U.S. Department of Health & Human Services Divider Arrow National Institutes of Health Divider Arrow NCATS

Details

Stereochemistry ABSOLUTE
Molecular Formula 2C6H11O7.Cu
Molecular Weight 453.841
Optical Activity UNSPECIFIED
Defined Stereocenters 8 / 8
E/Z Centers 0
Charge 0

SHOW SMILES / InChI
Structure of COPPER GLUCONATE

SMILES

[Cu++].OC[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([O-])=O

InChI

InChIKey=OCUCCJIRFHNWBP-IYEMJOQQSA-L
InChI=1S/2C6H12O7.Cu/c2*7-1-2(8)3(9)4(10)5(11)6(12)13;/h2*2-5,7-11H,1H2,(H,12,13);/q;;+2/p-2/t2*2-,3-,4+,5-;/m11./s1

HIDE SMILES / InChI

Description
Sources: https://dailymed.nlm.nih.gov/dailymed/drugInfo.cfm?setid=a84d61a4-8e7f-4be1-aba6-f633b334aafc | http://www.sciencedirect.com/science/article/pii/S0167488912000158https://www.ncbi.nlm.nih.gov/pubmed/16971307DOI: 10.1107/s0567740869001725 Retrived from http://scripts.iucr.org/cgi-bin/paper?S0567740869001725https://www.accessdata.fda.gov/scripts/cdrh/cfdocs/cfcfr/CFRSearch.cfm?fr=522.518 | http://www.worldofchemicals.com/chemicals/chemical-properties/cupric-glycinate.htmlhttps://www.ncbi.nlm.nih.gov/pubmed/8556785 | https://www.ncbi.nlm.nih.gov/pubmed/2135524https://www.ncbi.nlm.nih.gov/pubmed/15704330 | https://www.ncbi.nlm.nih.gov/pubmed/12425037 | https://www.ncbi.nlm.nih.gov/pubmed/1599240 | http://www.certisusa.com/pdf-labels/Kocide3000_label.pdf | http://www.pesticideinfo.org/Detail_Chemical.jsp?Rec_Id=PC33524http://www.emdmillipore.com/US/en/product/Copper-di-ammonium-Titriplex-solution,MDA_CHEM-105217http://www.drugfuture.com/chemdata/tetraamminecopper-sulfate.html | https://cameochemicals.noaa.gov/chemical/3026https://www3.epa.gov/pesticides/chem_search/ppls/019713-00509-20110705.pdfhttp://fs1.agrian.com/pdfs/CORE_7.5_Copper_EDTA_Label.pdfhttps://www.ncbi.nlm.nih.gov/pubmed/6526221http://www.ema.europa.eu/docs/en_GB/document_library/Maximum_Residue_Limits_-_Report/2009/11/WC500013010.pdfhttps://www.ncbi.nlm.nih.gov/pubmed/24106015 | https://www.ncbi.nlm.nih.gov/pubmed/20942456http://www.drugfuture.com/chemdata/schweizer-s-reagent.html | http://pubs.acs.org/doi/abs/10.1021/ed062p878?journalCode=jceda8 | http://pubs.acs.org/doi/abs/10.1021/ed019p356
Curator's Comment: description was created based on several sources, including https://www.copper.org/resources/properties/compounds/other_compounds.html | http://www.vitamins-supplements.org/dietary-minerals/copper.php | https://dailymed.nlm.nih.gov/dailymed/fda/fdaDrugXsl.cfm?setid=bea888b4-9cc6-49da-89e6-5c273b974ed1

Tetraamminecopper dihydroxide also known as Schweizer's Reagent dissolves cellulose; used in rayon production.

CNS Activity

Curator's Comment: Known to be CNS active in zebrafish. Human data not available.

