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

Human iPSC-Derived Motor Neuron Innervation Enhances the Differentiation of Muscle Bundles Engineered with Benchtop Fabrication Techniques.

人类 iPSC 衍生的运动神经元支配增强了利用台式制造技术构建的肌肉束的分化

Santoso Jeffrey W, Do Stephanie K, Verma Riya, Do Alexander V, Hendricks Eric, Ichida Justin K, McCain Megan L

Author Correction: Engineering programmable material-to-cell pathways via synthetic notch receptors to spatially control differentiation in multicellular constructs

作者更正:通过合成的Notch受体构建可编程的材料-细胞通路,以在空间上控制多细胞结构中的分化

Garibyan, Mher; Hoffman, Tyler; Makaske, Thijs; Do, Stephanie K; Wu, Yifan; Williams, Brian A; March, Alexander R; Cho, Nathan; Pedroncelli, Nicolas; Lima, Ricardo Espinosa; Soto, Jennifer; Jackson, Brooke; Santoso, Jeffrey W; Khademhosseini, Ali; Thomson, Matt; Li, Song; McCain, Megan L; Morsut, Leonardo

Human iPSC-derived motor neuron innervation enhances the differentiation of muscle bundles engineered with benchtop fabrication techniques.

人类 iPSC 衍生的运动神经元支配增强了利用台式制造技术构建的肌肉束的分化

Santoso Jeffrey W, Do Stephanie K, Verma Riya, Do Alexander V, Hendricks Eric, Ichida Justin K, McCain Megan L