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Home > Encyclopedia > Ketorolac

Ketorolac

pharmaceutical raw materials
Ketorolac structure

Ketorolac 

structure
  • CAS No:

    74103-06-3

  • Formula:

    C15H13NO3

  • Chemical Name:

    Ketorolac

  • Synonyms:

    1H-Pyrrolizine-1-carboxylic acid,5-benzoyl-2,3-dihydro-;1H-Pyrrolizine-1-carboxylic acid,5-benzoyl-2,3-dihydro-,(±)-;5-Benzoyl-2,3-dihydro-1H-pyrrolizine-1-carboxylic acid;RS 37619;Ketorolac;(±)-Ketorolac;Acular LS;Sprix;Keromin;Sukerin;AAGN 199584;66635-83-4

  • Categories:

    Active Pharmaceutical Ingredients  >  Antipyretic Analgesics

Description

Ketorolac is a non-steroidal anti-inflammatory agent, acting as a nonselective COX inhibitor, with IC50s of 20 nM for COX-1 and 120 nM for COX-2.


Solid


Ketorolac is a racemate comprising equimolar amounts of (R)-(+)- and (S)-(-)-5-benzoyl-2,3-dihydro-1H-pyrrolizine-1-carboxylic acid. While only the (S)-(-) enantiomer is a COX1 and COX2 inhibitor, the (R)-(+) enantiomer exhibits potent analgesic activity. A non-steroidal anti-inflammatory drug, ketorolac is mainly used (generally as the tromethamine salt) for its potent analgesic properties in the short-term management of post-operative pain, and in eye drops to relieve the ocular itching associated with seasonal allergic conjunctivitis. It was withdrawn from the market in many countries in 1993 following association with haemorrhage and renal failure. It has a role as a cyclooxygenase 2 inhibitor, a cyclooxygenase 1 inhibitor, a non-steroidal anti-inflammatory drug and an analgesic. It contains a (R)-ketorolac and a (S)-ketorolac. It is a conjugate acid of a ketorolac(1-).|Ketorolac is a Non-steroidal anti-inflammatory drug (NSAID) and is commercially available as an oral tablet, injectable, nasal spray and as an ophthalmic solution. It's analgesic properties make it a useful pain management tool across many settings including postoperative pain, rheumatoid arthritis, osteoarthritis, menstrual disorders, headaches, spinal and soft tissue pain, and ankylosing spondylitis. Impressively, ketorolac has a similar efficacy to standard doses of morphine and meperidine making it a useful opioid sparing agent.|Ketorolac is a potent, short acting nonsteroidal antiinflammatory drug (NSAID) that is available in both parenteral and oral forms. Ketorolac is generally given for a few days only, and has not been linked to instances of idiosyncratic drug induced liver disease in the published literature.|A pyrrolizine carboxylic acid derivative structurally related to INDOMETHACIN. It is an NSAID and is used principally for its analgesic activity. (From Martindale The Extra Pharmacopoeia, 31st ed)

Ketorolac Basic Attributes

255.27

255.27

616-049-1

DTXSID8023189

S01|S01BC05|M - Musculo-skeletal system|S - Sensory organs

Characteristics

59.3

1.9

White crystalline or white powder

1.3±0.1 g/cm3

160.5 °C

223.7°C at 760 mmHg

252.1±27.3 °C

1.659

183mg/L(32 ºC)

LD50 orally in mice: ~200 mg/kg (Rooks)

Safety Information

II

6.1(a)

3249

P264, P270, P301+P310, P321, P330, P405, P501

H301

|Danger|H301 (100%): Toxic if swallowed [Danger Acute toxicity, oral]|P261, P264, P270, P271, P280, P301+P310, 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 6 companies from 2 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.

Toxicity

The rate of adverse effects increases with higher doses of ketorolac. The most frequently observed adverse effects in patients occurring with an incidence of greater than 10% include: abdominal pain, dyspepsia, nausea, and headaches. Most adverse effects associated with short term use are mild in nature, related to the gastrointestinal tract and nervous system, and occur in roughly 39% of patients. Common symptoms of ketorolac overdose include nausea, vomiting, epigastric pain, gastrointestinal bleeding, lethargy and drowsiness. More rare symptoms of overdose include acute renal failure, hypertension, respiratory depression, and coma. Ketorolac is classified as Pregnancy Category C since there is a lack of evidence demonstrating safety in pregnant women. NSAIDs including ketorolac increase the risk of premature closure of the fetal ductus arteriosus in the 3rd trimester; therefore, beginning at 30 weeks gestation, pregnant women should avoid ketorolac. Ketorolac has been shown to be excreted in breast milk, and although available data has not demonstrated any adverse effects in nursing infants, practitioners should proceed with caution when suggesting ketorolac for nursing mothers. The benefits should outweigh the risks and the mother should be counselled to monitor the infant closely and to contact the infant's healthcare provider should any adverse effects arise. Women who are trying to conceive are not advised to take ketorolac since it's effect on prostaglandin synthesis may impair fertility.

