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

Perfusable 3D models of ureteric bud and collecting duct tubules

输尿管芽和集合管小管的可灌注三维模型

Wolf, Kayla J; van Gaal, Ronald C; Uzel, Sebastien G M; Rubins, Jonathan E; Klaus, Aline N; Printz, Amelie; Nair, Pooja; Kroll, Katharina T; Stankey, Paul; Satlin, Lisa M; Lewis, Jennifer A

Exploring immune response toward transplanted human kidney tissues assembled from organoid building blocks

探索针对由类器官构建模块组装而成的移植人肾组织的免疫反应

Thiago J Borges ,Yoshikazu Ganchiku ,Jeffrey O Aceves ,Ronald van Gaal ,Sebastien G M Uzel ,Ivy A Rosales ,Jonathan E Rubins ,Kenichi Kobayashi ,Ken Hiratsuka ,Murat Tekguc ,Guilherme T Ribas ,Karina Lima ,Rodrigo B Gassen ,Ryuji Morizane ,Jennifer A Lewis ,Leonardo V Riella

Biomanufacturing human tissues via organ building blocks

利用器官构建模块生物制造人体组织

Wolf, Kayla J; Weiss, Jonathan D; Uzel, Sebastien G M; Skylar-Scott, Mark A; Lewis, Jennifer A

Kidney organoids: a pioneering model for kidney diseases

肾脏类器官:肾脏疾病的开创性模型

Tekguc, Murat; Gaal, Ronald C VAN; Uzel, Sebastien G M; Gupta, Navin; Riella, Leonardo V; Lewis, Jennifer A; Morizane, Ryuji

On-chip 3D neuromuscular model for drug screening and precision medicine in neuromuscular disease

用于神经肌肉疾病药物筛选和精准医疗的片上 3D 神经肌肉模型

Tatsuya Osaki, Sebastien G M Uzel, Roger D Kamm

Quantification of human neuromuscular function through optogenetics

通过光遗传学量化人类神经肌肉功能

Olaia F Vila, Sebastien G M Uzel, Stephen P Ma, Damian Williams, Joseph Pak, Roger D Kamm, Gordana Vunjak-Novakovic

Biomanufacturing of organ-specific tissues with high cellular density and embedded vascular channels

具有高细胞密度和嵌入血管通道的器官特异性组织的生物制造

Mark A Skylar-Scott, Sebastien G M Uzel, Lucy L Nam, John H Ahrens, Ryan L Truby, Sarita Damaraju, Jennifer A Lewis

Microphysiological 3D model of amyotrophic lateral sclerosis (ALS) from human iPS-derived muscle cells and optogenetic motor neurons

来自人类 iPS 衍生的肌肉细胞和光遗传运动神经元的肌萎缩侧索硬化症 (ALS) 的微生理 3D 模型

Tatsuya Osaki, Sebastien G M Uzel, Roger D Kamm

Simultaneous or Sequential Orthogonal Gradient Formation in a 3D Cell Culture Microfluidic Platform

3D 细胞培养微流体平台中同时或连续正交梯度形成

Sebastien G M Uzel, Ovid C Amadi, Taylor M Pearl, Richard T Lee, Peter T C So, Roger D Kamm

Microfluidic device for the formation of optically excitable, three-dimensional, compartmentalized motor units

用于形成光学可激发的三维分区运动单元的微流体装置

Sebastien G M Uzel, Randall J Platt, Vidya Subramanian, Taylor M Pearl, Christopher J Rowlands, Vincent Chan, Laurie A Boyer, Peter T C So, Roger D Kamm