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Key Documents

Safety Information

A9041

Sigma-Aldrich

Arg-Gly-Asp-Ser

≥95% (HPLC)

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About This Item

Empirical Formula (Hill Notation):
C15H27N7O8
CAS Number:
Molecular Weight:
433.42
MDL number:
UNSPSC Code:
12352209
PubChem Substance ID:
NACRES:
NA.32

biological source

synthetic

Quality Level

Assay

≥95% (HPLC)

form

powder

composition

Peptide content, ~70%

technique(s)

cell culture | mammalian: suitable

storage temp.

−20°C

SMILES string

N[C@@H](CCCNC(N)=N)C(=O)NCC(=O)N[C@@H](CC(O)=O)C(=O)N[C@@H](CO)C(O)=O

InChI

1S/C15H27N7O8/c16-7(2-1-3-19-15(17)18)12(27)20-5-10(24)21-8(4-11(25)26)13(28)22-9(6-23)14(29)30/h7-9,23H,1-6,16H2,(H,20,27)(H,21,24)(H,22,28)(H,25,26)(H,29,30)(H4,17,18,19)/t7-,8-,9-/m0/s1

InChI key

NNRFRJQMBSBXGO-CIUDSAMLSA-N

Gene Information

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Amino Acid Sequence

Arg-Gly-Asp-Ser

General description

The tetrapeptide Arg-Gly-Asp-Ser (RGDS) is a key component of the cell attachment domain of fibronectin. The RGDS sequence was found initially to promote the attachment of rat kidney fibroblasts (NRKcells) to fibronectin and synthetic fibronectin peptides coupled to protein-coated plastic. Further investigation indicated that the free RGDS peptide inhibited the attachment of NRK cells to fibronectin coated substrates. The RGDS sequence has been shown to occur in several other proteins, such as the λ receptor on E. coli and the Sindbis coat protein. RGDS is also a target sequence for spirochete adherence of the syphilis bacterium Treponema pallidum.

RGDS has been shown to block fibrinogen-induced aggregation of intact erythrocytes and specific binding of fibrinogen to erythrocyte membranes. The effect of RGDS on transforming growth factor ß1 (TGFß1) mRNA expression and secretion in cultured human mesangial cells has been investigated. RGDS has been utilized in a study of integrin-mediated signal transduction in cultured cells from the sponge Suberites domuncula. RGDS has been demonstrated
to mitigate the binding of Mycobacterium tuberculosis to murine alveolar macrophages

Application

Arg-Gly-Asp-Ser has been used:
  • to study its effects on cell attachment in rats
  • to analyse the interaction of fibrinogen with erythrocytes occurs through integrin related receptor
  • to pretreat the cells, to assess the role of integrin in the cell attachment process
  • to test its competition with platelet-secreted, nanosheet-adsorbed proteins for binding to glycoprotein IIIa (GPIIIa)

Packaging

Bottomless glass bottle. Contents are inside inserted fused cone.

Preparation Note

This product is soluble in water (1 mg/ml), yielding a
clear, colorless solution.

Other Notes

Lyophilized from 0.1% TFA in H2O

Storage Class Code

11 - Combustible Solids

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Personal Protective Equipment

dust mask type N95 (US), Eyeshields, Gloves

Regulatory Listings

Regulatory Listings are mainly provided for chemical products. Only limited information can be provided here for non-chemical products. No entry means none of the components are listed. It is the user’s obligation to ensure the safe and legal use of the product.

JAN Code

A9041-VAR:
A9041-5MG-PW:
A9041-10MG:
A9041-2MG-PW:
A9041-5MG:
A9041-BULK:
A9041-2MG:
A9041-10MG-PW:


Certificates of Analysis (COA)

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Bartley J Gill et al.
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Dunina BAY, et al.
The Journal of Membrane Biology, 198(2), 77-87 (2004)
Songfeng Han et al.
PloS one, 13(5), e0197031-e0197031 (2018-05-31)
Blood flow changes during bone graft healing have the potential to provide important information about graft success, as the nutrients, oxygen, circulating cells and growth factors essential for integration are delivered by blood. However, longitudinal monitoring of blood flow changes
Caner Nazli et al.
International journal of nanomedicine, 7, 1903-1920 (2012-05-24)
The objective of this study was to develop thin, biocompatible, and biofunctional hydrogel-coated small-sized nanoparticles that exhibit favorable stability, viability, and specific cellular uptake. This article reports the coating of magnetic iron oxide nanoparticles (MIONPs) with covalently cross-linked biofunctional polyethylene
Lian Leng et al.
Advanced materials (Deerfield Beach, Fla.), 24(27), 3650-3658 (2012-06-21)
The one-step, continuous formation of mosaic hydrogel sheets is presented. A microfluidic device allows controllable incorporation of secondary biopolymers within a flowing biopolymer sheet followed by a cross-linking step that retains the microscale composition. Information is encoded; mosaic stiffness and

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