Originator

Sources: http://pubs.acs.org/doi/abs/10.1021/ja01512a012Schweizer, J. Prakt. Chem. 72, 109, 344 (1857).
Curator's Comment: http://www.drugfuture.com/chemdata/schweizer-s-reagent.html

Approval Year

Targets

Targets

Conditions

Conditions

ConditionModalityTargetsHighest PhaseProduct
Preventing
Unknown

Approved Use

Unknown
Preventing
Unknown

Approved Use

Unknown
Preventing
Cupric glycinate

Approved Use

Indications for use. For beef calves and beef cattle for the prevention of copper deficiency, or when labeled for veterinary prescription use, for the prevention and/or treatment of copper deficiency alone or in association with molybdenum toxicity.
Primary
COPPER•MAX

Approved Use

Unknown
Primary
Unknown

Approved Use

Unknown
Preventing
Unknown

Approved Use

Unknown
Primary
Unknown

Approved Use

Unknown
Diagnostic
Unknown

Approved Use

Unknown
Preventing
COPPER

Approved Use

Copper 0.4 mg/mL (Cupric Chloride Injection, USP) is indicated for use as a supplement to intravenous solutions given for total parenteral nutrition (TPN). Administration helps to maintain copper serum levels and to prevent depletion of endogenous stores and subsequent deficiency symptoms.
Preventing
COPINOX

Approved Use

Copinox 4g is indicated for the prevention and treatment of copper deficiency in cattle and sheep.
PubMed

PubMed

TitleDatePubMed
Copper Fluoride Luminescence during UV Photofragmentation of Bis(1,1,1,5,5,5-hexafluoro-2,4-pentanedionato)copper(II) in the Gas Phase.
1996 Aug 14
X-ray absorption spectroscopy study of a copper-containing material after thermal treatment.
2006 Apr 17
Enhanced copper release from pipes by alternating stagnation and flow events.
2007 Nov 1
Copper(II) acetate-catalyzed addition of arylboronic acids to aromatic aldehydes.
2009 Jan 16
Copper oxide nanoparticles induce oxidative stress and cytotoxicity in airway epithelial cells.
2009 Oct
Generation of oxidant response to copper and iron nanoparticles and salts: Stimulation by ascorbate.
2009 Oct 30
Insight in the transport behavior of copper glycinate complexes through the porcine gastrointestinal membrane using an Ussing chamber assisted by mass spectrometry analysis.
2010 Apr
Copper-promoted coupling of vinyl boronates and alcohols: a mild synthesis of allyl vinyl ethers.
2010 Feb 3
Regulation of plasminogen activator inhibitor-1 expression in endothelial cells with exposure to metal nanoparticles.
2010 May 19
A chelator-free multifunctional [64Cu]CuS nanoparticle platform for simultaneous micro-PET/CT imaging and photothermal ablation therapy.
2010 Nov 3
Zinc prevents the copper-induced damage of cultured astrocytes.
2010 Oct
Anti-ovulatory activity of H2 receptor blockers in albino rabbits--a preliminary study.
2011 Apr
Molecular responses of human lung epithelial cells to the toxicity of copper oxide nanoparticles inferred from whole genome expression analysis.
2011 Dec 27
Zeta potential and solubility to toxic ions as mechanisms of lung inflammation caused by metal/metal oxide nanoparticles.
2012 Apr
Design, synthesis, antioxidant, and anti-breast cancer activities of novel diethyl(alkyl/aryl/heteroarylamino)(4-(pyridin-2-yl)phenyl)methylphosphonates.
2013 May
Cytotoxicity in the age of nano: the role of fourth period transition metal oxide nanoparticle physicochemical properties.
2013 Nov 25
The modality of cell-particle interactions drives the toxicity of nanosized CuO and TiO₂ in human alveolar epithelial cells.
2013 Oct 24
Activation of Erk and p53 regulates copper oxide nanoparticle-induced cytotoxicity in keratinocytes and fibroblasts.
2014
Interference of CuO nanoparticles with metal homeostasis in hepatocytes under sub-toxic conditions.
2014
Effects of different sources of copper on Ctr1, ATP7A, ATP7B, MT and DMT1 protein and gene expression in Caco-2 cells.
2014 Jul
Electron induced surface reactions of organometallic metal(hfac)₂ precursors and deposit purification.
2014 Jun 11
CuO nanoparticles induce apoptosis by impairing the antioxidant defense and detoxification systems in the mouse hippocampal HT22 cell line: protective effect of crocetin.
2015 Jun
Unusual 4-arsonoanilinium cationic species in the hydrochloride salt of (4-aminophenyl)arsonic acid and formed in the reaction of the acid with copper(II) sulfate, copper(II) chloride and cadmium chloride.
2017 Apr 1
Amino acid-mediated 'turn-off/turn-on' nanozyme activity of gold nanoclusters for sensitive and selective detection of copper ions and histidine.
2017 Jun 15
Patents

