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

Targeting the HLA-E-NKG2A axis in combination with MS-275 enhances NK cell-based immunotherapy against DMG

靶向 HLA-E-NKG2A 轴并联合 MS-275 可增强基于 NK 细胞的抗 DMG 免疫疗法。

Yuxuan Deng ,Jinqiu Liu ,Zhuonan Pu ,Yi Wang ,Tian Li ,Zhuang Jiang ,Luyang Xie ,Xiaoli Zhang ,YingDan Chen ,Mingxu Yang ,Chao Du ,Shuyu Hao ,Nan Ji ,Zhengping Zhuang ,Jie Feng ,Liwei Zhang

Establishment of Immune-Evasive iPSCs from PBMCs Using B2M Knockout and CD47/HLA-E Overexpression

利用B2M敲除和CD47/HLA-E过表达从外周血单核细胞建立免疫逃逸型iPSCs

Cha Yeon Kim ,Cholong Jeong ,Yeon-Ju Jeong ,Young Hoon Sung ,Youngjin Han ,Changmo Hwang

Differential Role of NKG2A/HLA-E Interaction in the Outcomes of Bladder Cancer Patients Treated with M. bovis BCG or Other Therapies

NKG2A/HLA-E相互作用在接受牛分枝杆菌卡介苗或其他疗法治疗的膀胱癌患者预后中的差异性作用

Inmaculada Ruiz-Lorente ,Lourdes Gimeno ,Alicia López-Abad ,Pedro López Cubillana ,Tomás Fernández Aparicio ,Lucas Jesús Asensio Egea ,Juan Moreno Avilés ,Gloria Doñate Iñiguez ,Pablo Luis Guzmán Martínez-Valls ,Gerardo Server ,Belén Ferri ,José Antonio Campillo ,María Victoria Martínez-Sánchez ,Alfredo Minguela

CREB1 promotes expression of immune checkpoint HLA-E leading to immune escape in multiple myeloma

CREB1促进免疫检查点HLA-E的表达,导致多发性骨髓瘤的免疫逃逸。

Aya Ismael ,Allen J Robinette ,Laila Huric ,Jamie Schuetz ,Kameron Dona ,Don Benson ,Emanuele Cocucci ,Francesca Cottini

The antibodies 3D12 and 4D12 recognise distinct epitopes and conformations of HLA-E

抗体3D12和4D12识别HLA-E的不同表位和构象。

Simon Brackenridge ,Nessy John ,Klaus Früh ,Persephone Borrow ,Andrew J McMichael

Mtb HLA-E-tetramer-sorted CD8+ T cells have a diverse TCR repertoire

结核分枝杆菌HLA-E四聚体分选的CD8+ T细胞具有多样化的TCR库

Linda Voogd ,Anne M H F Drittij ,Calinda K E Dingenouts ,Kees L M C Franken ,Vincent van Unen ,Krista E van Meijgaarden ,Paula Ruibal ,Renate S Hagedoorn ,Judith A Leitner ,Peter Steinberger ,Mirjam H M Heemskerk ,Mark M Davis ,Thomas J Scriba ,Tom H M Ottenhoff ,Simone A Joosten

A monoclonal antibody that recognizes a unique 13-residue epitope in the cytoplasmic tail of HLA-E

一种单克隆抗体,可识别HLA-E胞质尾部独特的13个氨基酸残基的表位。

Elisha R Verhaar ,Jin Gan ,Susan Buhl ,Ziao Li ,Amir Horowitz ,Hidde L Ploegh

Antigen-specific memory NK cell responses against HIV and influenza use the NKG2/HLA-E axis

针对HIV和流感的抗原特异性记忆NK细胞反应利用NKG2/HLA-E轴。

Stephanie Jost ,Olivier Lucar ,Esther Lee ,Taylor Yoder ,Kyle Kroll ,Sho Sugawara ,Scott Smith ,Rhianna Jones ,George Tweet ,Alexandra Werner ,Phillip J Tomezsko ,Haley L Dugan ,Joshua Ghofrani ,Philippe Rascle ,Marcus Altfeld ,Michaela Müller-Trutwin ,Paul Goepfert ,R Keith Reeves

KLRC1 knockout overcomes HLA-E-mediated inhibition and improves NK cell antitumor activity against solid tumors

KLRC1基因敲除可克服HLA-E介导的抑制作用,并提高NK细胞对实体瘤的抗肿瘤活性。

Alice Mac Donald ,Delphine Guipouy ,William Lemieux ,Mario Harvey ,Louis-Jean Bordeleau ,David Guay ,Hugo Roméro ,Yuanyi Li ,Renaud Dion ,Kathie Béland ,Elie Haddad

Non-classical HLA-E restricted CMV 15-mer peptides are recognized by adaptive NK cells and induce memory responses

非经典HLA-E限制性CMV 15肽可被适应性NK细胞识别并诱导记忆反应。

Nerea Martín Almazán ,Benedetta Maria Sala ,Tatyana Sandalova ,Yizhe Sun ,Tom Resink ,Frank Cichocki ,Cecilia Söderberg-Nauclér ,Jeffrey S Miller ,Adnane Achour ,Dhifaf Sarhan