Tianjin Key Laboratory of Drug Delivery and High-Efficiency, School of Pharmaceutical Science and Technology, Tianjin University, Tianjin, 300072, P. R. China.
Tianjin State Key Laboratory of Modern Chinese Medicine, Tianjin University of Traditional Chinese Medicine, 312 Anshanxi Road, Nankai District, Tianjin, 300193, P. R. China.
Adv Healthc Mater. 2019 Aug;8(16):e1900250. doi: 10.1002/adhm.201900250. Epub 2019 Jul 10.
Hyperthemia (>50 °C) induced heating damage of nearby normal organs and inflammatory diseases are the main challenges for photothermal therapy (PTT) of cancers. To overcome this limitation, a redox-responsive biomodal tumor-targeted nanoplatform is synthesized, which can achieve multispectral optoacoustic tomography/X-ray computed tomography imaging-guided low-temperature photothermal-radio combined therapy (PTT RT). In this study, Bi Se hollow nanocubes (HNCs) are first fabricated based on a mild cation exchange way and Kirkendall effect and then modified with hyaluronic acid (HA) through redox-cleavable linkage (-s-s-), thus enabling the HNC to target cancer cells overexpressing CD-44 and control the cargo release profile. Finally, gambogic acid (GA), a type of heat-shock protein (HSP) inhibitor, which is vital to cells resisting heating-caused damage is loaded, into Bi Se HNC. Such HNC-s-s-HA/GA under a mild NIR laser irradiation can induce efficient cancer cell apoptosis, achieving PTT under relatively low temperature (≈43 °C) with remarkable cancer cell damage efficiency. Furthermore, enhanced radiotherapy (RT) can also be experienced without depth limitation based on RT sensitizer Bi Se HNC. This research designs a facile way to synthesize Bi Se HNC-s-s-HA/GA possessing theranostic functionality and cancer cells-specific GSH, but also shows a low-temperature PTT RT method to cure tumors in a minimally invasive and highly efficient way.
高热(>50°C)会导致邻近正常器官的加热损伤和炎症性疾病,这是癌症光热治疗(PTT)的主要挑战。为了克服这一限制,合成了一种氧化还原响应的双模态肿瘤靶向纳米平台,可实现多光谱光声断层扫描/X 射线计算机断层成像引导下低温光热-放射联合治疗(PTT-RT)。在这项研究中,首先通过温和的阳离子交换法和 Kirkendall 效应制备了 BiSe 空心纳米立方(HNC),然后通过氧化还原可裂解键(-s-s-)用透明质酸(HA)进行修饰,从而使 HNC 能够靶向过表达 CD-44 的癌细胞并控制载药释放特性。最后,装载了藤黄酸(GA),一种热休克蛋白(HSP)抑制剂,它对细胞抵抗加热损伤至关重要。在温和的近红外激光照射下,这种 HNC-s-s-HA/GA 可以诱导有效的癌细胞凋亡,在相对较低的温度(≈43°C)下实现 PTT,具有显著的癌细胞杀伤效率。此外,还可以基于 RT 敏化剂 BiSe HNC 实现增强的放疗(RT),而不受深度限制。该研究设计了一种简便的方法来合成具有治疗诊断功能和癌细胞特异性 GSH 的 BiSe HNC-s-s-HA/GA,还展示了一种低温 PTT-RT 方法,以微创和高效的方式治疗肿瘤。