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Peptide nanotube loaded with a STING agonist, c-di-GMP, enhance cancer immunotherapy against melanoma.

作者信息

Zhang Ziyuan, Liu Juan, Xiao Min, Zhang Quanfeng, Liu Zhonghua, Liu Meiyan, Zhang Peng, Zeng Youlin

机构信息

Key Laboratory of the Assembly and Application of Organic Functional Molecules of Hunan Province, Hunan Normal University, Changsha, 410081 China.

Laboratory of Chemical Biology and Traditional Chinese Medicine Research (Ministry of Education of China), Hunan Normal University, Changsha, 410081 China.

出版信息

Nano Res. 2023;16(4):5206-5215. doi: 10.1007/s12274-022-5102-z. Epub 2022 Nov 9.


DOI:10.1007/s12274-022-5102-z
PMID:36405984
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9643898/
Abstract

UNLABELLED: The activation of the stimulating factor of the interferon gene (STING) pathway can enhance the immune response within the tumor. Cyclic diguanylate monophosphate (c-di-GMP) is a negatively charged, hydrophilic STING agonist, however, its effectiveness is limited due to the poor membrane permeability and low bioavailability. Herein, we introduced KL-7 peptide derived from Aβ amyloid fibrils that can self-assemble to form nanotubes to load and deliver c-di-GMP, which significantly enhanced c-di-GMP's effectiveness and then exhibited a robust " immunity" to kill melanoma cells. KL-7 peptide nanotube, also called PNT, was loaded with negatively charged c-di-GMP via electrostatic interaction, which prepared a nanocomposite named c-di-GMP-PNT. Treatment of RAW 264.7 cells (leukemia cells in mouse macrophage) with c-di-GMP-PNT markedly stimulated the secretion of IL-6 and INF-β along with phospho-STING (Ser365) protein expression, indicating the activation of the STING pathway. In the unilateral flank B16-F10 (murine melanoma cells) tumor-bearing mouse model, compared to PNT and c-di-GMP, c-di-GMP-PNT can promote the expression of INF-β, TNF-α, IL-6, and IL-1β. At the same time, up-regulated CD4 and CD8 active T cells kill tumors and enhance the immune response in tumor tissues, resulting in significant inhibition of tumor growth in tumor-bearing mice. More importantly, in a bilateral flank B16-F10 tumor model, both primary and distant tumor growth can also be significantly inhibited by c-di-GMP-PNT. Moreover, c-di-GMP-PNT demonstrated no obvious biological toxicity on the main organs (heart, liver, spleen, lung, and kidney) and biochemical indexes of mice. In summary, our study provides a strategy to overcome the barriers of free c-di-GMP in the tumor microenvironment and c-di-GMP-PNT may be an attractive nanomaterial for anti-tumor immunity. ELECTRONIC SUPPLEMENTARY MATERIAL: Supplementary material (synthesis and characterization of KL-7 peptide; the encapsulation rate and cumulative release rate of c-di-GMP-PNT; cytotoxicity of PNT, c-di-GMP, and c-di-GMP-PNT; anti-tumor effect of c-di-GMP-PNT (equivalent to 1 and 5 µg c-di-GMP per mouse); representative immunofluorescence images; and biosafety analysis) is available in the online version of this article at 10.1007/s12274-022-5102-z.

摘要

相似文献

[1]
Peptide nanotube loaded with a STING agonist, c-di-GMP, enhance cancer immunotherapy against melanoma.

Nano Res. 2023

[2]
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[3]
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[4]
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[5]
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[6]
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[7]
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[8]
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引用本文的文献

[1]
Opportunities, obstacles and challenges of nano-immunotherapy in melanoma.

Front Immunol. 2025-8-8

[2]
Advances in nanomaterials for enhancing cGAS-STING pathway mediated anti-tumor treatment.

Mater Today Bio. 2025-8-11

[3]
Novel Delivery of Cyclic-Diguanylate Monophosphate Utilizing Amyloid Depots.

Pharmaceutics. 2025-5-19

[4]
Advances in cancer immunotherapy: historical perspectives, current developments, and future directions.

Mol Cancer. 2025-5-7

[5]
Nanoparticle-Based Strategies to Enhance the Efficacy of STING Activators in Cancer Immunotherapy.

Int J Nanomedicine. 2025-4-26

[6]
Bidirectional regulation of the cyclic guanosine monophosphate-adenosine monophosphate synthase-stimulator of interferon gene pathway and its impact on hepatocellular carcinoma.

World J Gastrointest Oncol. 2025-2-15

[7]
cGAS/STING in skin melanoma: from molecular mechanisms to therapeutics.

Cell Commun Signal. 2024-11-18

[8]
Emerging mechanisms and implications of cGAS-STING signaling in cancer immunotherapy strategies.

Cancer Biol Med. 2024-1-3

[9]
Peptide-drug co-assembling: A potent armament against cancer.

Theranostics. 2023

[10]
Targeting the stimulator of interferon genes (STING) in breast cancer.

Front Pharmacol. 2023-6-28

本文引用的文献

[1]
Improving STING Agonist Delivery for Cancer Immunotherapy Using Biodegradable Mesoporous Silica Nanoparticles.

Adv Ther (Weinh). 2020-10

[2]
STING Activator c-di-GMP-Loaded Mesoporous Silica Nanoparticles Enhance Immunotherapy Against Breast Cancer.

ACS Appl Mater Interfaces. 2020-12-23

[3]
cGAS-STING pathway in cancer biotherapy.

Mol Cancer. 2020-9-4

[4]
Tumour sensitization via the extended intratumoural release of a STING agonist and camptothecin from a self-assembled hydrogel.

Nat Biomed Eng. 2020-11

[5]
Structures and Mechanisms in the cGAS-STING Innate Immunity Pathway.

Immunity. 2020-7-14

[6]
cGAS-STING, an important pathway in cancer immunotherapy.

J Hematol Oncol. 2020-6-22

[7]
Covalent Catalysis by Cross β Amyloid Nanotubes.

J Am Chem Soc. 2020-3-4

[8]
MHC-II neoantigens shape tumour immunity and response to immunotherapy.

Nature. 2019-10-23

[9]
Peptide Nanotube-Templated Biomineralization of Cu S Nanoparticles for Combination Treatment of Metastatic Tumor.

Small. 2019-10-22

[10]
STING pathway agonism as a cancer therapeutic.

Immunol Rev. 2019-7

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