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Insights into the Effect of Catalytic Intratumoral Lactate Depletion on Metabolic Reprogramming and Immune Activation for Antitumoral Activity

Lactate, a characteristic metabolite of the tumor microenvironment (TME), drives immunosuppression and promotes tumor progression. Material‐engineered strategies for intratumoral lactate modulations demonstrate their promise for tumor immunotherapy. However, understanding of the inherent interconnec...

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Autores principales: Zhao, Junlong, Tian, Zhimin, Zhao, Shoujie, Feng, Dayun, Guo, Zhixiong, Wen, Liangzhi, Zhu, Yejing, Xu, Fenghua, Zhu, Jun, Ma, Shouzheng, Hu, Jie, Jiang, Tao, Qu, Yongquan, Chen, Dongfeng, Liu, Lei
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/PMC9896070/
https://www.ncbi.nlm.nih.gov/pubmed/36479819
http://dx.doi.org/10.1002/advs.202204808
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author Zhao, Junlong
Tian, Zhimin
Zhao, Shoujie
Feng, Dayun
Guo, Zhixiong
Wen, Liangzhi
Zhu, Yejing
Xu, Fenghua
Zhu, Jun
Ma, Shouzheng
Hu, Jie
Jiang, Tao
Qu, Yongquan
Chen, Dongfeng
Liu, Lei
author_facet Zhao, Junlong
Tian, Zhimin
Zhao, Shoujie
Feng, Dayun
Guo, Zhixiong
Wen, Liangzhi
Zhu, Yejing
Xu, Fenghua
Zhu, Jun
Ma, Shouzheng
Hu, Jie
Jiang, Tao
Qu, Yongquan
Chen, Dongfeng
Liu, Lei
author_sort Zhao, Junlong
collection PubMed
description Lactate, a characteristic metabolite of the tumor microenvironment (TME), drives immunosuppression and promotes tumor progression. Material‐engineered strategies for intratumoral lactate modulations demonstrate their promise for tumor immunotherapy. However, understanding of the inherent interconnections of material‐enabled lactate regulation, metabolism, and immunity in the TME is scarce. To address this issue, urchin‐like catalysts of the encapsulated Gd‐doped CeO(2), syrosingopine, and lactate oxidase are used in ZIF‐8 (USL, where U, S, and L represent the urchin‐like Gd‐doped CeO(2)@ZIF‐8, syrosingopine, and lactate oxidase, respectively) and orthotopic tumor models. The instructive relationships of intratumoral lactate depletion, metabolic reprogramming, and immune activation for catalytic immunotherapy of tumors is illustrated. The catalysts efficiently oxidize intratumoral lactate and significantly promote tumor cell apoptosis by in situ‐generated ·OH, thereby reducing glucose supply and inducing mitochondrial damage via lactate depletion, thus reprogramming glycometabolism. Subsequently, such catalytic metabolic reprogramming evokes both local and systemic antitumor immunity by activating M1‐polarizaed macrophages and CD8(+) T cells, leading to potent antitumor immunity. This study provides valuable mechanistic insights into material‐interfered tumor therapy through intratumoral lactate depletion and consequential connection with metabolic reprogramming and immunity remodeling, which is thought to enhance the efficacy of immunotherapy.
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spelling pubmed-98960702023-02-08 Insights into the Effect of Catalytic Intratumoral Lactate Depletion on Metabolic Reprogramming and Immune Activation for Antitumoral Activity Zhao, Junlong Tian, Zhimin Zhao, Shoujie Feng, Dayun Guo, Zhixiong Wen, Liangzhi Zhu, Yejing Xu, Fenghua Zhu, Jun Ma, Shouzheng Hu, Jie Jiang, Tao Qu, Yongquan Chen, Dongfeng Liu, Lei Adv Sci (Weinh) Research Articles Lactate, a characteristic metabolite of the tumor microenvironment (TME), drives immunosuppression and promotes tumor progression. Material‐engineered strategies for intratumoral lactate modulations demonstrate their promise for tumor immunotherapy. However, understanding of the inherent interconnections of material‐enabled lactate regulation, metabolism, and immunity in the TME is scarce. To address this issue, urchin‐like catalysts of the encapsulated Gd‐doped CeO(2), syrosingopine, and lactate oxidase are used in ZIF‐8 (USL, where U, S, and L represent the urchin‐like Gd‐doped CeO(2)@ZIF‐8, syrosingopine, and lactate oxidase, respectively) and orthotopic tumor models. The instructive relationships of intratumoral lactate depletion, metabolic reprogramming, and immune activation for catalytic immunotherapy of tumors is illustrated. The catalysts efficiently oxidize intratumoral lactate and significantly promote tumor cell apoptosis by in situ‐generated ·OH, thereby reducing glucose supply and inducing mitochondrial damage via lactate depletion, thus reprogramming glycometabolism. Subsequently, such catalytic metabolic reprogramming evokes both local and systemic antitumor immunity by activating M1‐polarizaed macrophages and CD8(+) T cells, leading to potent antitumor immunity. This study provides valuable mechanistic insights into material‐interfered tumor therapy through intratumoral lactate depletion and consequential connection with metabolic reprogramming and immunity remodeling, which is thought to enhance the efficacy of immunotherapy. John Wiley and Sons Inc. 2022-12-07 /pmc/articles/PMC9896070/ /pubmed/36479819 http://dx.doi.org/10.1002/advs.202204808 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
Zhao, Junlong
Tian, Zhimin
Zhao, Shoujie
Feng, Dayun
Guo, Zhixiong
Wen, Liangzhi
Zhu, Yejing
Xu, Fenghua
Zhu, Jun
Ma, Shouzheng
Hu, Jie
Jiang, Tao
Qu, Yongquan
Chen, Dongfeng
Liu, Lei
Insights into the Effect of Catalytic Intratumoral Lactate Depletion on Metabolic Reprogramming and Immune Activation for Antitumoral Activity
title Insights into the Effect of Catalytic Intratumoral Lactate Depletion on Metabolic Reprogramming and Immune Activation for Antitumoral Activity
title_full Insights into the Effect of Catalytic Intratumoral Lactate Depletion on Metabolic Reprogramming and Immune Activation for Antitumoral Activity
title_fullStr Insights into the Effect of Catalytic Intratumoral Lactate Depletion on Metabolic Reprogramming and Immune Activation for Antitumoral Activity
title_full_unstemmed Insights into the Effect of Catalytic Intratumoral Lactate Depletion on Metabolic Reprogramming and Immune Activation for Antitumoral Activity
title_short Insights into the Effect of Catalytic Intratumoral Lactate Depletion on Metabolic Reprogramming and Immune Activation for Antitumoral Activity
title_sort insights into the effect of catalytic intratumoral lactate depletion on metabolic reprogramming and immune activation for antitumoral activity
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9896070/
https://www.ncbi.nlm.nih.gov/pubmed/36479819
http://dx.doi.org/10.1002/advs.202204808
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