Peter Vandenabeele Belgian chemist
Vandenabeele, Peter.
VIAF ID: 91139324 (Personal)
Permalink: http://viaf.org/viaf/91139324
Preferred Forms
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100 0 _ ‡a Peter Vandenabeele ‡c Belgian chemist
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100 1 _ ‡a Vandenabeele, Peter
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100 1 _ ‡a Vandenabeele, Peter
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100 1 _ ‡a Vandenabeele, Peter
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100 1 _ ‡a Vandenabeele, Peter
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100 1 _ ‡a Vandenabeele, Peter
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4xx's: Alternate Name Forms (3)
5xx's: Related Names (2)
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Center for Inflammation Research, Ghent
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https://d-nb.info/standards/elementset/gnd#affiliation
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Affiliation
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Universiteit Gent
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https://d-nb.info/standards/elementset/gnd#affiliation
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Affiliation
Works
Title | Sources |
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Analytical archaeometry : selected topics |
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Caractérisation de nouveaux inhibiteurs de la kinase RIPK1 et de la nécroptose |
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Characterization of new necroptosis inhibitors targeting RIPK1. |
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Classification of cell death: recommendations of the Nomenclature Committee on Cell Death 2009 |
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Décryptage du rôle de l'activation des récepteurs de TRAIL dans l'induction de l'apoptose ou de la signalisation de la survie au sein d'une même population de cellules cancéreuses. |
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Développement et validation de rapporteurs d'activité kinase pour l'étude dynamique des processus cellulaires par microscopie : rôle de la Mitogen-Activated Protein Kinase. |
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geochemical approach to the study of archaeological glassy materials |
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inArt 2016 2nd International Conference on Innovation in Art Research and Technology |
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Multivariate and multibloc analysis of hyperspectral images in order to predict long term corrosion : application to atmospheric corrosion of historical iron alloys. |
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Necrotic Cell Death |
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Non-specific effects of methyl ketone peptide inhibitors of caspases |
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Novel Ferroptosis Inhibitors with Improved Potency and ADME Properties |
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Novel Reporter for Faithful Monitoring of ERK2 Dynamics in Living Cells and Model Organisms |
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Nuclear RIPK3 and MLKL contribute to cytosolic necrosome formation and necroptosis |
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The p55 tumour necrosis factor receptor TNFR1 contains a trans-Golgi network localization signal in the C-terminal region of its cytoplasmic tail. |
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Phagocytosis of Dying Cells: From Molecular Mechanisms to Human Diseases |
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Phagocytosis of necrotic cells by macrophages is phosphatidylserine dependent and does not induce inflammatory cytokine production |
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Phosphatidyl serine exposure during apoptosis precedes release of cytochrome c and decrease in mitochondrial transmembrane potential. |
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Practical raman spectroscopy : an introduction |
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Programmed necrosis from molecules to health and disease |
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Proteolysis of enteric cell villin by Entamoeba histolytica cysteine proteinases |
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The pseudokinase MLKL mediates programmed hepatocellular necrosis independently of RIPK3 during hepatitis |
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The Pseudomonas aeruginosa type III secretion system has an exotoxin S/T/Y independent pathogenic role during acute lung infection |
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Raman spectroscopy in archaeology and art history. |
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Recombinant interleukin 2 induces immunoglobulin secretion in Staphylococcus aureus Cowan strain I activated human B-cells |
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Reconstitution of protection against Aspergillus infection in chronic granulomatous disease (CGD) |
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Reduced protection of RIPK3-deficient mice against influenza by matrix protein 2 ectodomain targeted active and passive vaccination strategies |
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Requirement for tumor necrosis factor-receptor 2 in alveolar chemokine expression depends upon the form of the ligand. |
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Resistance to anticancer vaccination effect is controlled by a cancer cell-autonomous phenotype that disrupts immunogenic phagocytic removal |
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RIP kinase-dependent necrosis drives lethal systemic inflammatory response syndrome |
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RIP kinases at the crossroads of cell death and survival |
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RIPK1-dependent cell death: a novel target of the Aurora kinase inhibitor Tozasertib |
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RIPK4 activity in keratinocytes is controlled by the SCFβ-TrCP ubiquitin ligase to maintain cortical actin organization. |
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Role of IL-1α and the Nlrp3/caspase-1/IL-1β axis in cigarette smoke-induced pulmonary inflammation and COPD. |
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The role of the IAP E3 ubiquitin ligases in regulating pattern-recognition receptor signalling |
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The role of the kinases RIP1 and RIP3 in TNF-induced necrosis |
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Role of TRAIL-receptors in apoptosis and nonapoptotic signaling in cancer cells populations undergoing fractional killing |
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ROS-induced autophagy in cancer cells assists in evasion from determinants of immunogenic cell death |
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en scientific article |
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Selective stimulation of either tumor necrosis factor receptor differentially induces pain behavior in vivo and ectopic activity in sensory neurons in vitro |
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Serine 25 phosphorylation inhibits RIPK1 kinase-dependent cell death in models of infection and inflammation |
