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Label Description ILX Version Created CID Modified Time CID Type Created Time Status Creator Last modified
Pilocarpine A slowly hydrolyzed muscarinic agonist with no nicotinic effects. Pilocarpine is used as a miotic and in the treatment of glaucoma. (PubChem) Pharmacology: Pilocarpine is a choline ester miotic and a positively charged quaternary ammonium compound. Pilocarpine, in appropriate dosage, can increase secretion by the exocrine glands. The sweat, salivary, lacrimal, gastric, pancreatic, and intestinal glands and the mucous cells of the respiratory tract may be stimulated. When applied topically to the eye as a single dose it causes miosis, spasm of accommodation, and may cause a transitory rise in intraocular pressure followed by a more persistent fall. Dose-related smooth muscle stimulation of the intestinal tract may cause increased tone, increased motility, spasm, and tenesmus. Bronchial smooth muscle tone may increase. The tone and motility of urinary tract, gallbladder, and biliary duct smooth muscle may be enhanced. Pilocarpine may have paradoxical effects on the cardiovascular system. The expected effect of a muscarinic agonist is vasodepression, but administration of pilocarpine may produce hypertension after a brief episode of hypotension. Bradycardia and tachycardia have both been reported with use of pilocarpine. Mechanism of action: Pilocarpine is a cholinergic parasympathomimetic agent. It increase secretion by the exocrine glands, and produces contraction of the iris sphincter muscle and ciliary muscle (when given topically to the eyes) by mainly stimulating muscarinic receptors. Drug type: Approved. Small Molecule. Drug category: Cholinergic Agents. Miotics. Muscarinic Agonists ILX:0108883 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pilocarpine-Induced status epilepticus model ILX:0108884 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pilosity ILX:0108885 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pimecrolimus Pimecrolimus is an immunomodulating agent used in the treatment of atopic dermatitis (eczema). It is currently available as a topical cream, once marketed by Novartis, (however Galderma will be promoting the molecule in Canada in early 2007) under the trade name Elidel. (Wikipedia) Pharmacology: Pimecrolimus is a chemical that is used to treat atopic dermatitis (eczema). Atopic dermatitis is a skin condition characterized by redness, itching, scaling and inflammation of the skin. The cause of atopic dermatitis is not known; however, scientists believe that it may be due to activation of the immune system by various environmental or emotional triggers. Scientists do not know exactly how pimecrolimus reduces the manifestations of atopic dermatitis, but pimecrolimus reduces the action of T-cells and mast cells which are part of the immune system and contribute to responses of the immune system. Pimecrolimus prevents the activation of T-cells by blocking the effects of chemicals (cytokines) released by the body that stimulate T-cells. Pimecrolimus also reduces the ability of mast cells to release chemicals that promote inflammation. Mechanism of action: Pimecrolimus binds with high affinity to macrophilin-12 (FKBP-12) and inhibits the calcium-dependent phosphatase, calcineurin. As a consequence, it inhibits T cell activation by blocking the transcription of early cytokines. In particular, pimecrolimus inhibits at nanomolar concentrations Interleukin-2 and interferon gamma (Th1-type) and Interleukin-4 and Interleukin-10 (Th2-type) cytokine synthesis in human T cells. Also, pimecrolimus prevents the release of inflammatory cytokines and mediators from mast cells in vitro after stimulation by antigen/lgE. Drug type: Approved. Investigational. Small Molecule. Drug category: Anti-Inflammatory Agents, Non-Steroidal. Dermatologic Agents. Enzyme Inhibitors. Immunosuppressive Agents ILX:0108886 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pimozide A diphenylbutylpiperidine that is effective as an antipsychotic agent and as an alternative to haloperidol for the suppression of vocal and motor tics in patients with Tourette syndrome. Although the precise mechanism of action is unknown, blockade of postsynaptic dopamine receptors has been postulated. (From AMA Drug Evaluations Annual, 1994, p403) Pharmacology: Pimozide is an orally active antipsychotic drug product which shares with other antipsychotics the ability to blockade dopaminergic receptors on neurons in the central nervous system. However, receptor blockade is often accompanied by a series of secondary alterations in central dopamine metabolism and function which may contribute to both pimozide's therapeutic and untoward effects. In addition, pimozide, in common with other antipsychotic drugs, has various effects on other central nervous system receptor systems which are not fully characterized. Pimozide also has less potential for inducing sedation and hypotension as it has more specific dopamine receptor blocking activity than other neuroleptic agents (and is therefore a suitable alternative to haloperidol). Mechanism of action: The ability of pimozide to suppress motor and phonic tics in Tourette's Disorder is thought to be primarily a function of its dopaminergic blocking activity. Pimozide binds to the dopamine D2 receptor in the CNS. It also appears to block voltage-operated calcium channels and acts as an antagonist at opiate receptors (OP2). Drug type: Approved. Small Molecule. Drug category: Anti-Dyskinesia Agents. Antipsychotic Agents. Dopamine Antagonists ILX:0108887 4 FDI Lab - SciCrunch.org 08/24/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex troy sincomb
