Zhang Chen, Wang Xiaojie, Liu Gengqi, Ren He, Liu Jingang, Jiang Zhen, Zhang Yumiao
School of Chemical Engineering and Technology, Key Laboratory of Systems Bioengineering (Ministry of Education), Frontiers Science Center for Synthetic Biology (Ministry of Education), Tianjin University, Tianjin, 300350, P. R. China.
Small. 2023 Apr;19(17):e2206981. doi: 10.1002/smll.202206981. Epub 2023 Jan 24.
CRISPR/Cas9-based gene therapy and photodynamic therapy both show promise for cancer treatment but still have their drawbacks limited by tumor microenvironment and long treatment duration. Herein, CRISPR/Cas9 genome editing and photodynamic strategy for a synergistic anti-tumor therapeutic modality is merged. Chlorophyll (Chl) extracted from natural green vegetables is encapsulated in Pluronic F127 (F127) micelles and Histidine-tagged Cas9 can be effectively chelated onto micelles via metal coordination by simple incubation, affording Cas9-Chl@F127 micelles. Mg acts as an enzyme cofactor to correlatively enhance Cas9 gene-editing activity. Upon laser irradiation, Chl as an effective photosensitizer generates reactive oxygen species (ROS) to kill tumor cells. Meanwhile, CRISPR/Cas9, mediated by dual deliberately designed gRNAs of APE1 and NRF2, can reprogram the tumor microenvironment by increasing the intracellular oxygen accumulation and impairing the oxidative defense system of tumor cells. Cas9-Chl@F127 micelles can responsively release Cas9 in the presence of abundant ATP or low pH in tumor cells. In a murine tumor model, Cas9-Chl@F127 complexed with dual gRNAs including APE1 and NRF2 significantly inhibits the tumor growth. Taken together, Cas9-Chl@F127 micelles, representing the first Chl-based green biomaterial for the delivery of Cas9, show great promise for the synergistic anti-tumor treatment by PDT and gene editing.
基于CRISPR/Cas9的基因疗法和光动力疗法在癌症治疗方面都显示出前景,但仍存在受肿瘤微环境和较长治疗时间限制的缺点。在此,将CRISPR/Cas9基因组编辑与光动力策略融合以形成协同抗肿瘤治疗模式。从天然绿色蔬菜中提取的叶绿素(Chl)被包裹在普朗尼克F127(F127)胶束中,带有组氨酸标签的Cas9可以通过简单孵育经金属配位有效地螯合到胶束上,得到Cas9-Chl@F127胶束。镁作为酶辅因子可相关地增强Cas9基因编辑活性。在激光照射下,Chl作为有效的光敏剂产生活性氧(ROS)以杀死肿瘤细胞。同时,由特意设计的APE1和NRF2双gRNA介导的CRISPR/Cas9可以通过增加细胞内氧气积累和损害肿瘤细胞的氧化防御系统来重新编程肿瘤微环境。Cas9-Chl@F127胶束可以在肿瘤细胞中存在丰富ATP或低pH时响应性释放Cas9。在小鼠肿瘤模型中,与包括APE1和NRF2的双gRNA复合的Cas9-Chl@F127显著抑制肿瘤生长。综上所述,Cas9-Chl@F127胶束作为首个用于递送Cas9的基于Chl的绿色生物材料,在通过光动力疗法(PDT)和基因编辑进行协同抗肿瘤治疗方面显示出巨大潜力。