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Chemical Cocaine

1–50 of 257 results.
  Chemical Phenotype Co-Mentioned Terms Interaction Organisms Anatomy Inference Network References
1. anhydroecgonine methyl ester dopamine biosynthetic process Cocaine anhydroecgonine methyl ester promotes the reaction [Cocaine affects dopamine biosynthetic process] 1: Rattus norvegicus Brain | Neostriatum   1
2. anhydroecgonine methyl ester dopamine biosynthetic process anhydroecgonine methyl ester results in increased dopamine biosynthetic process 1: Rattus norvegicus Brain | Neostriatum   1
3. anhydroecgonine methyl ester dopamine biosynthetic process Cocaine [anhydroecgonine methyl ester co-treated with Cocaine] results in increased dopamine biosynthetic process 1: Rattus norvegicus Brain | Nucleus Accumbens   1
4. benzoylecgonine cell proliferation benzoylecgonine results in increased cell proliferation 1: Homo sapiens Plasma Cells | B-Lymphocytes | Cell Line, Tumor   1
5. cocaethylene cell proliferation cocaethylene results in increased cell proliferation 1: Homo sapiens Plasma Cells | B-Lymphocytes | Cell Line, Tumor   1
6. cocaethylene regulation of blood pressure cocaethylene results in increased regulation of blood pressure 1: Canis lupus familiaris Cardiovascular System   1
7. Cocaine excitatory postsynaptic potential Cocaine results in increased excitatory postsynaptic potential 1: Rattus norvegicus Somatosensory Cortex | Pyramidal Cells
33 genes: ADORA1 | ADORA2A | AKT1 | ATXN1 | BDNF | CDK5 | CHRNA3 | CHRNA4 | CHRNA5 | CHRNB2 | CHRNE | DRD2 | GRIA1 | GRIA2 | GRIA3 | GRIA4 | GRIK1 | GRIK2 | GRIK5 | GRIN1 | GRIN2A | GRIN2B | GRIN2C | GRIN2D | GSK3A | GSK3B | HCRT | MECP2 | MET | OPRM1 | PPP3CA | SLC17A7 | SNCA
1
8. Cocaine apoptotic process Minocycline Minocycline inhibits the reaction [Cocaine results in increased apoptotic process] 1: Rattus norvegicus Heart | Muscle Cells
130 genes: ABL1 | ACIN1 | ACVR1C | ADORA2A | ADRB1 | AIFM1 | AKT1 | APP | ATM | ATP5F1A | BAD | BAG1 | BAG3 | BAX | BCAP31 | BCL2 | BCL2L1 | BCL2L11 | BID | BIK | BNIP2 | BNIP3 | BNIP3L | BTK | C1QBP | CASP2 | CASP3 | CASP4 | CASP8 | CASP9 | CCKBR | CDK5 | CFLAR | CIDEA | CIDEB | CSNK2A1 | CXCR4 | CYCS | DAB2IP | DDIT3 | DDX41 | DPF2 | DYNLL1 | EFNA5 | EIF5A | ELMO1 | EPHA2 | EPHA7 | ERN1 | FADD | FAIM | FAIM2 | FAS | FOXO1 | GAS2 | GPER1 | GSN | GZMM | IFNG | IL1A | IL1B | IL2RA | ITPR1 | JAK2 | LSP1 | LTBR | MAP2K4 | MAPK1 | MAPK14 | MAPK3 | MEF2A | MEF2D | MTFP1 | NAIP1 | NCF1 | NFKB1 | NFKBIA | NOA1 | NR3C1 | NR4A1 | NTN1 | PAK6 | PARP1 | PDCD5 | PDCD6 | PDCD7 | PHLDA3 | PIM1 | PIM3 | PLAGL1 | PPID | PPP1R15A | PPP2CA | PPP2R2B | PRDX5 | PRKCA | PRKCB | PRKCE | PTEN | PTK2B | PURB | RAF1 | RIPK1 | RPS6KA1 | RPS6KA3 | RTKN | RYBP | SEMA3A | SEMA6A | SEPT4 | SGK1 | SIVA1 | SLK | SNCA | SULF1 | TF | TGFBR1 | TNF | TNFRSF10B | TNFRSF11B | TNFRSF18 | TNFRSF1A | TNFRSF1B | TNFRSF25 | TNFSF10 | TRAF2 | TRP53 | XBP1 | XKR8 | ZBTB16
