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

Muscle-fiber-inspired nanofibrillar microbundles induce myogenic differentiation in human adipose-derived stem cells

受肌肉纤维启发的纳米纤维微束诱导人脂肪干细胞向肌源性细胞分化

Mussoni, Camilla; Heinze, Corinna; Ryma, Matthias; Jun, Indong; Lamberger, Zan; Andelovic, Kristina; Kade, Juliane C; Stahlhut, Philipp; Lang, Gregor; Ahmad, Taufiq; Groll, Jürgen

Giving It a Twist: One-Step Fabrication of Aligned Biomimetic Yarn Scaffolds via Rotational Melt Electrofibrillation

扭转乾坤:通过旋转熔融电纤化一步法制备取向仿生纱线支架

Lamberger, Zan; Priebe, Vivien; Stahlhut, Philipp; Andelovic, Kristina; Pattappa, Girish; Docheva, Denitsa; Heilig, Sven; Hermanns, Heike M; Ahmad, Taufiq; Groll, Jürgen; Lang, Gregor; Ryma, Matthias

Fibrillar Bundles as Fibrous Filler Materials for Attaining Cell Anisotropy in Bioprinting

纤维束作为纤维填充材料在生物打印中实现细胞各向异性

Heilig, Sven; Lamberger, Zan; Sprenger, Lys; Priebe, Vivien; Mussoni, Camilla; Docheva, Denitsa; Andelovic, Kristina; Groll, Jürgen; Salehi, Sahar; Lang, Gregor; Ryma, Matthias

Outermost Cationic Surface Charge of Layer-by-Layer Films Prevents Endothelial Cells Migration for Cell Compartmentalization in Three-Dimensional Tissues.

层层薄膜的最外层阳离子表面电荷可阻止内皮细胞迁移,从而在三维组织中实现细胞分隔

Zeng Jinfeng, Heilig Sven, Ryma Matthias, Groll Jürgen, Li Congju, Matsusaki Michiya

Bioassembly of Myoblast Spheroids in Electrofibrillated Scaffolds for 3D Muscle Tissue Biofabrication

在电纤维化支架中生物组装成肌细胞球体用于三维肌肉组织生物制造

Heinze, Corinna; Mussoni, Camilla; Ryma, Matthias; Gergely, Csaba; Lamberger, Zan; Schäfer, Anna; Andelovic, Kristina; Stahlhut, Philipp; Lang, Gregor; Groll, Jürgen; Ahmad, Taufiq

A Versatile Method to Produce Monomodal Nano- to Micro-Fiber Fragments as Fillers for Biofabrication.

一种用于生产单峰纳米至微米纤维碎片作为生物制造填料的多功能方法

Lamberger Zan, Priebe Vivien, Ryma Matthias, Lang Gregor

Bridging the Gap: Unlocking the Potential of Biofabrication for Applications in In Vitro Testing

弥合差距:释放生物制造在体外测试应用中的潜力

Ryma, Matthias; Scheibel, Thomas

Translation of Collagen Ultrastructure to Biomaterial Fabrication for Material-Independent but Highly Efficient Topographic Immunomodulation

将胶原蛋白超微结构转化为生物材料制造,实现不依赖材料但高效的拓扑免疫调节

Ryma, Matthias; Tylek, Tina; Liebscher, Julia; Blum, Carina; Fernandez, Robin; Böhm, Christoph; Kastenmüller, Wolfgang; Gasteiger, Georg; Groll, Jürgen