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

Reprogrammable 4D tissue engineering hydrogel scaffold via reversible ion printing

通过可逆离子打印技术制备可重编程的4D组织工程水凝胶支架

Ding, Aixiang; Tang, Fang; Ayyagari, Sriramya; Alsberg, Eben

Cell Contractile Forces Drive Spatiotemporal Morphogenesis in 4D Bioprinted Living Constructs

细胞收缩力驱动4D生物打印活体结构的时空形态发生

Ding, Aixiang; Cleveland, David S; Gasvoda, Kaelyn L; Alsberg, Eben

Cell Contractile Force-Mediated Morphogenetic Tissue Engineering via 4D Printed Degradable Hydrogel Scaffolds

通过4D打印可降解水凝胶支架介导细胞收缩力的形态发生组织工程

Ding, Aixiang; Gasvoda, Kaelyn L; Cleveland, David S; Ayyagari, Sriramya; Alsberg, Eben

Clickable PEG-norbornene microgels support suspension bioprinting and microvascular assembly

可点击的PEG-降冰片烯微凝胶支持悬浮生物打印和微血管组装

Zhang, Irene W; Choi, Lucia S; Friend, Nicole E; McCoy, Atticus J; Midekssa, Firaol S; Hu, Michael M; Alsberg, Eben; Lesher-Pérez, Sasha Cai; Stegemann, Jan P; Baker, Brendon M; Putnam, Andrew J

CYR61 delivery promotes angiogenesis during bone fracture repair.

CYR61 递送可促进骨折修复过程中的血管生成

Lang Annemarie, Eastburn Emily A, Younesi Mousa, Nijsure Madhura P, Siciliano Carly, Pranatharthi Haran Annapurna, Panebianco Christopher J, Seidl Elizabeth, Tang Rui, Alsberg Eben, Willett Nick J, Gottardi Riccardo, Huh Dongeun, Boerckel Joel D

Mesenchymal Stromal Cell Chondrogenic Differentiation Induced by Continuous Stiffness Gradient in Photocrosslinkable Hydrogels.

光交联水凝胶中连续刚度梯度诱导间充质基质细胞软骨分化

Mierswa Sabrina C, Wheeler Erika E, Apsey Ayla N, Jeon Oju, Alsberg Eben, Leach J Kent

Three-dimensional tissue platform co-laid with native collagen fibers and cells for phenotypic screening of stem cell interactions

三维组织平台与天然胶原纤维和细胞共铺,用于干细胞相互作用的表型筛选

Tang, Rui; Ding, Aixiang; Fu, Chen; Umerori, Kentaro; Rivera, Marvin; Alt, Daniel S; Carmean, Christopher M; Li, Li; Eppell, Steven J; Wynshaw-Boris, Anthony; Alsberg, Eben

Reprogrammable 4D Tissue Engineering Hydrogel Scaffold via Reversible Ion Printing

基于可逆离子打印的可重编程4D组织工程水凝胶支架

Ding, Aixiang; Tang, Fang; Alsberg, Eben

In situ cell-only bioprinting of patterned prevascular tissue into bioprinted high-density stem cell-laden microgel bioinks for vascularized bone tissue regeneration

利用原位细胞生物打印技术,将图案化的血管前组织打印到高密度干细胞负载微凝胶生物墨水中,用于血管化骨组织的再生。

Jeon, Oju; Park, Hyoeun; Lee, Min Suk; Alsberg, Eben

Emerging granular hydrogel bioinks to improve biological function in bioprinted constructs

新型颗粒状水凝胶生物墨水可改善生物打印构建体的生物功能

Tuftee, Cody; Alsberg, Eben; Ozbolat, Ibrahim Tarik; Rizwan, Muhammad