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Merck

G1910

Sigma-Aldrich

Gelzan CM 结冷胶

Gelrite®

别名:

植物凝胶, 琼脂替代品胶凝剂

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About This Item

CAS号:
EC號碼:
MDL號碼:
分類程式碼代碼:
10171502
NACRES:
NA.72

應用

agriculture

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一般說明

结冷胶,吉兰糖胶,可替代琼脂用作微生物和组织培养基中的凝胶剂。结冷胶广泛用于各种固定基质。在电解液的存在下,可以低浓度形成坚实的凝胶。结冷胶是由2:1:1的D-葡萄糖、L-鼠李糖和D-葡糖醛酸经β(1→4)糖苷键连接而成的线性四糖。
结冷胶,吉兰糖胶,可替代琼脂用作微生物和组织培养基中的凝胶剂。结冷胶广泛用于各种固定基质。在电解液的存在下,可以低浓度形成坚实的凝胶。结冷胶是由2:1:1的D-葡萄糖、L-鼠李糖和D-葡糖醛酸经β (1→4)糖苷键连接而成的线性四糖。

應用

Gelzan CM结冷胶已用于:
  • 结冷胶-普鲁兰多糖纳米凝胶的化学交联合成
  • 结冷胶-普鲁兰多糖水凝胶合成
  • 加入KNOP培养基,维持和制备角苔(Anthoceros agrestis)叶状体组织样品进行成像

Gelzan CM结冷胶已用于:
  • 结冷胶-普鲁兰多糖纳米凝胶的化学交联合成
  • 结冷胶-普鲁兰多糖水凝胶合成
  • 加入KNOP培养基,维持和制备角苔(Anthoceros agrestis)叶状体组织样品进行成像

结冷胶,吉兰糖胶,被推荐用作微生物培养基中琼脂的凝胶剂。 吉兰糖胶被广泛应用于各种固定基质中。

特點和優勢

  • 透明和无色的琼脂替代品
  • 机械强度高
  • 在水中轻松分散
  • 低粘度
  • 融胶温度高

法律資訊

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

儲存類別代碼

11 - Combustible Solids

水污染物質分類(WGK)

WGK 2

閃點(°F)

Not applicable

閃點(°C)

Not applicable

個人防護裝備

Eyeshields, Gloves, type N95 (US)


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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
Valeria Imperato et al.
Genes, 10(6) (2019-06-20)
Hydrocarbon-degrading bacteria are important resources for use in phytoremediation applications. Yet, for many hydrocarbonoclastic strains the genetic information regarding pollutant degradation and detoxification has not been thoroughly revealed. In this study, hydrocarbon-degrading bacteria were isolated from a long-term oil-polluted soil
Caroline Teyssier et al.
Physiologia plantarum, 141(2), 152-165 (2010-10-26)
An integrated physiological and proteomic approach was used to investigate the effects of high gellan gum concentration in the medium during maturation of somatic embryos (SE) of hybrid larch, by comparing embryos incubated in media with a high gellan gum
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

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