College of Health Science and Engineering, Hubei University, Wuhan, 430062, P. R. China.
Chemistry. 2024 Jun 3;30(31):e202304338. doi: 10.1002/chem.202304338. Epub 2024 Apr 23.
Glioma, the most common primary brain tumor, is highly invasive and grows rapidly. As such, the survival of glioma patients is relatively short, highlighting the vital importance of timely diagnosis and treatment of glioma. However, the blood brain barrier (BBB) and the non-targeting delivery systems of contrast agents and drugs greatly hinder the effective glioma imaging and therapy. Fortunately, in recent years, investigators have constructed various biomimetic delivery platforms utilizing the exceptional advantages of biomimetic nanocomposites, such as immune evasion, homologous targeting ability, and BBB penetrating ability, to achieve efficient and precise delivery of substances to glioma sites for improved diagnosis and treatment. In this concept, we present the application of these biomimetic nanocomposites in fluorescence imaging (FI), magnetic resonance imaging (MRI), and multi-modal imaging, as well as in chemotherapy, phototherapy, and combined therapy for glioma. Lastly, we provide our perspective on this research field.
脑胶质瘤是最常见的原发性脑肿瘤,具有高度侵袭性和快速生长的特点。因此,脑胶质瘤患者的生存时间相对较短,这凸显了及时诊断和治疗脑胶质瘤的至关重要性。然而,血脑屏障(BBB)和对比剂和药物的非靶向递送系统极大地阻碍了有效的脑胶质瘤成像和治疗。幸运的是,近年来,研究人员利用仿生纳米复合材料的特殊优势构建了各种仿生递药平台,如免疫逃逸、同源靶向能力和 BBB 穿透能力,以实现物质向脑胶质瘤部位的高效和精确递送,从而改善诊断和治疗效果。在本概念中,我们介绍了这些仿生纳米复合材料在荧光成像(FI)、磁共振成像(MRI)和多模态成像中的应用,以及在脑胶质瘤的化疗、光疗和联合治疗中的应用。最后,我们对该研究领域提出了看法。