Details
Stereochemistry | ABSOLUTE |
Molecular Formula | 2C7H13O8.Fe |
Molecular Weight | 506.192 |
Optical Activity | UNSPECIFIED |
Defined Stereocenters | 10 / 10 |
E/Z Centers | 0 |
Charge | 0 |
SHOW SMILES / InChI
SMILES
[Fe++].OC[C@@H](O)[C@@H](O)[C@H](O)[C@@H](O)[C@@H](O)C([O-])=O.OC[C@@H](O)[C@@H](O)[C@H](O)[C@@H](O)[C@@H](O)C([O-])=O
InChI
InChIKey=HSPKORNFDDMCAR-XBQZYUPDSA-L
InChI=1S/2C7H14O8.Fe/c2*8-1-2(9)3(10)4(11)5(12)6(13)7(14)15;/h2*2-6,8-13H,1H2,(H,14,15);/q;;+2/p-2/t2*2-,3-,4+,5-,6-;/m11./s1
Molecular Formula | C7H13O8 |
Molecular Weight | 225.1733 |
Charge | -1 |
Count |
|
Stereochemistry | ABSOLUTE |
Additional Stereochemistry | No |
Defined Stereocenters | 5 / 5 |
E/Z Centers | 0 |
Optical Activity | UNSPECIFIED |
Molecular Formula | Fe |
Molecular Weight | 55.845 |
Charge | 2 |
Count |
|
Stereochemistry | ACHIRAL |
Additional Stereochemistry | No |
Defined Stereocenters | 0 / 0 |
E/Z Centers | 0 |
Optical Activity | NONE |
DescriptionSources: https://www.ncbi.nlm.nih.gov/pubmed/14116934http://www.foodchemadditives.com/products/Ferrous-Lactatehttp://nj.gov/health/eoh/rtkweb/documents/fs/0928.pdfDOI: 10.1021/ja00949a016 Retrived from http://pubs.acs.org/doi/abs/10.1021/ja00949a016https://www.drugs.com/inactive/ferrous-oxide-389.htmlhttp://www.druglead.com/cds/ferrous-iodide.htmlhttp://www.drugfuture.com/chemdata/ferroglycine-sulfate.htmlhttps://www.ncbi.nlm.nih.gov/pubmed/16694502Curator's Comment: description was created based on several sources, including
http://www.minapharm.com/Public/ProductDetails.aspx?ProductCode=FERRO_SANO&langParam=en
Sources: https://www.ncbi.nlm.nih.gov/pubmed/14116934http://www.foodchemadditives.com/products/Ferrous-Lactatehttp://nj.gov/health/eoh/rtkweb/documents/fs/0928.pdfDOI: 10.1021/ja00949a016 Retrived from http://pubs.acs.org/doi/abs/10.1021/ja00949a016https://www.drugs.com/inactive/ferrous-oxide-389.htmlhttp://www.druglead.com/cds/ferrous-iodide.htmlhttp://www.drugfuture.com/chemdata/ferroglycine-sulfate.htmlhttps://www.ncbi.nlm.nih.gov/pubmed/16694502
Curator's Comment: description was created based on several sources, including
http://www.minapharm.com/Public/ProductDetails.aspx?ProductCode=FERRO_SANO&langParam=en
Iron(II) gluconate (also known as a ferrous gluconate) is used in the treatment of hypochromic anemia. The real problem of iron therapy is not the theoretical utilization of iron, or the reticulocyte response, or even the daily increase of hemoglobin. These are important only as they indicate the return of the patients' blood to normal in a reasonably short time without undue inconvenience. Most patients suffering from hypochromic anemia respond well to most forms of iron when administered in adequate dosage. For the patients who cannot tolerate the usual iron compounds, it is important to have a medication which is effective and which causes minimum disturbance. Ferrous gluconate is such a medicament.
Originator
Approval Year
Conditions
Condition | Modality | Targets | Highest Phase | Product |
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Palliative | Unknown Approved UseUnknown |
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Palliative | Unknown Approved UseUnknown |
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Primary | Ferro Sanol Duodenal Approved UseFerro Sanol is an iron substitute in case of latent or manifest iron deficiency with and without development of anaemia. |
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PubMed
Title | Date | PubMed |
---|---|---|
FERROUS IODIDE AS A SUBSTITUTE FOR VITAMIN A IN RATS. | 1932 Jul 1 |
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THE ADMINISTRATION OF FERROUS IODIDE AND LINOLEIC ACID TO RATS DEPRIVED OF VITAMIN A. | 1932 Sep 30 |
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THE USE OF FERROUS GLUCONATE IN THE TREATMENT OF HYPOCHROMIC ANEMIA. | 1937 Jul |
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[Ferrous lactate as an oral iron preparation for therapeutic use]. | 1954 Nov 27 |
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Clinical appraisal of drugs with special reference to a new chelate hematinic. | 1957 Jul 11 |
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[FERROUS ASPARTATE IN THERAPY]. | 1964 Jan 1 |
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Determination of water in ferrous lactate by near infrared reflectance spectroscopy with a fibre-optic probe. | 1997 Oct |
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Decreased treatment failure rates following duodenal release ferrous glycine sulfate in iron deficiency anemia associated with autoimmune gastritis and Helicobacter pylori gastritis. | 2007 |
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Reversal of multidrug resistance by magnetic Fe3O4 nanoparticle copolymerizating daunorubicin and 5-bromotetrandrine in xenograft nude-mice. | 2009 |
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Bioleaching of heavy metals from sewage sludge by indigenous iron-oxidizing microorganisms using ammonium ferrous sulfate and ferrous sulfate as energy sources: a comparative study. | 2009 Nov 15 |
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Endothelial dysfunction and inflammation induced by iron oxide nanoparticle exposure: Risk factors for early atherosclerosis. | 2011 Jun 10 |
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Tolerability of different oral iron supplements: a systematic review. | 2013 Apr |
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Effect of abomasal ferrous lactate infusion on phosphorus absorption in lactating dairy cows. | 2013 Jul |
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A practical and successful desensitization protocol for immediate hypersensitivity reactions to iron salts. | 2014 |
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Synthesis of phosphabenzenes by an iron-catalyzed [2+2+2] cycloaddition reaction of diynes with phosphaalkynes. | 2015 Jun 22 |
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Reactivity enhancement of iron sulfide nanoparticles stabilized by sodium alginate: Taking Cr (VI) removal as an example. | 2017 Jul 5 |
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Continuous sulfidogenic wastewater treatment with iron sulfide sludge oxidation and recycle. | 2017 May 1 |
Sample Use Guides
In Vivo Use Guide
Sources: https://www.drugs.com/ppa/ferrous-salts.html
Unknown
Route of Administration:
Oral
Substance Class |
Chemical
Created
by
admin
on
Edited
Sat Dec 16 20:00:36 GMT 2023
by
admin
on
Sat Dec 16 20:00:36 GMT 2023
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Record UNII |
13809H6DVG
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Record Status |
Validated (UNII)
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Record Version |
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Related Record | Type | Details | ||
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PARENT -> SALT/SOLVATE | |||
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PARENT -> SALT/SOLVATE |
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ACTIVE MOIETY |