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935778

Sigma-Aldrich

Multiphoton lithography bioink kit

new

polyester-based biodegradable bioink

Synonym(s):

DEGRAD INX X100

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About This Item

description

Ultimate Strength 5-10 MPa
Youngs modulus 50-60 MPa

Quality Level

color

orange-yellow, liquid

viscosity

0.5 -2 Pa.s

elongation

At break - 20-30%

storage temp.

2-8°C

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General description

This polyester-based synthetic resin for multi-photon lithography (MPL) based 3D bioprinting applications combines the benefits of biocompatibility, flexibility, and easy proccessability, resulting in high resolution 3D bioprinted features.

The multiphoton lithography bioink kit is a ready to use formulation that can be processed via a MPL based printer after a short pre-heating process. The resin can be processed at high scanning speeds (up to at least 600mm/s) which is favorable for shorter fabrication times.

Application

Applications:
3D bioprinting
Tissue engineering
High resolution printing of complex and open geometries with mechanical robustness

Features and Benefits

- Biocompatibility - expression biocompatibility with no toxic effect on living cells

- Biodegradability - long term degradation profile when in contact with water, cell culture media, or biological fluids

- Proccessability - Easy processing into open and complex architectures with minimal deformation

- High resolution - Resolution of <500nm

- Flexibility - Can be used to print strong yet flexible structures that are favorable for easy handling and processing

- Easy to handle - Provided as ready to print formulation

- Reproducibility - Production under strict quality control to provide a material that delivers every time

Signal Word

Danger

Hazard Statements

Hazard Classifications

Carc. 2 - Eye Irrit. 2 - Flam. Liq. 2 - STOT SE 3

Target Organs

Central nervous system, Respiratory system

Supplementary Hazards

Storage Class Code

3 - Flammable liquids

WGK

WGK 3

Flash Point(F)

5.9 °F

Flash Point(C)

-14.5 °C


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Olivier Guillaume et al.
Acta biomaterialia, 165, 72-85 (2022-03-16)
Since its inception, tissue engineering and regenerative medicine (TERM) has been relying on either scaffold-based or scaffold-free strategies. Recent reports outlined the possibility of a synergistic, convergence approach, referred to as the third TERM strategy, which could alleviate bottlenecks of

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