Morphine


Curated chemical-phenotype interactions from CTD
GO IDGO nameInteraction typeReference
GO:0000165 Mapk cascade Increases phenotype PMID:15717263; PMID:16102899; PMID:19292871; PMID:20600172; PMID:21197294
GO:0000278 Mitotic cell cycle Affects phenotype PMID:15160390
GO:0001659 Temperature homeostasis Decreases phenotype PMID:35449307; PMID:35477798
GO:0001774 Microglial cell activation Affects phenotype PMID:24756886; PMID:33607128; PMID:37394652
GO:0002027 Regulation of heart rate Increases phenotype PMID:10096766; PMID:6745320; PMID:2322896; PMID:3365320; PMID:544111; PMID:7669374; PMID:6131355; PMID:9806696
GO:0002209 Behavioral defense response Increases phenotype PMID:27126842
GO:0003094 Glomerular filtration Increases phenotype PMID:3346840
GO:0004602 Glutathione peroxidase activity Decreases phenotype PMID:32129083
GO:0004784 Superoxide dismutase activity Decreases phenotype PMID:32129083
GO:0006171 Camp biosynthetic process Increases phenotype PMID:23292329; PMID:23300227; PMID:23608241
GO:0006309 Apoptotic dna fragmentation Affects phenotype PMID:10534122; PMID:12015209; PMID:12812915; PMID:12927789; PMID:15345483; PMID:15717263; PMID:7848904; PMID:8392561; PMID:8474033; PMID:9429908; PMID:9469450
GO:0006914 Autophagy Increases phenotype PMID:20190558
GO:0006915 Apoptotic process Affects phenotype PMID:10534122; PMID:10534122; PMID:16529824; PMID:10809959; PMID:10809959; PMID:15039469; PMID:11590188; PMID:12015209; PMID:12470470; PMID:12702572; PMID:12812915; PMID:12927789; PMID:14871405; PMID:15039469; PMID:15345483; PMID:15717263; PMID:16102899; PMID:16192531; PMID:16529824; PMID:17465212; PMID:19070643; PMID:19071087; PMID:19292871; PMID:19477204; PMID:20600172; PMID:20711699; PMID:20711699; PMID:20885006; PMID:20885006; PMID:7848904; PMID:8392561; PMID:8392561; PMID:8474033; PMID:9429908; PMID:9469450
GO:0006954 Inflammatory response Increases phenotype PMID:37394652
GO:0006979 Response to oxidative stress Increases phenotype PMID:10395028; PMID:12812915; PMID:14871405; PMID:15039469; PMID:15379780; PMID:17542780; PMID:19070643; PMID:19292871; PMID:20564181
GO:0007049 Cell cycle Decreases phenotype PMID:12702572; PMID:18832014
GO:0007190 Activation of adenylate cyclase activity Affects phenotype PMID:23296104
GO:0007268 Chemical synaptic transmission Increases phenotype PMID:14519453; PMID:15813995; PMID:15829634; PMID:16522322; PMID:20203187; PMID:6258392
GO:0007613 Memory Affects phenotype PMID:32129083
GO:0007617 Mating behavior Decreases phenotype PMID:12605406
GO:0007625 Grooming behavior Increases phenotype PMID:27126842; PMID:37981055
GO:0008088 Axo-dendritic transport Decreases phenotype PMID:7506589
GO:0008217 Regulation of blood pressure Increases phenotype PMID:10096766; PMID:3814921; PMID:6360061; PMID:10096766; PMID:6265238; PMID:6274577; PMID:6745320; PMID:11373431; PMID:6131355; PMID:6274577; PMID:9806696
GO:0008219 Cell death Increases phenotype PMID:10395028; PMID:16210602; PMID:17542780; PMID:18832014; PMID:1953803; PMID:20190558
GO:0008283 Cell population proliferation Affects phenotype PMID:11590188; PMID:12702572; PMID:12812915; PMID:14644156; PMID:15673448; PMID:17542780; PMID:18385270; PMID:18385270; PMID:8770954; PMID:18832014; PMID:19292871; PMID:21197294; PMID:8384517; PMID:9045750; PMID:99848
GO:0009408 Response to heat Decreases phenotype PMID:23624290; PMID:23624290; PMID:31400342; PMID:28962077; PMID:31400342
GO:0009410 Response to xenobiotic stimulus Affects phenotype PMID:23296104
