<?xml version="1.0" encoding="UTF-8"?>
<compound>
  <id type="integer">1207</id>
  <title>T3D1203</title>
  <common-name>Copper(I) phosphide</common-name>
  <description>Copper(I) phosphide is a phosphide of copper. It is used in copper alloys. Copper is a chemical element with the symbol Cu and atomic number 29. Copper is an essential elements in plants and animals as it is required for the normal functioning of more than 30 enzymes. It occurs naturally throughout the environment in rocks, soil, water, and air. Metal phosphides are hydrolysed to phosphine upon contact with water or stomach acid. Phosphine is a colorless, flammable, explosive, and toxic gas. (L980, L277, L278, L294)</description>
  <cas>12019-57-7</cas>
  <pubchem-id>159399</pubchem-id>
  <chemical-formula>Cu3P</chemical-formula>
  <weight>250.736330</weight>
  <appearance>Tan to reddish-brown solid.</appearance>
  <melting-point></melting-point>
  <boiling-point nil="true"/>
  <density nil="true"/>
  <solubility></solubility>
  <specific-gravity nil="true"/>
  <flash-point nil="true"/>
  <vapour-pressure nil="true"/>
  <route-of-exposure>Oral  (L277) ; inhalation  (L277) ; dermal (L277)</route-of-exposure>
  <target nil="true"/>
  <mechanism-of-toxicity>Excess copper is sequestered within hepatocyte lysosomes, where it is complexed with metallothionein. Copper hepatotoxicity is believed to occur when the lysosomes become saturated and copper accumulates in the nucleus, causing nuclear damage. This damage is possibly a result of oxidative damage, including lipid peroxidation. Copper inhibits the sulfhydryl group enzymes such as glucose-6-phosphate 1-dehydrogenase, glutathione reductase, and paraoxonases, which protect the cell from free oxygen radicals. It also influences gene expression and is a co-factor for oxidative enzymes such as cytochrome C oxidase and lysyl oxidase. In addition, the oxidative stress induced by copper is thought to activate acid sphingomyelinase, which lead to the production of ceramide, an apoptotic signal, as well as cause hemolytic anemia. Copper-induced emesis results from stimulation of the vagus nerve.   Phosphine inhibits cytochrome c oxidase, preventing mitochondrial oxidative phosphorylation. This non-competitive inhibition prevents cellular respiration and leads to multi-organ dysfunction. Phosphine can also react with hydrogen peroxide to form the highly reactive hydroxyl radical, which can cause lipid peroxidation. (A291, A292, L277, T49, A174, L280)</mechanism-of-toxicity>
  <metabolism>Copper is mainly absorbed through the gastrointestinal tract, but it can also be inhalated and absorbed dermally. It passes through the basolateral membrane, possibly via regulatory copper transporters, and is transported to the liver and kidney bound to serum albumin. The liver is the critical organ for copper homoeostasis. In the liver and other tissues, copper is stored bound to metallothionein, amino acids, and in association with copper-dependent enzymes, then partitioned for excretion through the bile or incorporation into intra- and extracellular proteins. The transport of copper to the peripheral tissues is accomplished through the plasma attached to serum albumin, ceruloplasmin or low-molecular-weight complexes. Copper may induce the production of metallothionein and ceruloplasmin. The membrane-bound copper transporting adenosine triphosphatase (Cu-ATPase) transports copper ions into and out of cells. Physiologically normal levels of copper in the body are held constant by alterations in the rate and amount of copper absorption, compartmental distribution, and excretion.   Phosphine and metal phosphides may be absorbed following ingestion or inhalation, then distribute to the nervous system, liver, and kidney. In the body, metal phosphides are hydrolysed to phosphine, and phosphine is oxidized to hypophosphite and phosphite. Metabolites are excreted in the urine, while unchanged phosphine is exhaled. (L982, L277, L279)</metabolism>
  <toxicity nil="true"/>
  <lethaldose>10 to 20 grams for an adult human (copper salts). (T17)</lethaldose>
  <carcinogenicity>No indication of carcinogenicity to humans (not listed by IARC).</carcinogenicity>
  <use-source>Copper(I) phosphide is used in copper alloys. (L294)</use-source>
  <min-risk-level>Acute Oral: 0.01 mg/kg/day (L134) 
Intermediate Oral: 0.01 mg/kg/day (L134)</min-risk-level>
