Meng Jian, Wang Lei, Wang Qian, Zou Bocheng, Ren Shilei, Xin Lei, Gao Jinfang, Zhang Ruiping
The Third Hospital of Shanxi Medical University, Shanxi Bethune Hospital, Taiyuan 030032, China.
Shanxi Academy of Medical Sciences, Shanxi Medical University, Taiyuan 030001, China.
ACS Appl Mater Interfaces. 2023 Feb 1;15(4):4903-4910. doi: 10.1021/acsami.2c18364. Epub 2023 Jan 23.
Promoting the aggregation of nanoprobes at tumor sites and realizing precise imaging and treatment of tumors is still one of the important problems to be solved in the field of nanomedicine. Poly-2-phenylbenzobisthiazole (PB) is a novel conjugated polymer with good biocompatibility, excellent photothermal properties in the second near-infrared region (NIR-II), but poor water dispersibility. Herein, a novel self-assembly/polymerization two-in-one strategy was proposed to prepare a new family of poly-2-phenyl-benzobisthiazole-based nanoparticles. Because the hydrophobic polymer PB was well "camouflaged" in the hydrophilic polyphenol-metal networks, the prepared "Trojan horse-like" nanoparticle TF-PB exhibited good water dispersibility. Besides, TF-PB can play a role as a contrast agent for photoacoustic and magnetic resonance dual-modality imaging. When deferoxamine was artificially applied and interacted with TF-PB, the polyphenol-metal networks disintegrated and the hydrophobic material PB was exposed and started hydrophobic aggregation. Thus, it can be applied for precise enhanced photothermal therapy (PTT) in the NIR-II. Meanwhile, the aggregation process enabled non-invasive, fast, and accurate real-time monitoring by self-enhancing photoacoustic imaging. This work has realized the artificially controllable aggregation of photothermal materials in the tumor site, solved the limitations of traditional PTT, and also has good application prospects in clinical therapy.
促进纳米探针在肿瘤部位的聚集并实现肿瘤的精确成像和治疗仍然是纳米医学领域有待解决的重要问题之一。聚-2-苯基苯并双噻唑(PB)是一种新型共轭聚合物,具有良好的生物相容性,在第二近红外区域(NIR-II)具有优异的光热性能,但水分散性较差。在此,提出了一种新型的自组装/聚合二合一策略来制备一系列基于聚-2-苯基苯并双噻唑的新型纳米颗粒。由于疏水性聚合物PB在亲水性多酚-金属网络中得到了很好的“伪装”,制备的“特洛伊木马”样纳米颗粒TF-PB表现出良好的水分散性。此外,TF-PB可作为光声和磁共振双模态成像的造影剂。当人工施加去铁胺并使其与TF-PB相互作用时,多酚-金属网络解体,疏水性材料PB暴露并开始疏水聚集。因此,它可用于NIR-II区域的精确增强光热治疗(PTT)。同时,聚集过程能够通过自增强光声成像实现非侵入性、快速且准确的实时监测。这项工作实现了光热材料在肿瘤部位的人工可控聚集,解决了传统PTT的局限性,在临床治疗中也具有良好的应用前景。