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Collagen Mimetic peptides MAPTRIX-C-TAIPSCPEGTVPLYS

animal-free ECM peptides, solution, 0.5 mg/mL protein, suitable for cell culture

Synonyme(s) :

MAPTrix Technology

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A propos de cet article

UNSPSC Code:
12352202
NACRES:
NA.75
Form:
aqueous solution
Technique(s):
cell culture | mammalian: suitable
Concentration:
0.5 mg/mL protein
Mol wt:
~24.1 kDa


Nom du produit

MAPTRIX-C-TAIPSCPEGTVPLYS, Collagen Mimetic, aqueous solution

sterility

Filtered sterilized solution

form

aqueous solution

mol wt

~24.1 kDa

packaging

pkg of 2.5 mg

concentration

0.5 mg/mL protein

technique(s)

cell culture | mammalian: suitable

binding specificity

Domain: α3(IV) NC1
Binding Motif: TAIPSCPEGTVPLYS

shipped in

ambient

storage temp.

2-8°C

Application

MAPTrix Technology provides a true extracellular microenvironment (ECM) by presenting combinatorial peptide motifs. The ECM, defined by biochemical cues and physical cues, is a deciding factor in a wide range of cellular processes including cell adhesion, proliferation, differentiation, and expression of phenotype-specific functions.Currently existing technology offers simple and merely adequate environments that facilitate simple cell processes such as cellular adhesion.[1][2] The simple presentation of cell adhesion motifs is not optimal for controlling more integrated processes. Crosstalk among signaling pathways act synergistically to enhance cellular responses such as cell adhesion or proliferation.[3] A study showed that a combination of extracellular matrix derived peptides presented on a surface may enhance cell adhesion strength and focal adhesion assembly. The combinatorial presentation of ECM peptides on cell growth surfaces may also promote elevated proliferation rates of primary or stem cells.[4][5][6]

Features and Benefits

  • Biochemically-defined, animal-free cell culture surfaces designed to enhance cell performance
  • MAPTrix produces a uniform ECM surface that provides a highly controlled 2D extracellular microenvironment for cell cultures and related applications
  • Adhesion properties of the mussel adhesive protein makes the coating reproducible & reliable

Legal Information

MAPTrix is a trademark of Kollodis Biosciences

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Cet article
166314K162292K164422K
sterility

Filtered sterilized solution

sterility

Filtered sterilized solution

sterility

Filtered sterilized solution

sterility

Filtered sterilized solution

technique(s)

cell culture | mammalian: suitable

technique(s)

cell culture | mammalian: suitable

technique(s)

cell culture | mammalian: suitable

technique(s)

cell culture | mammalian: suitable

concentration

0.5 mg/mL protein

concentration

1.0 mg/mL protein

concentration

0.5 mg/mL protein

concentration

0.5 mg/mL protein

form

aqueous solution

form

aqueous solution

form

aqueous solution

form

aqueous solution

mol wt

~24.1 kDa

mol wt

~24.1 kDa

mol wt

~24.2 kDa

mol wt

~24.1 kDa

binding specificity

Domain: α3(IV) NC1
Binding Motif: TAIPSCPEGTVPLYS

binding specificity

Domain: α3(IV) NC1
Binding Motif: TAIPSCPEGTVPLYS

binding specificity

Receptor: α6β1
Domain: α1 LG2 - AG32
Binding Motif: TWYKIAFQRNRK

binding specificity

Receptor: αvβ3, α5β1
Domain: γ1 chain - C16
Binding Motif: KAFDITYVRLKF


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Classe de stockage

12 - Non Combustible Liquids



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S J Fashena et al.
Nature cell biology, 2(12), E225-E229 (2001-01-09)
Over the past twenty years, intensive research has enabled us to identify components of specific signalling pathways downstream of an array of adhesion and growth-factor receptors. The first Gordon Research Conference on 'Signalling by Adhesion Receptors', which took place in
Catherine D Reyes et al.
Journal of cellular physiology, 217(2), 450-458 (2008-07-10)
Cell adhesion to extracellular matrix (ECM) components through cell-surface integrin receptors is essential to the formation, maintenance and repair of numerous tissues, and therefore represents a central theme in the design of bioactive materials that successfully interface with the body.
Ying Meng et al.
FASEB journal : official publication of the Federation of American Societies for Experimental Biology, 24(4), 1056-1065 (2009-11-26)
Human embryonic stem (hES) cells are pluripotent, capable of differentiating into any cell type of the body, and therefore have the ability to provide insights into mechanisms of human development and disease, as well as to provide a potentially unlimited



Numéro d'article de commerce international

RéférenceGTIN
166312K-2.5MG04061838748898

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