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

Incorporation of macrophages into engineered skeletal muscle enables enhanced muscle regeneration

将巨噬细胞整合到工程化骨骼肌中可以增强肌肉再生能力。

Juhas, Mark; Abutaleb, Nadia; Wang, Jason T; Ye, Jean; Shaikh, Zohaib; Sriworarat, Chaichontat; Qian, Ying; Bursac, Nenad

Bioengineered human myobundles mimic clinical responses of skeletal muscle to drugs

生物工程改造的人类肌束模拟了骨骼肌对药物的临床反应

Madden, Lauran; Juhas, Mark; Kraus, William E; Truskey, George A; Bursac, Nenad

Roles of adherent myogenic cells and dynamic culture in engineered muscle function and maintenance of satellite cells.

贴壁肌源细胞和动态培养在工程肌肉功能和卫星细胞维持中的作用

Juhas Mark, Bursac Nenad

Biomimetic engineered muscle with capacity for vascular integration and functional maturation in vivo

具有血管整合和体内功能成熟能力的仿生工程肌肉

Juhas, Mark; Engelmayr, George C Jr; Fontanella, Andrew N; Palmer, Gregory M; Bursac, Nenad

Engineering skeletal muscle repair

骨骼肌修复工程

Juhas, Mark; Bursac, Nenad

Local tissue geometry determines contractile force generation of engineered muscle networks

局部组织几何结构决定了工程化肌肉网络的收缩力产生。

Bian, Weining; Juhas, Mark; Pfeiler, Terry W; Bursac, Nenad