis-inducing ligand, TRAIL) and an intracellular-acting small-molecule drug (Doxorubicin, DOX). TRAIL and DOX can be sequentially released toward the plasma membrane and nucleus, respectively.
Nature Communications | 2014
Ran Mo; Tianyue Jiang; Rocco DiSanto; Wanyi Tai; Zhen Gu
Advanced Functional Materials | 2014
Tianyue Jiang; Ran Mo; Adriano Bellotti; Jianping Zhou; Zhen Gu
Chemical Society Reviews | 2014
Ran Mo; Tianyue Jiang; Jin Di; Wanyi Tai; Zhen Gu
Biomaterials | 2015
Ran Mo; Tianyue Jiang; Wujin Sun; Zhen Gu
Nano Letters | 2016
Quanyin Hu; Wujin Sun; Yue Lu; Hunter N. Bomba; Yanqi Ye; Tianyue Jiang; Ari J. Isaacson; Zhen Gu
Biomaterials | 2014
Wanyi Tai; Ran Mo; Yue Lu; Tianyue Jiang; Zhen Gu
Advanced Materials | 2015
Tianyue Jiang; Wujin Sun; Qiuwen Zhu; Nancy A. Burns; Saad A. Khan; Ran Mo; Zhen Gu