肿瘤微环境
免疫系统
癌症研究
免疫疗法
免疫抑制
癌症免疫疗法
CD8型
材料科学
免疫原性细胞死亡
免疫学
生物
作者
Yiqiong Liu,Dailin Xu,Ying Liu,Xiao Zheng,Jie Zang,Wanli Ye,Yuge Zhao,Ruiqing He,Shuangrong Ruan,Tingting Zhang,Haiqing Dong,Yan Li,Yongyong Li
出处
期刊:Biomaterials
[Elsevier BV]
日期:2022-04-09
卷期号:284: 121516-121516
被引量:49
标识
DOI:10.1016/j.biomaterials.2022.121516
摘要
Tumor hyaluronan (HA) accumulation is closely associated with the formation of a hypoxic microenvironment that is highly immunosuppressive and severely hinders the efficacy of antitumor therapeutics. To address this problem, we develop an effective HA attenuation strategy that uses an integrated nanosystem based on mesoporous polydopamine (mPDA) with excellent photothermal conversion efficiency to boost hyaluronidase (HAase) activity remotely. Upon light irradiation, the thermal effect generated by mPDA not only directly kills tumor cells that produces an in situ vaccine effect, but also significantly boosts HAase activity (∼5 folds), leading to marked HA break down. Photoheat and HA degradation synergistically reduce tumor HIF-1α expression and reverse immunosuppressive responses. Using the synergistic treatment in a breast cancer model, we find decreased infiltration of immunosuppressive cells, including myeloid-derived suppressor cells, M2 macrophages, and regulatory T cells, increased immune-activated cells, such as mature dendritic cells and CD8+ T cells, and reduced immune checkpoint PD-L1 expression. The resulting relief from tumor microenvironment immunosuppression significantly contributes to an enhanced antitumor effect. This study provides an effective strategy to improve the hypoxic tumor microenvironment and simultaneously promote immune-mediated tumor regression.
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