Biomimetic 3D Tissue Models for Advanced High-Throughput Drug Screening.
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In Vitro Model of the Epidermis: Connecting Protein Function to 3D StructureReproducible Construction of Surface Tension-Mediated Honeycomb Concave Microwell Arrays for Engineering of 3D Microtissues with Minimal Cell LossHigh-throughput fluorescence imaging approaches for drug discovery using in vitro and in vivo three-dimensional models3D bioprinting for engineering complex tissues.A high-throughput in vitro ring assay for vasoactivity using magnetic 3D bioprintingFunctional Coupling of Human Microphysiology Systems: Intestine, Liver, Kidney Proximal Tubule, Blood-Brain Barrier and Skeletal Muscle.3D bioengineered tissues: From advancements in in vitro safety to new horizons in disease modeling.Microengineered cancer-on-a-chip platforms to study the metastatic microenvironment.Muscular dystrophy in a dish: engineered human skeletal muscle mimetics for disease modeling and drug discovery.Bi-content micro-collagen chip provides contractility-based biomechanical readout for phenotypic drug screening with expanded and profiled targets.In vitro porcine blastocyst development in three-dimensional alginate hydrogels.Pancreatic cancer cell/fibroblast co-culture induces M2 like macrophages that influence therapeutic response in a 3D model.Methods to Evaluate Cell Growth, Viability, and Response to Treatment in a Tissue Engineered Breast Cancer Model.A portable and reconfigurable multi-organ platform for drug development with onboard microfluidic flow control.Innovative organotypic in vitro models for safety assessment: aligning with regulatory requirements and understanding models of the heart, skin, and liver as paradigms.In Vitro Microfluidic Models for Neurodegenerative Disorders.Three-dimensional microtissues as an in vitro model for personalized radiation therapy.Current State-of-the-Art 3D Tissue Models and Their Compatibility with Live Cell Imaging.JALA special issue: microengineered cell- and tissue-based assays for drug screening and toxicology applications.An Assessment of Myotube Morphology, Matrix Deformation, and Myogenic mRNA Expression in Custom-Built and Commercially Available Engineered Muscle Chamber Configurations.Engineered Human Contractile Myofiber Sheets as a Platform for Studies of Skeletal Muscle Physiology3D Printing, Ink Casting and Micromachined Lamination (3D PICLμM): A Makerspace Approach to the Fabrication of Biological MicrodevicesThe Importance of Biophysical and Biochemical Stimuli in Dynamic Skeletal Muscle Models
P2860
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P2860
Biomimetic 3D Tissue Models for Advanced High-Throughput Drug Screening.
description
2014 nî lūn-bûn
@nan
2014年の論文
@ja
2014年論文
@yue
2014年論文
@zh-hant
2014年論文
@zh-hk
2014年論文
@zh-mo
2014年論文
@zh-tw
2014年论文
@wuu
2014年论文
@zh
2014年论文
@zh-cn
name
Biomimetic 3D Tissue Models for Advanced High-Throughput Drug Screening.
@ast
Biomimetic 3D Tissue Models for Advanced High-Throughput Drug Screening.
@en
type
label
Biomimetic 3D Tissue Models for Advanced High-Throughput Drug Screening.
@ast
Biomimetic 3D Tissue Models for Advanced High-Throughput Drug Screening.
@en
prefLabel
Biomimetic 3D Tissue Models for Advanced High-Throughput Drug Screening.
@ast
Biomimetic 3D Tissue Models for Advanced High-Throughput Drug Screening.
@en
P2093
P2860
P356
P1476
Biomimetic 3D Tissue Models for Advanced High-Throughput Drug Screening
@en
P2093
Alec S T Smith
Saifullah Lone
Sunghoon Kwon
P2860
P304
P356
10.1177/2211068214557813
P577
2014-11-10T00:00:00Z