Product
Supplier
Encyclopedia
Inquiry
Home > Encyclopedia > Flurandrenolide

Flurandrenolide

pharmaceutical raw materials
Flurandrenolide structure

Flurandrenolide 

structure
  • CAS No:

    1524-88-5

  • Formula:

    C24H33FO6

  • Chemical Name:

    Flurandrenolide

  • Synonyms:

    Pregn-4-ene-3,20-dione,6-fluoro-11,21-dihydroxy-16,17-[(1-methylethylidene)bis(oxy)]-,(6α,11β,16α)-;Pregn-4-ene-3,20-dione,6α-fluoro-11β,16α,17,21-tetrahydroxy-,cyclic 16,17-acetal with acetone;2H-Naphth[2′,1′:4,5]indeno[1,2-d][1,3]dioxole,pregn-4-ene-3,20-dione deriv.;(6α,11β,16α)-6-Fluoro-11,21-dihydroxy-16,17-[(1-methylethylidene)bis(oxy)]pregn-4-ene-3,20-dione;33379;Cordran;Drenison;6α-Fluoro-16α-hydroxyhydrocortisone 16,17-acetonide;Flurandrenolone;Flurandrenolone acetonide;Fludroxycortide;Flurandrenolide;Fluorandrenolone;Fluoroandrenolone acetonide;Fluorandrenolone acetonide;Haelan;6α-Fluoro-11β,21-dihydroxy-16α,17α-(isopropylidenedioxy)pregn-4-ene-3,20-dione;Alondra F;Drocort;Haldrone F;L 33379;Sermaka;Fluadrenolone;Fludroxicortide;15793-33-6;744198-79-6

  • Categories:

    Active Pharmaceutical Ingredients  >  Hormones and the Endocrine System

Description

Flurandrenolide, 6α-fluoro-11β,21-dihydroxy-16α,17-[(1-methylethylidene)bis(oxy)]pregn-4-ene-3,20-dione, although available as a tape product,can stick to and remove damaged skin, so it should beavoided with vesicular or weeping dermatoses.


Solid


Flurandrenolide is a 21-hydroxy steroid.|A corticosteroid used topically in the treatment of various skin disorders. It is usually employed as a cream or an ointment, and is also used as a polyethylene tape with an adhesive. (From Martindale, The Extra Pharmacopoeia, 30th ed, p733)|Flurandrenolide is a Corticosteroid. The mechanism of action of flurandrenolide is as a Corticosteroid Hormone Receptor Agonist.|Flurandrenolide is a synthetic glucocorticoid with anti-inflammatory and anti-allergic properties. Flurandrenolide exerts its effects by interacting with specific cytoplasmic glucocorticoid receptors and subsequently activates glucocorticoid receptor mediated gene expression. The synthesis of certain anti-inflammatory proteins is induced while the synthesis of certain inflammatory mediators is inhibited. As a result, there is an overall reduction in chronic inflammation and autoimmune reactions.

Flurandrenolide Basic Attributes

436.51

436.51

216-196-8

8EUL29XUQT

DTXSID2047434

C47537

Crystals from acetone + hexane|WHITE TO OFF-WHITE, FLUFFY CRYSTALLINE POWDER

D - Dermatologicals

2937220000

Characteristics

93.1

0.6

Solid

1.0796 (rough estimate)

247-255 °C

578.7±50.0 °C(Predicted)

303.8ºC

1.5980 (estimate)

H2O: Insoluble

Flurandrenolide cream, lotion, and ointment should be protected from light and stored in tight containers at a temperature less than 40 deg C, preferably between 15-30 deg C; freezing should be avoided. Flurandrenolide tape should be stored at 15-30 deg C.