Sample Use Guides

In Vivo Use Guide
Copper 0.4 mg/mL (Cupric Chloride Injection) contains 0.4 mg copper/mL and is administered intravenously only after dilution. The additive should be diluted in a volume of fluid not less than 100 mL. For the adult receiving total parenteral nutrition, the suggested additive dosage is 0.5 to 1.5 mg copper/day (1.25 to 3.75 mL/day). For pediatric patients, the suggested additive dosage is 20 mcg copper/kg/day (0.05 mL/kg/day). Infants weighing less than 1500 gm may have increased requirements because of their low body reserves and increased requirements for growth.
Route of Administration: Intravenous
Human Endometrial Stromal Cells were treated with non-toxic concentrations of copper ions (0-250 uM). mRNA expressions of insulin-like growth factor binding protein (IGFBP-1), prolactin (PRL), Mn-SOD, and FOXO1 were down-regulated during decidualization following the treatments with 100 or 250 uM copper ions. Meanwhile, the amount of malonaldehyde in the supernatant of cells was increased.
Name Type Language
COPPER GLUCONATE
FCC   HSDB   INCI   MART.   USP   VANDF   WHO-DD  
INCI  
Official Name English
CUPRUM GLUCONICUM
Common Name English
CUPRIC GLUCONATE [VANDF]
Common Name English
GLUCONIC ACID, COPPER(2+) SALT (2:1), D-
Common Name English
COPPER GLUCONATE [VANDF]
Common Name English
COPPER GLUCONATE [MART.]
Common Name English
CUPRIC GLUCONATE [MI]
Common Name English
COPPER (AS GLUCONATE)
Common Name English
GLUCONIC ACID, COPPER(2+) SALT
Common Name English
COPPER(II) GLUCONATE
Common Name English
COPPER(II)GLUCONATE
Common Name English
COPPER GLUCONATE [FCC]
Common Name English
COPPER GLUCONATE [USP MONOGRAPH]
Common Name English
COPPER GLUCONATE [INCI]
Common Name English
COPPER, BIS (D-GLUCONATO-O(SUP 1),O(SUP 2))-
Common Name English
COPPER D-GLUCONATE (1:2)
Common Name English
Copper gluconate [WHO-DD]
Common Name English
CUPRIC GLUCONATE
MI   VANDF  
Common Name English
COPPER(2+) D-GLUCONATE, (1:2)
Common Name English
COPPER GLUCONATE [HSDB]
Common Name English
Classification Tree Code System Code
CFR 21 CFR 184.1260
Created by admin on Fri Dec 15 15:03:08 GMT 2023 , Edited by admin on Fri Dec 15 15:03:08 GMT 2023
FDA ORPHAN DRUG 522516
Created by admin on Fri Dec 15 15:03:08 GMT 2023 , Edited by admin on Fri Dec 15 15:03:08 GMT 2023
Code System Code Type Description
EVMPD
SUB13457MIG
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PRIMARY
FDA UNII
RV823G6G67
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MERCK INDEX
m3900
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PRIMARY Merck Index
EPA CompTox
DTXSID4035960
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RXCUI
2839
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PRIMARY RxNorm
NCI_THESAURUS
C1505
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CONCEPT Dietary Supplement
SMS_ID
100000092221
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HSDB
261
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DRUG BANK
DB11246
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PUBCHEM
10692
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CAS
527-09-3
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ECHA (EC/EINECS)
208-408-2
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DAILYMED
RV823G6G67
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PRIMARY
NCI_THESAURUS
C80050
Created by admin on Fri Dec 15 15:03:08 GMT 2023 , Edited by admin on Fri Dec 15 15:03:08 GMT 2023
PRIMARY
WIKIPEDIA
COPPER GLUCONATE
Created by admin on Fri Dec 15 15:03:08 GMT 2023 , Edited by admin on Fri Dec 15 15:03:08 GMT 2023
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