1
9. Cocaine apoptotic process Cocaine results in increased apoptotic process 1: Rattus norvegicus Heart | Muscle Cells
130 genes: ABL1 | ACIN1 | ACVR1C | ADORA2A | ADRB1 | AIFM1 | AKT1 | APP | ATM | ATP5F1A | BAD | BAG1 | BAG3 | BAX | BCAP31 | BCL2 | BCL2L1 | BCL2L11 | BID | BIK | BNIP2 | BNIP3 | BNIP3L | BTK | C1QBP | CASP2 | CASP3 | CASP4 | CASP8 | CASP9 | CCKBR | CDK5 | CFLAR | CIDEA | CIDEB | CSNK2A1 | CXCR4 | CYCS | DAB2IP | DDIT3 | DDX41 | DPF2 | DYNLL1 | EFNA5 | EIF5A | ELMO1 | EPHA2 | EPHA7 | ERN1 | FADD | FAIM | FAIM2 | FAS | FOXO1 | GAS2 | GPER1 | GSN | GZMM | IFNG | IL1A | IL1B | IL2RA | ITPR1 | JAK2 | LSP1 | LTBR | MAP2K4 | MAPK1 | MAPK14 | MAPK3 | MEF2A | MEF2D | MTFP1 | NAIP1 | NCF1 | NFKB1 | NFKBIA | NOA1 | NR3C1 | NR4A1 | NTN1 | PAK6 | PARP1 | PDCD5 | PDCD6 | PDCD7 | PHLDA3 | PIM1 | PIM3 | PLAGL1 | PPID | PPP1R15A | PPP2CA | PPP2R2B | PRDX5 | PRKCA | PRKCB | PRKCE | PTEN | PTK2B | PURB | RAF1 | RIPK1 | RPS6KA1 | RPS6KA3 | RTKN | RYBP | SEMA3A | SEMA6A | SEPT4 | SGK1 | SIVA1 | SLK | SNCA | SULF1 | TF | TGFBR1 | TNF | TNFRSF10B | TNFRSF11B | TNFRSF18 | TNFRSF1A | TNFRSF1B | TNFRSF25 | TNFSF10 | TRAF2 | TRP53 | XBP1 | XKR8 | ZBTB16
1
10. Cocaine response to oxidative stress Cocaine results in increased response to oxidative stress 1: Rattus norvegicus Heart | Muscle Cells
34 genes: ABL1 | AIFM1 | AKT1 | APP | BCL2 | BCL2L1 | CAT | CHRNA4 | COX1 | CYCS | CYGB | DDIT3 | EGFR | G6PD | GCLM | GRK2 | GSR | JAK2 | MAP2K1 | MMP14 | MMP9 | MPO | MSRB2 | NDUFS2 | NF1 | NFKB1 | PEBP1 | PPID | PRDX2 | PRDX5 | SLC7A11 | SOD1 | TRP53 | TXN2
1
11. Cocaine response to oxidative stress Minocycline Minocycline inhibits the reaction [Cocaine results in increased response to oxidative stress] 1: Rattus norvegicus Heart | Muscle Cells
34 genes: ABL1 | AIFM1 | AKT1 | APP | BCL2 | BCL2L1 | CAT | CHRNA4 | COX1 | CYCS | CYGB | DDIT3 | EGFR | G6PD | GCLM | GRK2 | GSR | JAK2 | MAP2K1 | MMP14 | MMP9 | MPO | MSRB2 | NDUFS2 | NF1 | NFKB1 | PEBP1 | PPID | PRDX2 | PRDX5 | SLC7A11 | SOD1 | TRP53 | TXN2
1
12. Cocaine MAPK cascade Cocaine results in increased MAPK cascade 1: Rattus norvegicus Heart | Muscle Cells
61 genes: ACTN2 | CALM1 | CAMK2A | CAMK2B | CCL2 | CCL3 | CCR5 | CSF2RA | DAB2IP | DLG4 | DUSP5 | EGFR | FGF2 | FGFR1 | FRS3 | GDNF | GFRA2 | GRB2 | GRIN1 | GRIN2A | GRIN2B | GRIN2C | GRIN2D | HSF1 | IL1B | IL2 | IL2RA | IRS2 | ITPKB | JAK1 | JAK2 | KL | MAP2K1 | MAP2K2 | MAP2K4 | MAPK1 | MAPK10 | MAPK11 | MAPK3 | MAPK8 | MBP | MEF2A | MET | NEFL | NF1 | NRTN | PEBP1 | PPP5C | PTK2 | PTK2B | PTPRA | RAF1 | RASGRF1 | SCG2 | SHANK3 | SPRED1 | SPTAN1 | SPTBN1 | SPTBN2 | TNF | YWHAE