2.96X10-14 mm Hg at 25 deg C (est)

D +140-150° (CHCl3)

ODORLESS

Henry's Law constant = 1.05X10-12 atm-cu m/mole at 25 °C (est)

201.2 Ų [M+H]+ [CCS Type: TW, Method: calibrated with polyalanine and drug standards]

Hydroxyl radical reaction rate constant = 1.36X10-10 cu cm/molec-sec at 25 °C (est)

Safety Information

NONH for all modes of transport

3

TU5024800

Stable at normal temperatures and pressures.

P305 + P351 + P338

H319

SRP: At the time of review, criteria for land treatment or burial (sanitary landfill) disposal practices are subject to significant revision. Prior to implementing land disposal of waste residue (including waste sludge), consult with environmental regulatory agencies for guidance on acceptable disposal practices.

The Approved Drug Products with Therapeutic Equivalence Evaluations List identifies currently marketed prescription drug products, incl flurandrenolide approved on the basis of safety and effectiveness by FDA under sections 505 of the Federal Food, Drug, and Cosmetic Act.

|Warning|H319 (97.56%): Causes serious eye irritation [Warning Serious eye damage/eye irritation]|P264, P280, P305+P351+P338, and P337+P313|Aggregated GHS information provided by 41 companies from 4 notifications to the ECHA C&L Inventory.

Toxicity

Systemic absorption of topical corticosteroids has produced reversible hypothalamic-pituitary- adrenal (HPA) axis suppression, manifestations of Cushing's syndrome, hyperglycemia, and glucosuria in some patients

The effect of glucocorticoids on oral anticoagulant therapy is variable, and the efficacy of oral anticoagulants has been reported to be enhanced or diminished with concomitant glucocorticoid administration. Patients receiving glucocorticoids and oral anticoagulants concomitantly should be monitored (e.g., using coagulation indices) in order to maintain desired anticoagulant effect. /Corticosteroids/|Because corticosteroids inhibit antibody response, the drugs may cause a diminished response to toxoids and live or inactivated vaccines. In addition, corticosteroids may potentiate replication of some organisms contained in live, attenuated vaccines and supraphysiologic dosages of the drugs can aggravate neurologic reactions to some vaccines. Routine administration of vaccines or toxoids should generally be deferred until corticosteroid therapy is discontinued. Administration of live virus or live, attenuated vaccines, including smallpox vaccine, is contraindicated in patients receiving immunosuppressive dosages of glucocorticoids. In addition, if inactivated vaccines are administered to such patients, expected serum antibody response may not be obtained. The Public Health Service Advisory Committee on Immunization Practices (ACIP) and American Academy of Family Physicians (AAFP) state that administration of live virus vaccines usually is not contraindicated in patients receiving corticosteroid therapy as short-term (less than 2 weeks) treatment, in low to moderate dosages, as long-term alternate-day treatment with short-acting preparations, in maintenance physiologic dosages (replacement therapy), or if corticosteroids are administered topically, ophthalmically, intra-articularly, bursally, or into a tendon. If immunization is necessary in a patient receiving corticosteroid therapy, serologic testing may be needed to ensure adequate antibody response and additional doses of the vaccine or toxoid may be necessary. Immunization procedures may be undertaken in patients receiving nonimmunosuppressive doses of glucocorticoids or in patients receiving glucocorticoids as replacement therapy (e.g., Addison's disease). /Corticosteroids/|Potassium-depleting diuretics (e.g., thiazides, furosemide, ethacrynic acid) and other drugs that deplete potassium, such as amphotericin B, may enhance the potassium-wasting effect of glucocorticoids. Serum potassium should be closely monitored in patients receiving glucocorticoids and potassium-depleting drugs. /Corticosteroids/|Concomitant administration of ulcerogenic drugs such as indomethacin during corticosteroid therapy may increase the risk of GI ulceration. Aspirin should be used cautiously in conjunction with glucocorticoids in patients with hypoprothrombinemia. Although concomitant therapy with salicylates and corticosteroids does not appear to increase the incidence or severity of GI ulceration, the possibility of this effect should be considered. /Corticosteroids/

