Cargando…

Novel formulation of c-di-GMP with cytidinyl/cationic lipid reverses T cell exhaustion and activates stronger anti-tumor immunity

Rationale: Cyclic dinucleotides (cDNs) are a promising class of immunotherapeutic agent targeting stimulator of interferon genes (STING). However, enzymatic instability and transmembrane barriers limit the extensive clinical application of cDNs. Thus, a novel delivery system, composed of a neutral c...

Descripción completa

Detalles Bibliográficos
Autores principales: Yu, Xiaotong, Yu, Jing, Dai, Hong, Deng, Chenyun, Sun, Xudong, Long, Sijie, Jiang, Zhujun, Jin, Hongyan, Guan, Zhu, Yang, Zhenjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9516232/
https://www.ncbi.nlm.nih.gov/pubmed/36185614
http://dx.doi.org/10.7150/thno.71010
_version_ 1784798663044759552
author Yu, Xiaotong
Yu, Jing
Dai, Hong
Deng, Chenyun
Sun, Xudong
Long, Sijie
Jiang, Zhujun
Jin, Hongyan
Guan, Zhu
Yang, Zhenjun
author_facet Yu, Xiaotong
Yu, Jing
Dai, Hong
Deng, Chenyun
Sun, Xudong
Long, Sijie
Jiang, Zhujun
Jin, Hongyan
Guan, Zhu
Yang, Zhenjun
author_sort Yu, Xiaotong
collection PubMed
description Rationale: Cyclic dinucleotides (cDNs) are a promising class of immunotherapeutic agent targeting stimulator of interferon genes (STING). However, enzymatic instability and transmembrane barriers limit the extensive clinical application of cDNs. Thus, a novel delivery system, composed of a neutral cytidinyl lipid DNCA and a cationic lipid CLD (Mix) that interacts with cDNs via H-bonding, pi-stacking and electrostatic interaction, is developed and optimized to overcome the above issues. Methods: The optimal composition of Mix for cDNs encapsulation was explored with RAW-Lucia ISG cells. The physicochemical properties of resulted nanoparticles were characterized. To validate the anti-tumor immunity of cDNs/Mix both in vitro and in vivo, immunogenic cell death (ICD) related markers and tumor inhibition efficacy were evaluated in cancer cells and tumor models, respectively. The mechanism by which cdG/Mix exerted the antitumor effects was explored by flow cytometric analysis and in vivo depletion. Results: Based on our developed and optimized delivery system, neutral cytidinyl lipid DNCA/cationic lipid CLD (Mix), cdG (500 nM in vitro, 1-10 μg in vivo)/Mix not only more potently stimulated production of IFNβ and related cytokines including CXCL9 and CXCL10, promoted ICD, led to NK and CD8(+) T cell activation, inhibited tumor growth in both EO771 and B16F10 models and increased their survival rate (~43%), but also obviously reversed the T cell exhaustion (Tex) in tumor, meanwhile down regulated the mRNA expression of Tox and Nr4a, which are key regulators of Tex. Conclusion: cdG/Mix triggered ICD in various cancer cells and reversed the Tex systemically in tumor-burden mice, which would be a promising alternative strategy for cancer immunotherapy.
format Online
Article
Text
id pubmed-9516232
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-95162322022-09-30 Novel formulation of c-di-GMP with cytidinyl/cationic lipid reverses T cell exhaustion and activates stronger anti-tumor immunity Yu, Xiaotong Yu, Jing Dai, Hong Deng, Chenyun Sun, Xudong Long, Sijie Jiang, Zhujun Jin, Hongyan Guan, Zhu Yang, Zhenjun Theranostics Research Paper Rationale: Cyclic dinucleotides (cDNs) are a promising class of immunotherapeutic agent targeting stimulator of interferon genes (STING). However, enzymatic instability and transmembrane barriers limit the extensive clinical application of cDNs. Thus, a novel delivery system, composed of a neutral cytidinyl lipid DNCA and a cationic lipid CLD (Mix) that interacts with cDNs via H-bonding, pi-stacking and electrostatic interaction, is developed and optimized to overcome the above issues. Methods: The optimal composition of Mix for cDNs encapsulation was explored with RAW-Lucia