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Merck
CN

926051

Sigma-Aldrich

TissueFab® bioink Conductive

UV/365 nm, low endotoxin

别名:

3D Bioprinting, Bioink, GelMA, TissueFab

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About This Item

UNSPSC代码:
12352201
NACRES:
NA.25

质量水平

无菌性

0.2 μm filtered

形式

viscous liquid

杂质

≤5 CFU/g Bioburden: Aerobic
≤5 CFU/g Bioburden: Fungal
<50 EU/mL Endotoxin

颜色

black

pH值(酸碱度)

6.5-7.5

粘度

2-20 cP(37 °C)

应用

3D bioprinting

相容性

for use with 3D bioprinting, extrusion bioprinting

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一般描述

TissueFab® bioink Conductive Vis/ 405 nm, low endotoxin, is an electrically conductive bioink for 3D bioprinting applications. It is intended to generate ideal cell environments for neural, muscle and cardiac cells, which enable them to transfer electrical signals, enhancing cell communication and capacity for network formation. It is based on gelatin methacryloyl (GelMA) hydrogel system. Carbon nanotubes (CNTs) are incorporated to introduce conductivity, meanwhile enhance the mechanical properties of GelMA hydrogels.

Additional Information:

The protocol for this material can be found In the Documentation Section under ″More Documents″.

应用

TissueFab® bioink Conductive Vis/ 405 nm, low endotoxin is a ready-to-use bioink which is formulated for electrical conductivity, high cell viability, and printability and is designed for extrusion-based 3D bioprinting and subsequent crosslinking with exposure to 405 nm visible light. TissueFab® bioink Conductive Vis/ 405 nm, low endotoxin bioinks can be used with most extrusion-based bioprinters, are biodegradable, and are compatible with human mesenchymal stem cells and other diverse cell types.TissueFab® bioink Conductive Vis/ 405 nm, low endotoxin enables the precise fabrication of 3D cell models and tissue constructs for research in 3D cell biology, tissue engineering, in vitro tissue models, and regenerative medicine.

法律信息

TISSUEFAB is a registered trademark of Merck KGaA, Darmstadt, Germany

WGK

WGK 3

法规信息

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Carbon-nanotube-embedded hydrogel sheets for engineering cardiac constructs and bioactuators
Shin SR, Jung SM, et al
ACS Nano, 7(3), 2369-2380 (2013)

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