Glucocorticoids should be used with caution in patients with hypothyroidism or cirrhosis, because such patients often show exaggerated response to the drugs. Glucocorticoids should be used with caution in psychotic patients or patients with hypertension or congestive heart failure. /Corticosteroids/|Because an apparent association has been suggested between use of corticosteroids and left ventricular free-wall rupture after a recent myocardial infarction, corticosteroids should be used with extreme caution in these patients. /Corticosteroids/|Because glucocorticoids increase susceptibility to and mask symptoms of infection, the drugs should not be used, except in life-threatening situations, in patients with viral infections or bacterial infections not controlled by anti-infectives. Manufacturers state that glucocorticoid oral inhalation therapy should be used with caution, if at all, in patients with untreated systemic fungal, bacterial, viral, or parasitic infections. Patients whose susceptibility to infection is high, such as those receiving glucocorticoids as immunosuppressive therapy, are especially likely to develop secondary infections. Patients receiving glucocorticoids who are potentially immunosuppressed should be warned of the risk of exposure to certain infections (e.g., chickenpox, measles) and of the importance of obtaining medical advice if such exposure occurs. Since glucocorticoid therapy can reactivate tuberculosis, treatment of latent tuberculosis infection should be included in the regimen of patients with a history of active tuberculosis undergoing prolonged glucocorticoid therapy. If glucocorticoids are indicated in patients with latent tuberculosis or tuberculin reactivity, close observation is necessary. Use of glucocorticoids in patients with active tuberculosis should be restricted to those with fulminating or disseminated tuberculosis in which glucocorticoids are used in conjunction with appropriate antimycobacterial chemotherapy. Manufacturers state that glucocorticoid oral inhalation therapy should be used with caution, if at all, in patients with clinical or asymptomatic Mycobacterium tuberculosis infections of the respiratory tract. Since glucocorticoids can reactivate latent amebiasis, any patient who has been in the tropics or who has unexplained diarrhea should be evaluated for amebiasis to exclude these patients prior to initiating therapy. In the treatment of acute or disseminated tuberculosis, glucocorticoids should only be used as part of a total antituberculosis regimen. ... /Corticosteroids/|Corticosteroids should be used with caution in patients with active or latent peptic ulcer, diverticulitis, nonspecific ulcerative colitis (if there is a probability of impending perforation, abscess, or other pyogenic infection), and in those with recent intestinal anastomoses. Manifestations of peritoneal irritation following GI perforation may be minimal or absent in patients receiving glucocorticoids. /Corticosteroids/|Glucocorticoids may cause fetal damage when administered to pregnant women. One retrospective study of 260 women who received pharmacologic dosages of glucocorticoids during pregnancy revealed 2 instances of cleft palate, 8 stillbirths, 1 spontaneous abortion, and 15 premature births. Another study reported 2 cases of cleft palate in 86 births. Occurrence of cleft palate in these studies is higher than in the general population but could have resulted from the underlying diseases as well as from the steroids. Other fetal abnormalities that have been reported following glucocorticoid administration in pregnant women include hydrocephalus and gastroschisis. Women should be instructed to inform their physicians if they become or wish to become pregnant while receiving glucocorticoids. If glucocorticoids must be used during pregnancy or if the patient becomes pregnant while taking one of these drugs, the potential risks should be carefully considered. /Corticosteroids/

Corticosteroids are bound to plasma proteins in varying degrees.

While data specific to flurandrenolide were not located(SRC, 2007), the literature suggests that some pharmaceutically active compounds originating from human and veterinary therapy are not eliminated completely in municipal sewage treatment plants and are therefore discharged into receiving waters(1). Wastewater treatment processes often were not designed to remove them from the effluent(2). Selected organic waste compounds may be degrading to new and more persistent compounds that may be released instead of or in addition to the parent compound(2). Studies have indicated that several polar pharmaceutically active compounds can leach through soil(1).