1
13. Cocaine MAPK cascade Minocycline Minocycline inhibits the reaction [Cocaine results in increased MAPK cascade] 1: Rattus norvegicus Heart | Muscle Cells
61 genes: ACTN2 | CALM1 | CAMK2A | CAMK2B | CCL2 | CCL3 | CCR5 | CSF2RA | DAB2IP | DLG4 | DUSP5 | EGFR | FGF2 | FGFR1 | FRS3 | GDNF | GFRA2 | GRB2 | GRIN1 | GRIN2A | GRIN2B | GRIN2C | GRIN2D | HSF1 | IL1B | IL2 | IL2RA | IRS2 | ITPKB | JAK1 | JAK2 | KL | MAP2K1 | MAP2K2 | MAP2K4 | MAPK1 | MAPK10 | MAPK11 | MAPK3 | MAPK8 | MBP | MEF2A | MET | NEFL | NF1 | NRTN | PEBP1 | PPP5C | PTK2 | PTK2B | PTPRA | RAF1 | RASGRF1 | SCG2 | SHANK3 | SPRED1 | SPTAN1 | SPTBN1 | SPTBN2 | TNF | YWHAE
1
14. Cocaine regulation of heart rate Cocaine results in increased regulation of heart rate 1: Homo sapiens Heart
12 genes: ADRB1 | AGT | CALM1 | CALM2 | DRD2 | FKBP1B | MYH6 | MYH7 | PRKACA | RYR2 | SCN10A | SEMA3A
4
15. Cocaine regulation of blood pressure Cocaine results in increased regulation of blood pressure 2: Homo sapiens | Rattus norvegicus Blood Vessels
17 genes: ACE | AGT | ATP1A1 | CYBA | EDN1 | EDNRA | EDNRB | GUCY1A1 | MYH6 | NOS3 | NPPA | NPY | POMC | SGK1 | SOD1 | TAC1 | TACR1
4
16. Cocaine vasoconstriction Cocaine results in increased vasoconstriction 1: Rattus norvegicus Blood Vessels
9 genes: ACE | AGT | EDN1 | EDNRA | EDNRB | HTR1A | HTR1B | HTR1D | SLC6A4
1
17. Cocaine vasodilation Cocaine results in increased vasodilation 1: Rattus norvegicus Blood Vessels
6 genes: ADORA2A | AGT | DRD1 | EDNRB | NOS1 | NOS3
1
18. Cocaine vasodilation ICI 118551 ICI 118551 inhibits the reaction [Cocaine results in increased vasodilation] 1: Rattus norvegicus Hindlimb
6 genes: ADORA2A | AGT | DRD1 | EDNRB | NOS1 | NOS3
1
19. Cocaine vasoconstriction Atenolol Atenolol promotes the reaction [Cocaine results in increased vasoconstriction] 1: Rattus norvegicus Cardiovascular System
9 genes: ACE | AGT | EDN1 | EDNRA | EDNRB | HTR1A | HTR1B | HTR1D | SLC6A4
1
20. Cocaine vasoconstriction methoctramine methoctramine inhibits the reaction [Cocaine results in increased vasoconstriction] 1: Rattus norvegicus Cardiovascular System
9 genes: ACE | AGT | EDN1 | EDNRA | EDNRB | HTR1A | HTR1B | HTR1D | SLC6A4
1
21. Cocaine vasoconstriction Atropine Atropine inhibits the reaction [Cocaine results in increased vasoconstriction] 1: Rattus norvegicus Cardiovascular System
9 genes: ACE | AGT | EDN1 | EDNRA | EDNRB | HTR1A | HTR1B | HTR1D | SLC6A4
1
22. Cocaine vasodilation Propranolol Propranolol inhibits the reaction [Cocaine results in increased vasodilation] 1: Rattus norvegicus Hindlimb
6 genes: ADORA2A | AGT | DRD1 | EDNRB | NOS1 | NOS3
1
23. Cocaine membrane lipid catabolic process Cocaine results in increased membrane lipid catabolic process 1: Mus musculus Liver | Subcellular Fractions   1
