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

Correction: Bortezomib-releasing silica-collagen xerogels for local treatment of osteolytic bone- and minimal residual disease in multiple myeloma

更正:用于局部治疗多发性骨髓瘤溶骨性骨病和微小残留病灶的硼替佐米释放二氧化硅-胶原蛋白干凝胶

Hose, Dirk; Ray, Seemun; Rößler, Sina; Thormann, Ulrich; Schnettler, Reinhard; de Veirman, Kim; Khassawna, Thaqif El; Heiss, Christian; Hild, Anne; Zahner, Daniel; Alagboso, Francisca; Henss, Anja; Beck, Susanne; Emde-Rajaratnam, Martina; Burhenne, Jürgen; Bamberger, Juliane; Menu, Eline; de Bruyne, Elke; Gelinsky, Michael; Kampschulte, Marian; Rohnke, Marcus; Wenisch, Sabine; Vanderkerken, Karin; Hanke, Thomas; Seckinger, Anja; Alt, Volker

Prolonged Cell Encapsulation and Gravity-independent Filamented Light Biofabrication of Muscle Constructs

肌肉构建体的延长细胞封装和非重力依赖性丝状光生物制造

Winkelbauer, Michael; Janiak, Jakub; Windisch, Johannes; Liu, Hao; Bulatova, Maria; Von Witzleben, Max; Oliveira, Hugo; Dani, Finn; Richter, Richard Frank; L'Heureux, Nicolas; Bar-Nur, Ori; Gelinsky, Michael; Zenobi-Wong, Marcy; Chansoria, Parth

Corrigendum to 'Transforming spinal surgery with innovations in biologics and additive manufacturing' [Mater. Today Bio. 2025 May 13; 32: 101853]

对“利用生物制剂和增材制造创新变革脊柱外科”一文的更正[Mater. Today Bio. 2025 年 5 月 13 日;32:101853]

Tian, Xinggui; Liu, Yakui; Liu, Suihong; Tian, Qinyu; Raina, Deepak Bushan; Gelinsky, Michael; Zwingenberger, Stefan

Transforming spinal surgery with innovations in biologics and additive manufacturing

利用生物制剂和增材制造技术的创新,变革脊柱外科手术

Tian, Xinggui; Liu, Yakui; Liu, Suihong; Tian, Qinyu; Raina, Deepak Bushan; Gelinsky, Michael; Zwingenberger, Stefan

Uniting 4D Printing and Melt Electrowriting for the Enhancement of Regenerative Small Diameter Vascular Grafts.

结合 4D 打印和熔融电泳技术增强再生小直径血管移植片的性能。

von Witzleben Max, Gasiūnaitė Akvilė, Ihle Marlene, Akkineni Ashwini Rahul, Schütz Kathleen, Ahlfeld Tilman, Gelinsky Michael, Lode Anja, Duin Sarah

Novel Protein-Rich Bioactive Bioink Stimulates Cellular Proliferation and Response in 3D Bioprinted Volumetric Constructs.

新型富含蛋白质的生物活性生物墨水可刺激 3D 生物打印体积结构中的细胞增殖和反应

Liu Suihong, Kilian David, Bernhardt Anne, Wirsig Katharina, von Witzleben Max, Duin Sarah, Lode Anja, Hu Qingxi, Gelinsky Michael

Erythroid precursors regulate local oxygen tension and repair outcomes in the bone marrow niche.

红系前体细胞调节骨髓微环境中的局部氧张力和修复结果。

Lang Annemarie, Collins Joseph M, Nijsure Madhura P, Belali Simin, Khan Mohd Parvez, Moharrer Yasaman, Schipani Ernestina, Yien Yvette Y, Fan Yi, Gelinsky Michael, Vinogradov Sergei A, Koch Cameron, Boerckel Joel D

Combination of Extrusion and Drop-on-Demand Bioprinting in One Process Enables the Local Placement of Cells or Signaling Factors Into (Bio) Printed Hydrogel Structures

将挤出和按需滴涂生物打印技术结合在一个工艺中,可以实现将细胞或信号因子局部放置到(生物)打印的水凝胶结构中。

Dani, Finn; Cubo-Matteo, Nieves; Schlicht, Leonie; Gelinsky, Michael; Lode, Anja

Local erythropoiesis directs oxygen availability in bone fracture repair

局部红细胞生成控制骨折修复中的氧气供应

Annemarie Lang, Joseph M Collins, Madhura P Nijsure, Simin Belali, Mohd Parvez Khan, Yasaman Moharrer, Ernestina Schipani, Yvette Y Yien, Yi Fan, Michael Gelinsky, Sergei A Vinogradov, Cameron Koch, Joel D Boerckel

Biofabrication's Contribution to the Evolution of Cultured Meat

生物制造对人造肉发展演变的贡献

Albrecht, Franziska Brigitte; Ahlfeld, Tilman; Klatt, Annemarie; Heine, Simon; Gelinsky, Michael; Kluger, Petra Juliane