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Evaluation of chicken chorioallantoic membrane model for tumor imaging and drug development:Promising findings
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作者 Lizhen Wang Junjie Yan +8 位作者 xinyuwang Yuping Xu Donghui Pan Chongyang Chen Ying Shao Xiangjun Song Kezong Qi Min Yang Jian Tu 《Animal Models and Experimental Medicine》 2025年第2期287-294,共8页
Background:The chicken chorioallantoic membrane(CAM)model is a potential alter-native to the mouse model based on the 3R principles.However,its value for deter-mination of the in vivo behaviors of radiolabeled peptide... Background:The chicken chorioallantoic membrane(CAM)model is a potential alter-native to the mouse model based on the 3R principles.However,its value for deter-mination of the in vivo behaviors of radiolabeled peptides through positron emission tomography(PET)imaging needed investigation.Herein,the chicken CAM tumor models were established,and their feasibility was evaluated for evaluating the imag-ing properties of radiolabeled peptides using a 68Ga-labeled HER2 affibody.Methods:Two human breast cancer cell lines were inoculated into chicken CAM and mice,respectively.The tumor-targeting potential and pharmacokinetic profile of a 68Ga-labeled affibody,68Ga-MZHER,in both tumor models were also determined.Results:The tumor-formation time in chicken CAM model was shorter than that of mouse model.The uptake values of human epithelial growth factor receptor-2(HER2)-positive Bcap37 tumors in chicken CAM and mouse models were 5.36±0.26%ID/g and 5.26±0.43%ID/g at 30 min postinjection of 68Ga-MZHER,respectively.At the same time points,the uptake values of HER2-negative MDA-MB-231 tumors in the chicken CAM models and mouse models were 1.57±0.15%ID/g and 1.67±0.25%ID/g,respectively.Ex vivo biodistribution confirmed that more radioactivity accu-mulated in Bcap37 tumors than in MDA-MD-231 tumors in both CAM and mouse models.Conclusion:In this study,the CAM tumor model was successfully prepared.The chicken CAM model is a novel tool for quickly determining the in vivo properties of radiolabeled peptides targeting biomarkers.It may be beneficial for early monitoring of the therapeutic effect of a new drug through PET imaging with specific peptides. 展开更多
关键词 68Ga AFFIBODY chicken embryo CAM HER2 PET imaging
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纤维素基三维多孔材料在电化学储能器件中的应用研究现状
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作者 罗明轩 梁环 +3 位作者 王欣雨 李玉光 杨雨尘 胡欣 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2024年第1期168-178,共11页
随着我国“双碳”战略的实施,电化学储能技术(如超级电容器、锂离子电池等)得到蓬勃发展。作为电化学储能器件的关键部件,电解质、电极和隔膜材料对储能器件的能量密度、循环稳定性等具有决定性作用。纤维素基三维多孔材料(包括水凝胶... 随着我国“双碳”战略的实施,电化学储能技术(如超级电容器、锂离子电池等)得到蓬勃发展。作为电化学储能器件的关键部件,电解质、电极和隔膜材料对储能器件的能量密度、循环稳定性等具有决定性作用。纤维素基三维多孔材料(包括水凝胶、气凝胶和海绵),由于具有高比表面积、高孔隙率、高离子导通率及可控掺杂等特点,已作为电解质、电极和隔膜等广泛地应用于储能器件。文中系统介绍了近年来纤维素基三维材料分别作为电解质、电极及隔膜在超级电容器、锂离子电池、锂硫电池、燃料敏化太阳能电池等电化学储能器件中的应用,综述了不同纤维素基三维复合材料的结构(如孔隙率、比表面积、孔容等)及应用于不同电化学储能器件时的储能机制及储能性能(能量密度、循环性能等),并对新能源和储能技术领域面临的挑战与发展前景进行了展望。 展开更多
关键词 纤维素 储能技术 隔膜 电解质 电极
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