X-ray excited shortwave infrared (X-SWIR) imaging attracts much attention because of its advantages in optical deep imaging. However, the X-ray used for X-SWIR imaging brings risk of radiation to organism. How to bett...
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Multi-frequency magnetic induction tomography (mfMIT) is considered a promising technique for the early detection of intracranial hemorrhage. However, the lack of practical and stable algorithms has limited the use of...
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Recent years have witnessed the great advance of bioradar system in smart sensing of vital signs (VS) for human healthcare monitoring. As an important part of VS sensing process, VS measurement aims to capture the che...
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The temperature characteristics of the conductivity of the cerebrospinal fluid (CSF) are important in the fields of biological effect research, and electromagnetic protection of electromagnetic fields. In this study, ...
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Recursive techniques have demonstrated excellent computational efficiency in classic remote sensing tasks but are rarely applied in emerging remote sensing tasks in the IoT field, such as bioradar-based remote sensing...
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BackgroundTriple-negative breast cancer (TNBC) is an aggressive malignancy with high metastasis and recurrence rates. Current treatments like chemotherapy and immunotherapy face challenges due to chemotherapy side eff...
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BackgroundTriple-negative breast cancer (TNBC) is an aggressive malignancy with high metastasis and recurrence rates. Current treatments like chemotherapy and immunotherapy face challenges due to chemotherapy side effects, limited immunotherapy applicability, and TNBC’s immunosuppressive *** achieve a more effective treatment for TNBC, a novel therapeutic strategy has been developed, which uses X-ray excited photodynamic therapy (X-PDT) to activate the tumor immune microenvironment following with the immunotherapy of *** on the 4T1 tumor mouse model, this study initially investigated the regulatory effects of X-PDT on the tumor immune microenvironment. Subsequently, the therapeutic efficacy of combining X-PDT with Anti-CTLA4 was evaluated for its inhibitory effects on primary, metastatic, and recurrent tumors. The underlying mechanisms were further elucidated through comprehensive techniques including flow cytometry, ELISA, and immunofluorescence *** synergistic strategy can effectively ablate the primary tumor while inhibiting metastasis and preventing recurrence like a vaccine. It enhances intratumoural dendritic cells (DCs) maturation (from 25.7% to 58.3%,P< 0.05) and immune T cell infiltration activating a strong anti-tumor immune response. The anti-tumor efficacy of synergistic therapy is enhanced by 2.5 times comparing with immunotherapy alone, while the tumor metastasis has been inhibited significantly. The maturation level of mature dendritic cells was increased from 26.7% to 86.3% (P< 0.01). The intratumoural CD8+/CD4+T cells were increased from 0.51% and 1.54% to 15.4% and 23.1% (P< 0.0001), respectively. The synergistic therapy exerts a powerful vaccine-like long-term immune memory function to prevent tumor recurrence with the elevated level of effector memory T (Tem) cells (from 12.8% to 33.3%,P< 0.05).ConclusionBased on the 4T1 mouse model, developed an effective vaccine-like therapeutic strategy c
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