24. Cocaine electron transport chain Cocaine affects electron transport chain 1: Rattus norvegicus Neurons | Cells, Cultured
18 genes: AKR7A3 | ALDH2 | COX6C | COX7B | COX8A | CYBA | CYBB | CYCS | CYP19A1 | ETFA | GLRX3 | GSR | HSD17B6 | MAOB | NCF1 | NCF2 | NQO2 | XDH
1
25. Cocaine excitatory postsynaptic potential Cocaine results in decreased excitatory postsynaptic potential 1: Rattus norvegicus Nucleus Accumbens | Neurons, Afferent | Synapses
33 genes: ADORA1 | ADORA2A | AKT1 | ATXN1 | BDNF | CDK5 | CHRNA3 | CHRNA4 | CHRNA5 | CHRNB2 | CHRNE | DRD2 | GRIA1 | GRIA2 | GRIA3 | GRIA4 | GRIK1 | GRIK2 | GRIK5 | GRIN1 | GRIN2A | GRIN2B | GRIN2C | GRIN2D | GSK3A | GSK3B | HCRT | MECP2 | MET | OPRM1 | PPP3CA | SLC17A7 | SNCA
1
26. Cocaine inhibitory postsynaptic potential Cocaine results in decreased inhibitory postsynaptic potential 2: Mus musculus | Rattus norvegicus Brain | Neurons
9 genes: ADORA2A | ADRB1 | BDNF | CHRNA4 | CX3CL1 | DRD4 | GABRB3 | GRIK1 | GRIK2
1
27. Cocaine inhibitory postsynaptic potential Sulpiride Sulpiride inhibits the reaction [Cocaine results in decreased inhibitory postsynaptic potential] 1: Rattus norvegicus Brain | Neurons
9 genes: ADORA2A | ADRB1 | BDNF | CHRNA4 | CX3CL1 | DRD4 | GABRB3 | GRIK1 | GRIK2
1
28. Cocaine regulation of blood pressure Cocaine results in increased regulation of blood pressure 5: Canis lupus familiaris | Homo sapiens | Papio | Rattus norvegicus | Saimiri Cardiovascular System
17 genes: ACE | AGT | ATP1A1 | CYBA | EDN1 | EDNRA | EDNRB | GUCY1A1 | MYH6 | NOS3 | NPPA | NPY | POMC | SGK1 | SOD1 | TAC1 | TACR1
28
29. Cocaine regulation of heart rate Ethanol Ethanol promotes the reaction [Cocaine results in increased regulation of heart rate] 1: Homo sapiens Heart
12 genes: ADRB1 | AGT | CALM1 | CALM2 | DRD2 | FKBP1B | MYH6 | MYH7 | PRKACA | RYR2 | SCN10A | SEMA3A
1
30. Cocaine regulation of heart rate Desipramine Cocaine promotes the reaction [Desipramine results in increased regulation of heart rate] 1: Homo sapiens Heart
12 genes: ADRB1 | AGT | CALM1 | CALM2 | DRD2 | FKBP1B | MYH6 | MYH7 | PRKACA | RYR2 | SCN10A | SEMA3A
1
31. Cocaine regulation of blood pressure Desipramine Cocaine promotes the reaction [Desipramine results in increased regulation of blood pressure] 1: Homo sapiens Cardiovascular System
17 genes: ACE | AGT | ATP1A1 | CYBA | EDN1 | EDNRA | EDNRB | GUCY1A1 | MYH6 | NOS3 | NPPA | NPY | POMC | SGK1 | SOD1 | TAC1 | TACR1
1
32. Cocaine regulation of heart rate Cocaine results in increased regulation of heart rate 3: Canis lupus familiaris | Homo sapiens | Rattus norvegicus Cardiovascular System
12 genes: ADRB1 | AGT | CALM1 | CALM2 | DRD2 | FKBP1B | MYH6 | MYH7 | PRKACA | RYR2 | SCN10A | SEMA3A
21
