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Home > Encyclopedia > (+)-Bromocriptine

(+)-Bromocriptine

(+)-Bromocriptine structure

(+)-Bromocriptine 

structure
  • CAS No:

    25614-03-3

  • Formula:

    C32H40BrN5O5

  • Chemical Name:

    (+)-Bromocriptine

  • Synonyms:

    Ergotaman-3′,6′,18-trione,2-bromo-12′-hydroxy-2′-(1-methylethyl)-5′-(2-methylpropyl)-,(5′α)-;Ergocryptine,2-bromo-;Indolo[4,3-fg]quinoline,ergotaman-3′,6′,18-trione deriv.;8H-Oxazolo[3,2-a]pyrrolo[2,1-c]pyrazine,ergotaman-3′,6′,18-trione deriv.;(5′α)-2-Bromo-12′-hydroxy-2′-(1-methylethyl)-5′-(2-methylpropyl)ergotaman-3′,6′,18-trione;2-Bromo-α-ergocryptine;2-Bromo-α-ergokryptine;2-Bromoergocryptine;Bromergocryptine;Bromocryptine;Bromocriptine;Bromocriptin;α-Bromoergocryptine;α-Bromocryptine;Bromoergocryptine;2-Bromoergocriptine;SAN 15-754;Sandoz 15-754;(+)-Bromocriptine;α-Ergolactin;Ergolactin;127931-09-3;26409-15-4;47830-26-2;148043-11-2

  • Categories:

    Active Pharmaceutical Ingredients  >  Nervous System Drugs

Description

Crystals.


Solid


Bromocriptine is an indole alkaloid. It has a role as an antiparkinson drug, a hormone antagonist, a dopamine agonist and an antidyskinesia agent. It derives from a hydride of an ergotaman.|Bromocriptine mesylate is a semisynthetic ergot alkaloid derivative with potent dopaminergic activity. It is indicated for the management of signs and symptoms of Parkinsonian Syndrome. Bromocriptine also inhibits prolactin secretion and may be used to treat dysfunctions associated with hyperprolactinemia. It also causes sustained suppression of somatotropin (growth hormone) secretion in some patients with acromegaly. Bromocriptine has been associated with pulmonary fibrosis.|Bromocriptine is an Ergot Derivative.|Bromocriptine is an oral dopamine receptor agonist used predominantly in the therapy of Parkinson disease, but which has other activities including inhibition of prolactin and growth hormone release which has led to its use in acromegaly, infertility and galactorrhea. Bromocriptine therapy is associated with low rate of transient serum enzyme elevations during treatment and has been implicated in rare cases of acute liver injury.|Bromocriptine is a semisynthetic, ergot alkaloid with antiparkinson and lactation inhibitory activities. Bromocriptine selectively binds to and activates the postsynaptic dopamine D2-like receptors in the corpus striatum of the central nervous system (CNS). D2-like receptors are coupled to inhibitory G-proteins, which inhibit adenylyl cyclase, thereby preventing signal transduction mediated via cAMP and leading to an inhibitory effect on neurotransmission. This improves Parkinson symptoms, such as dyskinesia. Bromocriptine also has an inhibitory effect on the anterior pituitary gland, which results in blockage of prolactin secretion, thereby suppressing lactation.|A semisynthetic ergotamine alkaloid that is a dopamine D2 agonist. It suppresses prolactin secretion.

(+)-Bromocriptine Basic Attributes

654.59

654.59

247-128-5

3A64E3G5ZO

DTXSID1022687

C62010

G02CB01|G - Genito urinary system and sex hormones|N - Nervous system

Characteristics

118

3.5

Solid

1.52 g/cm3

215-218 °C (decomp)

891.3ºC at 760 mmHg

492.8ºC

1.696

2.07mg/L(temperature not stated)

4.15E-34mmHg at 25°C

Highly toxic

Thermal decomposition to emit toxic nitrogen oxides and bromide fumes

D20 -195° (c = 1 in methylene chloride)

Safety Information

R20/21/22:Harmful by inhalation, in contact with skin and if swallowed .

S45

Xn,Xi

Warehouse ventilated, dry and low temperature

P201, P202, P260, P263, P264, P270, P281, P301+P312, P308+P313, P330, P405, P501

H302

|Warning|H302 (100%): Harmful if swallowed [Warning Acute toxicity, oral]|P201, P202, P260, P263, P264, P270, P281, P301+P312, P308+P313, P330, P405, and P501|The GHS information provided by 1 company from 1 notification to the ECHA C&L Inventory.

Toxicity

Symptoms of overdosage include nausea, vomiting, and severe hypotension. The most common adverse effects include nausea, headache, vertigo, constipation, light-headedness, abdominal cramps, nasal congestion, diarrhea, and hypotension.

