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Membrane redistributions through multi-intercellular exchanges and serial trogocytosis 被引量:2
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作者 Estlbahz Alegre Klave-Yune HoWangYin +6 位作者 Benolt Favier Jeremy Baudhuin Emilie Lesport Marina Daouya Alvaro Gonzalez Edgardo D Carosella Joel LeMaoult 《Cell Research》 SCIE CAS CSCD 2010年第11期1239-1251,共13页
Trogocytosis is a rapid transfer between cells of membranes and associated proteins. Trogocytic exchanges have been investigated between different cell types, mainly in two-cell systems, involving one donor and one ac... Trogocytosis is a rapid transfer between cells of membranes and associated proteins. Trogocytic exchanges have been investigated between different cell types, mainly in two-cell systems, involving one donor and one acceptor cell type. Here, we studied trogocytosis in a more complex system, involving not only several immune cell subsets but also multiple tumor cells. We show that CD4~ T cells, CD8+ T cells and monocytes can acquire membrane patches and the intact proteins they contain from different tumor cells by multiple simultaneous trogocytoses. The trogocytic ca- pabilities of CD4~ and CD8~ T cells were found to be similar, but inferior to that of autologous monocytes. Activated peripheral-blood mononuclear cells (PBMCs) may also exchange membranes between themselves in an all-autolo- gous system. For this reason, monocytes are capable of acquiring membranes from multiple tumor cell sources, and transfer them again to autologous T cells, along with some of their own membranes (serial trogocytosis). Our data illustrate the extent of membrane exchanges between autologous activated immune effector cells and their environ- ment, and how the cellular content of the local environment, including "bystander" cells, may impact the functions of immune effector cells. 展开更多
关键词 membrane transfer TROGOCYTOSIS antigen redistribution HLA-G AUTOLOGOUS
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电化学法提锂技术的研究进展 被引量:2
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作者 张俊义 董生德 +5 位作者 贺欣 许琪 海春喜 周园 张新星 马路祥 《化学通报》 CAS CSCD 北大核心 2023年第9期1044-1052,共9页
随着新能源产业的不断发展,锂资源的需求量急剧增加。我国具有丰富盐湖锂资源,随着技术的革新与产业化的实践,盐湖提锂技术逐渐走向成熟。电化学法提锂作为众多提锂技术中的新秀,因绿色环保、选择性高、低能耗而备受国内外研究者的关注... 随着新能源产业的不断发展,锂资源的需求量急剧增加。我国具有丰富盐湖锂资源,随着技术的革新与产业化的实践,盐湖提锂技术逐渐走向成熟。电化学法提锂作为众多提锂技术中的新秀,因绿色环保、选择性高、低能耗而备受国内外研究者的关注。本文对国内外电化学提锂技术的研究进展进行综述,并对未来电化学提锂技术的发展给出建议与展望。 展开更多
关键词 盐湖提锂 电化学法 类电池体系 电控离子交换技术 电渗析法
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