33. Cocaine regulation of heart rate Dexamethasone Dexamethasone promotes the reaction [Cocaine results in increased regulation of heart rate] 1: Homo sapiens Cardiovascular System
12 genes: ADRB1 | AGT | CALM1 | CALM2 | DRD2 | FKBP1B | MYH6 | MYH7 | PRKACA | RYR2 | SCN10A | SEMA3A
1
34. Cocaine regulation of blood pressure Dexamethasone Dexamethasone affects the reaction [Cocaine results in increased regulation of blood pressure] 1: Homo sapiens Cardiovascular System
17 genes: ACE | AGT | ATP1A1 | CYBA | EDN1 | EDNRA | EDNRB | GUCY1A1 | MYH6 | NOS3 | NPPA | NPY | POMC | SGK1 | SOD1 | TAC1 | TACR1
1
35. Cocaine vasoconstriction Cocaine results in increased vasoconstriction Arterioles
9 genes: ACE | AGT | EDN1 | EDNRA | EDNRB | HTR1A | HTR1B | HTR1D | SLC6A4
1
36. Cocaine vasoconstriction Nitrendipine Nitrendipine inhibits the reaction [Cocaine results in increased vasoconstriction] Arterioles
9 genes: ACE | AGT | EDN1 | EDNRA | EDNRB | HTR1A | HTR1B | HTR1D | SLC6A4
1
37. Cocaine regulation of blood pressure Angiotensin-Converting Enzyme Inhibitors | Benzodiazepines [Benzodiazepines co-treated with Angiotensin-Converting Enzyme Inhibitors] inhibits the reaction [Cocaine results in increased regulation of blood pressure] 1: Rattus norvegicus Blood Vessels
17 genes: ACE | AGT | ATP1A1 | CYBA | EDN1 | EDNRA | EDNRB | GUCY1A1 | MYH6 | NOS3 | NPPA | NPY | POMC | SGK1 | SOD1 | TAC1 | TACR1
1
38. Cocaine vasoconstriction Enalaprilat Enalaprilat inhibits the reaction [Cocaine results in increased vasoconstriction] Arterioles
9 genes: ACE | AGT | EDN1 | EDNRA | EDNRB | HTR1A | HTR1B | HTR1D | SLC6A4
1
39. Cocaine apoptotic DNA fragmentation Cocaine results in increased apoptotic DNA fragmentation 1: Mus musculus Neurons | Cells, Cultured
3 genes: CASP3 | KPNB1 | REL
1
40. Cocaine apoptotic process Cocaine results in increased apoptotic process 1: Mus musculus Neurons | Cells, Cultured
130 genes: ABL1 | ACIN1 | ACVR1C | ADORA2A | ADRB1 | AIFM1 | AKT1 | APP | ATM | ATP5F1A | BAD | BAG1 | BAG3 | BAX | BCAP31 | BCL2 | BCL2L1 | BCL2L11 | BID | BIK | BNIP2 | BNIP3 | BNIP3L | BTK | C1QBP | CASP2 | CASP3 | CASP4 | CASP8 | CASP9 | CCKBR | CDK5 | CFLAR | CIDEA | CIDEB | CSNK2A1 | CXCR4 | CYCS | DAB2IP | DDIT3 | DDX41 | DPF2 | DYNLL1 | EFNA5 | EIF5A | ELMO1 | EPHA2 | EPHA7 | ERN1 | FADD | FAIM | FAIM2 | FAS | FOXO1 | GAS2 | GPER1 | GSN | GZMM | IFNG | IL1A | IL1B | IL2RA | ITPR1 | JAK2 | LSP1 | LTBR | MAP2K4 | MAPK1 | MAPK14 | MAPK3 | MEF2A | MEF2D | MTFP1 | NAIP1 | NCF1 | NFKB1 | NFKBIA | NOA1 | NR3C1 | NR4A1 | NTN1 | PAK6 | PARP1 | PDCD5 | PDCD6 | PDCD7 | PHLDA3 | PIM1 | PIM3 | PLAGL1 | PPID | PPP1R15A | PPP2CA | PPP2R2B | PRDX5 | PRKCA | PRKCB | PRKCE | PTEN | PTK2B | PURB | RAF1 | RIPK1 | RPS6KA1 | RPS6KA3 | RTKN | RYBP | SEMA3A | SEMA6A | SEPT4 | SGK1 | SIVA1 | SLK | SNCA | SULF1 | TF | TGFBR1 | TNF | TNFRSF10B | TNFRSF11B | TNFRSF18 | TNFRSF1A | TNFRSF1B | TNFRSF25 | TNFSF10 | TRAF2 | TRP53 | XBP1 | XKR8 | ZBTB16
