Research Center for Translational Medicine at Shanghai East Hospital, School of Life Sciences and Technology, Tongji University, Shanghai, PR China.
School of Pharmacy, Shanghai Jiao Tong University, Shanghai, 200240, PR China.
Biomaterials. 2016 Jun;91:182-199. doi: 10.1016/j.biomaterials.2016.03.018. Epub 2016 Mar 15.
The use of non-toxic or low toxicity materials exhibiting dual functionality for use in sentinel lymph node (SLN) mapping and cancer therapy has attracted considerable attention during the past two decades. Herein, we report that the natural black sesame melanin (BSM) extracted from black sesame seeds (Sesamum indicum L.) shows exciting potential for SLN mapping and cancer photothermal therapy. Aqueous solutions of BSM under neutral and alkaline conditions can assemble into sheet-like nanoparticles ranging from 20 to 200 nm in size. The BSM nanoparticles were encapsulated by liposomes to improve their water solubility and the encapsulated and bare BSM nanoparticles were both non-toxic to cells. Furthermore, the liposome-encapsulated BSM nanoparticles (liposome-BSM) did not exhibit any long-term toxicity in mice. The liposome-BSM nanoparticles were subsequently used to passively target healthy and tumor-bearing mice SLNs, which were identified by the black color of the nanoparticles. BSM also strongly absorbed light in the near-infrared (NIR) range, which was rapidly converted to heat energy. Human esophagus carcinoma cells (Eca-109) were killed efficiently by liposome-BSM nanocomposites upon NIR laser irradiation. Furthermore, mouse tumor tissues grown from Eca-109 cells were seriously damaged by the photothermal effects of the liposome-BSM nanocomposites, with significant tumor growth suppression compared with controls. Given that BSM is a safe and nutritious biomaterial that can be easily obtained from black sesame seed, the results presented herein represent an important development in the use of natural biomaterials for clinical SLN mapping and cancer therapy.
在过去的二十年中,人们对使用具有双重功能的无毒或低毒材料来进行前哨淋巴结 (SLN) 绘图和癌症治疗引起了相当大的关注。在此,我们报告天然黑芝麻黑色素 (BSM) 具有用于 SLN 绘图和癌症光热治疗的巨大潜力。在中性和碱性条件下,BSM 的水溶液可以自组装成 20 至 200nm 大小的片状纳米粒子。BSM 纳米粒子被脂质体包封以提高其水溶性,并且包封的和裸露的 BSM 纳米粒子对细胞均无毒。此外,脂质体包封的 BSM 纳米粒子(脂质体-BSM)在小鼠中没有表现出任何长期毒性。随后,将脂质体-BSM 纳米粒子用于被动靶向健康和荷瘤小鼠的 SLN,通过纳米粒子的黑色可以识别它们。BSM 还强烈吸收近红外(NIR)范围内的光,这被迅速转化为热能。在 NIR 激光照射下,Eca-109 人食管癌细胞(Eca-109)被脂质体-BSM 纳米复合材料有效地杀死。此外,由 Eca-109 细胞生长的小鼠肿瘤组织由于脂质体-BSM 纳米复合材料的光热效应而受到严重损害,与对照组相比,肿瘤生长受到明显抑制。鉴于 BSM 是一种安全且有营养的生物材料,可从黑芝麻种子中轻易获得,因此本文的研究结果代表了将天然生物材料用于临床 SLN 绘图和癌症治疗的重要进展。