Wang Yi, Qiao Sheng-Lin, Wang Jie, Yu Meng-Zhen, Wang Nan-Nan, Mamuti Muhetaerjiang, An Hong-Wei, Lin Yao-Xin, Wang Hao
CAS Key Laboratory for Biomedical Effects of Nanomaterials and Nanosafety, National Center for Nanoscience and Technology (NCNST), Beijing, 100190, P. R. China.
School of Nanoscience and Technology, University of Chinese Academy of Sciences (UCAS), Beijing, 100149, P. R. China.
Adv Mater. 2024 May;36(22):e2306248. doi: 10.1002/adma.202306248. Epub 2023 Dec 6.
Smart nanorobots have emerged as novel drug delivery platforms in nanomedicine, potentially improving anti-cancer efficacy and reducing side effects. In this study, an intelligent tumor microenvironment-responsive nanorobot is developed that effectively delivers CpG payloads to Toll-like receptor 9 (TLR9)-positive tumors to induce autophagy-mediated cell death for immunotherapy. The nanorobots are fabricated by co-self-assembly of two amphiphilic triblock polymer peptides: one containing the matrix metallopeptidase 2 (MMP2)-cleaved GPLGVRGS motif to control the mechanical opening of the nanorobots and provide targeting capability for TLR-9-positive tumors and the other consisting of an arginine-rich GRRRDRGRS sequence that can condense nuclear acid payloads through electrostatic interactions. Using multiple tumor-bearing mouse models, it is investigated whether the intravenous injection of CpG-loaded nanorobots could effectively deliver CpG payloads to TLR-9-positive tumors and elicit anti-tumor immunity through TLR9 signaling and autophagy. Therefore, besides being a commonly used adjuvant for tumor vaccination, CpG-loaded nanorobots can effectively reprogram the tumor immunosuppressive microenvironment and suppress tumor growth and recurrence. This nanorobot-based CpG immunotherapy can be considered a feasible approach to induce anti-tumor immunity, showing great therapeutic potential for the future treatment of TLR9-positive cancers.
智能纳米机器人已成为纳米医学中新型的药物递送平台,有望提高抗癌疗效并减少副作用。在本研究中,开发了一种智能肿瘤微环境响应型纳米机器人,它能有效地将CpG有效载荷递送至Toll样受体9(TLR9)阳性肿瘤,以诱导自噬介导的细胞死亡用于免疫治疗。这些纳米机器人是通过两种两亲性三嵌段聚合物肽的共自组装制备的:一种含有基质金属肽酶2(MMP2)切割的GPLGVRGS基序,用于控制纳米机器人的机械开启,并为TLR-9阳性肿瘤提供靶向能力;另一种由富含精氨酸的GRRRDRGRS序列组成,该序列可通过静电相互作用浓缩核酸有效载荷。使用多种荷瘤小鼠模型,研究了静脉注射负载CpG的纳米机器人是否能有效地将CpG有效载荷递送至TLR-9阳性肿瘤,并通过TLR9信号传导和自噬引发抗肿瘤免疫。因此,除了作为肿瘤疫苗接种的常用佐剂外,负载CpG的纳米机器人还能有效地重新编程肿瘤免疫抑制微环境,抑制肿瘤生长和复发。这种基于纳米机器人的CpG免疫疗法可被视为诱导抗肿瘤免疫的一种可行方法,对未来治疗TLR9阳性癌症具有巨大的治疗潜力。