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Home > Encyclopedia > Cabergoline

Cabergoline

pharmaceutical raw materials
Cabergoline structure

Cabergoline 

structure
  • CAS No:

    81409-90-7

  • Formula:

    C26H37N5O2

  • Chemical Name:

    Cabergoline

  • Synonyms:

    Ergoline-8-carboxamide,N-[3-(dimethylamino)propyl]-N-[(ethylamino)carbonyl]-6-(2-propen-1-yl)-,(8β)-;Ergoline-8-carboxamide,N-[3-(dimethylamino)propyl]-N-[(ethylamino)carbonyl]-6-(2-propenyl)-,(8β)-;(8β)-N-[3-(Dimethylamino)propyl]-N-[(ethylamino)carbonyl]-6-(2-propen-1-yl)ergoline-8-carboxamide;Cabergoline;Sogilen;Dostinex;Cabaser;Galastop;Cabaseril;Velactis

  • Categories:

    Analytical Chemistry  >  Standard

Description

Cabergoline is an ergot derived-dopamine D2-like receptor agonist that has high affinity for D2, D3, and 5-HT2B receptors (Ki=0.7, 1.5, and 1.2, respectively).


Solid


Cabergoline is an N-acylurea that is (8R)-ergoline-8-carboxamide in which the hydrogen attached to the piperidine nitrogen (position 6) is substituted by an allyl group and the hydrogens attached to the carboxamide nitrogen are substituted by a 3-(dimethylamino)propyl group and an N-ethylcarbamoyl group. A dopamine D2 receptor agonist, cabergoline is used in the management of Parkinson's disease and of disorders associated with hyperprolactinaemia. It has a role as a dopamine agonist, an antiparkinson drug and an antineoplastic agent.|Cabergoline, an ergot derivative, is a long-acting dopamine agonist and prolactin inhibitor. It is used to treat hyperprolactinemic disorders and Parkinsonian Syndrome. Cabergoline possesses potent agonist activity on dopamine D2 receptors.|Cabergoline is an Ergot Derivative.|Cabergoline is a synthetic ergoline derivative and a long-acting dopamine receptor agonist with high affinity for the dopamine D2 receptor. Cabergoline exerts an inhibitory effect on prolactin secretion by acting on dopamine receptors present in pituitary lactotrophs. This drug also binds to dopamine D2 receptors in the corpus striatum, thereby mimicking the actions of dopamine on motor control. Cabergoline also possesses antioxidant and neuroprotective properties due to its free radical scavenging activity. Cabergoline is used in the treatment of Parkinson's disease and in the treatment of hyperprolactinemia.|An ergoline derivative and dopamine D2-agonist that inhibits PROLACTIN secretion. It is used in the management of HYPERPROLACTINEMIA, and to suppress lactation following childbirth for medical reasons. Cabergoline is also used in the management of PARKINSON DISEASE.

Cabergoline Basic Attributes

451.6

451.60

LL60K9J05T

DTXSID6022719

C47428

QG02CB03|G02CB03|G - Genito urinary system and sex hormones|N - Nervous system

2939690000

Characteristics

71.7

2.6

Solid

1.2±0.1 g/cm3

102-104 °C

1.594

H2O: Insoluble ;DMSO: ≥10mg/mL

Store at +4°C

Sol in ethyl alcohol, chloroform, DMF; slightly sol in 0.1 N HCl; very slightly sol in n-hexane. Insol in water. LD50 orally in male mice: >400 mg/kg (Brambilla)

Safety Information

III

9

UN 2210

3

36/37/38

26-36/37

KE6167600

Xi

P261-P305 + P351 + P338

H302-H315-H319-H335

|Warning|H302 (97.78%): Harmful if swallowed [Warning Acute toxicity, oral]|P261, P264, P270, P271, P280, P301+P312, P302+P352, P304+P340, P305+P351+P338, P312, P321, P330, P332+P313, P337+P313, P362, P403+P233, P405, and P501|Aggregated GHS information provided by 45 companies from 8 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.

Toxicity

Overdosage might be expected to produce nasal congestion, syncope, or hallucinations.

Moderately bound (40% to 42%) to human plasma proteins in a concentration-independent manner.

Drug Information

For the treatment of hyperprolactinemic disorders, either idiopathic or due to prolactinoma (prolactin-secreting adenomas). May also be used to manage symptoms of Parkinsonian Syndrome as monotherapy during initial symptomatic management or as an adjunct to levodopa therapy during advanced stages of disease.|For use in the herd management programme of dairy cows as an aid in the abrupt drying-off by reducing milk production to:reduce milk leakage at drying off;reduce the risk of new intramammary infections during the dry period;reduce discomfort.

