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Chemical Organoselenium Compounds

1–50 of 242 results.
  Chemical Phenotype Co-Mentioned Terms Interaction Organisms Anatomy Inference Network References
1. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation TXNRD1 [TXNRD1 protein results in increased susceptibility to (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane] which results in decreased cell proliferation 1: Homo sapiens HEK293 Cells
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
2. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation Sodium Selenite Sodium Selenite promotes the reaction [(1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in decreased cell proliferation] 1: Homo sapiens A549 Cells
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
3. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane apoptotic process (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in increased apoptotic process 1: Homo sapiens A549 Cells
5 genes: BAX | BCL2 | CASP3 | CDK1 | SQSTM1
1
4. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane autophagy Sodium Selenite [Sodium Selenite co-treated with (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane] results in increased autophagy 1: Homo sapiens A549 Cells
2 genes: MAP1LC3B | SQSTM1
1
5. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation Chloroquine | Sodium Selenite Chloroquine inhibits the reaction [Sodium Selenite promotes the reaction [(1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in decreased cell proliferation]] 1: Homo sapiens A549 Cells
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
6. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation 3-methyladenine | Sodium Selenite 3-methyladenine inhibits the reaction [Sodium Selenite promotes the reaction [(1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in decreased cell proliferation]] 1: Homo sapiens A549 Cells
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
7. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane apoptotic process Sodium Selenite Sodium Selenite promotes the reaction [(1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in increased apoptotic process] 1: Homo sapiens A549 Cells
5 genes: BAX | BCL2 | CASP3 | CDK1 | SQSTM1
1
8. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation 3-methyladenine | Sodium Selenite 3-methyladenine inhibits the reaction [(1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane promotes the reaction [Sodium Selenite results in decreased cell proliferation]] 1: Homo sapiens A549 Cells
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
9. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation Sodium Selenite | TXNRD1 Sodium Selenite promotes the reaction [[TXNRD1 protein results in increased susceptibility to (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane] which results in decreased cell proliferation] 1: Homo sapiens HEK293 Cells
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
10. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane necrotic cell death Sodium Selenite Sodium Selenite promotes the reaction [(1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in increased necrotic cell death] 1: Homo sapiens A549 Cells   1
11. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane mitotic cell cycle arrest Sodium Selenite Sodium Selenite promotes the reaction [(1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in increased mitotic cell cycle arrest] 1: Homo sapiens A549 Cells 1 gene: CDKN1A 1
12. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation Sodium Selenite Sodium Selenite promotes the reaction [(1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in decreased cell proliferation] 1: Homo sapiens Lung | Cell Line, Tumor
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
13. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in decreased cell proliferation 1: Homo sapiens A549 Cells
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
14. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation Sodium Selenite (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane promotes the reaction [Sodium Selenite results in decreased cell proliferation] 1: Homo sapiens Lung | Cell Line, Tumor
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
15. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell death Sodium Selenite [Sodium Selenite results in increased susceptibility to (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane] which results in increased cell death 1: Homo sapiens A549 Cells   1
16. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation Sodium Selenite (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane promotes the reaction [Sodium Selenite results in decreased cell proliferation] 1: Homo sapiens A549 Cells
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
17. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in decreased cell proliferation 1: Homo sapiens Lung | Cell Line, Tumor
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
18. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane necrotic cell death (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in increased necrotic cell death 1: Homo sapiens A549 Cells   1
19. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane cell proliferation Chloroquine | Sodium Selenite Chloroquine inhibits the reaction [(1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane promotes the reaction [Sodium Selenite results in decreased cell proliferation]] 1: Homo sapiens A549 Cells
6 genes: BAX | BCL2 | CDK1 | CDK4 | TXN | TXNRD1
1
20. (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane mitotic cell cycle arrest (1,2-bis(1,2-benzisoselenazolone-3(2H)-ketone))ethane results in increased mitotic cell cycle arrest 1: Homo sapiens A549 Cells 1 gene: CDKN1A 1
21. 2-cyclohexylselenazolidine-4-carboxylic acid glutathione biosynthetic process 2-cyclohexylselenazolidine-4-carboxylic acid results in decreased glutathione biosynthetic process 1: Homo sapiens Bronchi | Epithelial Cells | Cell Line 1 gene: GCLC 1
22. 2-cyclohexylselenazolidine-4-carboxylic acid reactive oxygen species metabolic process 2-cyclohexylselenazolidine-4-carboxylic acid results in increased reactive oxygen species metabolic process 1: Homo sapiens Bronchi | Epithelial Cells | Cell Line   1
23. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process 5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
24. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process CASP2 CASP2 protein affects the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
25. 5-methylselenylmethyl-2'-deoxyuridine cell death 5-methylselenylmethyl-2'-deoxyuridine results in increased cell death 1: Homo sapiens HCT116 Cells   1
26. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process benzoylcarbonyl-valyl-aspartyl-valyl-alanyl-aspartyl-fluoromethyl ketone benzoylcarbonyl-valyl-aspartyl-valyl-alanyl-aspartyl-fluoromethyl ketone inhibits the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
27. 5-methylselenylmethyl-2'-deoxyuridine reactive oxygen species biosynthetic process 5-methylselenylmethyl-2'-deoxyuridine results in increased reactive oxygen species biosynthetic process 1: Homo sapiens HL-60 Cells   1
28. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process CASP9 CASP9 protein affects the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
29. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process CASP8 CASP8 protein affects the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
30. 5-methylselenylmethyl-2'-deoxyuridine reactive oxygen species biosynthetic process 1,2-Dihydroxybenzene-3,5-Disulfonic Acid Disodium Salt 1,2-Dihydroxybenzene-3,5-Disulfonic Acid Disodium Salt inhibits the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased reactive oxygen species biosynthetic process] 1: Homo sapiens HL-60 Cells   1
31. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process 1,2-Dihydroxybenzene-3,5-Disulfonic Acid Disodium Salt 1,2-Dihydroxybenzene-3,5-Disulfonic Acid Disodium Salt inhibits the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
32. 5-methylselenylmethyl-2'-deoxyuridine reactive oxygen species biosynthetic process Acetylcysteine Acetylcysteine inhibits the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased reactive oxygen species biosynthetic process] 1: Homo sapiens HL-60 Cells   1
33. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process CASP3 CASP3 protein affects the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
34. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process Quercetin Quercetin inhibits the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
35. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process benzyloxycarbonyl-isoleucyl-glutamyl-threonyl-aspartic acid fluoromethyl ketone benzyloxycarbonyl-isoleucyl-glutamyl-threonyl-aspartic acid fluoromethyl ketone inhibits the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
36. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process benzoylcarbonyl-aspartyl-glutamyl-valyl-aspartyl-fluoromethyl ketone benzoylcarbonyl-aspartyl-glutamyl-valyl-aspartyl-fluoromethyl ketone inhibits the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
37. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process benzyloxycarbonyl-leucyl-glutamyl-histidyl-aspartic acid fluoromethyl ketone benzyloxycarbonyl-leucyl-glutamyl-histidyl-aspartic acid fluoromethyl ketone inhibits the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
38. 5-methylselenylmethyl-2'-deoxyuridine cell death 5-methylselenylmethyl-2'-deoxyuridine results in increased cell death 1: Homo sapiens Colon | Cell Line, Tumor   1
39. 5-methylselenylmethyl-2'-deoxyuridine reactive oxygen species biosynthetic process Quercetin Quercetin inhibits the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased reactive oxygen species biosynthetic process] 1: Homo sapiens HL-60 Cells   1
40. 5-methylselenylmethyl-2'-deoxyuridine apoptotic process Acetylcysteine Acetylcysteine inhibits the reaction [5-methylselenylmethyl-2'-deoxyuridine results in increased apoptotic process] 1: Homo sapiens HL-60 Cells
10 genes: AIFM1 | BAX | BID | BIRC2 | BIRC3 | CASP2 | CASP3 | CASP8 | CASP9 | PARP1
1
41. 5-methylselenylmethyl-2'-deoxyuridine cell death 5-methylselenylmethyl-2'-deoxyuridine results in increased cell death 1: Homo sapiens Lung | Cell Line, Tumor   1
42. 5-methylselenylmethyl-2'-deoxyuridine cell death 5-methylselenylmethyl-2'-deoxyuridine results in increased cell death 1: Homo sapiens Jurkat Cells   1
43. 5-methylselenylmethyl-2'-deoxyuridine regulation of mitochondrial membrane potential 5-methylselenylmethyl-2'-deoxyuridine affects regulation of mitochondrial membrane potential 1: Homo sapiens HL-60 Cells 1 gene: BAX 1
44. 5-methylselenylmethyl-2'-deoxyuridine release of cytochrome c from mitochondria 5-methylselenylmethyl-2'-deoxyuridine results in increased release of cytochrome c from mitochondria 1: Homo sapiens HL-60 Cells
2 genes: BAX | BID
1
45. 5-methylselenylmethyl-2'-deoxyuridine mitotic cell cycle arrest 5-methylselenylmethyl-2'-deoxyuridine results in increased mitotic cell cycle arrest 1: Homo sapiens HL-60 Cells   1
46. 5-methylselenylmethyl-2'-deoxyuridine DNA damage response, detection of DNA damage 5-methylselenylmethyl-2'-deoxyuridine results in increased DNA damage response, detection of DNA damage 1: Homo sapiens HL-60 Cells 1 gene: PARP1 1
47. 5-phenylselenylmethyl-2'-deoxyuridine reactive oxygen species biosynthetic process 1,2-Dihydroxybenzene-3,5-Disulfonic Acid Disodium Salt 1,2-Dihydroxybenzene-3,5-Disulfonic Acid Disodium Salt inhibits the reaction [5-phenylselenylmethyl-2'-deoxyuridine results in increased reactive oxygen species biosynthetic process] 1: Homo sapiens HL-60 Cells   1
48. 5-phenylselenylmethyl-2'-deoxyuridine cell death 5-phenylselenylmethyl-2'-deoxyuridine results in increased cell death 1: Homo sapiens Colon | Cell Line, Tumor   1
49. 5-phenylselenylmethyl-2'-deoxyuridine reactive oxygen species biosynthetic process Quercetin Quercetin inhibits the reaction [5-phenylselenylmethyl-2'-deoxyuridine results in increased reactive oxygen species biosynthetic process] 1: Homo sapiens HL-60 Cells   1
50. 5-phenylselenylmethyl-2'-deoxyuridine reactive oxygen species biosynthetic process Acetylcysteine Acetylcysteine inhibits the reaction [5-phenylselenylmethyl-2'-deoxyuridine results in increased reactive oxygen species biosynthetic process] 1: Homo sapiens HL-60 Cells   1
1–50 of 242 results.