Cuproptosis is a newly recognized copper-dependent nonapoptotic form of cell death, which stimulate studies exploring copper-based nanomaterials to treat cancer through distinct mechanistic action. However, it remains a challenge to completely eradicate tumors via monotherapy. Herein, a copper-doped BiSex (CBS) nanozyme was developed to boost αPD-L1-mediated immune checkpoint blocking (ICB) via synergetic apoptosis/cuproptosis-induced immunogenic cell death (ICD). The defect-engineered CBS nanozyme exhibits strong peroxidase-mimicking activities and generates abundant reactive oxygen species (ROS) production causing cell apoptosis, which could be further augmented by NIR photoirradiation. Meanwhile, the CBS could cause mitochondrial lipoyla...
Selective targeting of elevated copper (Cu) in cancer cells by chelators to induce tumor-toxic react...
Herein, we present the rational synthesis of a multimode photothermal agent, NGO-FA-CuS, for the adv...
Ye Wang,1,2,* Xiao-Yuan Zi,1,* Juan Su,1 Hong-Xia Zhang,1 Xin-Rong Zhang,3 Hai-Ying Zhu,1 Jian-Xiu L...
Multienzyme-mimicking redox nanozymes, curated by defect engineering, in synergy with immunotherapy ...
The extracellular matrix (ECM) in the tumor microenvironment (TME) and upregulated immune checkpoint...
The immune checkpoint blockade (ICB) antibody immunotherapy has demonstrated clinical benefits for m...
© 2020 Wiley-VCH GmbH This article reports the fabrication of a smart biomimetic enzyme system, whic...
Hypoxia is a pervasive feature of solid tumors, which significantly limits the therapeutic effect of...
Green nanotechnology elucidates highly prioritized anticancer activity. We synthesized Copper oxide ...
Lipeng Zhu,1 Yunlu Dai,1,2 Lizeng Gao,3 Qi Zhao1,2 1Cancer Centre, Faculty of Health Sciences, Unive...
Combinational chemo-photothermal therapy has been considered as a promising strategy to enhance anti...
Nanomaterials with enzyme‐mimicking activity (nanozymes) show potential for therapeutic intervention...
Recently, mitochondria‐targeted photothermal nanoagents demonstrated an improved therapeutic efficac...
The photothermal response of plasmonic nanomaterials can be exploited for a number of biomedical app...
Abstract Background The complex hyperglycemic, hypoxic, and reactive oxygen species microenvironment...
Selective targeting of elevated copper (Cu) in cancer cells by chelators to induce tumor-toxic react...
Herein, we present the rational synthesis of a multimode photothermal agent, NGO-FA-CuS, for the adv...
Ye Wang,1,2,* Xiao-Yuan Zi,1,* Juan Su,1 Hong-Xia Zhang,1 Xin-Rong Zhang,3 Hai-Ying Zhu,1 Jian-Xiu L...
Multienzyme-mimicking redox nanozymes, curated by defect engineering, in synergy with immunotherapy ...
The extracellular matrix (ECM) in the tumor microenvironment (TME) and upregulated immune checkpoint...
The immune checkpoint blockade (ICB) antibody immunotherapy has demonstrated clinical benefits for m...
© 2020 Wiley-VCH GmbH This article reports the fabrication of a smart biomimetic enzyme system, whic...
Hypoxia is a pervasive feature of solid tumors, which significantly limits the therapeutic effect of...
Green nanotechnology elucidates highly prioritized anticancer activity. We synthesized Copper oxide ...
Lipeng Zhu,1 Yunlu Dai,1,2 Lizeng Gao,3 Qi Zhao1,2 1Cancer Centre, Faculty of Health Sciences, Unive...
Combinational chemo-photothermal therapy has been considered as a promising strategy to enhance anti...
Nanomaterials with enzyme‐mimicking activity (nanozymes) show potential for therapeutic intervention...
Recently, mitochondria‐targeted photothermal nanoagents demonstrated an improved therapeutic efficac...
The photothermal response of plasmonic nanomaterials can be exploited for a number of biomedical app...
Abstract Background The complex hyperglycemic, hypoxic, and reactive oxygen species microenvironment...
Selective targeting of elevated copper (Cu) in cancer cells by chelators to induce tumor-toxic react...
Herein, we present the rational synthesis of a multimode photothermal agent, NGO-FA-CuS, for the adv...
Ye Wang,1,2,* Xiao-Yuan Zi,1,* Juan Su,1 Hong-Xia Zhang,1 Xin-Rong Zhang,3 Hai-Ying Zhu,1 Jian-Xiu L...