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TrueGel3D Hydrogel Kits

SLO-DEXTRAN, allow cell recovery, CD cell-degradable crosslinker

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PackungsgrößeSKUVerfügbarkeitPreis
1 kit
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€ 251,00

Über diesen Artikel

NACRES:
NA.71
UNSPSC Code:
12352207

€ 251,00


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shipped in

dry ice

storage temp.

−70°C

General description

The gel is formed by stable thioether bonds between thiol groups on CD cell-degradable crosslinker and thio-reactive groups on SLO-DEXTRAN. The polymer, SLO-DEXTRAN is functionalized with thiol-reactive groups which react with crosslinker at slower rate than maleimides in FAST-DEXTRAN. SLO-Dextran does not have sites for cell attachment, but it can be customized to conjugate RGD peptide using TrueGel3D RGD peptide (TRUERGD-1UM) prior to the crosslinking step.

The CD cell-degradable crosslinker is composed of matrix metalloprotease (MMP)-cleavable peptide (Pro-Leu-Gly-Leu-Trp-Ala), which allows cells to spread and migrate by secreting matrix metalloproteases (MMP1, MMP3, MMP7 and MMP9).

TrueGel3D enzymatic cell recovery solution (TRUEENZ-500UL) is used to dissolve dextran polymers for easy recovery of chemically fixed or live cells for post-culture analyses including RT-PCR, western blots and other molecular biological studies.

Application

TRUE7-1KT is used to generate hydrogels of different stiffness (0.15 to 5 KPa shear modulus) to mimic in-vivo conditions and to investigate the effect of mechanical stimuli on cell physiology and behavior. The SLO-DEXTRAN based hydrogels are used in microchannels and also in syringes for injection. These hydrogels are also employed to study cell migration of neutrophils, dendritic cells and lymphocytes.

Features and Benefits

  • Slow gelling (takes 2.5 minutes to 6 minutes, depends on gel stiffness)
  • Flexibility in modulating gel stiffness
  • Contains MMP-cleavable crosslinker
  • Allow cell recovery and post-culture analyses
  • Cell inert hydrogel (if not customized with RGD peptide)

Other Notes

TRUE7-1KT contains SLO-DEXTRAN solution in phosphate buffer and lyophilized CD cell-degradable crosslinker with reconstitution buffer and water.

Disclaimer

Avoid prolonged exposure of CD cell-degradable crosslinker to air.

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storage temp.

−70°C

storage temp.

−70°C

storage temp.

−70°C

storage temp.

−70°C

shipped in

dry ice

shipped in

dry ice

shipped in

dry ice

shipped in

dry ice


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Warning

Hazard Classifications

Eye Irrit. 2 - Met. Corr. 1 - Skin Irrit. 2

wgk

WGK 3

Lagerklasse

10 - Combustible liquids



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Protokolle

An advanced protocol is available for TrueGel 3D kits for 3D cell culture for peptides concentration or stiffness optimisation

TrueGel3D™ is a chemically defined hydrogel for 3D cell growth, facilitating microchannel filling with slow gelation.

Artikel

Troubleshoot TrueGel3D™ hydrogel formation and cell viability issues with RGD-degradable polymer and CD cell-degradable crosslinker.

Hydrogela are the most widely used systems for 3D cell culture. Learn more about this technology (what are hydrogels? How to chose?)

TrueGel3D™ is a synthetic hydrogels platform for 3D cell culture that aim to mimic the natural extracellular environment for more physiological culture conditions

Verwandter Inhalt

Explore our portfolio of 3D cell culture tools and technologies for any 3D cell line or application and discover organoids, hydrogels, ULA, microwell, or hydrogel plates, and more.


Omid Mashinchian et al.
eLife, 11 (2022-03-05)
Sustained exposure to a young systemic environment rejuvenates aged organisms and promotes cellular function. However, due to the intrinsic complexity of tissues it remains challenging to pinpoint niche-independent effects of circulating factors on specific cell populations. Here, we describe a



Global Trade Item Number

SKUGTIN
TRUE7-1KT04061835539307

Questions

  1. What is the protocol used to produce the Elastic Shear modulus diagram mentioned in the document titled "Advanced Protocol: How to Customize your TrueGel3D Hydrogel"?

    1 answer
    1. The Elastic Shear modulus diagram was produced by employing a protocol that included mixing the polymer components. Subsequently, the elastic shear modulus of each hydrogel was measured at 23°C after 20 minutes using a Malvern Kinexus Pro rotational Rheometer, following the manufacturer’s protocol.

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