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

Reproducible Human Neural Circuits Printed with Single-Cell Precision Reveal the Functional Roles of Ephaptic Coupling

利用单细胞精度打印的可重复人类神经回路揭示了电突触耦合的功能作用

Striebel, Johannes; Habibey, Rouhollah; Wendland, Daniel; Gehring, Helge; Podoliak, Elizaveta; Pawlick, Julia S; Sharma, Kritika; Ng, Alex H M; Pernice, Wolfram; Busskamp, Volker

Rapid Generation of hPSC-Derived High Endothelial Venule Organoids with In Vivo Ectopic Lymphoid Tissue Capabilities.

快速生成具有体内异位淋巴组织能力的hPSC衍生高内皮静脉类器官

Wang Xichi, Li Xiaofei, Zhao Jing, Li Yi, Shin Su Ryon, Ligresti Giovanni, Ng Alex H M, Bromberg Jonathan S, Church George, Lemos Dario R, Abdi Reza

Advancing stem cell technologies for conservation of wildlife biodiversity

推进干细胞技术在野生动物生物多样性保护中的应用

Hutchinson, Ashlee M; Appeltant, Ruth; Burdon, Tom; Bao, Qiuye; Bargaje, Rhishikesh; Bodnar, Andrea; Chambers, Stuart; Comizzoli, Pierre; Cook, Laura; Endo, Yoshinori; Harman, Bob; Hayashi, Katsuhiko; Hildebrandt, Thomas; Korody, Marisa L; Lakshmipathy, Uma; Loring, Jeanne F; Munger, Clara; Ng, Alex H M; Novak, Ben; Onuma, Manabu; Ord, Sara; Paris, Monique; Pask, Andrew J; Pelegri, Francisco; Pera, Martin; Phelan, Ryan; Rosental, Benyamin; Ryder, Oliver A; Sukparangsi, Woranop; Sullivan, Gareth; Tay, Nicole Liling; Traylor-Knowles, Nikki; Walker, Shawn; Weberling, Antonia; Whitworth, Deanne J; Williams, Suzannah A; Wojtusik, Jessye; Wu, Jun; Ying, Qi-Long; Zwaka, Thomas P; Kohler, Timo N

Neuronal Cell-type Engineering by Transcriptional Activation

通过转录激活进行神经元细胞类型工程

Liu, Songlei; Striebel, Johannes; Pasquini, Giovanni; Ng, Alex H M; Khoshakhlagh, Parastoo; Church, George M; Busskamp, Volker

Impaired autophagy in the lipid-storage disorder Niemann-Pick type C1 disease

脂质贮积症尼曼-匹克C1型疾病中的自噬功能受损

Sarkar, Sovan; Carroll, Bernadette; Buganim, Yosef; Maetzel, Dorothea; Ng, Alex H M; Cassady, John P; Cohen, Malkiel A; Chakraborty, Souvik; Wang, Haoyi; Spooner, Eric; Ploegh, Hidde; Gsponer, Joerg; Korolchuk, Viktor I; Jaenisch, Rudolf

System-wide analysis reveals intrinsically disordered proteins are prone to ubiquitylation after misfolding stress

系统性分析表明,固有无序蛋白在错误折叠应激后易于发生泛素化。

Ng, Alex H M; Fang, Nancy N; Comyn, Sophie A; Gsponer, Jörg; Mayor, Thibault