Ma Sheng, Xu Yudi, Song Wantong
APL Bioeng. 2021 May 3;5(2):021506. doi: 10.1063/5.0045945. eCollection 2021 Jun.
The cell surface is the forward position in cancer immunotherapy, with surface ligand and receptor interactions between various cells for determining immune privilege or recognition. Therefore, cell surface engineering (CSE) that manipulates the surface interactions between the immune effector cells (IECs) and tumor cells represents a promising means for eliciting effective anticancer immunity. Specifically, taking advantage of the development in biomaterials and nanotechnology, the use of functional bionanomaterials for CSE is attracting more and more attention in recent years. Rationally designed functional biomaterials have been applied to construct artificial functional modules on the surface of cells through genetic engineering, metabolic labeling, chemical conjugation, hydrophobic insertion, and many other means, and the CSE process can be performed both and , on either IECs or tumor cells, and results in enhanced anticancer immunity and various new cancer immunity paradigms. In this review, we will summarize the recent exciting progresses made in the application of functional bionanomaterials for CSE especially in establishing effective recognition and interaction between IECs and tumor cells.
细胞表面是癌症免疫治疗的前沿阵地,各种细胞之间的表面配体和受体相互作用决定了免疫特权或识别。因此,操纵免疫效应细胞(IECs)与肿瘤细胞之间表面相互作用的细胞表面工程(CSE)是引发有效抗癌免疫的一种有前景的手段。具体而言,利用生物材料和纳米技术的发展,近年来用于CSE的功能性生物纳米材料的应用越来越受到关注。通过基因工程、代谢标记、化学偶联、疏水插入等多种手段,合理设计的功能性生物材料已被应用于在细胞表面构建人工功能模块,并且CSE过程可以在IECs或肿瘤细胞上进行,从而增强抗癌免疫力并产生各种新的癌症免疫模式。在本综述中,我们将总结功能性生物纳米材料在CSE应用中,特别是在建立IECs与肿瘤细胞之间有效识别和相互作用方面取得的最新令人兴奋的进展。