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Merck
CN

915467

Sigma-Aldrich

LifeSupport

support slurry for FRESH bioprinting

别名:

support bath bioprinting

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关于此项目

UNSPSC代码:
12352201
NACRES:
NA.23
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质量水平

无菌性

sterile; irradiated

表单

powder

颜色

white to off-white

应用

LifeSupport is the support slurry for FRESH bioprinting. FRESH stands for Freeform Reversible Embedding of Suspended Hydrogels. It is a 3D bioprinting technique using a thermoreversible support bath to enable deposition of hydrogels in complex 3D structure. Each LifeSupport printing kit comes with 5 units of 2 grams of sterile LifeSupport powder. One gram of powder hydrates to approximately 10 mL of FRESH support material.

包装

One kit contains 5 units of 2 grams product

法律信息

LifeSupport is a trademark of Advanced BioMatrix, Inc.

储存分类代码

13 - Non Combustible Solids

WGK

WGK 1

闪点(°F)

Not applicable

闪点(°C)

Not applicable

法规信息

动植物源性产品

历史批次信息供参考:

分析证书(COA)

Lot/Batch Number

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Thomas J Hinton et al.
Science advances, 1(9), e1500758-e1500758 (2015-11-26)
We demonstrate the additive manufacturing of complex three-dimensional (3D) biological structures using soft protein and polysaccharide hydrogels that are challenging or impossible to create using traditional fabrication approaches. These structures are built by embedding the printed hydrogel within a secondary
Analysis and Classification of 3-D Printed Collagen-Bioglass Matrices for Cellular Growth Utilizing Artificial Neural Networks.
Schmitt T, et al
University Chemistry (2018)
Emerging Business Models Toward Commercialization of Bioprinting Technology.
Balakhovsky Y M, et al.
3D Printing and Biofabrication, 1-22 (2017)
G Filardo et al.
Bone & joint research, 8(2), 101-106 (2019-03-28)
Meniscal injuries are often associated with an active lifestyle. The damage of meniscal tissue puts young patients at higher risk of undergoing meniscal surgery and, therefore, at higher risk of osteoarthritis. In this study, we undertook proof-of-concept research to develop
S Fox et al.
Biomedical materials (Bristol, England), 14(4), 041001-041001 (2019-02-23)
Human autologous bioengineered skin has been successfully developed and used to treat skin injuries in a growing number of cases. In current clinical studies, the biomaterial used is fabricated via plastic compression of collagen hydrogel to increase the density and

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