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Z687529

3D Biotek β-TCP discs

9.5 mm discs for bone repair and bone tissue engineering, sterile, 3/cs

Synonym(s):

3D, 3D Cell Culture, cell scaffolds, tissue engineering scaffolds, tissue scaffolds

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About This Item

UNSPSC Code:
41161502
NACRES:
NB.22

sterility

sterile (β-TCP discs are individually packaged and terminally sterilized using γ-radiation.)

feature

bioabsorbable and non-cytotoxic

packaging

case of 3
pack of 3

manufacturer/tradename

3D Biotek TCP48-3

diam.

~9.5 mm

suitability

suitable for (bone repair and bone tissue engineering)

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General description

  • Ideal Reference Biomaterial for Bone Tissue Engineering Research

β-TCP has been extensively studied as bone repair and bone tissue engineering scaffold material. It has excellent biocompatibility and osteo-conductivity. Therefore, these β-TCP discs can serve as an ideal reference surface for your bone and other tissue engineering studies.


  • Pre-sterilized and Ready to Use

β-TCP discs are individually packaged and terminally sterilized using β-radiation. They are ready to use!


  • Bioabsorbable and Non-Cytotoxic

β-TCP discs are made from 100% synthetic tri-calcium phosphate. ?-TCP has been extensively studied and used as bioabsorbable biomaterial. β-TCP has excellent biocompatibility and is non- cytotoxic.


  • Consistent Quality

β-TCP discs are made from 100% synthetic β-TCP with consistent quality to ensure experimental reproducibility when using different batches of β-TCP discs.

Application

Ideal Reference Biomaterial for Bone Tissue Engineering Research

β-TCP has been extensively studied as bone repair and bone tissue engineering scaffold material. It has excellent biocompatibility and osteo-conductivity. Therefore, these β-TCP discs can serve as an ideal reference surface for your bone and other tissue engineering studies.

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Carlos E Caicedo-Carvajal et al.
Journal of tissue engineering, 2011, 362326-362326 (2011-11-11)
Isolation and amplification of primary lymphoma cells in vitro setting is technically and biologically challenging task. To optimize culture environment and mimic in vivo conditions, lymphoma cell lines were used as a test case and were grown in 3-dimension (3D)

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