Cargando…

Peptide Supramolecular Assembly‐Instructed In Situ Self‐Aggregation for Stratified Targeting Sonodynamic Therapy Enhancement of AIE Luminogens

The emergence of aggregation‐induced emission luminogens (AIEgens) has attracted substantial scientific attention. However, their antitumor efficacy in photodynamic therapy (PDT) is significantly restricted by the poor water solubility and limited treatment depth. Therefore, a novel AIEgens‐involved...

Descripción completa

Detalles Bibliográficos
Autores principales: Jiang, Weixi, Cheng, Chen, Qiu, Xiaoling, Chen, Li, Guo, Xun, Luo, Yuanli, Wang, Jingxue, Wang, Junrui, Xie, Zhuoyan, Li, Pan, Wang, Zhigang, Ran, Haitao, Zhou, Zhiyi, Ren, Jianli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9896067/
https://www.ncbi.nlm.nih.gov/pubmed/36494092
http://dx.doi.org/10.1002/advs.202204989
_version_ 1784881986935980032
author Jiang, Weixi
Cheng, Chen
Qiu, Xiaoling
Chen, Li
Guo, Xun
Luo, Yuanli
Wang, Jingxue
Wang, Junrui
Xie, Zhuoyan
Li, Pan
Wang, Zhigang
Ran, Haitao
Zhou, Zhiyi
Ren, Jianli
author_facet Jiang, Weixi
Cheng, Chen
Qiu, Xiaoling
Chen, Li
Guo, Xun
Luo, Yuanli
Wang, Jingxue
Wang, Junrui
Xie, Zhuoyan
Li, Pan
Wang, Zhigang
Ran, Haitao
Zhou, Zhiyi
Ren, Jianli
author_sort Jiang, Weixi
collection PubMed
description The emergence of aggregation‐induced emission luminogens (AIEgens) has attracted substantial scientific attention. However, their antitumor efficacy in photodynamic therapy (PDT) is significantly restricted by the poor water solubility and limited treatment depth. Therefore, a novel AIEgens‐involved therapeutic platform with good permeability and bioavailability is urgently required. Herein, supramolecular chemistry is combined with the AIEgen bis‐pyrene (BP) to construct a peptide–AIEgen hybrid nanosystem (PAHN). After intravenous injection, the versatile nanoplatform not only improved the hydrophilicity of BP but also achieved stratified targeting from tumor to mitochondrial and induced mitochondrial dysfunction, thus activating caspase‐3 upregulation. Then, sonodynamic therapy (SDT), an alternative modality with high tissue penetrability, is performed to evoke reactive oxygen species (ROS) generation for BP. More importantly, since the hydrophilic shell is separated from the nanosystem by the specific cleavage of caspase‐3, the resulting decrease in hydrophilicity induced tight self‐aggregation of PAHN residues in situ, further allowing more absorbed energy to be used for ROS generation under ultrasound irradiation and enhancing SDT efficacy. Moreover, severe oxidative stress resulting from ROS imbalance in the mitochondria initiates the immunogenic cell death process, thus evoking antitumor immunogenicity. This PAHN provides prospective ideas into AIE‐involved antitumor therapy and design of peptide‐AIEgens hybrids.
format Online
Article
Text
id pubmed-9896067
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-98960672023-02-08 Peptide Supramolecular Assembly‐Instructed In Situ Self‐Aggregation for Stratified Targeting Sonodynamic Therapy Enhancement of AIE Luminogens Jiang, Weixi Cheng, Chen Qiu, Xiaoling Chen, Li Guo, Xun Luo, Yuanli Wang, Jingxue Wang, Junrui Xie, Zhuoyan Li, Pan Wang, Zhigang Ran, Haitao Zhou, Zhiyi Ren, Jianli Adv Sci (Weinh) Research Articles The emergence of aggregation‐induced emission luminogens (AIEgens) has attracted substantial scientific attention. However, their antitumor efficacy in photodynamic therapy (PDT) is significantly restricted by the poor water solubility and limited treatment depth. Therefore, a novel AIEgens‐involved therapeutic platform with good permeability and bioavailability is urgently required. Herein, supramolecular chemistry is combined with the AIEgen bis‐pyrene (BP) to construct a peptide–AIEgen hybrid nanosystem (PAHN). After intravenous injection, the versatile nanoplatform not only improved the hydrophilicity of BP but also achieved stratified targeting from tumor to mitochondrial and induced mitochondrial dysfunction, thus activating caspase‐3 upregulation. Then, sonodynamic therapy (SDT), an alternative modality with high tissue penetrability, is performed to evoke reactive oxygen species (ROS) generation for BP. More importantly, since the hydrophilic shell is separated from the nanosystem by the specific cleavage of caspase‐3, the resulting decrease in hydrophilicity induced tight self‐aggregation of PAHN residues in situ, further allowing more absorbed energy to be used for ROS generation under ultrasound irradiation and enhancing SDT efficacy. Moreover, severe oxidative stress resulting from ROS imbalance in the mitochondria initiates the immunogenic cell death process, thus evoking antitumor immunogenicity. This PAHN provides prospective ideas into AIE‐involved antitumor therapy and design of peptide‐AIEgens hybrids. John Wiley and Sons Inc. 2022-12-09 /pmc/articles/PMC9896067/ /pubmed/36494092 http://dx.doi.org/10.1002/advs.202204989 Text en © 2022 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Jiang, Weixi
Cheng, Chen
Qiu, Xiaoling
Chen, Li
Guo, Xun
Luo, Yuanli
Wang, Jingxue
Wang, Junrui
Xie, Zhuoyan
Li, Pan
Wang, Zhigang
Ran, Haitao
Zhou, Zhiyi
Ren, Jianli
Peptide Supramolecular Assembly‐Instructed In Situ Self‐Aggregation for Stratified Targeting Sonodynamic Therapy Enhancement of AIE Luminogens
title Peptide Supramolecular Assembly‐Instructed In Situ Self‐Aggregation for Stratified Targeting Sonodynamic Therapy Enhancement of AIE Luminogens
title_full Peptide Supramolecular Assembly‐Instructed In Situ Self‐Aggregation for Stratified Targeting Sonodynamic Therapy Enhancement of AIE Luminogens
title_fullStr Peptide Supramolecular Assembly‐Instructed In Situ Self‐Aggregation for Stratified Targeting Sonodynamic Therapy Enhancement of AIE Luminogens
title_full_unstemmed Peptide Supramolecular Assembly‐Instructed In Situ Self‐Aggregation for Stratified Targeting Sonodynamic Therapy Enhancement of AIE Luminogens
title_short Peptide Supramolecular Assembly‐Instructed In Situ Self‐Aggregation for Stratified Targeting Sonodynamic Therapy Enhancement of AIE Luminogens
title_sort peptide supramolecular assembly‐instructed in situ self‐aggregation for stratified targeting sonodynamic therapy enhancement of aie luminogens
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9896067/
https://www.ncbi.nlm.nih.gov/pubmed/36494092
http://dx.doi.org/10.1002/advs.202204989
work_keys_str_mv AT jiangweixi peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT chengchen peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT qiuxiaoling peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT chenli peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT guoxun peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT luoyuanli peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT wangjingxue peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT wangjunrui peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT xiezhuoyan peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT lipan peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT wangzhigang peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT ranhaitao peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT zhouzhiyi peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens
AT renjianli peptidesupramolecularassemblyinstructedinsituselfaggregationforstratifiedtargetingsonodynamictherapyenhancementofaieluminogens