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Simlukafusp Alfa ELISA Kit (DC440028)

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Overview
Catalog No.DC440028
Description
Simlukafusp Alfa ELISA Kit (DC440028) — Quantitative sandwich ELISA for Simlukafusp Alfa. Sample: Plasma, Serum. Range: 0.31-5 μg/mL. Sensitivity: 0.156 μg/ml.
Highlights
  • Sandwich Format — High specificity, reliable quantification.
  • High Sensitivity — Optimized for low-abundance target detection.
  • Ready-to-Use — Complete kit with pre-coated plates included.
Sample typePlasma, Serum
Sensitivity0.156 μg/ml
Range0.31-5 μg/mL
Accession Q12884
Applications ELISA
Detection method Colorimetric
Assay type Quantitative
Recovery 80-120%
Shipping 2-8 ℃
Stability and Storage The stability of ELISA kit is determined by the loss rate of activity. The loss rate of this kit is less than 10% prior to the expiration date under appropriate storage condition.
Specifications

Simlukafusp Alfa

Alternate NamesFAP-IL2v, RO6874281/RG7461
Background

Prolyl endopeptidase FAP (Simlukafusp Alfa) is a ~87 kDa protein. Cell surface glycoprotein serine protease that participates in extracellular matrix degradation and involved in many cellular processes including tissue remodeling, fibrosis, wound healing, inflammation and tumor growth. Both plasma membrane and soluble forms exhibit post-proline cleaving endopeptidase activity, with a marked preference for Ala/Ser-Gly-Pro-Ser/Asn/Ala consensus sequences, on substrate such as alpha-2-antiplasmin SERPINF2 and SPRY2. Degrade also gelatin, heat-denatured type I collagen, but not native collagen type I and IV, vitronectin, tenascin, laminin, fibronectin, fibrin or casein. Also has dipeptidyl peptidase activity, exhibiting the ability to hydrolyze the prolyl bond two residues from the N-terminus of synthetic dipeptide substrates provided that the penultimate residue is proline, with a preference for Ala-Pro, Ile-Pro, Gly-Pro, Arg-Pro and Pro-Pro. Natural neuropeptide hormones for dipeptidyl peptidase are the neuropeptide Y (NPY), peptide YY (PYY), substance P (TAC1) and brain natriuretic peptide 32 (NPPB).

1. Lee, KN. et al. (2004) Blood 103, 3783-8. PMID: 14751930
2. Lee, KN. et al. (2006) Blood 107, 1397-404. PMID: 16223769
3. Edosada, CY. et al. (2006) The Journal of biological chemistry 281, 7437-44. PMID: 16410248
4. Edosada, CY. et al. (2006) FEBS letters 580, 1581-6. PMID: 16480718
5. Meadows, SA. et al. (2007) Biochemistry 46, 4598-605. PMID: 17381073
6. Aggarwal, S. et al. (2008) Biochemistry 47, 1076-86. PMID: 18095711
7. Huang, CH. et al. (2011) Journal of biochemistry 149, 685-92. PMID: 21288888
8. Keane, FM. et al. (2013) FEBS open bio 4, 43-54. PMID: 24371721
9. Levy, MT. et al. (1999) Hepatology (Baltimore, Md.) 29, 1768-78. PMID: 10347120
10. Mueller, SC. et al. (1999) The Journal of biological chemistry 274, 24947-52. PMID: 10455171
Note For Research Use Only.
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References
Formula
Mass (g) = Concentration (mol/L) × Volume (L) × MW (g/mol)
Enter any 2 of Mass, Concentration, Volume + Molecular Weight to solve for the unknown.
Mass
=
Concentration
×
Volume
Molecular Weight *
g/mol
Formula
C₁ × V₁ = C₂ × V₂
Enter any 3 of the 4 values to solve for the unknown.
Stock Solution
C₁ (Stock Conc.)
×
V₁ (Stock Vol.)
=
Working Solution
C₂ (Working Conc.)
×
V₂ (Working Vol.)
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