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

Injectable pre-cultured tissue modules catalyze the formation of extensive functional microvasculature in vivo.

可注射的预培养组织模块可催化体内广泛功能性微血管的形成

Friend Nicole E, Rioja Ana Y, Kong Yen P, Beamish Jeffrey A, Hong Xiaowei, Habif Julia C, Bezenah Jonathan R, Deng Cheri X, Stegemann Jan P, Putnam Andrew J

Assessing the ability of human endothelial cells derived from induced-pluripotent stem cells to form functional microvasculature in vivo

评估由诱导多能干细胞衍生的人类内皮细胞在体内形成功能性微血管的能力

Bezenah, Jonathan R; Rioja, Ana Y; Juliar, Benjamin; Friend, Nicole; Putnam, Andrew J

A systems mechanobiology model to predict cardiac reprogramming outcomes on different biomaterials

利用系统力学生物学模型预测不同生物材料上心脏重编程的结果

Kong, Yen P; Rioja, Ana Y; Xue, Xufeng; Sun, Yubing; Fu, Jianping; Putnam, Andrew J

Endothelial sprouting and network formation in collagen- and fibrin-based modular microbeads

基于胶原蛋白和纤维蛋白的模块化微珠中的内皮细胞萌芽和网络形成

Rioja, Ana Y; Tiruvannamalai Annamalai, Ramkumar; Paris, Spencer; Putnam, Andrew J; Stegemann, Jan P

Vascular Network Formation by Human Microvascular Endothelial Cells in Modular Fibrin Microtissues

人微血管内皮细胞在模块化纤维蛋白微组织中形成血管网络

Tiruvannamalai Annamalai, Ramkumar; Rioja, Ana Y; Putnam, Andrew J; Stegemann, Jan P