Corticosteroids may be distributed into milk ... . /Corticosteroids/

Drug Information

For relief of the inflammatory and pruritic manifestations of corticosteroid-responsive dermatoses, particularly dry, scaling localized lesions

Glucocorticoids, Synthetic; Glucocorticoids, Topical|Topical corticosteroids of low to medium potency are indicated in the treatment of corticosteroid-responsive dermatologic disorders /mild to moderate atopic dermatitis; contact dermatitis; mild nummular dermatitis; seborrheic dermatitis (facial and intertriginous areas); other mild to moderate forms of dermatitis; other mild to moderate inflammatory dermatoses; intertrigo; lichen planus (facial and intertriginous areas); discoid lupus erythematosus (facial and intertriginous areas); polymorphous light eruption; anogenital pruritus; pruritus senilis; psoriasis (facial and intertriginous areas); xerosis (inflammatory phase/. Occlusive dressings also may be required for chronic or severe cases of lichen simplex chronicus, psoriasis, eczema, atopic dermatitis, or chronic hand eczema. The more potent topical corticosteroids and/or occlusive dressings may be required for conditions such as discoid lupus erythematosus, lichen planus, granuloma annulare, psoriatic plaques, and psoriasis affecting the palms, soles, elbows, or knees. /Corticosteroids (topical); Included in US product labeling/|Flurandrenolide shares the actions of the other topical corticosteroids and is used for the relief of the inflammatory manifestations of corticosteroid-responsive dermatoses.|MEDICATION (VET): Glucocorticoids have profound effects on nearly all cell types and organ systems, particularly immunologic and inflammatory activity. They may be used in either an anti-inflammatory or immunosuppressive capacity, depending on the dosage selected. Glucocorticoids are used for hypersensitivity dermatoses, contact dermatitis, immune-mediated diseases (eg, pemphigus, pemphigoid, lupus erythematosus), and neoplasia (eg, mast cell tumor, lymphoma). ... They may be administered PO, IV, IM, or SC. /Glucocorticoids/

VET: AVOID COVERING OVER 5-10% OF BODY SURFACE, ESP IN PREGNANT ANIMALS.|The following may occur more frequently with occlusive dressings: Maceration of the skin, Secondary infection, Skin atrophy, Striae Miliaria. /Topical corticosteroids/|The following local adverse reactions are reported infrequently with topical corticosteroids but may occur more frequently with the use of occlusive dressings. These reactions are listed in an approximate decreasing order of occurrence: Burning, Itching, Irritation, Dryness, Folliculitis, Hypertrichosis, Acneform eruptions, Hypopigmentation, Perioral dermatitis, Allergic contact dermatitis. /Topical corticosteroids/|Pediatric patients may demonstrate greater susceptibility to topical corticosteroid-induced HPA axis suppression and Cushing's syndrome than do mature patients because of a larger skin surface area to body weight ratio. Hypothalamic-pituitary-adrenal (HPA) axis suppression, Cushing's syndrome, and intracranial hypertension have been reported in pediatric patients receiving topical corticosteroids. Manifestations of adrenal suppression in pediatric patients include linear growth retardation, delayed weight gain, low plasma cortisol levels, and absence of response to ACTH stimulation. Manifestations of intracranial hypertension include bulging fontanelles, headaches, and bilateral papilledema. Administration of topical corticosteroids to pediatric patients should be limited to the least amount compatible with an effective therapeutic regimen. Chronic corticosteroid therapy may interfere with the growth and development of pediatric patients. /Topical corticosteroids/|For more Drug Warnings (Complete) data for FLURANDRENOLIDE (36 total), please visit the HSDB record page.

Flurandrenolide is primarily effective because of its anti-inflammatory, antipruritic, and vasoconstrictive actions.

