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

RNA-based co-transfer of human CD8αβ with WT1-specific TCRαβ redirects tumor recognition by CD4 and γδ T-cells towards MHC class I-restricted WT1 epitopes and boosts CD8 T-cell responses with or without CD3 mRNA

基于RNA的人CD8αβ与WT1特异性TCRαβ共转移,可将CD4和γδ T细胞对肿瘤的识别重定向至MHC I类限制性WT1表位,并增强CD8 T细胞应答,无论是否存在CD3 mRNA。

Campillo-Davo, Diana; Flumens, Donovan; Berneman, Zwi N; Fujiki, Fumihiro; Roex, Gils; Versteven, Maarten; Van Acker, Heleen H; Van Tendeloo, Viggo F I; Sugiyama, Haruo; Anguille, Sébastien; Lion, Eva

Impact of Wilms' tumor 1 gene (WT1) mutation on outcome of allogeneic hematopoietic-cell transplantation for acute myeloid leukemia: a retrospective multicenter cohort study from the ALWP/EBMT registry

Wilms肿瘤1基因(WT1)突变对急性髓系白血病异基因造血干细胞移植预后的影响:一项来自ALWP/EBMT登记处的回顾性多中心队列研究

Nagler, Arnon; Esteve, Jordi; Galimard, Jacques-Emmanuel; Sanz, Jaime; Poire, Xavier; Collin, Matthew; Maertens, Johan; Huang, He; Itäla-Remes, Maija; Halahleh, Khalid; Pascual Cascon, Maria Jesús; Chiusolo, Patrizia; Griskevicius, Laimonas; Kaare, Ain; De Becker, Ann; Jindra, Pavel; Pérez-Simón, Jose Antonio; Bazarbachi, Ali; Brissot, Eolia; Ciceri, Fabio; Mohty, Mohamad

Human CD3 complex is required for the generation of T-cell receptor-like chimeric antigen receptor targeting WT1 in natural killer cells

人CD3复合物是自然杀伤细胞中靶向WT1的T细胞受体样嵌合抗原受体生成所必需的。

Luanpitpong, Sudjit; Poohadsuan, Jirarat; Samart, Parinya; Kang, Xing; Pratumkaew, Ponthip; Janan, Montira; Issaragrisil, Surapol

A network pharmacology-guided multi-omics and spatial single-cell framework nominates WT1 as a spironolactone-linked immune biomarker in prostate cancer

基于网络药理学指导的多组学和空间单细胞框架,WT1被提名为前列腺癌中与螺内酯相关的免疫生物标志物。

Zhu, Zhen; He, Xingjun

Correction: Guo et al. Shikonin as a WT1 Inhibitor Promotes Promyeloid Leukemia Cell Differentiation. Molecules 2022, 27, 8264

更正:Guo 等人,《紫草素作为 WT1 抑制剂促进早幼粒细胞白血病细胞分化》,Molecules 2022, 27, 8264

Guo, Zhenzhen; Sun, Luyao; Xia, Haojie; Tian, Shibin; Liu, Mengyue; Hou, Jiejie; Li, Jiahuan; Lin, Haihong; Du, Gangjun

Bacillus amyloliquefaciens regulates oxidative damage through ssc-miR-10390 by targeting WT1 in the intestine of piglets

枯草芽孢杆菌通过靶向仔猪肠道中的WT1,经由ssc-miR-10390调节氧化损伤

Yuan, Junmeng; Liu, Yu; Sun, Yaowei; Liu, Huawei; Zhang, Kai; Zhao, Jinshan; Li, Weifen; Wang, Yang

Calcifying nested stromal-epithelial tumor of the liver: Report of two cases revealing novel WT1 mutation and distinct epigenetic features

肝脏钙化性巢状间质上皮肿瘤:两例病例报告揭示新的WT1突变和独特的表观遗传特征

Strakova-Peterikova, Andrea; Fedeli, Franco; Rychly, Boris; Soukup, Jiri; Michal, Michael; Martinek, Petr; Grendar, Marian; Mosaieby, Elaheh; Ptakova, Nikola; Slisarenko, Maryna; Michal, Michal; Michalova, Kvetoslava

Loss of WT1 Drives Adaptive Plasticity in CCDC6-RET Selpercatinib-Resistant Papillary Thyroid Cancer.

WT1 的缺失驱动 CCDC6-RET 耐塞帕替尼的乳头状甲状腺癌的适应性可塑性。

Siragusa Giuseppe, Tomasello Laura, Biondo Mattia, Vaglica Fabiola, Giordano Carla, Arnaldi Giorgio, Pizzolanti Giuseppe

Study of High Levels of Wilms' Tumor 1 (WT1) Expression in Ovarian Cancers

卵巢癌中 Wilms 肿瘤 1 (WT1) 高表达水平的研究

Fatima, Arshia; Pawar, Sunita; Potpalle, Dnyaneshwar; Chandana, Hari; Dinesh Eshwar, Mummareddi

Denys-Drash Syndrome by WT1 Gene: Clinical Variability and Management Challenges in Two Saudi Infants

由WT1基因引起的Denys-Drash综合征:两例沙特阿拉伯婴儿的临床表现差异及治疗挑战

Al-Amoudi, Waleed; Alhuthil, Raghad; Alnwiji, Abdulrahman; Alqarni, Megren S; Murad, Sarah; Alsagheir, Afaf