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Effects of two vectors on the expression of the NbNAC1 transcription factor and preparation of its polyclonal antibody
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作者 FENG ZHU QINQIN ZHANG +3 位作者 yangkai zhou QIPING ZHANG MENGYAO CAO ZHAOLIN JI 《BIOCELL》 SCIE 2022年第9期2123-2131,共9页
The NAC(NAM,ATAF,and CUC)superfamily is one of the largest plant-specific families containing transcription factors.An increasing number of studies suggest that NAC1 is involved in plants response to different biotic ... The NAC(NAM,ATAF,and CUC)superfamily is one of the largest plant-specific families containing transcription factors.An increasing number of studies suggest that NAC1 is involved in plants response to different biotic and abiotic stimulis.Nicotiana benthamiana is a widely used system for evaluating plant-pathogen interactions.In order to study the biochemical function of NbNAC1,NbNAC1 protein and antibody are essential.Therefore,we focused on developing a prokaryotic expression system for producing the Nicotiana benthamiana NbNAC1 protein of in Escherichia coli and the preparation of its polyclonal antibody.Firstly,we constructed two different molecular weight prokaryotic expression vectors:pGE vector with GST tag(pGEX4T-1–NbNAC1)and pET expression vector with His tag(pET28a-NbNAC1).The NbNAC1 protein can be successfully expressed in both vectors.The His-tagged NbNAC1 proteins are insoluble,while the GST-tagged NbNAC1 proteins are partially soluble.We then successfully purified and enriched both proteins.The His-tagged NbNAC1 was chosen to immunize rabbits owing to an unknown protein accompanying the GST-tagged NbNAC1.The anti-NbNAC1 polyclonal antibody had good specificity and could be used in subsequent protein-related studies. 展开更多
关键词 NbNAC1 transcription factor Nicotiana benthamiana Prokaryotic expression PURIFICATION ANTIBODIES
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具有涡流热效应的液态金属微球用于磁热增强的癌症栓塞-免疫联合治疗 被引量:2
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作者 杨乃霖 孙兴伟 +9 位作者 周杨楷 杨笑远 尤嘉熙 虞泽鹏 葛隽 巩飞 肖志晟 靳勇 刘庄 程亮 《Science Bulletin》 SCIE EI CAS CSCD 2023年第16期1772-1783,M0004,共13页
肝细胞癌患者由于肝癌的高转移性和高复发率表现出预后差的特征.本文提出了一种通过磁热疗法(MHT)增强癌症免疫治疗联合经导管动脉栓塞(TAE)治疗肝癌肿瘤的有效策略.通过微流控技术制备的尺寸均匀液态金属微球(LM MSs),由于在交变磁场... 肝细胞癌患者由于肝癌的高转移性和高复发率表现出预后差的特征.本文提出了一种通过磁热疗法(MHT)增强癌症免疫治疗联合经导管动脉栓塞(TAE)治疗肝癌肿瘤的有效策略.通过微流控技术制备的尺寸均匀液态金属微球(LM MSs),由于在交变磁场下的涡流热效应表现出显著的磁感应加热能力,可同时作为MHT和TAE两种癌症治疗策略的有效药物.一方面,LM MSs优异的涡流磁热效应表现出高效的MHT治疗疗效.另一方面,LM MSs引发的MHT可以显著增强免疫系统激活,促进免疫细胞的浸润;与免疫检查点阻断(ICB)治疗联合后可以进一步刺激强大的免疫应答,从而抑制远端肿瘤的生长.此外,LM MSs-碘油栓塞剂在兔子原位肝癌模型中表现出优异的栓塞-磁热联合治疗效果.总之,该工作不仅证明了LM MSs可以作为有效的MHT试剂实现MHT-免疫联合治疗,而且还展示了TAE与MHT联合治疗在原位大型肝肿瘤治疗中的重要应用前景. 展开更多
关键词 癌症治疗 高复发率 TAE 微流控技术 液态金属 免疫细胞 免疫应答 交变磁场
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Titanium carbide nanosheets with defect structure for photothermal-enhanced sonodynamic therapy 被引量:3
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作者 Guangqiang Li Xiaoyan Zhong +10 位作者 Xianwen Wang Fei Gong Huali Lei yangkai zhou Chengfei Li Zhidong Xiao Guoxi Ren Liang Zhang Zhiqiang Dong Zhuang Liu Liang Cheng 《Bioactive Materials》 SCIE 2022年第2期409-419,共11页
Sonodynamic therapy(SDT)has attracted widespread interest in biomedicine,owing to its novel and noninvasive therapeutic method triggered by ultrasound(US).Herein,the Ti_(3)C_(2) MXene nanosheets(Ti_(3)C_(2) NSs)are de... Sonodynamic therapy(SDT)has attracted widespread interest in biomedicine,owing to its novel and noninvasive therapeutic method triggered by ultrasound(US).Herein,the Ti_(3)C_(2) MXene nanosheets(Ti_(3)C_(2) NSs)are developed as good sonosensitizers via a two-step method of chemical exfoliation and high-temperature treatment.With the high-temperature treatment,the oxygen defect of Ti_(3)C_(2) MXene nanosheets(H-Ti_(3)C_(2) NSs)is greatly increased.Therefore,the electron(e^(-))and hole(h^(+))generated by US can be separated faster due to the improved degree of oxidation,and then the recombination of e^(-)-h^(+)can be prevented with the abundant oxygen defect under US irradiation,which induced the sonodynamic efficiency greatly to improve around 3.7-fold compared with Ti_(3)C_(2) NSs without high-temperature treatment.After PEGylation,the H-Ti_(3)C_(2)-PEG NSs show good stability and biocompatibility.In vitro studies exhibit that the inherent property of mild photothermal effect can promote the endocytosis of H-Ti_(3)C_(2)-PEG NSs,which can improve the SDT efficacy.In vivo studies further display that the increased blood supply by the mild photothermal effect can significantly relieve hypoxia in the tumor microenvironment,showing photothermal therapy(PTT)enhanced SDT.Most importantly,the H-Ti_(3)C_(2)-PEG NSs can be biodegraded and excreted out of the body,showing no significant long-term toxicity.Our work develops the defective H-Ti_(3)C_(2) NSs as high-efficiency and safe sonosensitizers for photothermal-enhanced SDT of cancer,extending the biomedical application of MXene-based nanoplatforms. 展开更多
关键词 Ti_(3)C_(2)MXenes Oxygen defect Sonosensitizers Sonodynamic therapy BIOSAFETY
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