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

Dictionary of human intestinal organoid responses to secreted niche factors at single cell resolution

单细胞分辨率下人类肠道类器官对分泌型微环境因子的反应词典

Capeling, Meghan M; Chen, Bob; Aliar, Kazeera; Penna, Elisa; Lopez, Veronica Ibarra; Foo, Conrad; Rost, Sandra; Holokai, Loryn; Tong, Xinming; Phillips, Devan; Sweet, Caden; Li, Jing; Chatterjee, Sharmila; Skippington, Elizabeth; Modrusan, Zora; McGinnis, Lisa M; Wei, Runmin; Keir, Mary; Rozenblatt-Rosen, Orit; Chen, Michelle B

Mechanobiology in oncology: basic concepts and clinical prospects

肿瘤机械生物学:基本概念和临床前景

Chen, Michelle B; Javanmardi, Yousef; Shahreza, Somayeh; Serwinski, Bianca; Aref, Amir; Djordjevic, Boris; Moeendarbary, Emad

Inflamed neutrophils sequestered at entrapped tumor cells via chemotactic confinement promote tumor cell extravasation.

炎症中性粒细胞通过趋化作用聚集在被困的肿瘤细胞周围,促进肿瘤细胞外渗

Chen Michelle B, Hajal Cynthia, Benjamin David C, Yu Cathy, Azizgolshani Hesham, Hynes Richard O, Kamm Roger D

Epithelial-Mesenchymal Transition Induces Podocalyxin to Promote Extravasation via Ezrin Signaling

上皮-间质转化诱导足细胞糖蛋白通过Ezrin信号通路促进细胞外渗

Fröse, Julia; Chen, Michelle B; Hebron, Katie E; Reinhardt, Ferenc; Hajal, Cynthia; Zijlstra, Andries; Kamm, Roger D; Weinberg, Robert A

Microfluidics: A new tool for modeling cancer-immune interactions

微流控技术:模拟癌症-免疫相互作用的新工具

Boussommier-Calleja, Alexandra; Li, Ran; Chen, Michelle B; Wong, Siew Cheng; Kamm, Roger D

Elucidation of the Roles of Tumor Integrin β1 in the Extravasation Stage of the Metastasis Cascade

阐明肿瘤整合素β1在转移级联外渗阶段的作用

Chen, Michelle B; Lamar, John M; Li, Ran; Hynes, Richard O; Kamm, Roger D

A Chemomechanical Model for Nuclear Morphology and Stresses during Cell Transendothelial Migration

细胞跨内皮迁移过程中核形态和应力的化学力学模型

Cao, Xuan; Moeendarbary, Emad; Isermann, Philipp; Davidson, Patricia M; Wang, Xiao; Chen, Michelle B; Burkart, Anya K; Lammerding, Jan; Kamm, Roger D; Shenoy, Vivek B

Control of perfusable microvascular network morphology using a multiculture microfluidic system

利用多培养微流控系统控制可灌注微血管网络形态

Whisler, Jordan A; Chen, Michelle B; Kamm, Roger D