<?xml version="1.0" encoding="UTF-8"?>
<compound>
  <id type="integer">2949</id>
  <title>T3D2907</title>
  <common-name>Mifepristone</common-name>
  <description>A progestational and glucocorticoid hormone antagonist. Its inhibition of progesterone induces bleeding during the luteal phase and in early pregnancy by releasing endogenous prostaglandins from the endometrium or decidua. As a glucocorticoid receptor antagonist, the drug has been used to treat hypercortisolism in patients with nonpituitary cushing syndrome [PubChem]. The two marketed forms of mifepristone are Mifeprex&amp;#174; (mifepristone 200mg) and Korlym&amp;#8482; (mifepristone 300mg). Currently under investigation for use in psychotic depression (phase 3 trials). </description>
  <cas>84371-65-3</cas>
  <pubchem-id>55245</pubchem-id>
  <chemical-formula>C29H35NO2</chemical-formula>
  <weight>429.266780</weight>
  <appearance>White powder.</appearance>
  <melting-point>191-196°C</melting-point>
  <boiling-point nil="true"/>
  <density nil="true"/>
  <solubility>Poorly soluble</solubility>
  <specific-gravity nil="true"/>
  <flash-point nil="true"/>
  <vapour-pressure nil="true"/>
  <route-of-exposure>Oral. The absolute bioavailability of a 20 mg oral dose is 69%</route-of-exposure>
  <target nil="true"/>
  <mechanism-of-toxicity>Mifepristone is a cholinesterase or acetylcholinesterase (AChE) inhibitor. A cholinesterase inhibitor (or 'anticholinesterase') suppresses the action of acetylcholinesterase. Because of its essential function, chemicals that interfere with the action of acetylcholinesterase are potent neurotoxins, causing excessive salivation and eye-watering in low doses, followed by muscle spasms and ultimately death.  Nerve gases and many substances used in insecticides have been shown to act by binding a serine in the active site of acetylcholine esterase, inhibiting the enzyme completely. Acetylcholine esterase breaks down the neurotransmitter acetylcholine, which is released at nerve and muscle junctions, in order to allow the muscle or organ to relax. The result of acetylcholine esterase inhibition is that acetylcholine builds up and continues to act so that any nerve impulses are continually transmitted and muscle contractions do not stop. Among the most common acetylcholinesterase inhibitors are phosphorus-based compounds, which are designed to bind to the active site of the enzyme. The structural requirements are a phosphorus atom bearing two lipophilic groups, a leaving group (such as a halide or thiocyanate), and a terminal oxygen.</mechanism-of-toxicity>
  <metabolism>Hepatic. Hepatic, by Cytochrome P450 3A4 isoenzyme to the N-monodemethylated metabolite (RU 42 633); RU 42 698, which results from the loss of two methyl groups from position 11 beta; and RU 42 698, which results from terminal hydroxylation of the 17&amp;ndash;propynyl chain.Route of Elimination: Fecal: 83%; Renal: 9%.Half Life: 18 hours</metabolism>
  <toxicity nil="true"/>
  <lethaldose nil="true"/>
  <carcinogenicity>No indication of carcinogenicity to humans (not listed by IARC).</carcinogenicity>
  <use-source>For the medical termination of intrauterine pregnancy through 49 days' pregnancy. Also indicated to control hyperglycemia secondary to hypercortisolism in adult patients with endogenous Cushing's syndrome who have type 2 diabetes mellitus or glucose intolerance and are not candidates for surgery or have had unsuccessful surgery.</use-source>
  <min-risk-level nil="true"/>
  <health-effects>Acute exposure to cholinesterase inhibitors can cause a cholinergic crisis characterized by severe nausea/vomiting, salivation, sweating, bradycardia, hypotension, collapse, and convulsions. Increasing muscle weakness is a possibility and may result in death if respiratory muscles are involved.  Accumulation of ACh at motor nerves causes overstimulation of nicotinic expression at the neuromuscular junction. When this occurs symptoms such as muscle weakness, fatigue, muscle cramps, fasciculation, and paralysis can be seen. When there is an accumulation of ACh at autonomic ganglia this causes overstimulation of nicotinic expression in the sympathetic system. Symptoms associated with this are hypertension, and hypoglycemia. Overstimulation of nicotinic acetylcholine receptors in the central nervous system, due to accumulation of ACh, results in anxiety, headache, convulsions, ataxia, depression of respiration and circulation, tremor, general weakness, and potentially coma. When there is expression of muscarinic overstimulation due to excess acetylcholine at muscarinic acetylcholine receptors symptoms of visual disturbances, tightness in chest, wheezing due to bronchoconstriction, increased bronchial secretions, increased salivation, lacrimation, sweating, peristalsis, and urination can occur.  