  <health-effects>People must absorb small amounts of copper every day because copper is essential for good health, however, high levels of copper can be harmful. Very-high doses of copper can cause damage to your liver and kidneys, and can even cause death. Copper may induce allergic responses in sensitive individuals. Inhalation of phosphine may cause severe pulmonary irritation leading to acute pulmonary oedema, cardiovascular dysfunction, CNS excitation, coma and death. Gastrointestinal disorders, renal damage and leukopenia may also occur. Chronic exposure to phosphine can result in anemia, bronchitis, gastrointestinal effects, and visual, speech and motor problems. (L980, L982, L278, L279)</health-effects>
  <symptoms>Breathing high levels of copper can cause irritation of the nose and throat. Ingesting high levels of copper can cause nausea, vomiting, diarrhea, headache, dizziness, and respiratory difficulty. Early symptoms of acute phosphine intoxication include pain in the diaphragm, nausea, vomiting, excitement, and a phosphorus smell on the breath. Higher levels can cause weakness, bronchitis, pulmonary edema, shortness of breath, convulsions, and death. Some effects, such as pulmonary edema, convulsions, and liver injury, may appear or continue to be present days after an exposure. Ingestion of metal phosphides results in release of phosphine in your stomach which can cause nausea, vomiting, abdominal pain, and diarrhea. (L980, L278, L279)</symptoms>
  <treatment>As there is no antidote for phosphine poisoning, treatment is mainly symptomatic. Artificial respiration, gastric lavage, and/or administration of activated charcoal may be necessary. (L982)</treatment>
  <created-at type="dateTime">2009-06-19T21:58:26Z</created-at>
  <updated-at type="dateTime">2014-12-24T20:23:22Z</updated-at>
  <interacting-proteins>High affinity copper uptake protein 1 (O15431) 
Probable low affinity copper uptake protein 2 (O15432) Serum albumin (P02768) 
Ceruloplasmin (P00450) 
Copper-transporting ATPase 1 (Q04656) 
Copper-transporting ATPase 2 (P35670) 
Copper transport protein ATOX1 (O00244) 
Copper chaperone for superoxide dismutase (O14618) 
Cytochrome c oxidase copper chaperone (Q14061) 
Metallothionein-2 (P02795) 
Metallothionein-1G (P13640) 
Metallothionein-1H (P80294) 
Metallothionein-3 (P25713) 
Metallothionein-1F (P04733) 
Metallothionein-1E (P04732) 
Metallothionein-1X (P80297) 
Metallothionein-1A (P04731) 
Metallothionein-1B (P07438) 
Metallothionein-1M (Q8N339) 
Metallothionein-4 (P47944) 
Metallothionein-1L (Q93083) 
(L277, A176)</interacting-proteins>
  <wikipedia nil="true"/>
  <uniprot-id nil="true"/>
  <kegg-compound-id></kegg-compound-id>
  <omim-id></omim-id>
  <chebi-id></chebi-id>
  <biocyc-id></biocyc-id>
  <ctd-id nil="true"/>
  <stitch-id>Copper(I) phosphide</stitch-id>
  <drugbank-id nil="true"/>
  <pdb-id nil="true"/>
  <actor-id nil="true"/>
  <organism nil="true"/>
  <export type="boolean">true</export>
  <metabolizing-proteins nil="true"/>
  <transporting-proteins>High affinity copper uptake protein 1 (O15431) 
Probable low affinity copper uptake protein 2 (O15432) 
Serum albumin (P02768) 
Ceruloplasmin (P00450) 
Copper-transporting ATPase 1 (Q04656) 
Copper-transporting ATPase 2 (P35670) 
Copper transport protein ATOX1 (O00244) 
Copper chaperone for superoxide dismutase (O14618) 
Cytochrome c oxidase copper chaperone (Q14061) 
Metallothionein-2 (P02795) 
Metallothionein-1G (P13640) 
Metallothionein-1H (P80294) 
Metallothionein-3 (P25713) 
Metallothionein-1F (P04733) 
Metallothionein-1E (P04732) 
Metallothionein-1X (P80297) 
Metallothionein-1A (P04731) 
Metallothionein-1B (P07438) 
Metallothionein-1M (Q8N339) 
Metallothionein-4 (P47944) 
Metallothionein-1L (Q93083) 
(L277, A176)</transporting-proteins>
  <moldb-smiles>[P-3].[Cu+].[Cu+].[Cu+]</moldb-smiles>
  <moldb-formula>Cu3P</moldb-formula>
  <moldb-inchi>InChI=1S/3Cu.P/q3*+1;-3</moldb-inchi>
  <moldb-inchikey>InChIKey=GKCDETHKBNXQFR-UHFFFAOYSA-N</moldb-inchikey>
  <moldb-average-mass type="decimal">221.612</moldb-average-mass>
  <moldb-mono-mass type="decimal">219.762564749</moldb-mono-mass>
  <origin>Exogenous</origin>
  <state>Solid</state>
  <logp nil="true"/>
  <hmdb-id nil="true"/>
  <chembl-id nil="true"/>
  <chemspider-id nil="true"/>
  <structure-image-file-name nil="true"/>
  <structure-image-content-type nil="true"/>
  <structure-image-file-size type="integer" nil="true"/>
  <structure-image-updated-at type="dateTime" nil="true"/>
  <biodb-id nil="true"/>
  <synthesis-reference></synthesis-reference>
  <structure-image-caption nil="true"/>
</compound>
