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Structure-tuned membrane active Ir-complexed oligoarginine overcomes cancer cell drug resistance and triggers immune responses in mice

The development of chemotherapy, an important cancer treatment modality, is hindered by the frequently found drug-resistance phenomenon. Meanwhile, researchers have been enthused lately by the synergistic use of chemotherapy with emerging immunotherapeutic treatments. In an effort to address both of...

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Autores principales: Ji, Shuangshuang, Yang, Xiuzhu, Chen, Xiaolong, Li, Ang, Yan, Doudou, Xu, Haiyan, Fei, Hao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8161536/
https://www.ncbi.nlm.nih.gov/pubmed/34094193
http://dx.doi.org/10.1039/d0sc03975f
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author Ji, Shuangshuang
Yang, Xiuzhu
Chen, Xiaolong
Li, Ang
Yan, Doudou
Xu, Haiyan
Fei, Hao
author_facet Ji, Shuangshuang
Yang, Xiuzhu
Chen, Xiaolong
Li, Ang
Yan, Doudou
Xu, Haiyan
Fei, Hao
author_sort Ji, Shuangshuang
collection PubMed
description The development of chemotherapy, an important cancer treatment modality, is hindered by the frequently found drug-resistance phenomenon. Meanwhile, researchers have been enthused lately by the synergistic use of chemotherapy with emerging immunotherapeutic treatments. In an effort to address both of the two unmet needs, reported herein is a study on a series of membrane active iridium(iii) complexed oligoarginine peptides with a new cell death mechanism capable of overcoming drug resistance as well as stimulating immunological responses. A systematic structure–activity relationship study elucidated the interdependent effects of three structural factors, i.e., hydrophobicity, topology and cationicity, on the regulation of the cytotoxicity of the Ir(iii)-oligoarginine peptides. With the most prominent toxicities, Ir-complexed octaarginines (R8) were found to display a progressive oncotic cell death featuring cell membrane-penetration and eruptive cytoplasmic content release. Consequently, this membrane-centric death mechanism showed promising potential in overcoming multiple chemical drug-resistance of cancer cells. More interestingly, the eruptive mode of cell death proved to be immunogenic by stimulating the dendritic cell maturation and inflammatory factor accumulation in mice tumours. Taking these mechanisms together, this work demonstrates that membrane active compounds may become the next generation chemotherapeutics because of their combined advantages.
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spelling pubmed-81615362021-06-04 Structure-tuned membrane active Ir-complexed oligoarginine overcomes cancer cell drug resistance and triggers immune responses in mice Ji, Shuangshuang Yang, Xiuzhu Chen, Xiaolong Li, Ang Yan, Doudou Xu, Haiyan Fei, Hao Chem Sci Chemistry The development of chemotherapy, an important cancer treatment modality, is hindered by the frequently found drug-resistance phenomenon. Meanwhile, researchers have been enthused lately by the synergistic use of chemotherapy with emerging immunotherapeutic treatments. In an effort to address both of the two unmet needs, reported herein is a study on a series of membrane active iridium(iii) complexed oligoarginine peptides with a new cell death mechanism capable of overcoming drug resistance as well as stimulating immunological responses. A systematic structure–activity relationship study elucidated the interdependent effects of three structural factors, i.e., hydrophobicity, topology and cationicity, on the regulation of the cytotoxicity of the Ir(iii)-oligoarginine peptides. With the most prominent toxicities, Ir-complexed octaarginines (R8) were found to display a progressive oncotic cell death featuring cell membrane-penetration and eruptive cytoplasmic content release. Consequently, this membrane-centric death mechanism showed promising potential in overcoming multiple chemical drug-resistance of cancer cells. More interestingly, the eruptive mode of cell death proved to be immunogenic by stimulating the dendritic cell maturation and inflammatory factor accumulation in mice tumours. Taking these mechanisms together, this work demonstrates that membrane active compounds may become the next generation chemotherapeutics because of their combined advantages. The Royal Society of Chemistry 2020-08-10 /pmc/articles/PMC8161536/ /pubmed/34094193 http://dx.doi.org/10.1039/d0sc03975f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Ji, Shuangshuang
Yang, Xiuzhu
Chen, Xiaolong
Li, Ang
Yan, Doudou
Xu, Haiyan
Fei, Hao
Structure-tuned membrane active Ir-complexed oligoarginine overcomes cancer cell drug resistance and triggers immune responses in mice
title Structure-tuned membrane active Ir-complexed oligoarginine overcomes cancer cell drug resistance and triggers immune responses in mice
title_full Structure-tuned membrane active Ir-complexed oligoarginine overcomes cancer cell drug resistance and triggers immune responses in mice
title_fullStr Structure-tuned membrane active Ir-complexed oligoarginine overcomes cancer cell drug resistance and triggers immune responses in mice
title_full_unstemmed Structure-tuned membrane active Ir-complexed oligoarginine overcomes cancer cell drug resistance and triggers immune responses in mice
title_short Structure-tuned membrane active Ir-complexed oligoarginine overcomes cancer cell drug resistance and triggers immune responses in mice
title_sort structure-tuned membrane active ir-complexed oligoarginine overcomes cancer cell drug resistance and triggers immune responses in mice
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8161536/
https://www.ncbi.nlm.nih.gov/pubmed/34094193
http://dx.doi.org/10.1039/d0sc03975f
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