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Merck

935425

Sigma-Aldrich

Gelatin from cold water fish skin

low endotoxin

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About This Item

UNSPSCコード:
51241857
NACRES:
NA.21

品質水準

フォーム

powder (chunks or fibers)

不純物

<10 CFU/g Bioburden (fungal)
<10 CFU/g Bioburden (total aerobic)
125 EU/g Endotoxin

white to pale yellow

保管温度

2-8°C

詳細

Gelatin is widely used for tissue engineering and 3D Bioprinting applications. Gelatin is derived from natural extracellular matrix (ECM) components. Due to its low cost, abundance, and retention of natural cell binding motifs, gelatin has become a highly sought material for tissue engineering applications. While gelatin from porcine skin is known for its thermoreversible gelling properties, Gelatin from cold water fish skin has low gelling and melting points. This gelatin will not gel at 10°C, hence they do not have bloom strength. This unique gelatin property makes this an attractive biomaterial which are hindered by the higher thermogelation property of porcine skin such as vat-polymerization based bioprinting and microfluidics.

アプリケーション

  • Hydrogels
  • Tissue engineering
  • Bioprinting
  • Drug delivery system

特徴および利点

  • Naturally derived polymer
  • Low gelling and melting points
  • Thermoreversible gelling properties
  • Low endotoxin and low bioburden
Low Endotoxin, low bioburden: Endotoxins have been demonstrated negatively impact cellular growth, morphology, differentiation, inflammation and protein expression. Bioburden is defined as the number of contaminated organisms found in a given amount of material. We test each lot for endotoxins as well as total bioburden (aerobic and fungal) to minimize unwanted interactions. For more information visit: Cell Culture FAQs: Bacterial Endotoxin Contamination

保管分類コード

11 - Combustible Solids

WGK

nwg

引火点(°F)

Not applicable

引火点(℃)

Not applicable


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Svetlana R Derkach et al.
Polymers, 12(12) (2020-12-24)
This review considers the main properties of fish gelatin that determine its use in food technologies. A comparative analysis of the amino acid composition of gelatin from cold-water and warm-water fish species, in comparison with gelatin from mammals, which is
Hee Jeong Yoon et al.
PloS one, 11(10), e0163902-e0163902 (2016-10-11)
Gelatin methacryloyl (GelMA) is a versatile biomaterial that has been used in various biomedical fields. Thus far, however, GelMA is mostly obtained from mammalian sources, which are associated with a risk of transmission of diseases, such as mad cow disease

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