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2篇 您的检索式:作者名="YANGKAI ZHOU"
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1Titanium carbide nanosheets with defect structure for photothermal-enhanced sonodynamic therapy显示文摘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.Guangqiang Li Xiaoyan Zhong Xianwen Wang Fei Gong Huali Lei Yangkai Zhou Chengfei Li Zhidong Xiao Guoxi Ren Liang Zhang Zhiqiang Dong Zhuang Liu Liang Cheng 2022Bioactive Materials2022,7,2:1
2Effects of two vectors on the expression of the NbNAC1 transcription factor and preparation of its polyclonal antibody显示文摘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.FENG ZHU QINQIN ZHANG YANGKAI ZHOU QIPING ZHANG MENGYAO CAO ZHAOLIN JI 2022BIOCELL2022,46,9:0
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