Tumor-microenvironment activated duplex genome-editing nanoprodrug for sensitized near-infrared titania phototherapy
摘要Near-infrared(NIR)-light-triggered nanomedicine,including photodynamic therapy(PDT)and photothermal therapy(PTT),is growing an attractive approach for cancer therapy due to its high spatiotemporal controllability and minimal invasion,but the tumor eradication is limited by the intrinsic anti-stress response of tumor cells.Herein,we fabricate a tumor-microenvironment responsive CRISPR nanoplatform based on oxygen-deficient titania(TiO2-x)for mild NIR-phototherapy.In tumor microenvi-ronment,the overexpressed hyaluronidase(HAase)and glutathione(GSH)can readily destroy hyaluronic acid(HA)and disulfide bond and releases the Cas9/sgRNA from TiO2-x to target the stress alleviating regulators,i.e.,nuclear factor E2-related factor 2(NRF2)and heat shock protein 90α(HSP90α),thereby reducing the stress tolerance of tumor cells.Under subsequent NIR light illumination,the TiO2-x demon-strates a higher anticancer effect both in vitro and in vivo.This strategy not only provides a promising modality to kills cancer cells in a minimal side-effects manner by interrupting anti-stress pathways but also proposes a general approach to achieve controllable gene editing in tumor region without unwanted genetic mutation in normal environments.
更多相关知识
- 浏览3
- 被引0
- 下载0

相似文献
- 中文期刊
- 外文期刊
- 学位论文
- 会议论文


换一批



