3d Mps Platform

A 3D MPS platform, or three-dimensional microphysiological systems platform, uses engineered human cells and tissues to model organ structure and function in a controlled laboratory environment. Cells are organized within a three-dimensional scaffold, matrix, or microfluidic device, where spatial architecture, cell-to-cell interactions, biochemical signals, and fluid flow recreate key features of human physiology. In medicine, these platforms support studies of disease mechanisms, drug efficacy, toxicity, and personalized responses to treatment. By providing more physiologically relevant models than many conventional two-dimensional cultures, 3D MPS platforms can improve preclinical research and help guide the development of safer, more effective therapies.

3d Mps Platform - Related Videos

Research

JoVE Journal - Bioengineering

Alginate Microcapsule as a 3D Platform for Propagation and Differentiation of Human Embryonic Stem Cells (hESC) to Different Lineages

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Cited by 20 •

2012

We have optimized a microencapsulation technique as an effective 3D platform for propagation and differentiation of embryonic stem cells to endoderm and dopaminergic (DA) neurons. It also provides an opportunity for immune-isolation of cells from the host during transplantation. This platform can be adapted for other cell types.

A High-Throughput Platform for Culture and 3D Imaging of Organoids

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Cited by 4 •

2022

This paper presents a fabrication protocol for a new type of culture substrate with hundreds of microcontainers per mm2, in which organoids can be cultured and observed using high-resolution microscopy. The cell seeding and immunostaining protocols are also detailed.

Developing 3D Organized Human Cardiac Tissue within a Microfluidic Platform

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Cited by 4 •

2021

The goal of this protocol is to explain and demonstrate the development of a three-dimensional (3D) microfluidic model of highly aligned human cardiac tissue, composed of stem cell-derived cardiomyocytes co-cultured with cardiac fibroblasts (CFs) within a biomimetic, collagen-based hydrogel, for applications in cardiac tissue engineering, drug screening, and disease modeling.

Three Dimensional Vestibular Ocular Reflex Testing Using a Six Degrees of Freedom Motion Platform

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Cited by 4 •

2013

A method is described to measure three-dimensional vestibulo ocular reflexes (3D VOR) in humans using a six degrees of freedom (6DF) motion simulator. The gain and misalignment of the 3D angular VOR provide a direct measure of the quality of vestibular function. Representative data on healthy subjects are...

Comparable Decellularization of Fetal and Adult Cardiac Tissue Explants as 3D-like Platforms for In Vitro Studies

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Cited by 5 •

2019

The cardiac extracellular matrix (ECM) is a complex network of molecules that orchestrate key processes in tissues and organs while enduring physiological remodeling throughout life. Standardized decellularization of fetal and adult hearts permits comparative experimental studies of both tissues in a 3D context by capturing native architecture and biomechanical properties.

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