Pinceau Supracellular structure formed by the descending axon collaterals of several cerebellar basket cells that wrap around the Purkinje cell initial segment. Although the axons contain many vesicles and form terminal endings, most do not synapse directly on the Purkinje cell initial segment but rather end blindly. ILX:0108888 4 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pinceau Fiber Dense plexus formed by the descending collaterals of cerebellar basket cells tha wrap around the Purkinje cell axonal initial segment. ILX:0108889 9 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pindolol A moderately lipophilic beta blocker (adrenergic beta-antagonists). It is non-cardioselective and has intrinsic sympathomimetic actions, but little membrane-stabilizing activity. (From Martindale, The Extra Pharmocopoeia, 30th ed, p638) Pharmacology: Pindolol is a non-selective beta-adrenergic antagonist (beta-blocker) which possesses intrinsic sympathomimetic activity (ISA) in therapeutic dosage ranges but does not possess quinidine-like membrane stabilizing activity. Pindolol impairs AV node conduction and decreases sinus rate and may also increase plasma triglycerides and decrease HDL-cholesterol levels. Pindolol is nonpolar and hydrophobic, with low to moderate lipid solubility. Pindolol has little to no intrinsic sympathomimetic activity and, unlike some other beta-adrenergic blocking agents, pindolol has little direct myocardial depressant activity and does not have an anesthetic-like membrane-stabilizing action. Mechanism of action: Pindolol non-selectively blocks beta-1 adrenergic receptors mainly in the heart, inhibiting the effects of epinephrine and norepinephrine resulting in a decrease in heart rate and blood pressure. By binding beta-2 receptors in the juxtaglomerular apparatus, Pindolol inhibits the production of renin, thereby inhibiting angiotensin II and aldosterone production and therefore inhibits the vasoconstriction and water retention due to angiotensin II and aldosterone, respectively. Drug type: Approved. Small Molecule. Drug category: Adrenergic beta-Antagonists. Antihypertensive Agents. Serotonin Antagonists. Vasodilator Agents ILX:0108890 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pineal body A midline, cone like structure located in the dorso-caudal roof of the 3rd ventricle, attached by peduncles to the habenular and posterior commissures. The stalk contains nerve fibers, blood vessels, connective tissue and parenchymal cells (Paxinos, The Rat Central Nervous System, 2nd ed, pg 399). ILX:0108891 14 FDI Lab - SciCrunch.org 01/17/2023 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pineal body of ABA 2009 ILX:0108892 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pineal Gland of CIVM postnatal rat brain atlas The pineal gland shares the same developmental origin as the diencephalon, but it is spatially distinct and can be very rapidly segmented on virtually any MRI contrast. The gland sits just dorsal to the superior colliculi and is free floating in most coronal slices. The simplest way to segment this structure is with a seeded threshold (magic wand) tool or a propagating wave (blow) tool. ILX:0108893 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pineal gland of PHT00 ILX:0108894 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pineal gland of WHS11 Delineation of the pineal gland in the Waxholm mouse atlas, as seen in T1 and T2* weighted volumes. As seen in sagittal at the midline: Low intensity structure between the cerebral cortex and superior colliculose ILX:0108895 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pinealocyte Main cell of the pineal gland known to secrete melatonin. ILX:0108896 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pinealoma Neoplasms which originate from pineal parenchymal cells that tend to enlarge the gland and be locally invasive. The two major forms are pineocytoma and the more malignant pineoblastoma. Pineocytomas have moderate cellularity and tend to form rosette patterns. Pineoblastomas are highly cellular tumors containing small, poorly differentiated cells. These tumors occasionally seed the neuroaxis or cause obstructive HYDROCEPHALUS or Parinaud's syndrome. GERMINOMA; CARCINOMA, EMBRYONAL; GLIOMA; and other neoplasms may arise in the pineal region with germinoma being the most common pineal region tumor (MeSH). ILX:0108897 4 FDI Lab - SciCrunch.org 08/24/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex troy sincomb
Pink Red color having medium to high brightness and low to moderate saturation. ILX:0108898 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
PINK1 Mutant Drosophila This fly shows a mutation in PTEN induced kinase 1 (PINK1). Loss of function of PINK1 causes many symptoms similar to human Parkinson's disease. Common phenotypes show mitochondrial structural defects, reduced ATP content, and alpha-synuclein aggregation. This mutation is used to study Parkinson's disease in the laboratory. ILX:0108899 5 FDI Lab - SciCrunch.org 08/24/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex troy sincomb
Pinnate Having leaflets or leaflet-like structures on each side of a common axis. ILX:0108900 3 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pinocytic vesicle A membrane-bounded, uncoated intracellular vesicle formed by the process of pinocytosis. ILX:0108901 6 FDI Lab - SciCrunch.org 06/18/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex NeuroLex
Pioglitazone Pioglitazone is used for the treatment of diabetes mellitus type 2. Pioglitazone selectively stimulates nuclear receptor peroxisone proliferator-activated receptor gamma (PPAR-gamma). It modulates the transcription of the insulin-sensitive genes involved in the control of glucose and lipid metabolism in the lipidic, muscular tissues and in the liver. Pharmacology: Pioglitazone, a member of the drug group known as the thiazolidinediones or "insulin sensitizers", is not chemically or functionally related to the alpha-glucosidase inhibitors, the biguanides, or the sulfonylureas. Pioglitazone targets insulin resistance and, hence, is used alone or in combination with insulin, metformin, or asulfonylurea as an antidiabetic agent. Mechanism of action: Pioglitazone acts as an agonist at peroxisome proliferator activated receptors (PPAR) in target tissues for insulin action such as adipose tissue, skeletal muscle, and liver. Activation of PPAR-gamma receptors regulates the transcription of insulin-responsive genes involved in the control of glucose production, transport, and utilization. In this way, pioglitazone enhances tissue sensitivity to insulin. Drug type: Approved. Investigational. Small Molecule. Drug category: Hypoglycemic Agents. Thazolidinediones ILX:0108902 4 FDI Lab - SciCrunch.org 08/24/2018 FDI Lab - SciCrunch.org term 12/09/2016 0 NeuroLex troy sincomb

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