日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

6E11, a highly selective inhibitor of Receptor-Interacting Protein Kinase 1, protects cells against cold hypoxia-reoxygenation injury

6E11 是一种高选择性的受体相互作用蛋白激酶 1 抑制剂,可保护细胞免受冷缺氧-复氧损伤。

Delehouzé, C; Leverrier-Penna, S; Le Cann, F; Comte, A; Jacquard-Fevai, M; Delalande, O; Desban, N; Baratte, B; Gallais, I; Faurez, F; Bonnet, M C; Hauteville, M; Goekjian, P G; Thuillier, R; Favreau, F; Vandenabeele, P; Hauet, T; Dimanche-Boitrel, M T; Bach, S

Extracellular ATP and P₂X₇ receptor exert context-specific immunogenic effects after immunogenic cancer cell death

细胞外ATP和P₂X₇受体在免疫原性癌细胞死亡后发挥情境特异性的免疫原性效应

Garg, A D; Krysko, D V; Vandenabeele, P; Agostinis, P

In situ Raman mapping of art objects

艺术品的原位拉曼光谱成像

Lauwers, D; Brondeel, Ph; Moens, L; Vandenabeele, P

A novel RIPK4-IRF6 connection is required to prevent epithelial fusions characteristic for popliteal pterygium syndromes

RIPK4-IRF6 的新型连接是防止腘窝翼状胬肉综合征特征性上皮融合所必需的。

De Groote, P; Tran, H T; Fransen, M; Tanghe, G; Urwyler, C; De Craene, B; Leurs, K; Gilbert, B; Van Imschoot, G; De Rycke, R; Guérin, C J; Holland, P; Berx, G; Vandenabeele, P; Lippens, S; Vleminckx, K; Declercq, W

Essential versus accessory aspects of cell death: recommendations of the NCCD 2015

细胞死亡的必要方面与辅助方面:2015 年 NCCD 的建议

Galluzzi, L; Bravo-San Pedro, J M; Vitale, I; Aaronson, S A; Abrams, J M; Adam, D; Alnemri, E S; Altucci, L; Andrews, D; Annicchiarico-Petruzzelli, M; Baehrecke, E H; Bazan, N G; Bertrand, M J; Bianchi, K; Blagosklonny, M V; Blomgren, K; Borner, C; Bredesen, D E; Brenner, C; Campanella, M; Candi, E; Cecconi, F; Chan, F K; Chandel, N S; Cheng, E H; Chipuk, J E; Cidlowski, J A; Ciechanover, A; Dawson, T M; Dawson, V L; De Laurenzi, V; De Maria, R; Debatin, K-M; Di Daniele, N; Dixit, V M; Dynlacht, B D; El-Deiry, W S; Fimia, G M; Flavell, R A; Fulda, S; Garrido, C; Gougeon, M-L; Green, D R; Gronemeyer, H; Hajnoczky, G; Hardwick, J M; Hengartner, M O; Ichijo, H; Joseph, B; Jost, P J; Kaufmann, T; Kepp, O; Klionsky, D J; Knight, R A; Kumar, S; Lemasters, J J; Levine, B; Linkermann, A; Lipton, S A; Lockshin, R A; López-Otín, C; Lugli, E; Madeo, F; Malorni, W; Marine, J-C; Martin, S J; Martinou, J-C; Medema, J P; Meier, P; Melino, S; Mizushima, N; Moll, U; Muñoz-Pinedo, C; Nuñez, G; Oberst, A; Panaretakis, T; Penninger, J M; Peter, M E; Piacentini, M; Pinton, P; Prehn, J H; Puthalakath, H; Rabinovich, G A; Ravichandran, K S; Rizzuto, R; Rodrigues, C M; Rubinsztein, D C; Rudel, T; Shi, Y; Simon, H-U; Stockwell, B R; Szabadkai, G; Tait, S W; Tang, H L; Tavernarakis, N; Tsujimoto, Y; Vanden Berghe, T; Vandenabeele, P; Villunger, A; Wagner, E F; Walczak, H; White, E; Wood, W G; Yuan, J; Zakeri, Z; Zhivotovsky, B; Melino, G; Kroemer, G

RIPK1 promotes death receptor-independent caspase-8-mediated apoptosis under unresolved ER stress conditions

在内质网应激未消退的情况下,RIPK1促进不依赖于死亡受体的caspase-8介导的细胞凋亡。

Estornes, Y; Aguileta, M A; Dubuisson, C; De Keyser, J; Goossens, V; Kersse, K; Samali, A; Vandenabeele, P; Bertrand, M J M

BNIP3 supports melanoma cell migration and vasculogenic mimicry by orchestrating the actin cytoskeleton.

BNIP3 通过协调肌动蛋白细胞骨架来支持黑色素瘤细胞迁移和血管生成模拟

Maes H, Van Eygen S, Krysko D V, Vandenabeele P, Nys K, Rillaerts K, Garg A D, Verfaillie T, Agostinis P

Cell surface-expressed phosphatidylserine as therapeutic target to enhance phagocytosis of apoptotic cells

细胞表面表达的磷脂酰丝氨酸可作为治疗靶点,增强凋亡细胞的吞噬作用

Schutters, K; Kusters, D H M; Chatrou, M L L; Montero-Melendez, T; Donners, M; Deckers, N M; Krysko, D V; Vandenabeele, P; Perretti, M; Schurgers, L J; Reutelingsperger, C P M

Necrostatin-1 blocks both RIPK1 and IDO: consequences for the study of cell death in experimental disease models

坏死抑制剂-1可同时阻断RIPK1和IDO:对实验疾病模型中细胞死亡研究的意义

Vandenabeele, P; Grootjans, S; Callewaert, N; Takahashi, N

Many stimuli pull the necrotic trigger, an overview

许多刺激因素都会触发坏死,概述

Vanlangenakker, N; Vanden Berghe, T; Vandenabeele, P