Sui Xueqing, Jin Teng, Liu Tonghui, Wu Shiman, Wu Yue, Tang Zhongmin, Ren Yan, Ni Dalong, Yao Zhenwei, Zhang Hua
Department of Radiology, The Affiliated Hospital of Qingdao University, Qingdao, China.
Department of Radiology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Front Chem. 2020 Sep 8;8:804. doi: 10.3389/fchem.2020.00804. eCollection 2020.
Interest in cancer immunotherapy has rapidly risen since it offers many advantages over traditional approaches, such as high efficiency and prevention of metastasis. Efforts have primarily focused on two major strategies for regulating the body's antitumor immune response mechanisms: "enhanced immunotherapy" that aims to amplify the immune activation, and "normalized immunotherapy" that corrects the defective immune mechanism in the tumor immune microenvironments (TIMEs), which returns to the normal immune trajectory. However, due to the complexity and heterogeneity of the TIMEs, and lack of visualization research on the immunotherapy process, cancer immunotherapy has not been widely used in clinical setting. Recently, through the design and modification of nanomaterials, intelligent TIME-responsive nanoplatforms were developed from which encouraging results in many aspects of immunotherapy have been achieved. In this mini review, the status of designed nanomaterials for nanoplatform-based immune regulation of TIMEs has been emphasized, particularly with respect to the aforementioned approaches. It is envisaged that future prospects will focus on a combination of multiple immunotherapies for more efficient cancer inhibition and elimination.
自癌症免疫疗法相较于传统方法具有诸多优势(如高效性和预防转移)以来,人们对它的兴趣迅速上升。研究工作主要集中在调节机体抗肿瘤免疫反应机制的两种主要策略上:旨在增强免疫激活的“增强免疫疗法”,以及纠正肿瘤免疫微环境(TIME)中缺陷免疫机制从而使其恢复到正常免疫轨迹的“免疫疗法归一化”。然而,由于TIME的复杂性和异质性,以及对免疫治疗过程缺乏可视化研究,癌症免疫疗法尚未在临床中广泛应用。最近,通过纳米材料的设计和修饰,开发出了智能TIME响应纳米平台,并在免疫治疗的许多方面取得了令人鼓舞的成果。在本综述中,重点强调了用于基于纳米平台的TIME免疫调节的设计纳米材料的现状,特别是上述方法。预计未来的前景将集中在多种免疫疗法的联合应用上,以实现更有效的癌症抑制和消除。