Department of Chemical Engineering, National Taiwan University of Science and Technology, Taipei 106, Taiwan.
Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei 106, Taiwan.
Nanoscale. 2024 Aug 15;16(32):14994-15008. doi: 10.1039/d4nr01615g.
Cancer has become a primary global health concern, which has prompted increased attention towards targeted therapeutic approaches like photothermal therapy (PTT). The unique optical and magnetic properties of nanodiamonds (NDs) have made them versatile nanomaterials with promising applications in biomedicine. This comprehensive review focuses on the potential of NDs as a multifaceted platform for anticancer therapy, mainly focusing on their dual functionality in PTT and temperature sensing. The review highlighted NDs' ability to enhance PTT through hybridization or modification, underscoring their adaptability in delivering small molecule reagents effectively. Furthermore, NDs, particularly fluorescent nanodiamonds (FNDs) with negatively charged nitrogen-vacancy centers, enable precise temperature monitoring, enhancing PTT efficacy in anticancer treatment. Integrating FNDs into PTT holds promise for advancing therapeutic efficacy by providing valuable insights into localized temperature variations and cell death mechanisms. This review highlights new insights into cancer treatment strategies, showcasing the potential of NDs to revolutionize targeted therapeutics and improve patient outcomes.
癌症已成为全球主要的健康关注点,这促使人们更加关注光热疗法(PTT)等靶向治疗方法。纳米金刚石(NDs)独特的光学和磁性特性使它们成为多功能纳米材料,在生物医学领域有广泛的应用前景。本综述重点介绍了 NDs 作为癌症治疗多效平台的潜力,主要集中在其在 PTT 和温度传感方面的双重功能。该综述强调了 NDs 通过杂交或修饰来增强 PTT 的能力,突出了它们在有效传递小分子试剂方面的适应性。此外,NDs,特别是带有负氮空位中心的荧光纳米金刚石(FNDs),能够精确地监测温度,提高癌症治疗中 PTT 的疗效。将 FNDs 整合到 PTT 中有望通过提供对局部温度变化和细胞死亡机制的有价值的见解来提高治疗效果。本综述强调了癌症治疗策略的新见解,展示了 NDs 在靶向治疗和改善患者预后方面的潜力。