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GEL-MA INX© X210

From  BIO INX©
sterile, for Material Extrusion (FDM/FFM)
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Pack Qty.
Bioink
Density (D) ~1 g/cm³
Storage temp. +2 to +8 °C
Transport temp. cooled
WGK 1

Suitable for bioprinting using extrusion-based additive manufacturing (FDM/FFM)
Gelatin-based Bioink for 3D Bioprinting

GEL-MA INX© X210 is a freeze-dried gelatin-based ink exhibiting ideal extracellular matrix-mimicking properties as it is derived from natural collagen, the main component of the natural extra-cellular matrix. Gel-MA derived from gelatin type B shows ideal properties as it is cell-interactive due to the presence of RGD motifs in its backbone. It is biodegradable, can be remodeled by cells, and can be printed by taking advantage of its temperature-dependent physical gelation behavior. It becomes physiologically stable after photo-crosslinking, thereby forming a non-soluble network. As a result of all these beneficial properties Gel-MA has emerged to be one of the gold standards in the field of tissue engineering and biofabrication.
Product details

€134.40/Pack Qty. 

excl. VAT. | 300 mg per Pack Qty.

Art. No. 371N.1

Available
Additional transportation costs apply for this item.
Ready for dispatch in 1-2 weeks
from 6 Pack Qty. €127.68/Pack Qty.
from 24 Pack Qty. €120.96/Pack Qty.

Product details

Sterile


GEL-MA INX© X210 sterile, for Material Extrusion (FDM/FFM)

GEL-MA INX© X210 is a freeze-dried gelatin-based ink exhibiting ideal extracellular matrix-mimicking properties as it is derived from natural collagen, the main component of the natural extra-cellular matrix. Gel-MA derived from gelatin type B shows ideal properties as it is cell-interactive due to the presence of RGD motifs in its backbone. It is biodegradable, can be remodeled by cells, and can be printed by taking advantage of its temperature-dependent physical gelation behavior. It becomes physiologically stable after photo-crosslinking, thereby forming a non-soluble network. As a result of all these beneficial properties Gel-MA has emerged to be one of the gold standards in the field of tissue engineering and biofabrication.

Compatible with:
  • Regemat3D
  • FelixBio
  • Cellink BIOX
  • Brinter One

Product is provided as a 300 mg white solid in a glass vial.


Publications

Agten H. et al. "In vitro and in vivo evaluation of 3D Constructs engineered with human iPSC-derived chondrocytes in gelatin methacryloyl hydrogel" - Biotechnology and Bioengineering, 119(10)

Arslan A. et al. "Increasing the Microfabrication Performance of Synthetic Hydrogel Precursors through Molecular Design" - Biomacromolecules 2021, 22, 12, 4919 - 4932

Advantages:
  • Standard Gel-MA
  • Excellent biological performance
  • For cell encapsulation & cell seeding


Not a medical device / Not an IVD product
Technical Information
Appearance White lyophilizate 
Material gelatin-based 
pH value 6.5 - 8.5  
Viscosity at high shear < 10 Pa·s
Storage Modulus after UV curing 6 - 15 kPa
Degree of functionalization 70 - 80 %
Pack Qty. 300 mg
Application Cell seeding 
Cell encapsulation 
GEL-MA INX© X210
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Art. No. Pack Qty. Price Quantity
371N.1 300 mg

€134.40

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Downloads / MSDS

General information

GEL-MA INX©X100 GEL-MA INX©X210 GEL-MA INX©X100 X-Pure EASYGEL INX©X100 SOLID INX©X100 READYGEL INX©X100 BIORES INX©X100 DEGRES INX©X100 HYDROBIO INX©X100 HYDROBIO INX©X400 HYDROTECH INX©X200 DEGRAD INX©X100
Technology FDM FDM FDM FDM FDM VBP DLP DLP MPL MPL MPL MPL
Material Nat. Nat. Nat. Nat. Synth. Nat. Nat. Synth. Nat. Nat. Synth. Synth.
Hydrogel +

+ +

+ +

+ + +

Cell Seeding + + + +

+ + + + +

Cell Encapsulation + + + +

+

+

No Cell Interaction

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+ +
Biodegradability + + + + + + + + + +

+
Flexibility

+

+++

+++ ++
Stiffness

+

+

+++ ++
Resolution + + + + + ++ +++ +++ ++++ ++++ ++++ +++++
Writing Speed

+++ + + ++ ++ ++ ++
GMP-like + Low Endo

+

Shape Memory

+

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Shear Thinning

+

CURASOL© (< 65°C)

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Art. No. 371L 371N 371P 371T 371X 3721 387L 371Y 372C 372H 372E 372A