In this paper, we prepared a dual functional system based on dextrin-coated silver nanoparticles which were further attached with iron oxide nanoparticles and cell penetrating peptide(Tat), producing Tat-modified Ag-F...In this paper, we prepared a dual functional system based on dextrin-coated silver nanoparticles which were further attached with iron oxide nanoparticles and cell penetrating peptide(Tat), producing Tat-modified Ag-Fe_3O_4 nanocomposites(Tat-FeAgNPs). To load drugs, an –SH containing linker, 3-mercaptopropanohydrazide, was designed and synthesized. It enabled the silver carriers to load and release doxorubicin(Dox) in a pH-sensitive pattern. The delivery efficiency of this system was assessed in vitro using MCF-7 cells, and in vivo using null BalB/c mice bearing MCF-7 xenograft tumors. Our results demonstrated that both Tat and externally applied magnetic field could promote cellular uptake and consequently the cytotoxicity of doxorubicin-loaded nanoparticles,with the IC_(50) of Tat-FeAgNP-Dox to be 0.63 mmol/L. The in vivo delivery efficiency of Tat-FeAgNP carrying Cy5 to the mouse tumor was analyzed using the in vivo optical imaging tests, in which TatFeAgNP-Cy5 yielded the most efficient accumulation in the tumor(6.772.4% ID of Tat-FeAgNPs).Anti-tumor assessment also demonstrated that Tat-FeAgNP-Dox displayed the most significant tumor-inhibiting effects and reduced the specific growth rate of tumor by 29.6%(P ? 0.009), which could be attributed to its superior performance in tumor drug delivery in comparison with the control nanovehicles.展开更多
A dual-receptor targeting delivery system based on acid-cleavage hydrazone bond was developed in the study. The characters of CMCS-hyd-CUR-EGFR-mAb were identified. The in vitro release studies revealed that this drug...A dual-receptor targeting delivery system based on acid-cleavage hydrazone bond was developed in the study. The characters of CMCS-hyd-CUR-EGFR-mAb were identified. The in vitro release studies revealed that this drug delivery system was acid-sensitive, and the self-assembled nanoparticles which were spherical. The in vitro results indicated that the dual-receptor targeting nanoparticles could be faster internalized into the Cal-27 cells via receptor-mediated endocytosis, which exhibited better antitumor activity than the one-receptor nanoparticles. The experimental results clearly reveal that CMCS-hyd-CUR-EGFR mAb provides a novel way for drug delivery in oral cancer treatment.展开更多
以均苯三甲酰肼(1,3,5-Benzenetricarbohydrazide,BTH)和对苯二甲醛(1,4-phthalaldehyde,PD)为有机单体构建模块,根据席夫碱(Schiff-base)反应原理和网状化学的设计思想,设计合成了一种新的腙键共价有机聚合物(BTH-PD-COP)。采用傅里叶...以均苯三甲酰肼(1,3,5-Benzenetricarbohydrazide,BTH)和对苯二甲醛(1,4-phthalaldehyde,PD)为有机单体构建模块,根据席夫碱(Schiff-base)反应原理和网状化学的设计思想,设计合成了一种新的腙键共价有机聚合物(BTH-PD-COP)。采用傅里叶变换红外光谱(FT-IR)、固体核磁(13 C NMR)、扫描电子显微镜(SEM)、X射线粉末衍射(XRD)、热重分析(TGA)等分别对BTH-PD-COP材料进行了结构和性能表征。结果表明,BTH-PD-COP材料具有优异的物理化学性能。展开更多
基金financial supports from National Key Research and Development Plan of China (2016YFE0119200)the Young Elite Scientists Sponsorship Program by Tianjin (No. TJSQNTJ-2017-14)National Natural Science Foundation of China (NSFC 81361140344, 21376164, 81402885, and 81373357)
文摘In this paper, we prepared a dual functional system based on dextrin-coated silver nanoparticles which were further attached with iron oxide nanoparticles and cell penetrating peptide(Tat), producing Tat-modified Ag-Fe_3O_4 nanocomposites(Tat-FeAgNPs). To load drugs, an –SH containing linker, 3-mercaptopropanohydrazide, was designed and synthesized. It enabled the silver carriers to load and release doxorubicin(Dox) in a pH-sensitive pattern. The delivery efficiency of this system was assessed in vitro using MCF-7 cells, and in vivo using null BalB/c mice bearing MCF-7 xenograft tumors. Our results demonstrated that both Tat and externally applied magnetic field could promote cellular uptake and consequently the cytotoxicity of doxorubicin-loaded nanoparticles,with the IC_(50) of Tat-FeAgNP-Dox to be 0.63 mmol/L. The in vivo delivery efficiency of Tat-FeAgNP carrying Cy5 to the mouse tumor was analyzed using the in vivo optical imaging tests, in which TatFeAgNP-Cy5 yielded the most efficient accumulation in the tumor(6.772.4% ID of Tat-FeAgNPs).Anti-tumor assessment also demonstrated that Tat-FeAgNP-Dox displayed the most significant tumor-inhibiting effects and reduced the specific growth rate of tumor by 29.6%(P ? 0.009), which could be attributed to its superior performance in tumor drug delivery in comparison with the control nanovehicles.
基金Funded by the National Natural Science Foundation of China(Nos.81771080 and 8131147)the Opening Project of Hubei Key Laboratory of Purification and Application of Plant Anti-cancer Active Ingredients(No.HLPAI 2014006)the Health Commission of Hubei Province Scientific Research Project(No.WJ2019H275)
文摘A dual-receptor targeting delivery system based on acid-cleavage hydrazone bond was developed in the study. The characters of CMCS-hyd-CUR-EGFR-mAb were identified. The in vitro release studies revealed that this drug delivery system was acid-sensitive, and the self-assembled nanoparticles which were spherical. The in vitro results indicated that the dual-receptor targeting nanoparticles could be faster internalized into the Cal-27 cells via receptor-mediated endocytosis, which exhibited better antitumor activity than the one-receptor nanoparticles. The experimental results clearly reveal that CMCS-hyd-CUR-EGFR mAb provides a novel way for drug delivery in oral cancer treatment.
文摘以均苯三甲酰肼(1,3,5-Benzenetricarbohydrazide,BTH)和对苯二甲醛(1,4-phthalaldehyde,PD)为有机单体构建模块,根据席夫碱(Schiff-base)反应原理和网状化学的设计思想,设计合成了一种新的腙键共价有机聚合物(BTH-PD-COP)。采用傅里叶变换红外光谱(FT-IR)、固体核磁(13 C NMR)、扫描电子显微镜(SEM)、X射线粉末衍射(XRD)、热重分析(TGA)等分别对BTH-PD-COP材料进行了结构和性能表征。结果表明,BTH-PD-COP材料具有优异的物理化学性能。