Substances that reduce or suppress INFLAMMATION. (See all compounds classified as Anti-Inflammatory Agents.)|A group of CORTICOSTEROIDS that affect carbohydrate metabolism (GLUCONEOGENESIS, liver glycogen deposition, elevation of BLOOD SUGAR), inhibit ADRENOCORTICOTROPIC HORMONE secretion, and possess pronounced anti-inflammatory activity. They also play a role in fat and protein metabolism, maintenance of arterial blood pressure, alteration of the connective tissue response to injury, reduction in the number of circulating lymphocytes, and functioning of the central nervous system. (See all compounds classified as Glucocorticoids.)

Once absorbed through the skin, topical corticosteroids are handled through pharmacokinetic pathways similar to those of systemically administered corticosteroids|Topical corticosteroids can be absorbed from normal intact skin. They are metabolized primarily in the liver and then excreted in the kidneys. Some of the topical corticosteroids and their metabolites are also excreted into the bile.|Topical corticosteroids can be absorbed from normal intact skin. Inflammation and/or other disease processes in the skin increase percutaneous absorption. ... Once absorbed through the skin, topical corticosteroids are handled through pharmacokinetic pathways similar to systemically administered corticosteroids. Corticosteroids are bound to plasma proteins in varying degrees. They are metabolized primarily in the liver and then excreted in the kidneys. Some of the topical corticosteroids and their metabolites are also excreted into the bile. /Topical corticosteroids/

Primarily hepatic|/Topical corticosteroids/ are metabolized primarily in the liver and then excreted in the kidneys. Some of the topical corticosteroids and their metabolites are also excreted into the bile. /Topical corticosteroids/

Flurandrenolide is a topical corticosteroid. It is normally applied to a plastic tape called Cordran. Cordran is primarily effective because of its anti-inflammatory, antipruritic, and vasoconstrictive actions. Flurandrenolide, which is slowly released from the Cordran tape, binds to the cytosolic glucocorticoid receptor. After binding the receptor the newly formed receptor-ligand complex translocates itself into the cell nucleus, where it binds to many glucocorticoid response elements (GRE) in the promoter region of the target genes. The DNA bound receptor then interacts with basic transcription factors, causing the increase in expression of specific target genes. The anti-inflammatory actions of corticosteroids are thought to involve lipocortins, phospholipase A2 inhibitory proteins which, through inhibition arachidonic acid, control the biosynthesis of prostaglandins and leukotrienes. Specifically glucocorticoids induce lipocortin-1 (annexin-1) synthesis, which then binds to cell membranes preventing the phospholipase A2 from coming into contact with its substrate arachidonic acid. This leads to diminished eicosanoid production. Cyclooxygenase (both COX-1 and COX-2) expression is also suppressed, potentiating the effect. In another words, the two main products in inflammation Prostaglandins and Leukotrienes are inhibited by the action of Glucocorticoids. Glucocorticoids also stimulate the lipocortin-1 escaping to the extracellular space, where it binds to the leukocyte membrane receptors and inhibits various inflammatory events: epithelial adhesion, emigration, chemotaxis, phagocytosis, respiratory burst and the release of various inflammatory mediators (lysosomal enzymes, cytokines, tissue plasminogen activator, chemokines etc.) from neutrophils, macrophages and mastocytes. Additionally the immune system is suppressed by corticosteroids due to a decrease in the function of the lymphatic system, a reduction in immunoglobulin and complement concentrations, the precipitation of lymphocytopenia, and interference with antigen-antibody binding. Like other glucocorticoid agents Fluocinolone acetonide acts as a physiological antagonist to insulin by decreasing glycogenesis (formation of glycogen). It also promotes the breakdown of lipids (lipolysis), and proteins, leading to the mobilization of extrahepatic amino acids and ketone bodies. This leads to increased circulating glucose concentrations (in the blood). There is also decreased glycogen formation in the liver.|The mechanism of the anti-inflammatory effect of topical corticosteroids is not completely understood. Various laboratory methods, including vasoconstrictor assays, are used to compare and predict potencies and/or clinical efficacies of the topical corticosteroids. There is some evidence to suggest that a recognizable correlation exists between vasoconstrictor potency and therapeutic efficacy in man. Corticosteroids with antiinflammatory activity may stabilize cellular and lysosomal membranes. There is also the suggestion that the effect on the membranes of lysosomes prevents the release of proteolytic enzymes and, thus, plays a part in reducing inflammation. /Topical corticosteroids/|Glucocorticoids are capable of suppressing the inflammatory process through numerous pathways. They interact with specific intracellular receptor proteins in target tissues to alter the expression of corticosteroid-responsive genes. Glucocorticoid-specific receptors in the cell cytoplasm bind with steroid ligands to form hormone-receptor complexes that eventually translocate to the cell nucleus. There these complexes bind to specific DNA sequences and alter their expression. The complexes may induce the transcription of mRNA leading to synthesis of new proteins. Such proteins include lipocortin, a protein known to inhibit PLA2a and thereby block the synthesis of prostaglandins, leukotrienes, and PAF. Glucocorticoids also inhibit the production of other mediators including AA metabolites such as COX, cytokines, the interleukins, adhesion molecules, and enzymes such as collagenase. /Glucocorticoids/|Corticosteroids diffuse across cell membranes and complex with specific cytoplasmic receptors. These complexes then enter the cell nucleus, bind to DNA (chromatin), and stimulate transcription of messenger RNA (mRNA) and subsequent protein synthesis of various inhibitory enzymes responsible for the anti-inflammatory effects of topical corticosteroids. These anti-inflammatory effects include inhibition of early processes such as edema, fibrin deposition, capillary dilatation, movement of phagocttes into the area, and phagocytic activities. Later processes, such as capillary production, collagen deposition, and keloid formation also are inhibited by corticosteroids. The overall actions of topical corticosteroids are catabolic. /Corticosteroids (topical)/

