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

A novel CD3ε fusion receptor allows T cell engager use in TCR-less allogeneic CAR T cells to improve activity and prevent antigen escape

一种新型CD3ε融合受体使得T细胞衔接器能够应用于不含TCR的同种异体CAR-T细胞中,从而提高其活性并防止抗原逃逸。

Lu, Dan; Chu, Hui-Yi; Park, Soo; Landon, Mark; Tsuda, Masanao; Avramis, Earl; Dege, Carissa; Dailey, Thomas; Pan, Yijia; Hanok, Sandeep Kothapally; Denholtz, Matthew; Abujarour, Ramzey; Lee, Tom; Goulding, John; Hosking, Martin; Goodridge, Jodie; Peralta, Eigen; Valamehr, Bahram

Exploring public perceptions of college education on TikTok: A content analysis through the lens of the social determinants of health

通过TikTok探索公众对大学教育的看法:基于健康社会决定因素的内容分析

Jacques, Erin Toussaint; Jones, Vincent 2nd; Datuowei, Erela; Chatterjee, Arijit; Denholtz, Carlee; Basch, Corey H

PV - Oligodendrocyte Interactions in the Infralimbic Cortex Promote Extracellular Plasticity after Safety Learning.

PV - 下边缘皮层中的少突胶质细胞相互作用促进安全学习后的细胞外可塑性

Denholtz L E, Liu J, Nahmoud I, Casaccia P, Likhtik E

A chemical approach facilitates CRISPRa-only human iPSC generation and minimizes the number of targeted loci required

化学方法促进了仅使用 CRISPRa 的人类 iPSC 生成,并最大限度地减少了所需的靶位点数量

Ramzey Abujarour, Jason Dinella, Mochtar Pribadi, Lauren K Fong, Matthew Denholtz, Alma Gutierrez, Matt Haynes, Enaaya Mahmood, Tom T Lee, Sheng Ding, Bahram Valamehr

A chimeric antigen receptor uniquely recognizing MICA/B stress proteins provides an effective approach to target solid tumors

一种能够特异性识别MICA/B应激蛋白的嵌合抗原受体,为靶向实体瘤提供了一种有效方法。

John Goulding ,Wen-I Yeh ,Bryan Hancock ,Robert Blum ,Tianhao Xu ,Bi-Huei Yang ,Chia-Wei Chang ,Brian Groff ,Earl Avramis ,Mochtar Pribadi ,Yijia Pan ,Hui-Yi Chu ,Shohreh Sikaroodi ,Lauren Fong ,Nicholas Brookhouser ,Thomas Dailey ,Miguel Meza ,Matthew Denholtz ,Evelyn Diaz ,Judy Martin ,Peter Szabo ,Sarah Cooley ,Lucas Ferrari de Andrade ,Tom T Lee ,Ryan Bjordahl ,Kai W Wucherpfennig ,Bahram Valamehr

Calcium signaling instructs NIPBL recruitment at active enhancers and promoters via distinct mechanisms to reconstruct genome compartmentalization

钙信号通过不同的机制指导 NIPBL 在活性增强子和启动子处募集,从而重建基因组区室化

Yina Zhu #, Matthew Denholtz #, Hanbin Lu, Cornelis Murre

Plasma Cell Fate Is Orchestrated by Elaborate Changes in Genome Compartmentalization and Inter-chromosomal Hubs

浆细胞的命运由基因组区室化和染色体间枢纽的复杂变化所调控

Alexandra Bortnick ,Zhaoren He ,Megan Aubrey ,Vivek Chandra ,Matthew Denholtz ,Kenian Chen ,Yin C Lin ,Cornelis Murre

Upon microbial challenge, human neutrophils undergo rapid changes in nuclear architecture and chromatin folding to orchestrate an immediate inflammatory gene program

当受到微生物攻击时,人类中性粒细胞的核结构和染色质折叠会发生快速变化,从而立即启动炎症基因程序

Matthew Denholtz #, Yina Zhu #, Zhaoren He, Hanbin Lu, Takeshi Isoda, Simon Döhrmann, Victor Nizet, Cornelis Murre

Non-coding Transcription Instructs Chromatin Folding and Compartmentalization to Dictate Enhancer-Promoter Communication and T Cell Fate

非编码转录指导染色质折叠和区室化,从而决定增强子-启动子通讯和T细胞命运。

Takeshi Isoda ,Amanda J Moore ,Zhaoren He ,Vivek Chandra ,Masatoshi Aida ,Matthew Denholtz ,Jan Piet van Hamburg ,Kathleen M Fisch ,Aaron N Chang ,Shawn P Fahl ,David L Wiest ,Cornelis Murre

Frequency of mononuclear diploid cardiomyocytes underlies natural variation in heart regeneration

单核二倍体心肌细胞的频率是心脏再生自然变化的基础

Michaela Patterson, Lindsey Barske, Ben Van Handel, Christoph D Rau, Peiheng Gan, Avneesh Sharma, Shan Parikh, Matt Denholtz, Ying Huang, Yukiko Yamaguchi, Hua Shen, Hooman Allayee, J Gage Crump, Thomas I Force, Ching-Ling Lien, Takako Makita, Aldons J Lusis, S Ram Kumar, Henry M Sucov