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Paramyxoviruses for Tumor-targeted Immunomodulation: Design and Evaluation Ex Vivo
Published on: January 7, 2019
Cell Selective STING-Activating Polysaccharide Immunomodulators for Cancer Therapy
Qianli Zhu1, Jiaqian Miao1, Danni Xu1
1State Key Laboratory of Discovery and Utilization of Functional Components in Traditional Chinese Medicine, Shanghai Frontiers Science Center of TCM Chemical Biology, Institute of Interdisciplinary Integrative Medicine Research, Shanghai University of Traditional Chinese Medicine, Shanghai, China.
This study engineered selective STING-activating polysaccharide immunomodulators (SSAPIs) to enhance cancer immunotherapy. A disulfide linker SSAPI (DSSX) demonstrated superior antitumor efficacy by broadly activating the STING pathway across diverse tumor and immune cells.
Area of Science:
- Immunology
- Oncology
- Materials Science
Background:
- The stimulator of interferon genes (STING) pathway is crucial for reversing tumor-immunosuppressive microenvironment (TIME) in cancer therapy.
- Selective STING activation and its quantitative comparison across heterogeneous cell populations present a significant challenge.
Purpose of the Study:
- To engineer selective STING-activating polysaccharide immunomodulators (SSAPIs) with quantitative activation efficiency across tumor cells, macrophages, and dendritic cells (DCs).
- To utilize dextran as a nanocarrier for improved drug delivery and controlled release kinetics.
- To investigate the impact of different linkers on STING activation selectivity and therapeutic efficacy.
Main Methods:
- Conjugation of the STING agonist (DMXAA) to dextran via ester and disulfide linkers to create SSAPIs (DESX and DSSX).
- In vitro quantitative assessment of STING activation in different cell types.
- In vivo evaluation of antitumor efficacy in B16F10 and CT26 tumor-bearing mice models.
Main Results:
- DESX showed enhanced STING activation in macrophages.
- DSSX demonstrated broad STING activation across tumor cells and immune cells.
- DSSX achieved significant antitumor efficacy, with six out of eight mice showing complete tumor remission, by inducing broad immune responses and reprogramming TIME.
Conclusions:
- Activating the STING signaling pathway across diverse cell populations is critical for effective solid tumor immunotherapy.
- Engineered SSAPIs offer a promising strategy for targeted STING activation and enhanced cancer treatment.
- DSSX, with its disulfide linker, represents a potent immunomodulator for reprogramming the tumor microenvironment.
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