Prospective studies show that up to 1% of patients taking ketorolac experience at least transient serum aminotransferase elevations. These may resolve even with drug continuation. Marked aminotransferase elevations (>3 fold elevated) occur in

>99% of Ketorolac is plasma protein bound.

Drug Information

Ketorolac is a Non-steroidal anti-inflammatory drug (NSAID) and has antipyretic, analgesic and anti-inflammatory properties. It is indicated for short term management of acute pain that requires the caliber of pain management offered by opioids. Clinicians may choose to initiate ketorolac to manage post-operative pain, spinal and soft tissue pain, rheumatoid arthritis, osteoarthritis, ankylosing spondylitis, menstrual disorders and headaches among other ailments. Regardless of the etiology of pain, patients should use the lowest possible dose, and avoid using ketorolac for an extended period of time (ideally ≤ 5 days). A benefit of choosing ketorolac over other analgesics with similar potency is that that there does not appear to be a risk of dependence or tolerance with ketorolac use.|Omidria is indicated in adults for maintenance of intraoperative mydriasis, prevention of intraoperative miosis and reduction of acute postoperative ocular pain in intraocular lens replacement surgery.

Ketorolac is a potent, short acting nonsteroidal antiinflammatory drug (NSAID) that is available in both parenteral and oral forms. Ketorolac is generally given for a few days only, and has not been linked to instances of idiosyncratic drug induced liver disease in the published literature.

Nonsteroidal Antiinflammatory Drugs

Ketorolac is a non-selective NSAID and acts by inhibiting both COX-1 and COX-2 enzymes which are normally responsible for converting arachidonic acid to prostaglandins. The COX-1 enzyme is constitutively active and can be found in platelets, gastric mucosa, and vascular endothelium. On the other hand, the COX-2 enzyme is inducible and mediates inflammation, pain and fever. As a result, inhibition of the COX-1 enzyme is linked to an increased risk of bleeding and risk of gastric ulceration, while the desired anti-inflammatory and analgesic properties are linked to inhibition of the COX-2 enzyme. Therefore, despite it's effectiveness in pain management, ketorolac should not be used long-term since this increases the risk of serious adverse effects such as gastrointestinal bleeding, peptic ulcers, and perforations.

Anti-inflammatory agents that are non-steroidal in nature. In addition to anti-inflammatory actions, they have analgesic, antipyretic, and platelet-inhibitory actions.They act by blocking the synthesis of prostaglandins by inhibiting cyclooxygenase, which converts arachidonic acid to cyclic endoperoxides, precursors of prostaglandins. Inhibition of prostaglandin synthesis accounts for their analgesic, antipyretic, and platelet-inhibitory actions; other mechanisms may contribute to their anti-inflammatory effects. (See all compounds classified as Anti-Inflammatory Agents, Non-Steroidal.)|Compounds or agents that combine with cyclooxygenase (PROSTAGLANDIN-ENDOPEROXIDE SYNTHASES) and thereby prevent its substrate-enzyme combination with arachidonic acid and the formation of eicosanoids, prostaglandins, and thromboxanes. (See all compounds classified as Cyclooxygenase Inhibitors.)

Ketorolac is rapidly, and completely absorbed after oral administration with a bioavailability of 80% after oral administration. Cmax is attained 20-60 minutes after administration, and after intramuscular administration, the area under the plasma concentration-time curve (AUC) is proportional to the dose administered. After intramuscular administration, ketorolac demonstrates a time to maximal plasma concentration (tmax) of approximately 45-50 minutes, and a tmax of 30-40 minutes after oral administration. The rate of absorption may be reduced by food; however, the extent of absorption remains unaffected.|Ketorolac is primarily renally eliminated and approximately 92% of the dose can be recovered in the urine with 60% of this proportion recovered unchanged, and 40% recovered as metabolites. In addition 6% of a single dose is eliminated in the feces.|The apparent volume of distribution of ketorolac in healthy human subjects is 0.25 L/kg or less.|The plasma clearance of ketorolac is 0.021 to 0.037 L/h/kg. Further, studies have illustrated that clearance of oral, IM and IV doses of ketorolac are comparable which suggests linear kinetics. It should also be noted that clearance in children is about double the clearance found in adults.

