Literature DB >> 34008688

Supramolecular nanovesicles for synergistic glucose starvation and hypoxia-activated gene therapy of cancer.

Ludan Yue1, Tianlei Sun, Kuikun Yang, Qian Cheng, Junyan Li, Yue Pan, Shu Wang, Ruibing Wang.   

Abstract

Glucose starvation has emerged as a therapeutic strategy to inhibit tumor growth by regulating glucose metabolism. However, the rapid proliferation of cancer cells could induce the hypoxic tumor microenvironment (TME) which limits the therapeutic efficacy of glucose starvation by vascular isomerization. Herein, we developed a "dual-lock" supramolecular nanomedicine system for synergistic cancer therapy by integrating glucose oxidase (GOx) induced starvation and hypoxia-activated gene therapy. The host-guest interactions (that mediate nano-assembly formation) and hypoxia-activatable promoters act as two locks to keep glucose oxidase (GOx) and a therapeutic plasmid (RTP801::p53) inside supramolecular gold nanovesicles (Au NVs). Upon initial dissociation of the host-guest interactions and hence Au NVs by cancer-specific reactive oxygen species (ROS), GOx is released to consume glucose and oxygen, generate H2O2 and induce the hypoxic TME, which act as the two keys for triggering burst payload release and promoter activation, thus allowing synergistic starvation and gene therapy of cancer. This "dual-lock" supramolecular nanomedicine exhibited integrated therapeutic effects in vitro and in vivo for tumor suppression.

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Year:  2021        PMID: 34008688     DOI: 10.1039/d1nr02159a

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  3 in total

Review 1.  Glucose Metabolism Intervention-Facilitated Nanomedicine Therapy.

Authors:  Zhiyan Li; Xianghui Li; Shichao Ai; Song Liu; Wenxian Guan
Journal:  Int J Nanomedicine       Date:  2022-06-17

2.  PDGFB targeting biodegradable FePt alloy assembly for MRI guided starvation-enhancing chemodynamic therapy of cancer.

Authors:  Caiyun Zhang; Zhiguo Leng; Yinfeng Wang; Lang Ran; Xia Qin; Huan Xin; Xiaotong Xu; Guilong Zhang; Zhaowei Xu
Journal:  J Nanobiotechnology       Date:  2022-06-07       Impact factor: 9.429

3.  Self-amplification of oxidative stress with tumour microenvironment-activatable iron-doped nanoplatform for targeting hepatocellular carcinoma synergistic cascade therapy and diagnosis.

Authors:  Qiao-Mei Zhou; Yuan-Fei Lu; Jia-Ping Zhou; Xiao-Yan Yang; Xiao-Jie Wang; Jie-Ni Yu; Yong-Zhong Du; Ri-Sheng Yu
Journal:  J Nanobiotechnology       Date:  2021-11-08       Impact factor: 10.435

  3 in total

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