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

Developing Porous Fibrin Scaffolds with Tunable Anisotropic Features to Direct Myoblast Orientation.

开发具有可调各向异性特征的多孔纤维蛋白支架以引导成肌细胞取向

Samolyk Bryanna L, Pace Zoe Y, Li Juanyong, Billiar Kristen L, Coburn Jeannine M, Whittington Catherine F, Pins George D

Micropatterned fibrin scaffolds increase cardiomyocyte alignment and contractility for the fabrication of engineered myocardial tissue

微图案化纤维蛋白支架可提高心肌细胞排列和收缩力,用于构建工程化心肌组织。

English, Elizabeth J; Samolyk, Bryanna L; Gaudette, Glenn R; Pins, George D

Skeletal Muscle Tissue Engineering: Biomaterials-Based Strategies for the Treatment of Volumetric Muscle Loss

骨骼肌组织工程:基于生物材料的肌肉体积损失治疗策略

Carnes, Meagan E; Pins, George D

Etching anisotropic surface topography onto fibrin microthread scaffolds for guiding myoblast alignment

在纤维蛋白微丝支架上蚀刻各向异性表面形貌以引导成肌细胞排列

Carnes, Meagan E; Pins, George D

Creation of a contractile biomaterial from a decellularized spinach leaf without ECM protein coating: An in vitro study

利用脱细胞菠菜叶制备无细胞外基质蛋白包被的收缩性生物材料:一项体外研究

Robbins, Emily R; Pins, George D; Laflamme, Michael A; Gaudette, Glenn R

Delivering stem cells to the healthy heart on biological sutures: effects on regional mechanical function.

通过生物缝合线将干细胞输送到健康心脏:对局部机械功能的影响

Tao Ze-Wei, Favreau John T, Guyette Jacques P, Hansen Katrina J, Lessard Jeffrey, Burford Evans, Pins George D, Gaudette Glenn R

The Effect of Sterilization Methods on the Structural and Chemical Properties of Fibrin Microthread Scaffolds.

灭菌方法对纤维蛋白微丝支架结构和化学性质的影响

Grasman Jonathan M, O'Brien Megan P, Ackerman Kevin, Gagnon Keith A, Wong Gregory M, Pins George D

Designing Biopolymer Microthreads for Tissue Engineering and Regenerative Medicine

为组织工程和再生医学设计生物聚合物微丝

O'Brien, Megan P; Carnes, Meagan E; Page, Raymond L; Gaudette, Glenn R; Pins, George D

Biomimetic scaffolds for regeneration of volumetric muscle loss in skeletal muscle injuries

用于骨骼肌损伤中肌肉体积损失再生的仿生支架

Grasman, Jonathan M; Zayas, Michelle J; Page, Raymond L; Pins, George D

Static axial stretching enhances the mechanical properties and cellular responses of fibrin microthreads.

静态轴向拉伸可增强纤维蛋白微丝的机械性能和细胞反应

Grasman Jonathan M, Pumphrey Laura M, Dunphy Melissa, Perez-Rogers James, Pins George D