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

Tailoring human joint-on-a-chip: from biological principles, materials, to disease modeling

定制人体芯片关节:从生物学原理、材料到疾病建模

Wang, Xuejiao; Ye Ong, Louis Jun; Karperien, Marcel; Wen, Chunyi

A Synovium-on-Chip Platform to Study Multicellular Interactions in Arthritis

用于研究关节炎中多细胞相互作用的滑膜芯片平台

Spoelstra, Laurens R; Semmekrot, Fleur R; Araújo-Gomes, Nuno; Wijnperle, Daniël; Helsen, Monique M A; Van Den Bosch, Martijn H J; Segerink, Loes I; Le Gac, Séverine; Karperien, Marcel

Genetic Engineering of VHH Antibody Fragments for Efficient Site-Specific Conjugation to Polysaccharides.

利用基因工程技术对VHH抗体片段进行高效位点特异性偶联,以与多糖结合

Zhong Lin, Morshuis Lisanne C M, Koerselman Michelle, Memelink Angela, Kolecka Anna, Heukers Raimond, Verrips Theo, Karperien Marcel, Zoetebier Bram

Dissecting SOX9 dynamics reveals its differential regulation in osteoarthritis

解剖 SOX9 动力学揭示其在骨关节炎中的差异调节

Kannan Govindaraj, Sakshi Kannan, Rodrigo Coutinho de Almeida, Lucas Jansen Klomp, Marcel Karperien, Ingrid Meulenbelt, Janine N Post

Dextran-tryamine hydrogel maintains position and integrity under simulated loading in a human cadaver knee model

在人体尸体膝关节模型中,葡聚糖-三甲胺水凝胶在模拟负荷下能够保持其位置和完整性。

van der Weiden, G S; Mastbergen, S C; Both, S K; Karperien, M; Lafeber, F P; van Egmond, N; Custers, R J H

Microencapsulated stem cells reduce cartilage damage in a material dependent manner following minimally invasive intra-articular injection in an OA rat model

在 OA 大鼠模型中,微囊化干细胞通过微创关节内注射以材料依赖的方式减少软骨损伤

Castro Johnbosco, Lisanne Karbaat, Nicoline M Korthagen, Kelly Warmink, Michelle Koerselman, Katja Coeleveld, Malin Becker, Bas van Loo, Bram Zoetebier, Sanne Both, Harrie Weinans, Marcel Karperien, Jeroen Leijten

Choice of Protein, Not Its Amyloid-Fold, Determines the Success of Amyloid-Based Scaffolds for Cartilage Tissue Regeneration

蛋白质的选择,而不是其淀粉样蛋白折叠,决定了基于淀粉样蛋白的软骨组织再生支架的成功率

Maurice C E van Dalen, Marcel Karperien, Mireille M A E Claessens, Janine N Post

Steering Stem Cell Fate within 3D Living Composite Tissues Using Stimuli-Responsive Cell-Adhesive Micromaterials

利用刺激响应细胞粘附微材料控制 3D 活体复合组织内的干细胞命运

Tom Kamperman, Niels G A Willemen, Cindy Kelder, Michelle Koerselman, Malin Becker, Luanda Lins, Castro Johnbosco, Marcel Karperien, Jeroen Leijten

Emulating the chondrocyte microenvironment using multi-directional mechanical stimulation in a cartilage-on-chip

利用软骨芯片中的多向机械刺激模拟软骨细胞微环境

Carlo Alberto Paggi, Jan Hendriks, Marcel Karperien, Séverine Le Gac

Tethering Cells via Enzymatic Oxidative Crosslinking Enables Mechanotransduction in Non-Cell-Adhesive Materials

通过酶促氧化交联束缚细胞可在非细胞粘附材料中实现机械转导

Tom Kamperman, Sieger Henke, João F Crispim, Niels G A Willemen, Pieter J Dijkstra, Wooje Lee, Herman L Offerhaus, Martin Neubauer, Alexandra M Smink, Paul de Vos, Bart J de Haan, Marcel Karperien, Su Ryon Shin, Jeroen Leijten