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Published on: December 15, 2010
Ultrasound-targeted nanodroplets destruction activates CAF_Pi16-CCL7 signalling to enhance NKG2D expression and
Baojing Tuo1, Na Li2, Senbo Liu1
1Henan Key Laboratory of Chronic Disease Prevention and Therapy & Intelligent Health Management, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan, 450052, China; Henan Institute of Interconnected Intelligent Health Management, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan, 450052, China; Department of Colorectal Surgery, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan, 450052, China.
Abstract:
Immune-resistant colorectal cancer (irCRC), represented by microsatellite stable/proficient mismatch repair (MSS/pMMR) tumors, responds poorly to immune checkpoint blockade (ICB). Here, we developed an ultrasound-targeted nanodroplet destruction (UTND) strategy combined with surface anti-PD-L1-decorated nanodroplets (PPP@P@map) to enhance ICB responsiveness in MSS colorectal cancer. In CT26 and CMT93 murine subcutaneous MSS colorectal cancer models, PPP@P@map combined with UTND markedly suppressed tumor growth compared with control treatments. Single-cell RNA sequencing identified CAF_Pi16 as a candidate therapy-associated cancer-associated fibroblast subset that showed a treatment-related increase after PPP@P@map + UTND, which was further supported by flow cytometry and multiplex immunofluorescence validation. Mechanistically, UTND induced oxidative stress in tumor cells and promoted the generation of advanced glycation end products (AGEs), which activated the AGE-RAGE/PKCα/NF-κB pathway in CAF_Pi16 and increased CCL7 secretion. CAF_Pi16-derived CCL7 provided a CCR2-dependent functional cue to CD8+ T cells. In purified CD8+ T cells, CCL7 activated NF-κB-related signalling, enhanced activation and cytotoxic effector features, and promoted NKG2D expression; these effects were attenuated by CCR2 blockade or NF-κB inhibition. Functionally, CCL7 enhanced CD8+ T cell-mediated tumor-cell killing, whereas NKG2D blockade reduced this effect and weakened the antitumor efficacy of PPP@P@map + UTND in vivo. Together, these findings reveal a UTND-induced tumor cell-CAF_Pi16-CCL7-CD8+ T-cell signalling axis that enhances NKG2D-associated antitumor immunity and provides a mechanistic basis for further investigation of UTND-based strategies to improve ICB responsiveness in MSS/pMMR colorectal cancer.
Insights
This study introduces an ultrasound-targeted nanodroplet destruction strategy combined with anti-PD-L1 nanodroplets to enhance immune checkpoint blockade for immune-resistant colorectal cancer. The approach activates a signaling pathway involving cancer-associated fibroblasts and CD8+ T cells, boosting anti-tumor immunity.
Area of Science:
- Oncology
- Immunology
- Nanotechnology
Background:
- Immune-resistant colorectal cancer (MSS/pMMR tumors) shows poor response to immune checkpoint blockade (ICB).
- Novel therapeutic strategies are needed to enhance ICB efficacy in this patient population.
Purpose of the Study:
- To develop and evaluate an ultrasound-targeted nanodroplet destruction (UTND) strategy combined with anti-PD-L1 nanodroplets (PPP@P@map) for improving ICB responsiveness in MSS colorectal cancer.
- To elucidate the underlying mechanisms of this combined therapy.
Main Methods:
- Development of surface anti-PD-L1-decorated nanodroplets (PPP@P@map).
- Application of ultrasound-targeted nanodroplet destruction (UTND) in murine MSS colorectal cancer models (CT26 and CMT93).
- Single-cell RNA sequencing, flow cytometry, and multiplex immunofluorescence for mechanistic studies.
Main Results:
- The combination of PPP@P@map and UTND significantly suppressed tumor growth in vivo.
- UTND induced oxidative stress and AGEs, activating the AGE-RAGE/PKCα/NF-κB pathway in CAF_Pi16 cells, leading to increased CCL7 secretion.
- CCL7 enhanced CD8+ T cell activation, cytotoxic features, and NKG2D expression via the CCR2/NF-κB axis, promoting tumor cell killing.
Conclusions:
- A novel UTND-based strategy enhances anti-tumor immunity in MSS colorectal cancer by modulating the tumor microenvironment.
- The findings reveal a UTND-induced signaling axis (tumor cell-CAF_Pi16-CCL7-CD8+ T cell) that boosts NKG2D-mediated anti-tumor immunity.
- This study provides a mechanistic rationale for using UTND to improve ICB efficacy in MSS/pMMR colorectal cancer.
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