Phosphonic Acid

Phosphonic Acid

SCHEMBL3614832

O=[PH]([O-])[O-].O=[PH]([O-])[O-].O=[PH]([O-])[O-].[Ca+2].[Ca+2].[Ca+2]

nearest known ligand 0.00

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Known targets — ChEMBL curated mechanism

GABBR1GABBR2GABRA1GABRA2GABRA3GABRA4GABRA5GABRA6GABRB1GABRB2GABRB3GABRDGABREGABRG1GABRG2GABRG3GABRPGABRQGRIN1GRIN2AGRIN2BGRIN2CGRIN2DGRIN3AGRIN3BHMGCRMMP1MMP13MMP7MMP8PTGS1PTGS2ileSpolrplArplBrplCrplDrplErplFrplJrplKrplLrplMrplNrplOrplPrplQrplRrplSrplTrplUrplVrplWrplXrplYrpmArpmBrpmCrpmDrpmErpmFrpmGrpmHrpmIrpmJrpsArpsBrpsCrpsDrpsErpsFrpsGrpsHrpsIrpsJrpsKrpsLrpsMrpsNrpsOrpsPrpsQrpsRrpsSrpsTrpsUykgMykgO

The experimentally established mechanism targets of Phosphonic Acid. The predicted profile below is derived independently by chemical similarity — agreement is a validation signal, a miss is honest.

⚠ Novel chemotype — no close known analogue (best Tanimoto < 0.3). Unexplored chemical space relative to ChEMBL.

Similar compounds — the chemically nearest patent molecules

Nearest neighbours by Morgan-fingerprint cosine across the patent-compound collection, with each neighbour's top predicted target and the predicted targets it shares with this molecule.

Similarity is cosine over the 2,048-bit Morgan fingerprint (≈ Tanimoto). Identical fingerprints score 1.00.

Patent provenance — the patents this molecule appears in, and who filed them

Claimed or disclosed in 5 patents. claimed = in the patent's claims; disclosed = body only.

PatentTitleAssigneePublishedPriorityFilingCountryStatus
US-8944166-B2 Composition and methods to prevent corrosion by CO2 on cement composition BAKER HUGHES INCORPORATED (US) 2015-02-03 US disclosed
US-20140134340-A1 COMPOSITIONS AND METHODS TO PREVENT CORROSION BY CO2 ON CEMENT COMPOSITIONS BAKER HUGHES INCORPORATED (US) 2014-05-15 US disclosed
US-8636068-B2 Method of reducing corrosion in cement BAKER HUGHES INCORPORATED (US) 2014-01-28 US disclosed
US-20100018435-A1 COMPOSITIONS AND METHODS TO PREVENT CORROSION BY CO2 ON CEMENT COMPOSITIONS BAKER HUGHES HOLDINGS LLC 2010-01-28 US disclosed
US-7534610-B1 3D tissue constructs on the basis of colloidal crystals surface modified by sequential layering THE BOARD OF REGENTS FOR OKLAHOMA STATE UNIVERSITY (US) 2009-05-19 US disclosed