An Endoplasmic Reticulum Stress-Specific Nanoinducer Selectively Evokes Type-II Immunogenic Cell Death for Pyroptotic Cancer Immunotherapy.

Fuente: PubMed
Saved in:
Bibliographic Details
Main Authors: Zhang, Yimeng, Yan, Yue, Liu, Jianxiong, Xia, Heming, Zhou, Jiayi, Cui, Yi, Huang, Xinyu, Chang, Jian, Zhang, Weiwei, Chen, Wei, Zhang, Qiang, Wang, Siling, Wang, Yiguang, Chen, Binlong
Format: Artículo científico
Language:en
Published: Advanced materials (Deerfield Beach, Fla.) 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1868266198716645377
author Zhang, Yimeng
Yan, Yue
Liu, Jianxiong
Xia, Heming
Zhou, Jiayi
Cui, Yi
Huang, Xinyu
Chang, Jian
Zhang, Weiwei
Chen, Wei
Zhang, Qiang
Wang, Siling
Wang, Yiguang
Chen, Binlong
author_facet Zhang, Yimeng
Yan, Yue
Liu, Jianxiong
Xia, Heming
Zhou, Jiayi
Cui, Yi
Huang, Xinyu
Chang, Jian
Zhang, Weiwei
Chen, Wei
Zhang, Qiang
Wang, Siling
Wang, Yiguang
Chen, Binlong
Zhang, Yimeng
Yan, Yue
Liu, Jianxiong
Xia, Heming
Zhou, Jiayi
Cui, Yi
Huang, Xinyu
Chang, Jian
Zhang, Weiwei
Chen, Wei
Zhang, Qiang
Wang, Siling
Wang, Yiguang
Chen, Binlong
collection PubMed - marine biology
contents An Endoplasmic Reticulum Stress-Specific Nanoinducer Selectively Evokes Type-II Immunogenic Cell Death for Pyroptotic Cancer Immunotherapy. Zhang, Yimeng Yan, Yue Liu, Jianxiong Xia, Heming Zhou, Jiayi Cui, Yi Huang, Xinyu Chang, Jian Zhang, Weiwei Chen, Wei Zhang, Qiang Wang, Siling Wang, Yiguang Chen, Binlong Endoplasmic Reticulum Stress Immunogenic Cell Death Humans Immunotherapy Animals Pyroptosis Mice Cell Line, Tumor Neoplasms Nanoparticles Hydrogen-Ion Concentration Cathepsin B Calreticulin Specific induction of endoplasmic reticulum (ER) stress-initiated type-II immunogenic cell death (ICD) shows great potential in boosting tumor immunogenicity and anti-tumor immunotherapy. However, it remains challenging to selectively provoke type-II ICD, due to the lack of highly efficient ER targeting strategy. Here, a pH/Cathepsin-Activatable Nanoplatform (PCAN) is reported to specifically photo-induce ER stress (PCAN) and type-II ICD for cancer immunotherapy. PCAN integrates the long-circulating properties of nanomedicines with pH/cathepsin B dual-gated design, exhibiting excellent ER targeting with a colocalization efficacy of 83% in cancer tissues. Through directly intensifying glucose-regulated protein 78 and calreticulin exposure, PCAN augments type-II ICD and pyroptotic cancer cell death with high immune priming to cascade-amplify the cancer-immunity cycle, while the mild type-I ICD induced by lysosome stress (PCAN) exhibits negligible antitumor efficacy. By leveraging the spatiotemporal subcellular organelle targeting of PCAN technology, this study achieves precise tuning of the type of ICD and cellular pyroptosis-based cancer therapy. This study offers new insights into the design of organelle level-targeted nanomedicines, paving the way for dissecting and modulating the cell death mechanism to boost cancer immunotherapy.
format Artículo científico
id pubmed_40434207
institution PubMed
language en
publishDate 2025
publisher Advanced materials (Deerfield Beach, Fla.)
record_format pubmed
spellingShingle An Endoplasmic Reticulum Stress-Specific Nanoinducer Selectively Evokes Type-II Immunogenic Cell Death for Pyroptotic Cancer Immunotherapy.
Zhang, Yimeng
Yan, Yue
Liu, Jianxiong
Xia, Heming
Zhou, Jiayi
Cui, Yi
Huang, Xinyu
Chang, Jian
Zhang, Weiwei
Chen, Wei
Zhang, Qiang
Wang, Siling
Wang, Yiguang
Chen, Binlong
Endoplasmic Reticulum Stress
Immunogenic Cell Death
Humans
Immunotherapy
Animals
Pyroptosis
Mice
Cell Line, Tumor
Neoplasms
Nanoparticles
Hydrogen-Ion Concentration
Cathepsin B
Calreticulin
An Endoplasmic Reticulum Stress-Specific Nanoinducer Selectively Evokes Type-II Immunogenic Cell Death for Pyroptotic Cancer Immunotherapy. Zhang, Yimeng Yan, Yue Liu, Jianxiong Xia, Heming Zhou, Jiayi Cui, Yi Huang, Xinyu Chang, Jian Zhang, Weiwei Chen, Wei Zhang, Qiang Wang, Siling Wang, Yiguang Chen, Binlong Endoplasmic Reticulum Stress Immunogenic Cell Death Humans Immunotherapy Animals Pyroptosis Mice Cell Line, Tumor Neoplasms Nanoparticles Hydrogen-Ion Concentration Cathepsin B Calreticulin Specific induction of endoplasmic reticulum (ER) stress-initiated type-II immunogenic cell death (ICD) shows great potential in boosting tumor immunogenicity and anti-tumor immunotherapy. However, it remains challenging to selectively provoke type-II ICD, due to the lack of highly efficient ER targeting strategy. Here, a pH/Cathepsin-Activatable Nanoplatform (PCAN) is reported to specifically photo-induce ER stress (PCAN) and type-II ICD for cancer immunotherapy. PCAN integrates the long-circulating properties of nanomedicines with pH/cathepsin B dual-gated design, exhibiting excellent ER targeting with a colocalization efficacy of 83% in cancer tissues. Through directly intensifying glucose-regulated protein 78 and calreticulin exposure, PCAN augments type-II ICD and pyroptotic cancer cell death with high immune priming to cascade-amplify the cancer-immunity cycle, while the mild type-I ICD induced by lysosome stress (PCAN) exhibits negligible antitumor efficacy. By leveraging the spatiotemporal subcellular organelle targeting of PCAN technology, this study achieves precise tuning of the type of ICD and cellular pyroptosis-based cancer therapy. This study offers new insights into the design of organelle level-targeted nanomedicines, paving the way for dissecting and modulating the cell death mechanism to boost cancer immunotherapy.
title An Endoplasmic Reticulum Stress-Specific Nanoinducer Selectively Evokes Type-II Immunogenic Cell Death for Pyroptotic Cancer Immunotherapy.
topic Endoplasmic Reticulum Stress
Immunogenic Cell Death
Humans
Immunotherapy
Animals
Pyroptosis
Mice
Cell Line, Tumor
Neoplasms
Nanoparticles
Hydrogen-Ion Concentration
Cathepsin B
Calreticulin
url https://pubmed.ncbi.nlm.nih.gov/40434207/