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卟啉与吩噻嗪分子间和分子内的光致相互作用
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作者 贺学忠 周亚琳 +1 位作者 张曼华 沈涛 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 1999年第7期1131-1133,共3页
光动力疗法(PDT)药物研究的一个重要分支是合成新的含卟啉结构的化合物,以获得较好的癌组织细胞定位能力和较强的组织穿透能力[1].Mehta等[2,3]发现卟啉和一些具有细胞内识别能力的抗癌分子组成的二元化合物表现出... 光动力疗法(PDT)药物研究的一个重要分支是合成新的含卟啉结构的化合物,以获得较好的癌组织细胞定位能力和较强的组织穿透能力[1].Mehta等[2,3]发现卟啉和一些具有细胞内识别能力的抗癌分子组成的二元化合物表现出较强的光诱导核酸酶活性,同时不改变... 展开更多
关键词 卟唑 吩噻嗪 二元化合物 PDT 光动力疗法药物
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A strategy for enhanced tumor targeting of photodynamic therapy based on Escherichia coli-driven drug delivery system 被引量:3
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作者 Tao Dai Farong Ye +10 位作者 Ping Hu Xiaohong Pan Jincan Chen Yunmei Huang Huanhuan Wang Lei Zhang Mingdong Huang Jianyong Liu Jianqiang Su Xueyuan Chen Zhuo Chen 《Science China Materials》 SCIE EI CSCD 2021年第1期232-240,共9页
Escherichia coli(E. coli) DH5α has been recognized as a non-pathogenic bacterial strain with tumor colonization ability. However, whether such a bacteria-driven drug-delivery system can improve the targeting of tumor... Escherichia coli(E. coli) DH5α has been recognized as a non-pathogenic bacterial strain with tumor colonization ability. However, whether such a bacteria-driven drug-delivery system can improve the targeting of tumor therapy or not remains essentially untouched. Herein, a series of zinc phthalocyanine(ZnPc) photosensitizers with different numbers of charges were prepared and their electrostatic adhesion properties on E. coli were investigated via measuring their fluorescence intensities by flow cytometer. Among these ZnPc photosensitizers investigated, the ZnPc conjugate with four positive charges(named ZnPc-IR710) exhibited the highest loading capacity and the best fluorescence imaging performance of E. coli. With the help of E. coli, E. coli@ZnPcIR710 presented a significantly enhanced cytotoxicity on human breast cancer MCF-7 cells compared with ZnPc-IR710(survival rate of tumor cells was 39% vs. 57% at a concentration of 50 nmol L-1). Moreover, in vivo study showed that E. coli@ZnPc-IR710 remarkably inhibited the tumor growth and resulted in a complete tumor growth suppress in subcutaneous mouse 4T1 breast tumor model. These results demonstrated the great promise of bacterial-guided photodynamic therapy(PDT) in the treatment of solid tumors, and provide a unique strategy to enhance the antitumor efficacy of PDT by utilizing bacterial vectors in tumors. 展开更多
关键词 PHOTOSENSITIZER zinc phthalocyanine bacteria-driven drug delivery system E.coli DH5α fluorescent molecular tomography
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