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

Digital microfluidic isolation of single cells for -Omics

用于组学的单细胞数字微流控分离

Julian Lamanna ,Erica Y Scott ,Harrison S Edwards ,M Dean Chamberlain ,Michael D M Dryden ,Jiaxi Peng ,Barbara Mair ,Adam Lee ,Calvin Chan ,Alexandros A Sklavounos ,Austin Heffernan ,Farhana Abbas ,Charis Lam ,Maxwell E Olson ,Jason Moffat ,Aaron R Wheeler

Cell invasion in digital microfluidic microgel systems

数字微流体微凝胶系统中的细胞侵袭

Bingyu B Li, Erica Y Scott, M Dean Chamberlain, Bill T V Duong, Shuailong Zhang, Susan J Done, Aaron R Wheeler

The optoelectronic microrobot: A versatile toolbox for micromanipulation

光电微型机器人:微操作的多功能工具箱

Shuailong Zhang, Erica Y Scott, Jastaranpreet Singh, Yujie Chen, Yanfeng Zhang, Mohamed Elsayed, M Dean Chamberlain, Nika Shakiba, Kelsey Adams, Siyuan Yu, Cindi M Morshead, Peter W Zandstra, Aaron R Wheeler

Pre-concentration by liquid intake by paper (P-CLIP): a new technique for large volumes and digital microfluidics

纸吸入液体预浓缩 (P-CLIP):一种用于大容量和数字微流体的新技术

Darius G Rackus, Richard P S de Campos, Calvin Chan, Maria M Karcz, Brendon Seale, Tanya Narahari, Christopher Dixon, M Dean Chamberlain, Aaron R Wheeler

Digital microfluidic immunocytochemistry in single cells

单细胞数字微流控免疫细胞化学

Alphonsus H C Ng, M Dean Chamberlain, Haozhong Situ, Victor Lee, Aaron R Wheeler

Unbiased phosphoproteomic method identifies the initial effects of a methacrylic acid copolymer on macrophages

无偏磷酸化蛋白质组学方法鉴定甲基丙烯酸共聚物对巨噬细胞的初始作用

Michael Dean Chamberlain, Laura A Wells, Alexandra Lisovsky, Hongbo Guo, Ruth Isserlin, Ilana Talior-Volodarsky, Redouan Mahou, Andrew Emili, Michael V Sefton

Bone marrow-derived mesenchymal stromal cells enhance chimeric vessel development driven by endothelial cell-coated microtissues

骨髓间充质基质细胞增强内皮细胞包被的微组织驱动的嵌合血管发育

Michael Dean Chamberlain, Rohini Gupta, Michael V Sefton

Chimeric vessel tissue engineering driven by endothelialized modules in immunosuppressed Sprague-Dawley rats

免疫抑制 Sprague-Dawley 大鼠中内皮化模块驱动的嵌合血管组织工程

Michael Dean Chamberlain, Rohini Gupta, Michael V Sefton

Disrupted RabGAP function of the p85 subunit of phosphatidylinositol 3-kinase results in cell transformation

磷脂酰肌醇 3-激酶 p85 亚基的 RabGAP 功能破坏导致细胞转化

M Dean Chamberlain, Tim Chan, Jennifer C Oberg, Andrea D Hawrysh, Kristy M James, Anurag Saxena, Jim Xiang, Deborah H Anderson

Phosphoinositide 3-kinase regulates beta2-adrenergic receptor endocytosis by AP-2 recruitment to the receptor/beta-arrestin complex

磷酸肌醇 3-激酶通过 AP-2 募集至受体/β-抑制蛋白复合物来调节 β2-肾上腺素受体的内吞作用

Sathyamangla V Naga Prasad, Stéphane A Laporte, Dean Chamberlain, Marc G Caron, Larry Barak, Howard A Rockman