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Merck
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Key Documents

G1910

Sigma-Aldrich

Gomme gellane

Gelrite®

Synonyme(s) :

Agent gélifiant de substitution à l’agar-agar

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About This Item

Numéro CAS:
Numéro CE :
Numéro MDL:
Code UNSPSC :
10171502
Nomenclature NACRES :
NA.72

Niveau de qualité

Application(s)

agriculture

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Description générale

Gelrite, gellan gum, is recommended as a gelling agent for use in place of agar in microbiological assay and tissue culture media. Gellan gum is used in a wide variety of immobilization matrices. It forms a hard gel at low concentrations in the presence of an electrolyte. Gellan is a linear tetrasaccharide composed of D-glucose, L-rhamnose, and D-glucuronic acid in the ratio of 2:1:1, linked by β (1 → 4) glycosidic bond.
Gelrite, gellan gum, is recommended as a gelling agent for use in place of agar in microbiological assay and tissue culture media. Gellan gum is used in a wide variety of immobilization matrices. It forms a hard gel at low concentrations in the presence of an electrolyte. Gellan is a linear tetrasaccharide composed of D-glucose, L-rhamnose, and D-glucuronic acid in the ratio of 2:1:1, linked by β (1 → 4) glycosidic bond.

Application

Gelrite, gellan gum, is recommended as a gelling agent for use in place of agar in microbiological media. Gellan gum is used in a wide variety of immobilization matricies.
Gelzan CM has been used:
  • in the synthesis of gellan-pullulan nanogel via chemical crosslinking
  • in the synthesis of gellan-pullulan hydrogel
  • with KNOP medium to maintain and prepare Anthoceros agrestis thallus tissue sample for imaging

Gelzan CM has been used:
  • in the synthesis of gellan-pullulan nanogel via chemical crosslinking
  • in the synthesis of gellan-pullulan hydrogel
  • with KNOP medium to maintain and prepare Anthoceros agrestis thallus tissue sample for imaging

Caractéristiques et avantages

  • Transparent and colorless agar alternative
  • Mechanically robust
  • Disperses in water with ease
  • Low viscosity
  • The resulting gel has a high melting temperature

Informations légales

Gelrite is a registered trademark of CP Kelco U.S., Inc.
Gelzan is a trademark of CP Kelco U.S., Inc.

Code de la classe de stockage

11 - Combustible Solids

Classe de danger pour l'eau (WGK)

WGK 2

Point d'éclair (°F)

Not applicable

Point d'éclair (°C)

Not applicable

Équipement de protection individuelle

Eyeshields, Gloves, type N95 (US)


Certificats d'analyse (COA)

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Consulter la Bibliothèque de documents

Timothy E L Douglas et al.
Biomedical materials (Bristol, England), 12(2), 025015-025015 (2017-02-23)
Injectable composites for tissue regeneration can be developed by dispersion of inorganic microparticles and cells in a hydrogel phase. In this study, multifunctional carbonate microparticles containing different amounts of calcium, magnesium and zinc were mixed with solutions of gellan gum
Marco A Lopez-Heredia et al.
Journal of tissue engineering and regenerative medicine, 12(8), 1825-1834 (2018-04-28)
Mineralization of hydrogels is desirable prior to applications in bone regeneration. CaCO3 is a widely used bone regeneration material, and Mg, when used as a component of calcium phosphate biomaterials, has promoted bone-forming cell adhesion and proliferation and bone regeneration.
Gustavo de Medeiros et al.
Nature communications, 6, 8881-8881 (2015-11-26)
Selective-plane illumination microscopy has proven to be a powerful imaging technique due to its unsurpassed acquisition speed and gentle optical sectioning. However, even in the case of multiview imaging techniques that illuminate and image the sample from multiple directions, light
Timothy E L Douglas et al.
Journal of biomedical materials research. Part A, 106(3), 822-828 (2017-10-24)
Mineralized hydrogels are increasingly gaining attention as biomaterials for bone regeneration. The most common mineralization strategy has been addition of preformed inorganic particles during hydrogel formation. This maintains injectability. One common form of bone cement is formed by mixing particles
Ken-Ichi Konagaya et al.
Plant biotechnology (Tokyo, Japan), 37(2), 147-156 (2020-08-22)
Sugi (Cryptomeria japonica D. Don) is the most important afforestation coniferous tree in Japan. Coniferous trees normally have a long juvenile period and require a long cultivation time for breeding. Through a traditional breeding project that began in the 1950s

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