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Rapid 3D Bioprinting of Multicellular Model Recapitulating Pterygium Microenvironment
Skeletal muscle tissue engineering (SMTE) has recently emerged to address major clinical challenges such as volumetric muscle loss. Here, we report a rotary wet-spinning (RoWS) biofabrication technique for producing human myo-substitutes with biomimetic architectures and functions. Here, we demonstr...
ORGANISM(S): Homo sapiens (Human) 
2025-10-20 | PXD043605 | Pride
3D-Bioprinting allows the establishment of long-term 3D culture model for Chronic Lymphocytic Leukemia cells
3D Bioprinting Lobule-like Hepatorganoids with Induced Vascularization for Orthotopic Implantation
Establishing a reproducible approach to study cellular functions of plants cells with 3D bioprinting
Pterygium is an ocular surface disorder with high prevalence that can lead to vision impairment. As a pathological outgrowth of conjunctiva, pterygium involves neovascularization and chronic inflammation, but its pathogenesis remains largely unknown. Over the last decade, various types of disease mo...
ORGANISM(S): Homo sapiens 
2022-06-01 | GSE180343 | GEO
We analyze the effect of magnetic 3D bioprinting using NanoShuttle-PL on the proteome of primary human skin fibroblasts and epidermal squamous cell carcinoma cells. NanoStuttle-PL employs magnetic nanoparticles that interact electrostatically with cells rendering them magnetic and allowing manipulat...
ORGANISM(S): Homo sapiens (Human) 
2021-07-16 | PXD023701 | Pride
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