1
41. Cocaine apoptotic process Cycloheximide Cycloheximide inhibits the reaction [Cocaine results in increased apoptotic process] 1: Mus musculus Neurons | Cells, Cultured
130 genes: ABL1 | ACIN1 | ACVR1C | ADORA2A | ADRB1 | AIFM1 | AKT1 | APP | ATM | ATP5F1A | BAD | BAG1 | BAG3 | BAX | BCAP31 | BCL2 | BCL2L1 | BCL2L11 | BID | BIK | BNIP2 | BNIP3 | BNIP3L | BTK | C1QBP | CASP2 | CASP3 | CASP4 | CASP8 | CASP9 | CCKBR | CDK5 | CFLAR | CIDEA | CIDEB | CSNK2A1 | CXCR4 | CYCS | DAB2IP | DDIT3 | DDX41 | DPF2 | DYNLL1 | EFNA5 | EIF5A | ELMO1 | EPHA2 | EPHA7 | ERN1 | FADD | FAIM | FAIM2 | FAS | FOXO1 | GAS2 | GPER1 | GSN | GZMM | IFNG | IL1A | IL1B | IL2RA | ITPR1 | JAK2 | LSP1 | LTBR | MAP2K4 | MAPK1 | MAPK14 | MAPK3 | MEF2A | MEF2D | MTFP1 | NAIP1 | NCF1 | NFKB1 | NFKBIA | NOA1 | NR3C1 | NR4A1 | NTN1 | PAK6 | PARP1 | PDCD5 | PDCD6 | PDCD7 | PHLDA3 | PIM1 | PIM3 | PLAGL1 | PPID | PPP1R15A | PPP2CA | PPP2R2B | PRDX5 | PRKCA | PRKCB | PRKCE | PTEN | PTK2B | PURB | RAF1 | RIPK1 | RPS6KA1 | RPS6KA3 | RTKN | RYBP | SEMA3A | SEMA6A | SEPT4 | SGK1 | SIVA1 | SLK | SNCA | SULF1 | TF | TGFBR1 | TNF | TNFRSF10B | TNFRSF11B | TNFRSF18 | TNFRSF1A | TNFRSF1B | TNFRSF25 | TNFSF10 | TRAF2 | TRP53 | XBP1 | XKR8 | ZBTB16
1
42. Cocaine apoptotic process Cocaine results in increased apoptotic process 1: Homo sapiens Brain | Endothelial Cells
130 genes: ABL1 | ACIN1 | ACVR1C | ADORA2A | ADRB1 | AIFM1 | AKT1 | APP | ATM | ATP5F1A | BAD | BAG1 | BAG3 | BAX | BCAP31 | BCL2 | BCL2L1 | BCL2L11 | BID | BIK | BNIP2 | BNIP3 | BNIP3L | BTK | C1QBP | CASP2 | CASP3 | CASP4 | CASP8 | CASP9 | CCKBR | CDK5 | CFLAR | CIDEA | CIDEB | CSNK2A1 | CXCR4 | CYCS | DAB2IP | DDIT3 | DDX41 | DPF2 | DYNLL1 | EFNA5 | EIF5A | ELMO1 | EPHA2 | EPHA7 | ERN1 | FADD | FAIM | FAIM2 | FAS | FOXO1 | GAS2 | GPER1 | GSN | GZMM | IFNG | IL1A | IL1B | IL2RA | ITPR1 | JAK2 | LSP1 | LTBR | MAP2K4 | MAPK1 | MAPK14 | MAPK3 | MEF2A | MEF2D | MTFP1 | NAIP1 | NCF1 | NFKB1 | NFKBIA | NOA1 | NR3C1 | NR4A1 | NTN1 | PAK6 | PARP1 | PDCD5 | PDCD6 | PDCD7 | PHLDA3 | PIM1 | PIM3 | PLAGL1 | PPID | PPP1R15A | PPP2CA | PPP2R2B | PRDX5 | PRKCA | PRKCB | PRKCE | PTEN | PTK2B | PURB | RAF1 | RIPK1 | RPS6KA1 | RPS6KA3 | RTKN | RYBP | SEMA3A | SEMA6A | SEPT4 | SGK1 | SIVA1 | SLK | SNCA | SULF1 | TF | TGFBR1 | TNF | TNFRSF10B | TNFRSF11B | TNFRSF18 | TNFRSF1A | TNFRSF1B | TNFRSF25 | TNFSF10 | TRAF2 | TRP53 | XBP1 | XKR8 | ZBTB16
1
43. Cocaine apoptotic process Cocaine results in increased apoptotic process 1: Homo sapiens Monocytes
