State Key Laboratory of High Performance Ceramics and Superfine Microstructures, Shanghai Institute of Ceramics, Chinese Academy of Sciences , Shanghai 200050, P. R. China.
University of Chinese Academy of Sciences , Beijing 100049, P. R. China.
Nano Lett. 2017 Jan 11;17(1):384-391. doi: 10.1021/acs.nanolett.6b04339. Epub 2016 Dec 30.
Ceramic biomaterials have been investigated for several decades, but their potential biomedical applications in cancer therapy have been paid much less attentions, mainly due to their lack of related material functionality for combating the cancer. In this work, we report, for the first time, that MAX ceramic biomaterials exhibit the unique functionality for the photothermal ablation of cancer upon being exfoliated into ultrathin nanosheets within atomic thickness (MXene). As a paradigm, biocompatible TiC nanosheets (MXenes) were successfully synthesized based on a two-step exfoliation strategy of MAX phase TiAlC by the combined HF etching and TPAOH intercalation. Especially, the high photothermal-conversion efficiency and in vitro/in vivo photothermal ablation of tumor of TiC nanosheets (MXenes) were revealed and demonstrated, not only in the intravenous administration of soybean phospholipid modified TiC nanosheets but also in the localized intratumoral implantation of a phase-changeable PLGA/TiC organic-inorganic hybrid. This work promises the great potential of TiC nanosheets (MXenes) as a novel ceramic photothermal agent used for cancer therapy and may arouse much interest in exploring MXene-based ceramic biomaterials to benefit the biomedical applications.
陶瓷生物材料已经研究了几十年,但它们在癌症治疗中的潜在生物医学应用却很少受到关注,主要是因为它们缺乏相关的材料功能来对抗癌症。在这项工作中,我们首次报道 MAX 陶瓷生物材料在被剥离成原子厚度的超薄纳米片中(MXene)时具有独特的光热消融癌症的功能。作为一个范例,基于 MAX 相 TiAlC 的两步剥离策略,通过 HF 刻蚀和 TPAOH 插层成功合成了生物相容性 TiC 纳米片(MXenes)。特别地,揭示并证明了 TiC 纳米片(MXenes)的高光热转换效率和体外/体内肿瘤光热消融,不仅在大豆磷脂修饰的 TiC 纳米片的静脉给药中,而且在可相变的 PLGA/TiC 有机-无机杂化的局部肿瘤内植入中。这项工作预示着 TiC 纳米片(MXenes)作为一种新型陶瓷光热剂用于癌症治疗的巨大潜力,可能会引起人们探索基于 MXene 的陶瓷生物材料的极大兴趣,以造福于生物医学应用。