Cabergoline stimulates centrally-located dopaminergic receptors resulting in a number of pharmacologic effects. Five dopamine receptor types from two dopaminergic subfamilies have been identified. The dopaminergic D1 receptor subfamily consists of D1 and D5 subreceptors, which are associated with dyskinesias. The dopaminergic D2 receptor subfamily consists of D2, D3 and D4 subreceptors, which are associated with improvement of symptoms of movement disorders. Thus, agonist activity specific for D2 subfamily receptors, primarily D2 and D3 receptor subtypes, are the primary targets of dopaminergic antiparkinsonian agents. It is thought that postsynaptic D2 stimulation is primarily responsible for the antiparkinsonian effect of dopamine agonists, while presynaptic D2 stimulation confers neuroprotective effects. This semisynthetic ergot derivative exhibits potent agonist activity on dopamine D2- and D3-receptors. It also exhibits: agonist activity (in order of decreasing binding affinities) on 5-hydroxytryptamine (5-HT)2B, 5-HT2A, 5-HT1D, dopamine D4, 5-HT1A, dopamine D1, 5-HT1B and 5-HT2C receptors and antagonist activity on α2B, α2A, and α2C receptors. Parkinsonian Syndrome manifests when approximately 80% of dopaminergic activity in the nigrostriatal pathway of the brain is lost. As this striatum is involved in modulating the intensity of coordinated muscle activity (e.g. movement, balance, walking), loss of activity may result in dystonia (acute muscle contraction), Parkinsonism (including symptoms of bradykinesia, tremor, rigidity, and flattened affect), akathesia (inner restlessness), tardive dyskinesia (involuntary muscle movements usually associated with long-term loss of dopaminergic activity), and neuroleptic malignant syndrome, which manifests when complete blockage of nigrostriatal dopamine occurs. High dopaminergic activity in the mesolimbic pathway of the brain causes hallucinations and delusions; these side effects of dopamine agonists are manifestations seen in patients with schizophrenia who have overractivity in this area of the brain. The hallucinogenic side effects of dopamine agonists may also be due to 5-HT2A agonism. The tuberoinfundibular pathway of the brain originates in the hypothalamus and terminates in the pituitary gland. In this pathway, dopamine inhibits lactotrophs in anterior pituitary from secreting prolactin. Increased dopaminergic activity in the tuberoinfundibular pathway inhibits prolactin secretion.

Agents used in the treatment of Parkinson's disease. The most commonly used drugs act on the dopaminergic system in the striatum and basal ganglia or are centrally acting muscarinic antagonists. (See all compounds classified as Antiparkinson Agents.)|Drugs that bind to and activate dopamine receptors. (See all compounds classified as Dopamine Agonists.)

First-pass effect is seen, however the absolute bioavailability is unknown.|After oral dosing of radioactive cabergoline to five healthy volunteers, approximately 22% and 60% of the dose was excreted within 20 days in the urine and feces, respectively. Less than 4% of the dose was excreted unchanged in the urine.|renal cl=0,008 L/min

Hepatic. Cabergoline is extensively metabolized, predominately via hydrolysis of the acylurea bond of the urea moiety. Cytochrome P-450 mediated metabolism appears to be minimal. The main metabolite identified in urine is 6-allyl-8b-carboxy-ergoline (4-6% of dose). Three other metabolites were identified urine (less than 3% of dose).

The elimination half-life is estimated from urinary data of 12 healthy subjects to range between 63 to 69 hours.

The dopamine D2 receptor is a 7-transmembrane G-protein coupled receptor associated with Gi proteins. In lactotrophs, stimulation of dopamine D2 causes inhibition of adenylyl cyclase, which decreases intracellular cAMP concentrations and blocks IP3-dependent release of Ca2+ from intracellular stores. Decreases in intracellular calcium levels may also be brought about via inhibition of calcium influx through voltage-gated calcium channels, rather than via inhibition of adenylyl cyclase. Additionally, receptor activation blocks phosphorylation of p42/p44 MAPK and decreases MAPK/ERK kinase phosphorylation. Inhibition of MAPK appears to be mediated by c-Raf and B-Raf-dependent inhibition of MAPK/ERK kinase. Dopamine-stimulated growth hormone release from the pituitary gland is mediated by a decrease in intracellular calcium influx through voltage-gated calcium channels rather than via adenylyl cyclase inhibition. Stimulation of dopamine D2 receptors in the nigrostriatal pathway leads to improvements in coordinated muscle activity in those with movement disorders. Cabergoline is a long-acting dopamine receptor agonist with a high affinity for D2 receptors. Receptor-binding studies indicate that cabergoline has low affinity for dopamine D1, α1,- and α2- adrenergic, and 5-HT1- and 5-HT2-serotonin receptors.

1-((6-allylergolin-8beta-yl)carbonyl)-1-(3-(dimethylamino)propyl)-3-ethylurea

Cabergoline Use and Manufacturing

Uses

receptor stimulant

Veterinary drugs -> Velactis -> EMA Drug Category|Genito urinary system and sex hormones, Other gynecologicals, Prolactine inhibitors -> Veterinary pharmacotherapeutic group|Human Drugs -> FDA Approved Drug Products with Therapeutic Equivalence Evaluations (Orange Book) -> Active Ingredients

Computed Properties

Molecular Weight:451.6
XLogP3:3.4
Hydrogen Bond Donor Count:2
Hydrogen Bond Acceptor Count:4
Rotatable Bond Count:8
Exact Mass:451.29472544
Monoisotopic Mass:451.29472544
Topological Polar Surface Area:71.7
Heavy Atom Count:33
Complexity:713
Defined Atom Stereocenter Count:3
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

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