ISG cells. The physicochemical properties of resulted nanoparticles were characterized. To validate the anti-tumor immunity of cDNs/Mix both in vitro and in vivo, immunogenic cell death (ICD) related markers and tumor inhibition efficacy were evaluated in cancer cells and tumor models, respectively. The mechanism by which cdG/Mix exerted the antitumor effects was explored by flow cytometric analysis and in vivo depletion. Results: Based on our developed and optimized delivery system, neutral cytidinyl lipid DNCA/cationic lipid CLD (Mix), cdG (500 nM in vitro, 1-10 μg in vivo)/Mix not only more potently stimulated production of IFNβ and related cytokines including CXCL9 and CXCL10, promoted ICD, led to NK and CD8(+) T cell activation, inhibited tumor growth in both EO771 and B16F10 models and increased their survival rate (~43%), but also obviously reversed the T cell exhaustion (Tex) in tumor, meanwhile down regulated the mRNA expression of Tox and Nr4a, which are key regulators of Tex. Conclusion: cdG/Mix triggered ICD in various cancer cells and reversed the Tex systemically in tumor-burden mice, which would be a promising alternative strategy for cancer immunotherapy. Ivyspring International Publisher 2022-09-11 /pmc/articles/PMC9516232/ /pubmed/36185614 http://dx.doi.org/10.7150/thno.71010 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Yu, Xiaotong
Yu, Jing
Dai, Hong
Deng, Chenyun
Sun, Xudong
Long, Sijie
Jiang, Zhujun
Jin, Hongyan
Guan, Zhu
Yang, Zhenjun
Novel formulation of c-di-GMP with cytidinyl/cationic lipid reverses T cell exhaustion and activates stronger anti-tumor immunity
title Novel formulation of c-di-GMP with cytidinyl/cationic lipid reverses T cell exhaustion and activates stronger anti-tumor immunity
title_full Novel formulation of c-di-GMP with cytidinyl/cationic lipid reverses T cell exhaustion and activates stronger anti-tumor immunity
title_fullStr Novel formulation of c-di-GMP with cytidinyl/cationic lipid reverses T cell exhaustion and activates stronger anti-tumor immunity
title_full_unstemmed Novel formulation of c-di-GMP with cytidinyl/cationic lipid reverses T cell exhaustion and activates stronger anti-tumor immunity
title_short Novel formulation of c-di-GMP with cytidinyl/cationic lipid reverses T cell exhaustion and activates stronger anti-tumor immunity
title_sort novel formulation of c-di-gmp with cytidinyl/cationic lipid reverses t cell exhaustion and activates stronger anti-tumor immunity
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9516232/
https://www.ncbi.nlm.nih.gov/pubmed/36185614
http://dx.doi.org/10.7150/thno.71010
work_keys_str_mv AT yuxiaotong novelformulationofcdigmpwithcytidinylcationiclipidreversestcellexhaustionandactivatesstrongerantitumorimmunity
AT yujing novelformulationofcdigmpwithcytidinylcationiclipidreversestcellexhaustionandactivatesstrongerantitumorimmunity
AT daihong novelformulationofcdigmpwithcytidinylcationiclipidreversestcellexhaustionandactivatesstrongerantitumorimmunity
AT dengchenyun novelformulationofcdigmpwithcytidinylcationiclipidreversestcellexhaustionandactivatesstrongerantitumorimmunity
AT sunxudong novelformulationofcdigmpwithcytidinylcationiclipidreversestcellexhaustionandactivatesstrongerantitumorimmunity
AT longsijie novelformulationofcdigmpwithcytidinylcationiclipidreversestcellexhaustionandactivatesstrongerantitumorimmunity
AT jiangzhujun novelformulationofcdigmpwithcytidinylcationiclipidreversestcellexhaustionandactivatesstrongerantitumorimmunity
AT jinhongyan novelformulationofcdigmpwithcytidinylcationiclipidreversestcellexhaustionandactivatesstrongerantitumorimmunity
AT guanzhu novelformulationofcdigmpwithcytidinylcationiclipidreversestcellexhaustionandactivatesstrongerantitumorimmunity
AT yangzhenjun novelformulationofcdigmpwithcytidinylcationiclipidreversestcellexhaustionandactivatesstrongerantitumorimmunity