Ketorolac is heavily metabolized via hydroxylation or conjugation in the liver; however, it appears that the key metabolic pathway is glucuronic acid conjugation. Enzymes involved in phase I metabolism include CYP2C8 and CYP2C9, while phase II metabolism is carried out by UDP-glucuronosyltransferase (UGT) 2B7.

Ketorolac tromethamine is administered as a racemic mixture, therefore the half-life of each enantiomer must be considered. The half life of the S-enantiomer is ~2.5 hours, while the half life of the R-enantiomer is ~5 hours. Based on this data, the S enantiomer is cleared about twice as fast as the R enantiomer.

Ketorolac inhibits key pathways in prostaglandin synthesis which is crucial to it's mechanism of action. Although ketorolac is non-selective and inhibits both COX-1 and COX-2 enzymes, it's clinical efficacy is derived from it's COX-2 inhibition. The COX-2 enzyme is inducible and is responsible for converting arachidonic acid to prostaglandins that mediate inflammation and pain. By blocking this pathway, ketorolac achieves analgesia and reduces inflammation. Ketorolac is administered as a racemic mixture; however, the "S" enantiomer is largely responsible for it's pharmacological activity.

Ketorolac

Ketorolac Use and Manufacturing

Methods of Manufacturing

Method 1: Under the action of N-chlorosuccinimide, pyrrole and dimethyl sulfide give 2-(methylthio)pyrrole. 2-(methylthio)pyrrole was acylated with benzoyldimethylamine under reflux in dichloroethane solution containing phosphorus oxychloride to give 2-(methylthio)-5-benzoyl Pi Luo. This compound is condensed with spirodioxaoctanedione to obtain compound (I). Compound (I) is first oxidized and then methanolyzed to give diesterate (II). (II) In dimethylformamide, cyclization under the action of sodium hydride gives compound (III). (III) Hydrolysis and decarboxylation to obtain ketorolac. Method 2: Aminoethanol and dimethyl 3-oxoglutarate are reacted to obtain compound (IV). (IV) Heating and cyclization with bromoacetaldehyde to obtain compound (V). (V) After mesylation, re-iodination to obtain compound (VI). (Ⅵ) Compound (VII) is cyclized under the action of a base. (VII) After hydrolysis, re-esterify and decarboxylate again to obtain compound (VIII). (VIII) Acylation with benzoyl dimethylamine followed by hydrolysis to obtain ketorolac. Method 3: Under the action of phosphorus oxychloride, pyrrole reacts with N-benzoylmorpholine in dichloroethane to obtain 2-benzoylpyrrole with a yield of 72.3%. Potassium permanganate, manganese diacetate tetrahydrate and glacial acetic acid were warmed together, and then carefully dropped into acetic anhydride. After the drop, the solution was cooled to room temperature, triethyl orthoformate, 2-benzoylpyrrole and anhydrous sodium acetate were added, and the mixture was stirred with nitrogen at 65°C. After treatment, the triethyl orthoformate derivative was obtained with a yield of 86%. The derivative is refluxed in dichloroethane under the action of potassium carbonate and tetra-n-butylammonium bromide to obtain a cyclized product; without purification, ketorolac is obtained after hydrolysis and acidification, with a yield of 66.7%.

Uses

prostaglandin F2a analogue

Human drugs -> Omidria -> EMA Drug Category|Ophthalmologicals -> Human pharmacotherapeutic group|Human Drugs -> FDA Approved Drug Products with Therapeutic Equivalence Evaluations (Orange Book) -> Active Ingredients|Pharmaceuticals

Computed Properties

Molecular Weight:255.27
XLogP3:1.9
Hydrogen Bond Donor Count:1
Hydrogen Bond Acceptor Count:3
Rotatable Bond Count:3
Exact Mass:255.08954328
Monoisotopic Mass:255.08954328
Topological Polar Surface Area:59.3
Heavy Atom Count:19
Complexity:376
Undefined Atom Stereocenter Count:1
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

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