Certain reproductive effects in fertility, growth, and development for males and females have been linked specifically to organophosphate pesticide exposure. Most of the research on reproductive effects has been conducted on farmers working with pesticides and insecticdes in rural areas. In females menstrual cycle disturbances, longer pregnancies, spontaneous abortions, stillbirths, and some developmental effects in offspring have been linked to organophosphate pesticide exposure. Prenatal exposure has been linked to impaired fetal growth and development. Neurotoxic effects have also been linked to poisoning with OP pesticides causing four neurotoxic effects in humans: cholinergic syndrome, intermediate syndrome, organophosphate-induced delayed polyneuropathy (OPIDP), and chronic organophosphate-induced neuropsychiatric disorder (COPIND). These syndromes result after acute and chronic exposure to OP pesticides.</health-effects>
  <symptoms>Nearly all of the women who receive mifepristone will report adverse reactions, and many can be expected to report more than one such reaction. About 90% of patients report adverse reactions following administration of misoprostol on day three of the treatment procedure. Side effects include more heavy bleeding than a heavy manstrual period, abdominal pain, uterine cramping, nausea, vomiting, and diarrhea.</symptoms>
  <treatment>If the compound has been ingested, rapid gastric lavage should be performed using 5% sodium bicarbonate. For skin contact, the skin should be washed with soap and water. If the compound has entered the eyes, they should be washed with large quantities of isotonic saline or water. In serious cases, atropine and/or pralidoxime should be administered. Anti-cholinergic drugs work to counteract the effects of excess acetylcholine and reactivate AChE. Atropine can be used as an antidote in conjunction with pralidoxime or other pyridinium oximes (such as trimedoxime or obidoxime), though the use of '-oximes' has been found to be of no benefit, or possibly harmful, in at least two meta-analyses. Atropine is a muscarinic antagonist, and thus blocks the action of acetylcholine peripherally.</treatment>
  <created-at type="dateTime">2009-07-21T20:27:46Z</created-at>
  <updated-at type="dateTime">2014-12-24T20:25:53Z</updated-at>
  <interacting-proteins nil="true"/>
  <wikipedia>Mifepristone</wikipedia>
  <uniprot-id></uniprot-id>
  <kegg-compound-id>C07652</kegg-compound-id>
  <omim-id></omim-id>
  <chebi-id>50692</chebi-id>
  <biocyc-id></biocyc-id>
  <ctd-id nil="true"/>
  <stitch-id>Mifepristone</stitch-id>
  <drugbank-id>DB00834</drugbank-id>
  <pdb-id>486</pdb-id>
  <actor-id nil="true"/>
  <organism nil="true"/>
  <export type="boolean">true</export>
  <metabolizing-proteins nil="true"/>
  <transporting-proteins nil="true"/>
  <moldb-smiles>[H][C@@]12CC[C@@](O)(C#CC)[C@@]1(C)C[C@]([H])(C1=CC=C(C=C1)N(C)C)C1=C3CCC(=O)C=C3CC[C@@]21[H]</moldb-smiles>
  <moldb-formula>C29H35NO2</moldb-formula>
  <moldb-inchi>InChI=1S/C29H35NO2/c1-5-15-29(32)16-14-26-24-12-8-20-17-22(31)11-13-23(20)27(24)25(18-28(26,29)2)19-6-9-21(10-7-19)30(3)4/h6-7,9-10,17,24-26,32H,8,11-14,16,18H2,1-4H3/t24-,25+,26-,28-,29-/m0/s1</moldb-inchi>
  <moldb-inchikey>InChIKey=VKHAHZOOUSRJNA-GCNJZUOMSA-N</moldb-inchikey>
  <moldb-average-mass type="decimal">429.5937</moldb-average-mass>
  <moldb-mono-mass type="decimal">429.266779369</moldb-mono-mass>
  <origin>Exogenous</origin>
  <state>Solid</state>
  <logp>4.5</logp>
  <hmdb-id>HMDB14972</hmdb-id>
  <chembl-id>CHEMBL1276308</chembl-id>
  <chemspider-id>49889</chemspider-id>
  <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>&lt;p&gt;Narendra Joshi, Anil Khile, Nitin Pradhan, &amp;#8220;Novel polymorph form M of mifepristone and process for its preparation.&amp;#8221; U.S. Patent US20070105828, issued May 10, 2007.&lt;/p&gt;</synthesis-reference>
  <structure-image-caption nil="true"/>
</compound>
