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BiTE‐Secreting CAR‐γδT as a Dual Targeting Strategy for the Treatment of Solid Tumors

HLA‐G is considered as an immune checkpoint protein and a tumor‐associated antigen. In the previous work, it is reported that CAR‐NK targeting of HLA‐G can be used to treat certain solid tumors. However, the frequent co‐expression of PD‐L1 and HLA‐G) and up‐regulation of PD‐L1 after adoptive immunot...

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Autores principales: Huang, Shi‐Wei, Pan, Chih‐Ming, Lin, Yu‐Chuan, Chen, Mei‐Chih, Chen, Yeh, Jan, Chia‐Ing, Wu, Chung‐Chun, Lin, Fang‐Yu, Wang, Sin‐Ting, Lin, Chen‐Yu, Lin, Pei‐Ying, Huang, Wei‐Hsaing, Chiang, Yu‐Ting, Tsai, Wan‐Chen, Chiu, Ya‐Hsu, Lin, Ting‐Hsun, Chiu, Shao‐Chih, Cho, Der‐Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10265101/
https://www.ncbi.nlm.nih.gov/pubmed/37078788
http://dx.doi.org/10.1002/advs.202206856
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author Huang, Shi‐Wei
Pan, Chih‐Ming
Lin, Yu‐Chuan
Chen, Mei‐Chih
Chen, Yeh
Jan, Chia‐Ing
Wu, Chung‐Chun
Lin, Fang‐Yu
Wang, Sin‐Ting
Lin, Chen‐Yu
Lin, Pei‐Ying
Huang, Wei‐Hsaing
Chiang, Yu‐Ting
Tsai, Wan‐Chen
Chiu, Ya‐Hsu
Lin, Ting‐Hsun
Chiu, Shao‐Chih
Cho, Der‐Yang
author_facet Huang, Shi‐Wei
Pan, Chih‐Ming
Lin, Yu‐Chuan
Chen, Mei‐Chih
Chen, Yeh
Jan, Chia‐Ing
Wu, Chung‐Chun
Lin, Fang‐Yu
Wang, Sin‐Ting
Lin, Chen‐Yu
Lin, Pei‐Ying
Huang, Wei‐Hsaing
Chiang, Yu‐Ting
Tsai, Wan‐Chen
Chiu, Ya‐Hsu
Lin, Ting‐Hsun
Chiu, Shao‐Chih
Cho, Der‐Yang
author_sort Huang, Shi‐Wei
collection PubMed
description HLA‐G is considered as an immune checkpoint protein and a tumor‐associated antigen. In the previous work, it is reported that CAR‐NK targeting of HLA‐G can be used to treat certain solid tumors. However, the frequent co‐expression of PD‐L1 and HLA‐G) and up‐regulation of PD‐L1 after adoptive immunotherapy may decrease the effectiveness of HLA‐G‐CAR. Therefore, simultaneous targeting of HLA‐G and PD‐L1 by multi‐specific CAR could represent an appropriate solution. Furthermore, gamma‐delta T (γδT) cells exhibit MHC‐independent cytotoxicity against tumor cells and possess allogeneic potential. The utilization of nanobodies offers flexibility for CAR engineering and the ability to recognize novel epitopes. In this study, Vδ2 γδT cells are used as effector cells and electroporated with an mRNA‐driven, nanobody‐based HLA‐G‐CAR with a secreted PD‐L1/CD3ε Bispecific T‐cell engager (BiTE) construct (Nb‐CAR.BiTE). Both in vivo and in vitro experiments reveal that the Nb‐CAR.BiTE‐γδT cells could effectively eliminate PD‐L1 and/or HLA‐G‐positive solid tumors. The secreted PD‐L1/CD3ε Nb‐BiTE can not only redirect Nb‐CAR‐γδT but also recruit un‐transduced bystander T cells against tumor cells expressing PD‐L1, thereby enhancing the activity of Nb‐CAR‐γδT therapy. Furthermore, evidence is provided that Nb‐CAR.BiTE redirectes γδT into tumor‐implanted tissues and that the secreted Nb‐BiTE is restricted to the tumor site without apparent toxicity.
