Boosting(机器学习)
封锁
免疫检查点
纳米-
医学
免疫系统
材料科学
免疫学
计算机科学
受体
内科学
机器学习
复合材料
作者
Linlin Song,Zhihui Liu,Xiaqin He,Tianyue Xu,Meixu Chen,Zihan Xu,Haina Zhao,Jiaojiao Suo,Yuzhuo Wang,Zhankun Yang,SW You,Marc E. Rothenberg,Guang Yang,Jing Jing,Yulan Peng,Hubing Shi
标识
DOI:10.1016/j.cej.2024.153188
摘要
Synchronizing therapy and diagnosis is an ideal mode for clinical treatment of localized disease, e.g., tumor. Here, we develop a diagnosis-therapy coupled sonodynamic nano delivery system ZSMT which is constructed with a TiO2 embedding hollow Mn-MOF. Loaded with perfluorohexane, the ZSMT nanoparticle is not only capable for carrying ozone as a ROS donor but also endowed with double modes of imaging, namely ultrasound and magnetic resonance imaging. The TiO2-Mn-MOF can efficiently generate ROS by sonodynamic catalyzing ozone. Moreover, fluorescent tracer indicates the ZSMT particle can be internalized by tumor cells. With the stimulation of ultrasound, ozone carried ZSMT potently inhibits cell proliferation and promotes immunogenic cell death in vitro and in vivo by inducing a mitochondrial related cell death. Remarkably, combination of ultrasound-responsive ozone catalytic nano system and PD-1 blockade systematically suppresses the tumor growth by reprogramming the immune microenvironment. In conclusion, our sonodynamic nano system not only proves the principle of drug administration strategy on "treat-as-you-see" but also provides a combo regimen of improving PD-1 blockade with precision localized antigen boosting.
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