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

Analyzing Single Giant Unilamellar Vesicles With a Slotline-Based RF Nanometer Sensor

利用基于狭缝线的射频纳米传感器分析单个巨型单层囊泡

Cui, Yan; Kenworthy, Anne K; Edidin, Michael; Divan, Ralu; Rosenmann, Daniel; Wang, Pingshan

A high fat diet containing saturated but not unsaturated fatty acids enhances T cell receptor clustering on the nanoscale

富含饱和脂肪酸而非不饱和脂肪酸的高脂肪饮食可增强纳米尺度上的T细胞受体聚集。

Shaikh, Saame Raza; Boyle, Sarah; Edidin, Michael

Light and life in Baltimore--and beyond

巴尔的摩及其他地区的光明与生活

Edidin, Michael

Magnetic field-induced T cell receptor clustering by nanoparticles enhances T cell activation and stimulates antitumor activity

纳米颗粒介导的磁场诱导T细胞受体聚集可增强T细胞活化并刺激抗肿瘤活性。

Perica, Karlo; Tu, Ang; Richter, Anne; Bieler, Joan Glick; Edidin, Michael; Schneck, Jonathan P

Selective activation of antigen-experienced T cells by anti-CD3 constrained on nanoparticles

通过纳米颗粒上的抗CD3抗体选择性激活抗原经历的T细胞

Lo, Ying-Chun; Edidin, Michael A; Powell, Jonathan D

Lifetime of major histocompatibility complex class-I membrane clusters is controlled by the actin cytoskeleton

主要组织相容性复合体I类膜簇的寿命受肌动蛋白细胞骨架控制。

Lavi, Yael; Gov, Nir; Edidin, Michael; Gheber, Levi A

Quantum dot fluorescence characterizes the nanoscale organization of T cell receptors for antigen

量子点荧光表征了T细胞受体对抗原的纳米级组织结构。

Boyle, Sarah; Kolin, David L; Bieler, Joan Glick; Schneck, Jonathan P; Wiseman, Paul W; Edidin, Michael

Class I MHC molecules as probes of membrane patchiness: from biophysical measurements to modulation of immune responses

I类MHC分子作为膜斑块性探针:从生物物理测量到免疫反应调节

Edidin, Michael

MHC molecules lead many lives. Workshop on MHC Class I Molecules at the interface between Biology & Medicine

MHC分子扮演着多种角色。生物学与医学交叉领域的MHC I类分子研讨会

Bowness, Paul; Caplan, Steve; Edidin, Michael

Interaction of Bap31 and MHC class I molecules and their traffic out of the endoplasmic reticulum

Bap31与MHC I类分子的相互作用及其从内质网转运出的过程

Abe, Fumiyoshi; Van Prooyen, Nancy; Ladasky, John J; Edidin, Michael