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spelling pubmed-102651012023-06-15 BiTE‐Secreting CAR‐γδT as a Dual Targeting Strategy for the Treatment of Solid Tumors Huang, Shi‐Wei Pan, Chih‐Ming Lin, Yu‐Chuan Chen, Mei‐Chih Chen, Yeh Jan, Chia‐Ing Wu, Chung‐Chun Lin, Fang‐Yu Wang, Sin‐Ting Lin, Chen‐Yu Lin, Pei‐Ying Huang, Wei‐Hsaing Chiang, Yu‐Ting Tsai, Wan‐Chen Chiu, Ya‐Hsu Lin, Ting‐Hsun Chiu, Shao‐Chih Cho, Der‐Yang Adv Sci (Weinh) Research Articles HLA‐G is considered as an immune checkpoint protein and a tumor‐associated antigen. In the previous work, it is reported that CAR‐NK targeting of HLA‐G can be used to treat certain solid tumors. However, the frequent co‐expression of PD‐L1 and HLA‐G) and up‐regulation of PD‐L1 after adoptive immunotherapy may decrease the effectiveness of HLA‐G‐CAR. Therefore, simultaneous targeting of HLA‐G and PD‐L1 by multi‐specific CAR could represent an appropriate solution. Furthermore, gamma‐delta T (γδT) cells exhibit MHC‐independent cytotoxicity against tumor cells and possess allogeneic potential. The utilization of nanobodies offers flexibility for CAR engineering and the ability to recognize novel epitopes. In this study, Vδ2 γδT cells are used as effector cells and electroporated with an mRNA‐driven, nanobody‐based HLA‐G‐CAR with a secreted PD‐L1/CD3ε Bispecific T‐cell engager (BiTE) construct (Nb‐CAR.BiTE). Both in vivo and in vitro experiments reveal that the Nb‐CAR.BiTE‐γδT cells could effectively eliminate PD‐L1 and/or HLA‐G‐positive solid tumors. The secreted PD‐L1/CD3ε Nb‐BiTE can not only redirect Nb‐CAR‐γδT but also recruit un‐transduced bystander T cells against tumor cells expressing PD‐L1, thereby enhancing the activity of Nb‐CAR‐γδT therapy. Furthermore, evidence is provided that Nb‐CAR.BiTE redirectes γδT into tumor‐implanted tissues and that the secreted Nb‐BiTE is restricted to the tumor site without apparent toxicity. John Wiley and Sons Inc. 2023-04-20 /pmc/articles/PMC10265101/ /pubmed/37078788 http://dx.doi.org/10.1002/advs.202206856 Text en © 2023 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
Huang, Shi‐Wei
Pan, Chih‐Ming
Lin, Yu‐Chuan
Chen, Mei‐Chih
Chen, Yeh
Jan, Chia‐Ing
Wu, Chung‐Chun
Lin, Fang‐Yu
Wang, Sin‐Ting
Lin, Chen‐Yu
Lin, Pei‐Ying
Huang, Wei‐Hsaing
Chiang, Yu‐Ting
Tsai, Wan‐Chen
Chiu, Ya‐Hsu
Lin, Ting‐Hsun
Chiu, Shao‐Chih
Cho, Der‐Yang
BiTE‐Secreting CAR‐γδT as a Dual Targeting Strategy for the Treatment of Solid Tumors
title BiTE‐Secreting CAR‐γδT as a Dual Targeting Strategy for the Treatment of Solid Tumors
title_full BiTE‐Secreting CAR‐γδT as a Dual Targeting Strategy for the Treatment of Solid Tumors
title_fullStr BiTE‐Secreting CAR‐γδT as a Dual Targeting Strategy for the Treatment of Solid Tumors
title_full_unstemmed BiTE‐Secreting CAR‐γδT as a Dual Targeting Strategy for the Treatment of Solid Tumors
title_short BiTE‐Secreting CAR‐γδT as a Dual Targeting Strategy for the Treatment of Solid Tumors
title_sort bite‐secreting car‐γδt as a dual targeting strategy for the treatment of solid tumors
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10265101/
https://www.ncbi.nlm.nih.gov/pubmed/37078788
http://dx.doi.org/10.1002/advs.202206856
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