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Merck

G5384

Gelatin-Agarose

saline suspension

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UNSPSC Code:
41106500
NACRES:
NA.56
MDL number:
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Nom du produit

Gelatin-Agarose, saline suspension

biological source

protein from Porcine skin

form

saline suspension

extent of labeling

≥3 mg per mL

matrix

cross-linked 4% beaded agarose

matrix activation

cyanogen bromide

matrix attachment

amino

matrix spacer

1 atom

storage temp.

2-8°C

Quality Level

Application

Gelatin-Agarose has been used:
  • in the isolation of exosomes from human plasma
  • to obtain fluorescent labeled enzyme For fluorescence photobleaching recovery (FPR) experiments
  • in the purifaction of matrix metalloproteinase-9 by affinity chromatography
Gelatin-agarose is an agarose in saline suspension used for affinity chromatography, protein chromatography and specialty resins. Gelatin-agarose has been used in studies informing pathology-related processes of tissue remodeling as well as sperm-egg interactions in mammals.

Physical form

Suspension in 0.5 M NaCl containing preservative

Classe de stockage

10 - Combustible liquids

wgk

WGK 3


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Mélanie Boisvert et al.
Biology of reproduction, 70(3), 656-661 (2003-10-31)
Bovine seminal plasma (BSP) contains a family of major proteins designated BSP-A1/A2, BSP-A3, and BSP-30kDa (collectively called BSP proteins) that bind to sperm at ejaculation and potentiate sperm capacitation. Homologous proteins have been identified in stallion, boar, goat, and ram
G A Piazza et al.
The Biochemical journal, 262(1), 327-334 (1989-08-15)
Dipeptidyl peptidase IV (DPP IV) is a cell surface glycoprotein which has been implicated in hepatocyte-extracellular matrix interactions [Hixson, DeLourdes, Ponce, Allison & Walborg (1984) Exp. Cell Res. 152, 402-414; Walborg, Tsuchida, Weeden, Thomas, Barrick, McEntire, Allison & Hixson (1985)
Substrate Recognition by Gelatinase A: The C-Terminal Domain Facilitates Surface Diffusion
Ivan EC, et al.
Biophysical Journal, 81(4), 2370-2377 (2001)
Toshiro Matsunaga et al.
Circulation, 105(18), 2185-2191 (2002-05-08)
The in vivo mechanism by which inhibition of NO synthase impairs ischemia-induced coronary vascular growth is unknown. We hypothesized that production of the growth inhibitor angiostatin increases during decreased NO production, blunting angiogenesis and collateral growth. Measurements were made in
Annick Bergeron et al.
Molecular reproduction and development, 71(4), 461-470 (2005-05-14)
Mammalian seminal plasma contains among others, two major families of proteins, namely spermadhesins and those proteins that contain fibronectin type II domains. Spermadhesins are the major proteins of boar and stallion seminal plasma and homologous proteins have been identified in

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