GO:0010033 Response to organic substance Increases phenotype PMID:26791602
GO:0010286 Heat acclimation Increases phenotype PMID:29499192
GO:0010940 Positive regulation of necrotic cell death Increases phenotype PMID:26386147
GO:0019226 Transmission of nerve impulse Decreases phenotype PMID:6745320
GO:0019233 Sensory perception of pain Decreases phenotype PMID:30504240
GO:0019369 Arachidonic acid metabolic process Increases phenotype PMID:26791602
GO:0019722 Calcium-mediated signaling Increases phenotype PMID:15345483
GO:0022900 Electron transport chain Affects phenotype PMID:21178816
GO:0030154 Cell differentiation Affects phenotype PMID:15673448; PMID:16210602; PMID:18832014; PMID:8384517
GO:0030182 Neuron differentiation Affects phenotype PMID:26877219
GO:0030595 Leukocyte chemotaxis Affects phenotype PMID:19058542; PMID:2968671; PMID:9629232
GO:0031623 Receptor internalization Increases phenotype PMID:23300227
GO:0031914 Negative regulation of synaptic plasticity Increases phenotype PMID:35461814
GO:0031987 Locomotion involved in locomotory behavior Affects phenotype PMID:23624290
GO:0032792 Negative regulation of creb transcription factor activity Affects phenotype PMID:22454534
GO:0032793 Positive regulation of creb transcription factor activity Affects phenotype PMID:22454534
GO:0033138 Positive regulation of peptidyl-serine phosphorylation Affects phenotype PMID:24398105
GO:0035176 Social behavior Affects phenotype PMID:27126842; PMID:37981055
GO:0035640 Exploration behavior Increases phenotype PMID:27126842
GO:0035810 Positive regulation of urine volume Affects phenotype PMID:1356599; PMID:8968362
GO:0035812 Renal sodium excretion Decreases phenotype PMID:3346840
GO:0035882 Defecation rhythm Decreases phenotype PMID:22783044
GO:0036123 Histone h3-k9 dimethylation Increases phenotype PMID:33891991
GO:0042116 Macrophage activation Increases phenotype PMID:8770954; PMID:9045750
GO:0042119 Neutrophil activation Affects phenotype PMID:10070497; PMID:2968671
GO:0042310 Vasoconstriction Increases phenotype PMID:14751409; PMID:16009644
GO:0042311 Vasodilation Increases phenotype PMID:14751409; PMID:623024; PMID:8941028
GO:0042391 Regulation of membrane potential Affects phenotype PMID:21645529; PMID:7052335
GO:0042415 Norepinephrine metabolic process Affects phenotype PMID:24398105
GO:0042416 Dopamine biosynthetic process Decreases phenotype PMID:24008352
GO:0043278 Response to morphine Decreases phenotype PMID:33607128; PMID:35461814
GO:0043299 Leukocyte degranulation Increases phenotype PMID:16765536; PMID:1725687
GO:0043966 Histone h3 acetylation Decreases phenotype PMID:25643298
GO:0043967 Histone h4 acetylation Increases phenotype PMID:25643298
GO:0044648 Histone h3-k4 dimethylation Increases phenotype PMID:33891991
GO:0045793 Positive regulation of cell size Increases phenotype PMID:15647486
GO:0046718 Viral entry into host cell Decreases phenotype PMID:23751259
GO:0048167 Regulation of synaptic plasticity Affects phenotype PMID:17052847
GO:0048265 Response to pain Decreases phenotype PMID:23624290
GO:0048266 Behavioral response to pain Decreases phenotype PMID:27535976; PMID:31400342; PMID:33607128; PMID:33891991; PMID:35449307; PMID:35477798
GO:0050729 Positive regulation of inflammatory response Decreases phenotype PMID:33607128
GO:0050901 Leukocyte tethering or rolling Decreases phenotype PMID:10964586
GO:0050965 Detection of temperature stimulus involved in sensory perception of pain Decreases phenotype PMID:26791602
GO:0050966 Detection of mechanical stimulus involved in sensory perception of pain Decreases phenotype PMID:26791602
