The Fourth Affiliated Hospital, Zhejiang University School of Medicine, Yiwu 322000, China.
Institute of Translational Medicine, Zhejiang University, Hangzhou 310009, China.
ACS Appl Mater Interfaces. 2020 Oct 7;12(40):44541-44553. doi: 10.1021/acsami.0c14400. Epub 2020 Sep 29.
Biomineralization of biomaterials has shown extraordinary potential in cancer treatment, but the exploration of their applications is still insufficient. Here, we report a biohybrid microalgae system using a biomineralization approach to improve their biocompatibility, while keeping their living activities for radiation and photodynamic synergistic therapy in breast cancer. The biohybrid algae (Algae@SiO) synthesized by a one-step biomimetic silicification method could significantly enhance their cytotoxicity and tolerance, improving the living activity in the tumor area. The innate chlorophyll and unique optical property make Algae@SiO possess dual imaging ability, namely, photoacoustic imaging and fluorescence imaging. Algae@SiO accumulated in tumor sites could generate oxygen in situ by external light-mediated photosynthesis, relieve tumor hypoxia, and then enhance the efficiency of radiation therapy. As a natural photosensitizer, the released chlorophyll from Algae@SiO could provide reactive oxygen species to kill the cancer cells for the cascaded photodynamic therapy. The significant suppression of tumor growth in the mice bearing 4T1 tumor successfully demonstrates the promising anti-tumor effect of the Algae@SiO-mediated synergistic therapy. Our results show that biohybrid algae, integrated with PAI/FI dual imaging, radiosensitization, and cascaded photothermal therapy, is a promising multifunctional efficient biosystem for cancer treatment.
生物材料的生物矿化在癌症治疗中显示出了非凡的潜力,但对其应用的探索还不够充分。在这里,我们报告了一种使用生物矿化方法的生物杂交微藻系统,以提高其生物相容性,同时保持其在乳腺癌的放射和光动力协同治疗中的活性。通过一步仿生硅化方法合成的生物杂交藻类(Algae@SiO)可以显著提高其细胞毒性和耐受性,提高其在肿瘤区域的活性。固有的叶绿素和独特的光学特性使 Algae@SiO 具有双重成像能力,即光声成像和荧光成像。聚集在肿瘤部位的 Algae@SiO 可以通过外部光介导的光合作用在原位产生氧气,缓解肿瘤缺氧,并提高放射治疗的效率。作为一种天然的光敏剂,从 Algae@SiO 释放的叶绿素可以产生活性氧来杀死癌细胞,实现级联光动力治疗。携带 4T1 肿瘤的小鼠的肿瘤生长得到显著抑制,成功证明了 Algae@SiO 介导的协同治疗具有有前景的抗肿瘤效果。我们的结果表明,生物杂交藻类与 PAI/FI 双重成像、放射增敏和级联光热治疗相结合,是一种很有前途的用于癌症治疗的多功能高效生物系统。