130 genes: ABL1 | ACIN1 | ACVR1C | ADORA2A | ADRB1 | AIFM1 | AKT1 | APP | ATM | ATP5F1A | BAD | BAG1 | BAG3 | BAX | BCAP31 | BCL2 | BCL2L1 | BCL2L11 | BID | BIK | BNIP2 | BNIP3 | BNIP3L | BTK | C1QBP | CASP2 | CASP3 | CASP4 | CASP8 | CASP9 | CCKBR | CDK5 | CFLAR | CIDEA | CIDEB | CSNK2A1 | CXCR4 | CYCS | DAB2IP | DDIT3 | DDX41 | DPF2 | DYNLL1 | EFNA5 | EIF5A | ELMO1 | EPHA2 | EPHA7 | ERN1 | FADD | FAIM | FAIM2 | FAS | FOXO1 | GAS2 | GPER1 | GSN | GZMM | IFNG | IL1A | IL1B | IL2RA | ITPR1 | JAK2 | LSP1 | LTBR | MAP2K4 | MAPK1 | MAPK14 | MAPK3 | MEF2A | MEF2D | MTFP1 | NAIP1 | NCF1 | NFKB1 | NFKBIA | NOA1 | NR3C1 | NR4A1 | NTN1 | PAK6 | PARP1 | PDCD5 | PDCD6 | PDCD7 | PHLDA3 | PIM1 | PIM3 | PLAGL1 | PPID | PPP1R15A | PPP2CA | PPP2R2B | PRDX5 | PRKCA | PRKCB | PRKCE | PTEN | PTK2B | PURB | RAF1 | RIPK1 | RPS6KA1 | RPS6KA3 | RTKN | RYBP | SEMA3A | SEMA6A | SEPT4 | SGK1 | SIVA1 | SLK | SNCA | SULF1 | TF | TGFBR1 | TNF | TNFRSF10B | TNFRSF11B | TNFRSF18 | TNFRSF1A | TNFRSF1B | TNFRSF25 | TNFSF10 | TRAF2 | TRP53 | XBP1 | XKR8 | ZBTB16
1
44. Cocaine spermatogenesis Cocaine results in decreased spermatogenesis 1: Rattus norvegicus Germ Cells
53 genes: ACE | ADCYAP1R1 | ARNTL | ATRX | BAD | BAX | BCAP31 | BCL2L1 | BCL2L11 | BIK | CALR | CATSPER2 | CLDN11 | CLOCK | CLU | CNBD2 | CNR1 | CREM | CTSB | CYP26B1 | DAZAP1 | DBN1 | DDX6 | DNM2 | FAS | GSR | HMGA1 | HSF1 | IFT81 | IL1A | JAG2 | KDM3A | KHDRBS1 | KIFC1 | MIA | PCDHGC3 | PEX16 | PRM1 | PSME4 | RAI14 | RGS2 | SEPT2 | SEPT4 | SOD1 | SOX30 | SPAG4 | SSTR1 | SSTR2 | SYNE1 | TBC1D20 | TESK1 | TSSK2 | YBX3
1
45. Cocaine apoptotic process Cocaine results in increased apoptotic process 1: Rattus norvegicus Spermatocytes
130 genes: ABL1 | ACIN1 | ACVR1C | ADORA2A | ADRB1 | AIFM1 | AKT1 | APP | ATM | ATP5F1A | BAD | BAG1 | BAG3 | BAX | BCAP31 | BCL2 | BCL2L1 | BCL2L11 | BID | BIK | BNIP2 | BNIP3 | BNIP3L | BTK | C1QBP | CASP2 | CASP3 | CASP4 | CASP8 | CASP9 | CCKBR | CDK5 | CFLAR | CIDEA | CIDEB | CSNK2A1 | CXCR4 | CYCS | DAB2IP | DDIT3 | DDX41 | DPF2 | DYNLL1 | EFNA5 | EIF5A | ELMO1 | EPHA2 | EPHA7 | ERN1 | FADD | FAIM | FAIM2 | FAS | FOXO1 | GAS2 | GPER1 | GSN | GZMM | IFNG | IL1A | IL1B | IL2RA | ITPR1 | JAK2 | LSP1 | LTBR | MAP2K4 | MAPK1 | MAPK14 | MAPK3 | MEF2A | MEF2D | MTFP1 | NAIP1 | NCF1 | NFKB1 | NFKBIA | NOA1 | NR3C1 | NR4A1 | NTN1 | PAK6 | PARP1 | PDCD5 | PDCD6 | PDCD7 | PHLDA3 | PIM1 | PIM3 | PLAGL1 | PPID | PPP1R15A | PPP2CA | PPP2R2B | PRDX5 | PRKCA | PRKCB | PRKCE | PTEN | PTK2B | PURB | RAF1 | RIPK1 | RPS6KA1 | RPS6KA3 | RTKN | RYBP | SEMA3A | SEMA6A | SEPT4 | SGK1 | SIVA1 | SLK | SNCA | SULF1 | TF | TGFBR1 | TNF | TNFRSF10B | TNFRSF11B | TNFRSF18 | TNFRSF1A | TNFRSF1B | TNFRSF25 | TNFSF10 | TRAF2 | TRP53 | XBP1 | XKR8 | ZBTB16
1
46. Cocaine apoptotic process Cocaine results in increased apoptotic process 1: Rattus norvegicus Spermatogonia