/SRP:/ Immediate first aid: Ensure that adequate decontamination has been carried out. If patient is not breathing, start artificial respiration, preferably with a demand valve resuscitator, bag-valve-mask device, or pocket mask, as trained. Perform CPR if necessary. Immediately flush contaminated eyes with gently flowing water. Do not induce vomiting. If vomiting occurs, lean patient forward or place on the left side (head-down position, if possible) to maintain an open airway and prevent aspiration. Keep patient quiet and maintain normal body temperature. Obtain medical attention. /Poisons A and B/|/SRP:/ Basic treatment: Establish a patent airway (oropharyngeal or nasopharyngeal airway, if needed). Suction if necessary. Watch for signs of respiratory insufficiency and assist ventilations if needed. Administer oxygen by nonrebreather mask at 10 to 15 L/min. Monitor for pulmonary edema and treat if necessary ... . Monitor for shock and treat if necessary ... . Anticipate seizures and treat if necessary ... . For eye contamination, flush eyes immediately with water. Irrigate each eye continuously with 0.9% saline (NS) during transport ... . Do not use emetics. For ingestion, rinse mouth and administer 5 mL/kg up to 200 mL of water for dilution if the patient can swallow, has a strong gag reflex, and does not drool ... . Cover skin burns with dry sterile dressings after decontamination ... . /Poisons A and B/|/SRP:/ Advanced treatment: Consider orotracheal or nasotracheal intubation for airway control in the patient who is unconscious, has severe pulmonary edema, or is in severe respiratory distress. Positive-pressure ventilation techniques with a bag valve mask device may be beneficial. Consider drug therapy for pulmonary edema ... . Consider administering a beta agonist such as albuterol for severe bronchospasm ... . Monitor cardiac rhythm and treat arrhythmias as necessary ... . Start IV administration of D5W /SRP: "To keep open", minimal flow rate/. Use 0.9% saline (NS) or lactated Ringer's if signs of hypovolemia are present. For hypotension with signs of hypovolemia, administer fluid cautiously. Watch for signs of fluid overload ... . Treat seizures with diazepam or lorazepam ... . Use proparacaine hydrochloride to assist eye irrigation ... . /Poisons A and B/

