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Antigen-specific T cells fully conserve antitumour function following cryopreservation.Cellular control of cortical actin nucleation.TLM-Converter: reorganization of long time-lapse microscopy datasets for downstream image analysis.The skin immune atlas: three-dimensional analysis of cutaneous leukocyte subsets by multiphoton microscopy.Targeting Rho-GTPases in immune cell migration and inflammation.Emergence of an Apical Epithelial Cell Surface In VivoRelationship between nanotopographical alignment and stem cell fate with live imaging and shape analysis.Leukocyte migration in the interstitial space of non-lymphoid organs.T cell migration in intact lymph nodes in vivo.RhoA regulates actin network dynamics during apical surface emergence in multiciliated epithelial cells.Polar actomyosin contractility destabilizes the position of the cytokinetic furrow.CTCF genetic alterations in endometrial carcinoma are pro-tumorigenic.TriKEs and BiKEs join CARs on the cancer immunotherapy highway.Cell cortex composition and homeostasis resolved by integrating proteomics and quantitative imaging.Expanding Actin Rings Zipper the Mouse Embryo for Blastocyst Formation.Memory B cells are reactivated in subcapsular proliferative foci of lymph nodesDual pipette aspiration: A unique tool for studying intercellular adhesionTropomyosin Tpm 2.1 loss induces glioblastoma spreading in soft brain-like environmentsTropomyosin concentration but not formin nucleators mDia1 and mDia3 determines the level of tropomyosin incorporation into actin filamentsThe Lifeact-EGFP mouse is a translationally controlled fluorescent reporter of T cell activationFlotillins promote T cell receptor sorting through a fast Rab5-Rab11 endocytic recycling axisTMEM87a/Elkin1, a component of a novel mechanoelectrical transduction pathway, modulates melanoma adhesion and migrationMechanoimmunology: molecular-scale forces govern immune cell functionsPartial loss of actin nucleator actin-related protein 2/3 activity triggers blebbing in primary T lymphocytesLoss of calpains-1 and -2 prevents repair of plasma membrane scrape injuries, but not small pores, and induces a severe muscular dystrophy
P50
Q27323082-BEFF36AB-E7D3-40D9-8CB4-8B539C5D87E2Q33947619-A789B057-9DAD-45E6-917E-7A45FDA3B447Q33968817-9ADAA1AD-1345-4C7A-B548-23B4A919F0F0Q34714925-E2D95862-6E6B-492F-B023-C644FF560D7BQ34803380-B9D69F42-B673-4910-9591-EEED05290351Q36528673-B62392D2-6C20-4E97-8F04-350485765AFFQ37464832-3ED471F0-854E-4E4F-BEF9-9A5CD4AAE91FQ38193988-4E38F649-C98D-4AD5-B93E-32D1C7C57A46Q38218405-C68EC8AC-0669-4FD0-A308-21A6944BC0E2Q39019333-1183AED7-158B-40F3-A1F1-30ABFCE58571Q39493873-8F950972-0EFD-4DEF-BED8-9797A4D0434CQ41073866-EF7B7878-B003-4BA6-9B44-4E7573948988Q42801713-7DAD7682-EB9B-4837-8D0D-4FA40F3ED26FQ45920080-E570A10C-EC9C-402A-BF26-0EEA8E09D8AEQ52632841-A1D2D991-DE46-4F90-8A10-FF9E32BF43F9Q58722256-5491DB38-1121-4098-B15B-11C2725BD25FQ59314647-198E5767-9743-4FCD-80AC-09CB3741C33FQ63459818-3E965BA1-5C57-4067-A1F8-41EA1754E60FQ64095676-98C4CB55-775A-4860-BA4B-0D92B53FDD57Q89636681-01B8511B-8664-4B7C-B2DC-66CDCC3B2A2DQ90317355-CE9DCBEA-92EB-4FAC-A9AE-1D9799A09336Q90761964-F1CFE292-F15E-4124-9530-CD87632512AAQ90834353-F29D0034-7AF0-4490-B6C4-1EF15820AB3BQ91167547-D82EC5AC-B832-4447-8A06-77EE9F18297CQ94457365-52B0D35C-6C9B-4F7D-9E80-D60C2FAD5A88
P50
description
researcher
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wetenschapper
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հետազոտող
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name
Maté Biro
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Maté Biro
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Maté Biro
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Maté Biro
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Maté Biro
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type
label
Maté Biro
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Maté Biro
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Maté Biro
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Maté Biro
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Maté Biro
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prefLabel
Maté Biro
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Maté Biro
@en
Maté Biro
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Maté Biro
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Maté Biro
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P1053
H-6292-2014
P106
P2798
P31
P3829
P496
0000-0001-5852-3726