This kit does detect ferric iron (Fe3+) in fixed tissue, blood, and bone marrow samples. The kit does not detect ferrous iron (Fe2+).
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NACRES:
NA.21
UNSPSC Code:
41116121
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IVD
for in vitro diagnostic use
technique(s)
microbe id | staining: suitable
application(s)
clinical testing
diagnostic assay manufacturing
hematology
histology
storage temp.
15-25°C
General description
HEMATOGNOST Fe™ - staining kit for the detection of free ionic iron (Fe3+) in cells, is used for human-medical cell diagnosis and serves the purpose of the hematological and histological investigation of sample material of human origin. HEMATOGNOST Fe™ is a staining kit for performing the so-called Prussian blue (Berlin blue) reaction in hematological and histological specimen material. This staining kit contains all the reagents necessary for the detection of free ionic iron. In the Prussian blue reaction, ionic iron (Fe3+) not bound to the heme structure reacts with potassium hexacyanoferrate(II) in hydrochloric solution. It precipitates as an insoluble complex salt in the blood, bone-marrow, or tissue cells and thus localizes free cellular iron: 4 Fe3+ + 3 K4Fe(CN)6 = Fe4[Fe(CN)6]3 + 12 K+
As a measure to achieve the best possible visual differentiation of the iron deposits in the cytoplasma, this is counterstained with nuclear fast red solution (Nuclear fast red-aluminum sulfate solution 0.1% (Product number 1.00121), resulting in a tender pink color. If further, more detailed information on the cell morphology is required, counterstaining with any of the other familiar “classical” methods such as Giemsa, (Giemsa, Product number 1.09204), May-Grünwald (May-Grünwald eosin methylene blue solution, Product number 1.01424), hemalum (Mayer′s hemalum solution, Product numer 1.09249), etc. can also be employed.
The Prussian blue reaction can also be used to stain specimens already stained by one of these classical procedures for the additional detection of iron. Repeat counterstaining is not necessary in this case.
The staining kit is sufficient for 6 - 8 stainings with up to 16 slides. The staining kit is developed and registered as CE / IVD product for applications in diagnostics. For more details, please see instructions for use (IFU). The IFU can be downloaded from this webpage.
As a measure to achieve the best possible visual differentiation of the iron deposits in the cytoplasma, this is counterstained with nuclear fast red solution (Nuclear fast red-aluminum sulfate solution 0.1% (Product number 1.00121), resulting in a tender pink color. If further, more detailed information on the cell morphology is required, counterstaining with any of the other familiar “classical” methods such as Giemsa, (Giemsa, Product number 1.09204), May-Grünwald (May-Grünwald eosin methylene blue solution, Product number 1.01424), hemalum (Mayer′s hemalum solution, Product numer 1.09249), etc. can also be employed.
The Prussian blue reaction can also be used to stain specimens already stained by one of these classical procedures for the additional detection of iron. Repeat counterstaining is not necessary in this case.
The staining kit is sufficient for 6 - 8 stainings with up to 16 slides. The staining kit is developed and registered as CE / IVD product for applications in diagnostics. For more details, please see instructions for use (IFU). The IFU can be downloaded from this webpage.
Analysis Note
Potassium hexacyanoferrate II (Reagent 1): 4.5 - 5.5 %
Hydrochloric acid (Reagent 2): 4.5 - 5.5 %
Density (Reagent 3 d 20 °C/4 °C): 1.040 - 1.060
Suitability for microscopy: passes test
Hydrochloric acid (Reagent 2): 4.5 - 5.5 %
Density (Reagent 3 d 20 °C/4 °C): 1.040 - 1.060
Suitability for microscopy: passes test
Legal Information
HEMATOGNOST FE is a trademark of Merck KGaA, Darmstadt, Germany
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Danger
Hazard Classifications
Eye Dam. 1 - Met. Corr. 1
wgk
WGK 1
flash_point_f
Not applicable
flash_point_c
Not applicable
hcodes
Classe de stockage
12 - Non Combustible Liquids
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Hi, I am creating a cell model by exposing cell to Ferric. Could this product applied to examining the intracellular Fe3+ of my cells (basically BV2 cells)
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