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Browsing toxins
| T3DB ID | Name CAS Number |
Formula Weight |
Structure | Type | Mechanism of Action |
|---|---|---|---|---|---|
| T3D0299 | Zinc arsenate 13464-44-3 |
As2O8Zn3 474.065 |
|
|
Anaemia results from the excessive absorption of zinc suppressing copper and iron absorption, most likely through competitive binding of intestinal mucosal cells. Unba... more |
| T3D0300 | Arsanilic acid 98-50-0 |
C6H8AsNO3 217.0542 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0301 | Arsenobetaine 64436-13-1 |
C5H11AsO2 178.0612 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0302 | Arsenocholine 39895-81-3 |
C5H14AsO 165.0857 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0303 | Methylarsine 593-52-2 |
CH5As 91.972 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0304 | Dimethylarsine 593-57-7 |
C2H7As 105.9986 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0305 | Trimethylarsine 593-88-4 |
C3H9As 120.0252 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0308 | Methylarsonic acid, disodium salt 19444-53-2 |
CH5AsO3 139.9702 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0309 | Methylarsonic acid, monosodium salt 2163-80-6 |
CH4AsNaO3 161.952 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0310 | Benzenearsonic acid 98-05-5 |
C6H7AsO3 202.0396 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0311 | 3-Nitro-4-hydroxy-phenyl-arsonic acid 121-19-7 |
C6H6AsNO6 263.0365 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0312 | 4,4-Arsenobis(2-aminophenol) dihydrochloride 139-93-5 |
C12H14As2Cl2N2O2 439.001 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0313 | [4-(Aminocarbonyl-amino)phenyl] arsonic acid 121-59-5 |
C7H9AsN2O4 260.079 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0314 | Tryparsamide 554-72-3 |
C8H10AsN2NaO4 296.0874 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0315 | (4-Nitrophenyl)arsonic acid 98-72-6 |
C6H6AsNO5 247.0371 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0316 | Sodium arsanilate 127-85-5 |
C6H7AsNNaO3 239.036 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0317 | Sodium dimethylarsinate 124-65-2 |
C2H6AsNaO2 159.9792 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0318 | Trimethylarsine oxide 4964-14-1 |
C3H9AsO 136.0246 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0319 | Lead acetate 301-04-2 |
C4H6O4Pb 325.3 |
|
|
Lead mimics other biologically important metals, such as zinc, calcium, and iron, competing as cofactors for many of their respective enzymatic reactions. For example,... more |
| T3D0320 | Lead arsenite 10031-13-7 |
As2O4Pb 421 |
|
|
Arsenic and its metabolites disrupt ATP production through several mechanisms. At the level of the citric acid cycle, arsenic inhibits pyruvate dehydrogenase and by co... more |
| T3D0321 | Lead azide 13424-46-9 |
N6Pb 291.2 |
|
|
Lead mimics other biologically important metals, such as zinc, calcium, and iron, competing as cofactors for many of their respective enzymatic reactions. For example,... more |
| T3D0322 | Lead bromide 10031-22-8 |
Br2Pb 367 |
|
|
Lead mimics other biologically important metals, such as zinc, calcium, and iron, competing as cofactors for many of their respective enzymatic reactions. For example,... more |
| T3D0323 | Lead carbonate 598-63-0 |
CO3Pb 267.2 |
|
|
Lead mimics other biologically important metals, such as zinc, calcium, and iron, competing as cofactors for many of their respective enzymatic reactions. For example,... more |
| T3D0324 | Lead chloride 7758-95-4 |
Cl2Pb 278.1 |
|
|
Lead mimics other biologically important metals, such as zinc, calcium, and iron, competing as cofactors for many of their respective enzymatic reactions. For example,... more |
| T3D0325 | Lead chromate 7758-97-6 |
CrO4Pb 323.2 |
|
|
Lead mimics other biologically important metals, such as zinc, calcium, and iron, competing as cofactors for many of their respective enzymatic reactions. For example,... more |