Sequential cryoablation enhances chemotherapeutic efficacy in pancreatic cancer by downregulating TGF-β mediated fibrosis in the sub-lethal zone
- J Therm Biol. 2026 Jul:139:104503. doi: 10.1016/j.jtherbio.2026.104503.
- 1. Institute of Biothermal Science & Technology, University of Shanghai for Science and Technology, Shanghai, 200093, China; Shanghai Co-innovation Center for Energy Therapy of Tumors, Shanghai, 200093, China; Shanghai Technical Service Platform for Cryopreservation of Biological Resources, Shanghai, 200093, China.
- 2. Center for Reproductive Medicine, Peking University Shenzhen Hospital, Shenzhen, 518036, China.
- 3. Zhejiang Cancer Hospital, Banshan Road, Hangzhou, 310022, China.
- 4. Key Laboratory for Tissue Engineering of Jiangxi Province, School of Medical Information Engineering, Gannan Medical University, Ganzhou, 341000, China.
- 5. Institute of Biothermal Science & Technology, University of Shanghai for Science and Technology, Shanghai, 200093, China; Shanghai Co-innovation Center for Energy Therapy of Tumors, Shanghai, 200093, China; Shanghai Technical Service Platform for Cryopreservation of Biological Resources, Shanghai, 200093, China. Electronic address: [email protected].
Cryoablation is effective for solid tumors but is often constrained by limited thermal efficiency and incomplete ablation. Conventional strategies prioritize expanding lethal isotherms to minimize the sub-lethal zone, a practice that increases the risk of collateral injury to adjacent critical structures. This study proposes a novel strategy utilizing the sub-lethal zone to remodel the tumor microenvironment for enhanced therapeutic efficacy. Using pancreatic Cancer and stellate cell co-cultured spheroids and subcutaneous tumor models, we investigated fibrotic tumor microenvironment changes induced by the cryoablation sub-lethal zone combined with gemcitabine plus nab-paclitaxel. Results demonstrated that cryoablation significantly disrupted Collagen structures and downregulated TGF-β1, p-Smad3, α-SMA, and Collagen I expression. This modulation is associated with the mitigation of fibrotic barriers, thereby potentially improving the accessibility of chemotherapy drugs within the sub-lethal zone. In vivo, cryoablation followed by chemotherapy yielded optimal efficacy compared to reverse Sequencing or monotherapy, significantly inhibiting angiogenesis and promoting mitochondrial Apoptosis via upregulated Bax and Caspase-3 levels. In conclusion, cryoablation functions as a potent tumor microenvironment remodeler. By downregulating TGF-β/Smad signaling, it sensitizes pancreatic ductal adenocarcinoma to subsequent chemotherapy, offering a superior sequential strategy to effectively inhibit the growth of residual tumor cells, offering an approach to improve local tumor control in PDAC.
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