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The serine protease Omi/HtrA2 is released from mitochondria during apoptosis. Omi interacts with caspase-inhibitor XIAP and induces enhanced caspase activity |
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Severity of doxorubicin-induced small intestinal mucositis is regulated by the TLR-2 and TLR-9 pathways |
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Shining light on cell death processes - a novel biosensor for necroptosis, a newly described cell death program |
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Sibiriline, a new small chemical inhibitor of receptor-interacting protein kinase 1, prevents immune-dependent hepatitis |
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Simultaneous targeting of interleukin-1 and interleukin-18 is required for protection against inflammatory and septic shock |
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SitePredicting the cleavage of proteinase substrates. |
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The skin microbiome of caspase-14-deficient mice shows mild dysbiosis. |
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The soluble guanylate cyclase activator BAY 58-2667 protects against morbidity and mortality in endotoxic shock by recoupling organ systems |
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The somatostatin analogue TT-232 induces apoptosis in A431 cells: sustained activation of stress-activated kinases and inhibition of signalling to extracellular signal-regulated kinases. |
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Sorafenib tosylate inhibits directly necrosome complex formation and protects in mouse models of inflammation and tissue injury. |
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Structure/Function analysis of p55 tumor necrosis factor receptor and fas-associated death domain. Effect on necrosis in L929sA cells. |
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Suppression of interleukin-33 bioactivity through proteolysis by apoptotic caspases. |
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Survival of Single Positive Thymocytes Depends upon Developmental Control of RIPK1 Kinase Signaling by the IKK Complex Independent of NF-κB |
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Synchronized renal tubular cell death involves ferroptosis. |
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Tabibi Sabbu |
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Targeting Ferroptosis to Iron Out Cancer |
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Targeting Rac1 by the Yersinia effector protein YopE inhibits caspase-1-mediated maturation and release of interleukin-1beta |
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Tauroursodeoxycholic acid inhibits experimental colitis by preventing early intestinal epithelial cell death. |
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Therapeutic Targeting of Connexin Channels: New Views and Challenges |
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TLR-2 and TLR-9 are sensors of apoptosis in a mouse model of doxorubicin-induced acute inflammation |
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TNF-alpha receptors simultaneously activate Ca2+ mobilisation and stress kinases in cultured sensory neurones. |
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TNF-induced necroptosis in L929 cells is tightly regulated by multiple TNFR1 complex I and II members |
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TNFR1- and TNFR2-mediated signaling pathways in human kidney are cell type-specific and differentially contribute to renal injury |
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To NET or not to NET:current opinions and state of the science regarding the formation of neutrophil extracellular traps |
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Tortoiseshell or Polymer? Spectroscopic Analysis to Redefine a Purported Tortoiseshell Box with Gold Decorations as a Plastic Box with Brass |
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Towards the differentiation of non-treated and treated corundum minerals by ion-beam-induced luminescence and other complementary techniques |
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Toxic proteins released from mitochondria in cell death |
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TRAIL induces necroptosis involving RIPK1/RIPK3-dependent PARP-1 activation. |
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Translation inhibition in apoptosis: caspase-dependent PKR activation and eIF2-alpha phosphorylation |
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Treatment with mRNA coding for the necroptosis mediator MLKL induces antitumor immunity directed against neo-epitopes |
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TTRAP, a novel protein that associates with CD40, tumor necrosis factor (TNF) receptor-75 and TNF receptor-associated factors (TRAFs), and that inhibits nuclear factor-kappa B activation |
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Tumor necrosis factor-induced cytotoxicity is not related to rates of mitochondrial morphological abnormalities or autophagy-changes that can be mediated by TNFR-I or TNFR-II. |
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Tumor necrosis factor receptor 2-signaling in CD133-expressing cells in renal clear cell carcinoma |
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The Tumor Suppressor Hace1 Is a Critical Regulator of TNFR1-Mediated Cell Fate |
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Tumoricidal activity of monocyte-derived dendritic cells: evidence for a caspase-8-dependent, Fas-associated death domain-independent mechanism. |
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Tumour necrosis factor-induced necrosis versus anti-Fas-induced apoptosis in L929 cells. |
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Type II tumour necrosis factor-alpha receptor (TNFR2) activates c-Jun N-terminal kinase (JNK) but not mitogen-activated protein kinase (MAPK) or p38 MAPK pathways. |
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The ubiquitin-editing enzyme A20 controls NK cell homeostasis through regulation of mTOR activity and TNF |
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Ultraviolet B radiation-induced apoptosis in human keratinocytes: cytosolic activation of procaspase-8 and the role of Bcl-2. |
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Use of dendrograms of slice spectra as a new graphical tool for the interpretation of two-dimensional correlation spectra. |
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USP8 suppresses death receptor-mediated apoptosis by enhancing FLIPL stability |
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Vaccination with Necroptotic Cancer Cells Induces Efficient Anti-tumor Immunity |
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Vitamin D3 induces caspase-14 expression in psoriatic lesions and enhances caspase-14 processing in organotypic skin cultures |
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Workshop summary: cell death mechanisms controlled by the TNF family |
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Yersinia enterocolitica YopP-induced apoptosis of macrophages involves the apoptotic signaling cascade upstream of bid. |
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সংশোধন |
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