130 genes: ABL1 | ACIN1 | ACVR1C | ADORA2A | ADRB1 | AIFM1 | AKT1 | APP | ATM | ATP5F1A | BAD | BAG1 | BAG3 | BAX | BCAP31 | BCL2 | BCL2L1 | BCL2L11 | BID | BIK | BNIP2 | BNIP3 | BNIP3L | BTK | C1QBP | CASP2 | CASP3 | CASP4 | CASP8 | CASP9 | CCKBR | CDK5 | CFLAR | CIDEA | CIDEB | CSNK2A1 | CXCR4 | CYCS | DAB2IP | DDIT3 | DDX41 | DPF2 | DYNLL1 | EFNA5 | EIF5A | ELMO1 | EPHA2 | EPHA7 | ERN1 | FADD | FAIM | FAIM2 | FAS | FOXO1 | GAS2 | GPER1 | GSN | GZMM | IFNG | IL1A | IL1B | IL2RA | ITPR1 | JAK2 | LSP1 | LTBR | MAP2K4 | MAPK1 | MAPK14 | MAPK3 | MEF2A | MEF2D | MTFP1 | NAIP1 | NCF1 | NFKB1 | NFKBIA | NOA1 | NR3C1 | NR4A1 | NTN1 | PAK6 | PARP1 | PDCD5 | PDCD6 | PDCD7 | PHLDA3 | PIM1 | PIM3 | PLAGL1 | PPID | PPP1R15A | PPP2CA | PPP2R2B | PRDX5 | PRKCA | PRKCB | PRKCE | PTEN | PTK2B | PURB | RAF1 | RIPK1 | RPS6KA1 | RPS6KA3 | RTKN | RYBP | SEMA3A | SEMA6A | SEPT4 | SGK1 | SIVA1 | SLK | SNCA | SULF1 | TF | TGFBR1 | TNF | TNFRSF10B | TNFRSF11B | TNFRSF18 | TNFRSF1A | TNFRSF1B | TNFRSF25 | TNFSF10 | TRAF2 | TRP53 | XBP1 | XKR8 | ZBTB16
1
47. Cocaine apoptotic process Cocaine results in increased apoptotic process 1: Rattus norvegicus Seminiferous Tubules
130 genes: ABL1 | ACIN1 | ACVR1C | ADORA2A | ADRB1 | AIFM1 | AKT1 | APP | ATM | ATP5F1A | BAD | BAG1 | BAG3 | BAX | BCAP31 | BCL2 | BCL2L1 | BCL2L11 | BID | BIK | BNIP2 | BNIP3 | BNIP3L | BTK | C1QBP | CASP2 | CASP3 | CASP4 | CASP8 | CASP9 | CCKBR | CDK5 | CFLAR | CIDEA | CIDEB | CSNK2A1 | CXCR4 | CYCS | DAB2IP | DDIT3 | DDX41 | DPF2 | DYNLL1 | EFNA5 | EIF5A | ELMO1 | EPHA2 | EPHA7 | ERN1 | FADD | FAIM | FAIM2 | FAS | FOXO1 | GAS2 | GPER1 | GSN | GZMM | IFNG | IL1A | IL1B | IL2RA | ITPR1 | JAK2 | LSP1 | LTBR | MAP2K4 | MAPK1 | MAPK14 | MAPK3 | MEF2A | MEF2D | MTFP1 | NAIP1 | NCF1 | NFKB1 | NFKBIA | NOA1 | NR3C1 | NR4A1 | NTN1 | PAK6 | PARP1 | PDCD5 | PDCD6 | PDCD7 | PHLDA3 | PIM1 | PIM3 | PLAGL1 | PPID | PPP1R15A | PPP2CA | PPP2R2B | PRDX5 | PRKCA | PRKCB | PRKCE | PTEN | PTK2B | PURB | RAF1 | RIPK1 | RPS6KA1 | RPS6KA3 | RTKN | RYBP | SEMA3A | SEMA6A | SEPT4 | SGK1 | SIVA1 | SLK | SNCA | SULF1 | TF | TGFBR1 | TNF | TNFRSF10B | TNFRSF11B | TNFRSF18 | TNFRSF1A | TNFRSF1B | TNFRSF25 | TNFSF10 | TRAF2 | TRP53 | XBP1 | XKR8 | ZBTB16
1
48. Cocaine apoptotic DNA fragmentation Cocaine results in increased apoptotic DNA fragmentation 1: Rattus norvegicus Seminiferous Tubules
3 genes: CASP3 | KPNB1 | REL
1
49. Cocaine apoptotic DNA fragmentation Cocaine results in increased apoptotic DNA fragmentation 1: Rattus norvegicus Spermatocytes
3 genes: CASP3 | KPNB1 | REL
1
50. Cocaine apoptotic DNA fragmentation Cocaine results in increased apoptotic DNA fragmentation 1: Rattus norvegicus Spermatogonia
3 genes: CASP3 | KPNB1 | REL
1
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