Cargando…

A platinum@polymer-catechol nanobraker enables radio-immunotherapy for crippling melanoma tumorigenesis, angiogenesis, and radioresistance

Malignant melanoma cell-intrinsic PD-1:PD-L1 interaction thrusts tumorigenesis, angiogenesis, and radioresistance via mTOR hyperactivation to aggravate circumjacent aggression. Interdicting melanoma intrinsic growth signals, including the blockade of PD-L1 and mTOR signaling concurrently, cooperativ...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Wenxi, Yan, Jie, Tian, Hao, Li, Bei, Wang, Guohao, Sang, Wei, Zhang, Zhan, Zhang, Xuanjun, Dai, Yunlu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9513621/
https://www.ncbi.nlm.nih.gov/pubmed/36203954
http://dx.doi.org/10.1016/j.bioactmat.2022.09.006
_version_ 1784798108602859520
author Li, Wenxi
Yan, Jie
Tian, Hao
Li, Bei
Wang, Guohao
Sang, Wei
Zhang, Zhan
Zhang, Xuanjun
Dai, Yunlu
author_facet Li, Wenxi
Yan, Jie
Tian, Hao
Li, Bei
Wang, Guohao
Sang, Wei
Zhang, Zhan
Zhang, Xuanjun
Dai, Yunlu
author_sort Li, Wenxi
collection PubMed
description Malignant melanoma cell-intrinsic PD-1:PD-L1 interaction thrusts tumorigenesis, angiogenesis, and radioresistance via mTOR hyperactivation to aggravate circumjacent aggression. Interdicting melanoma intrinsic growth signals, including the blockade of PD-L1 and mTOR signaling concurrently, cooperative with radiotherapy may provide a vigorous repertoire to alleviate the tumor encumbrance. Thence, we design a three-pronged platinum@polymer-catechol nanobraker to deliver mTOR inhibitor TAK228 and anti-PD-L1 antibody (aPD-L1) for impeding the melanoma-PD-1-driven aggression and maximizing the melanoma eradication. The aPD-L1 collaborated with TAK228 restrains melanoma cell-intrinsic PD-1: PD-L1 tumorigenic interaction via blocking melanoma-PD-L1 ligand and the melanoma-PD-1 receptor-driven mTOR signaling; corresponding downregulation of mTOR downstream protumorigenic cellular MYC and proangiogenic hypoxia-inducible factor 1-alpha is conducive to preventing tumorigenesis and angiogenesis, respectively. Further, high-Z metal platinum sensitizing TAK228-enhanced radiotherapy confers the nanobraker on remarkable tumoricidal efficacy. Hereto, the customized three-pronged nanobrakers efficiently suppress melanoma tumorigenesis and angiogenesis concomitant with the amplification of radiotherapeutic efficacy. Such an ingenious tactic may provide substantial benefits to clinical melanoma patients.
format Online
Article
Text
id pubmed-9513621
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher KeAi Publishing
record_format MEDLINE/PubMed
spelling pubmed-95136212022-10-05 A platinum@polymer-catechol nanobraker enables radio-immunotherapy for crippling melanoma tumorigenesis, angiogenesis, and radioresistance Li, Wenxi Yan, Jie Tian, Hao Li, Bei Wang, Guohao Sang, Wei Zhang, Zhan Zhang, Xuanjun Dai, Yunlu Bioact Mater Article Malignant melanoma cell-intrinsic PD-1:PD-L1 interaction thrusts tumorigenesis, angiogenesis, and radioresistance via mTOR hyperactivation to aggravate circumjacent aggression. Interdicting melanoma intrinsic growth signals, including the blockade of PD-L1 and mTOR signaling concurrently, cooperative with radiotherapy may provide a vigorous repertoire to alleviate the tumor encumbrance. Thence, we design a three-pronged platinum@polymer-catechol nanobraker to deliver mTOR inhibitor TAK228 and anti-PD-L1 antibody (aPD-L1) for impeding the melanoma-PD-1-driven aggression and maximizing the melanoma eradication. The aPD-L1 collaborated with TAK228 restrains melanoma cell-intrinsic PD-1: PD-L1 tumorigenic interaction via blocking melanoma-PD-L1 ligand and the melanoma-PD-1 receptor-driven mTOR signaling; corresponding downregulation of mTOR downstream protumorigenic cellular MYC and proangiogenic hypoxia-inducible factor 1-alpha is conducive to preventing tumorigenesis and angiogenesis, respectively. Further, high-Z metal platinum sensitizing TAK228-enhanced radiotherapy confers the nanobraker on remarkable tumoricidal efficacy. Hereto, the customized three-pronged nanobrakers efficiently suppress melanoma tumorigenesis and angiogenesis concomitant with the amplification of radiotherapeutic efficacy. Such an ingenious tactic may provide substantial benefits to clinical melanoma patients. KeAi Publishing 2022-09-24 /pmc/articles/PMC9513621/ /pubmed/36203954 http://dx.doi.org/10.1016/j.bioactmat.2022.09.006 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Li, Wenxi
Yan, Jie
Tian, Hao
Li, Bei
Wang, Guohao
Sang, Wei
Zhang, Zhan
Zhang, Xuanjun
Dai, Yunlu
A platinum@polymer-catechol nanobraker enables radio-immunotherapy for crippling melanoma tumorigenesis, angiogenesis, and radioresistance
title A platinum@polymer-catechol nanobraker enables radio-immunotherapy for crippling melanoma tumorigenesis, angiogenesis, and radioresistance
title_full A platinum@polymer-catechol nanobraker enables radio-immunotherapy for crippling melanoma tumorigenesis, angiogenesis, and radioresistance
title_fullStr A platinum@polymer-catechol nanobraker enables radio-immunotherapy for crippling melanoma tumorigenesis, angiogenesis, and radioresistance
title_full_unstemmed A platinum@polymer-catechol nanobraker enables radio-immunotherapy for crippling melanoma tumorigenesis, angiogenesis, and radioresistance
title_short A platinum@polymer-catechol nanobraker enables radio-immunotherapy for crippling melanoma tumorigenesis, angiogenesis, and radioresistance
title_sort platinum@polymer-catechol nanobraker enables radio-immunotherapy for crippling melanoma tumorigenesis, angiogenesis, and radioresistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9513621/
https://www.ncbi.nlm.nih.gov/pubmed/36203954
http://dx.doi.org/10.1016/j.bioactmat.2022.09.006
work_keys_str_mv AT liwenxi aplatinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT yanjie aplatinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT tianhao aplatinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT libei aplatinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT wangguohao aplatinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT sangwei aplatinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT zhangzhan aplatinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT zhangxuanjun aplatinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT daiyunlu aplatinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT liwenxi platinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT yanjie platinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT tianhao platinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT libei platinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT wangguohao platinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT sangwei platinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT zhangzhan platinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT zhangxuanjun platinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance
AT daiyunlu platinumpolymercatecholnanobrakerenablesradioimmunotherapyforcripplingmelanomatumorigenesisangiogenesisandradioresistance