Bromocriptine has been reported to cause serum aminotransferase elevations in a small proportion of patients, but these abnormalities are usually mild, asymptomatic and self-limiting even without dose adjustment. In rare instances, more marked elevations occur that may require dose modification or discontinuation and which can recur with rechallenge. In addition, bromocriptine has been implicated in a small number of cases of clinically apparent acute liver injury, but the clinical characteristics and typical pattern of enzyme elevations has not been characterized and case reports of hepatic injury due to bromocriptine have not been published. Thus, bromocriptine is a very rare cause of clinically apparent liver injury and has not been implicated in causing acute liver failure or chronic liver injury.

90-96% bound to serum albumin

Drug Information

For the treatment of galactorrhea due to hyperprolactinemia, prolactin-dependent menstrual disorders and infertility, prolactin-secreting adenomas, prolactin-dependent male hypogonadism, as adjunct therapy to surgery or radiotherapy for acromegaly or as monotherapy is special cases, as monotherapy in early Parksinsonian Syndrome or as an adjunct with levodopa in advanced cases with motor complications. Bromocriptine has also been used off-label to treat restless legs syndrome and neuroleptic malignant syndrome.|FDA Label

Bromocriptine is an oral dopamine receptor agonist used predominantly in the therapy of Parkinson disease, but which has other activities including inhibition of prolactin and growth hormone release which has led to its use in acromegaly, infertility and galactorrhea. Bromocriptine therapy is associated with low rate of transient serum enzyme elevations during treatment and has been implicated in rare cases of acute liver injury.

Antiparkinson Agents

Bromocriptine 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-receptors. It also exhibits agonist activity (in order of decreasing binding affinity) on 5-hydroxytryptamine (5-HT)1D, dopamine D3, 5-HT1A, 5-HT2A, 5-HT1B, and 5-HT2C receptors, antagonist activity on α2A-adrenergic, α2C, α2B, and dopamine D1 receptors, partial agonist activity at receptor 5-HT2B, and inactivates dopamine D4 and 5-HT7 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 making bromocriptine an effective agent for treating disorders associated with hypersecretion of prolactin. Pulmonary fibrosis may be associated bromocriptine’s agonist activity at 5-HT1B and 5-HT2B receptors.

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.)|Chemical substances which inhibit the function of the endocrine glands, the biosynthesis of their secreted hormones, or the action of hormones upon their specific sites. (See all compounds classified as Hormone Antagonists.)

Approximately 28% of the oral dose is absorbed; however due to a substantial first pass effect, only 6% of the oral dose reaches the systemic circulation unchanged. Bromocriptine and its metabolites appear in the blood as early as 10 minutes following oral administration and peak plasma concentration are reached within 1-1.5 hours. Serum prolactin may be decreased within 2 hours or oral administration with a maximal effect achieved after 8 hours. Growth hormone concentrations in patients with acromegaly is reduced within 1-2 hours with a single oral dose of 2.5 mg and decreased growth hormone concentrations persist for at least 4-5 hours.|Parent drug and metabolites are almost completely excreted via the liver, and only 6% eliminated via the kidney.

Completely metabolized by the liver, primarily by hydrolysis of the amide bond to produce lysergic acid and a peptide fragment, both inactive and non-toxic. Bromocriptine is metabolized by cytochrome P450 3A4 and excreted primarily in the feces via biliary secretion.|Bromocriptine has known human metabolites that include 5-bromo-N-[2,10-dihydroxy-7-(2-methylpropyl)-5,8-dioxo-4-propan-2-yl-3-oxa-6,9-diazatricyclo[7.3.0.02,6]dodecan-4-yl]-7-methyl-6,6a,8,9-tetrahydro-4H-indolo[4,3-fg]quinoline-9-carboxamide and 5-bromo-N-[2,11-dihydroxy-7-(2-methylpropyl)-5,8-dioxo-4-propan-2-yl-3-oxa-6,9-diazatricyclo[7.3.0.02,6]dodecan-4-yl]-7-methyl-6,6a,8,9-tetrahydro-4H-indolo[4,3-fg]quinoline-9-carboxamide.

2-8 hours

The dopamine D2 receptor is a 7-transmembrane G-protein coupled receptor associated with Gi proteins. In lactotrophs, stimulation of dopamine D2 receptor 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.

2 Bromo alpha ergocryptine

(+)-Bromocriptine Use and Manufacturing

Uses

This product has the excitatory effect of dopamine receptors. It can penetrate the blood-brain barrier and enter the central nervous system, excite dopamine receptors and inhibit the secretion of prolactin and growth hormone. Clinically used for Parkinson~"s disease, acromegaly and galactorrhea.

Human Drugs -> FDA Approved Drug Products with Therapeutic Equivalence Evaluations (Orange Book) -> Active Ingredients|Pharmaceuticals

Computed Properties

Molecular Weight:654.6
XLogP3:3.8
Hydrogen Bond Donor Count:3
Hydrogen Bond Acceptor Count:6
Rotatable Bond Count:5
Exact Mass:653.22128
Monoisotopic Mass:653.22128
Topological Polar Surface Area:118
Heavy Atom Count:43
Complexity:1230
Defined Atom Stereocenter Count:6
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

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