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Dive into the research topics of 'Organophosphorus pesticides decrease M2 muscarinic receptor function in guinea pig airway nerves via indirect mechanisms'. Together they form a unique fingerprint.
Agriculture & Biology
muscarine receptors
organophosphorus pesticides
paraoxon
nerve tissue
guinea pigs
parathion
receptors
electric field
antagonism
acetylcholinesterase
neurons
bronchoconstriction
diazinon
neurotoxicity
chlorpyrifos
trachea (vertebrates)
subcutaneous injection
asthma
epidemiological studies
intravenous injection
radio
central nervous system
ileum
cultured cells
ligands
reverse transcriptase polymerase chain reaction
proteins
metabolites
antibodies
assays
Medicine & Life Sciences
Muscarinic M2 Receptors
Paraoxon
Pesticides
Parathion
Guinea Pigs
Acetylcholinesterase
Electric Stimulation
Diazinon
Chlorpyrifos
Neurons
Bronchoconstriction
Muscarinic Receptors
Subcutaneous Injections
Bradycardia
Trachea
Radio
Ileum
Intravenous Administration
Cultured Cells
Epidemiologic Studies
Asthma
Central Nervous System
Proteins
Down-Regulation
Ligands
Polymerase Chain Reaction
Membranes
Messenger RNA
Antibodies
Chemical Compounds
Muscarinic M2 Receptors
Paraoxon
Pesticides
Parathion
Acetylcholinesterase
Neurons
Diazinon
Chlorpyrifos
Metabolites
Neurology
Assays
Muscarinic Receptors
Cells
Membranes
Proteins
Ligands
Messenger RNA
Antibodies