GO:0051461 Positive regulation of corticotropin secretion Affects phenotype PMID:24398105
GO:0051881 Regulation of mitochondrial membrane potential Decreases phenotype PMID:19070643
GO:0051899 Membrane depolarization Increases phenotype PMID:27068812
GO:0060073 Micturition Affects phenotype PMID:2565272
GO:0060079 Excitatory postsynaptic potential Affects phenotype PMID:10516325; PMID:11164562; PMID:12802411; PMID:19159664; PMID:3419591
GO:0060326 Cell chemotaxis Affects phenotype PMID:11106302; PMID:15647486
GO:0061366 Behavioral response to chemical pain Increases phenotype PMID:18164607; PMID:29499192
GO:0061367 Behavioral response to acetic acid induced pain Decreases phenotype PMID:29555329
GO:0061368 Behavioral response to formalin induced pain Affects phenotype PMID:18164607; PMID:29555329; PMID:31218677; PMID:31218677; PMID:31857126
GO:0070372 Regulation of erk1 and erk2 cascade Affects phenotype PMID:22454534
GO:0070989 Oxidative demethylation Increases phenotype PMID:16595712
GO:0070994 Detection of oxidative stress Increases phenotype PMID:32129083
GO:0071316 Cellular response to nicotine Affects phenotype PMID:27068812
GO:0080182 Histone h3-k4 trimethylation Increases phenotype PMID:25643298; PMID:33891991
GO:0090116 C-5 methylation of cytosine Affects phenotype PMID:33891991
GO:0090279 Regulation of calcium ion import Affects phenotype PMID:6259338
GO:0090394 Negative regulation of excitatory postsynaptic potential Increases phenotype PMID:6259338
GO:0097280 Histamine secretion mediated by immunoglobulin Increases phenotype PMID:15770054; PMID:1725687; PMID:2471936; PMID:2578752; PMID:8941028; PMID:9243332
GO:0098532 Histone h3-k27 trimethylation Increases phenotype PMID:25643298; PMID:33891991
GO:0120054 Intestinal motility Decreases phenotype PMID:27068812
GO:0120059 Negative regulation of small intestinal transit Decreases phenotype PMID:26791602
GO:1900273 Positive regulation of long-term synaptic potentiation Decreases phenotype PMID:24309294
GO:1901216 Positive regulation of neuron death Increases phenotype PMID:26386147
GO:1901568 Fatty acid derivative metabolic process Increases phenotype PMID:26791602
GO:1902952 Positive regulation of dendritic spine maintenance Decreases phenotype PMID:24309294
GO:1905792 Positive regulation of mechanosensory behavior Decreases phenotype PMID:33607128
GO:1990708 Conditioned place preference Increases phenotype PMID:27461790; PMID:35461814
GO:1990770 Small intestine smooth muscle contraction Affects phenotype PMID:24345467
GO:2000252 Negative regulation of feeding behavior Increases phenotype PMID:27126842
GO:2000854 Positive regulation of corticosterone secretion Affects phenotype PMID:24398105

DISCLAIMER

We have built a comprehensive resource which compiles potential endocrine disrupting chemicals (EDCs) based on the observed adverse effects or endocrine-mediated endpoints in published experiments on humans or rodents to support basic research. We are not responsible for any errors or omissions in the published research articles or supporting literature on potential EDCs compiled in this resource. Users are advised to exercise their own judgement on the weight of evidence for potential EDCs compiled in this resource. Importantly, our sole goal to build this resource on potential EDCs is to enable future basic research towards better understanding of the systems-level perturbations upon chemical exposure rather than influencing regulatory advice on chemical use.