Department of Health Technology, Technical University of Denmark, Kongens Lyngby, DK-2800, Denmark.
Jiangsu Collaborative Innovation Center for Biomedical Functional Materials, School of Chemistry and Materials Science, Nanjing Normal University, Nanjing, 210023, P. R. China.
Adv Mater. 2021 Jun;33(22):e2008802. doi: 10.1002/adma.202008802. Epub 2021 Apr 23.
Compared to other tumors, glioblastoma (GBM) is extremely difficult to treat. Recently, photothermal therapy (PTT) has demonstrated advanced therapeutic efficacy; however, because of the relatively low tissue-penetration efficiency of laser light, its application in deep-seated tumors remains challenging. Herein, bradykinin (BK) aggregation-induced-emission nanoparticles (BK@AIE NPs) are synthesized; these offer selective penetration through the blood-tumor barrier (BTB) and strong absorbance in the near-infrared region (NIR). The BK ligand can prompt BTB adenosine receptor activation, which enhances transportation and accumulation inside tumors, as confirmed by T -weighted magnetic resonance and fluorescence imaging. The BK@AIE NPs exhibit high photothermal conversion efficiency under 980 nm NIR laser irradiation, facilitating the treatment of deep-seated tumors. Tumor progression can be effectively inhibited to extend the survival span of mice after spatiotemporal PTT. NIR irradiation can eradicate tumor tissues and release tumor-associated antigens. It is observed that the PTT treatment of GBM-bearing mice activates natural killer cells, CD3 T cells, CD8 T cells, and M1 macrophages in the GBM area, increasing the therapeutic efficacy. This study demonstrates that NIR-assisted BK@AIE NPs represent a promising strategy for the improved systematic elimination of GBMs and the activation of local brain immune privilege.
与其他肿瘤相比,胶质母细胞瘤(GBM)极难治疗。最近,光热疗法(PTT)显示出了先进的治疗效果;然而,由于激光光的组织穿透效率相对较低,其在深部肿瘤中的应用仍然具有挑战性。本文合成了缓激肽(BK)聚集诱导发射纳米粒子(BK@AIE NPs);这些粒子具有选择性穿透血脑肿瘤屏障(BTB)和在近红外区(NIR)强吸收的能力。BK 配体可以触发 BTB 腺苷受体的激活,从而促进肿瘤内的转运和积累,这一点通过 T1 加权磁共振和荧光成像得到了证实。BK@AIE NPs 在 980nm NIR 激光照射下表现出高的光热转换效率,有利于深部肿瘤的治疗。时空 PTT 后,肿瘤的进展可以得到有效抑制,延长了荷瘤小鼠的存活期。近红外照射可以消灭肿瘤组织并释放肿瘤相关抗原。研究发现,GBM 荷瘤小鼠的 PTT 治疗激活了 GBM 区域的自然杀伤细胞、CD3 T 细胞、CD8 T 细胞和 M1 巨噬细胞,提高了治疗效果。本研究表明,NIR 辅助的 BK@AIE NPs 代表了一种有前途的策略,可以提高 GBM 的系统消除效率,并激活局部脑免疫特权。