/SIGNS AND SYMPTOMS/ Glucocorticoids may cause fetal damage when administered to pregnant women. One retrospective study of 260 women who received pharmacologic dosages of glucocorticoids during pregnancy revealed 2 instances of cleft palate, 8 stillbirths, 1 spontaneous abortion, and 15 premature births. Another study reported 2 cases of cleft palate in 86 births. Occurrence of cleft palate in these studies is higher than in the general population but could have resulted from the underlying diseases as well as from the steroids. Other fetal abnormalities that have been reported following glucocorticoid administration in pregnant women include hydrocephalus and gastroschisis. Women should be instructed to inform their physicians if they become or wish to become pregnant while receiving glucocorticoids. If glucocorticoids must be used during pregnancy or if the patient becomes pregnant while taking one of these drugs, the potential risks should be carefully considered. /Corticosteroids/|/CASE REPORTS/ Intraocular pressure was elevated in both eyes and a glaucomatous field defect developed in one eye of an 18-year-old Caucasian man after prolonged topical use of flurandrenolide. Spontaneous remission occurred in one eye, the eye with least drug exposure, within a few weeks. The other eye continued to show evidence of elevated intraocular pressure and further field loss developed over 4 years after discontinuation of the steroid. The most serverly affected eye became myopic. This case strongly suggests that chronic application of flurandrenolide into the conjuctival sac can produce corticosteroid-induced glaucoma in susceptible individuals. Although both eyes were normal before exposure to the steroid and elevations of the same level developed in both eyes at the peak of the disease, the eye with the least drug exposure underwent complete and spontaneous remission whereas the eye exposed more frequently appeared to show irreversible changes in the aqueous humor outflow pathway with subsequent loss of visual field.

Cordran

Flurandrenolide Use and Manufacturing

Methods of Manufacturing

Prepn: Ringold et al, German patent 1,131,213 corresponds to US patent 3,126,375 (1962, 1964 both to Syntex).|FLURANDRENOLONE (6ALPHA-FLUORO-16ALPHA-HYDROXY-CORTISOL) IS CONDENSED WITH ACETONE BY TREATING ITS SOLN IN ACETONE WITH 70% PERCHLORIC ACID.

Uses

antiinflammatory

Topical: Cream: 0.05% Cordran SP (with propylene glycol), (Watson), Dressing 4 ug/sq cm Cordran Tape, (Watson). Lotion: 0.05% Cordran (with benzyl alcohol), (Watson). Ointment: 0.05% Cordran, (Watson).

NEOMYCIN IS OFTEN INCL IN TOPICAL PREPN OF FLURANDRENOLIDE TO SUPPRESS INFECTIONS SECONDARY TO INFLAMMATORY PROCESS OR TO USE OF GLUCOCORTICOID.

Analyte: flurandrenolide; matrix: chemical identification; procedure: infrared absorption spectrophotometry with comparison to standards|Analyte: flurandrenolide; matrix: chemical identification; procedure: ultraviolet absorption spectrophotometry with comparison to standards|Analyte: flurandrenolide; matrix: chemical purity; procedure: liquid chromatography with detection at 240 nm and comparison to standards|Analyte: flurandrenolide; matrix: pharmaceutical preparation (cream; lotion; ointment; tape); procedure: thin-layer chromatography with comparison to standards (chemical identification)|For more Analytic Laboratory Methods (Complete) data for FLURANDRENOLIDE (7 total), please visit the HSDB record page.

Analyte: flurandrenolide; matrix: urine; procedure: high-performance liquid chromatography with mass spectrometric detection; limit of detection: 5 ng/mL|Analyte: flurandrenolide; matrix: urine; procedure: gas chromatography-mass spectrometry with electron impact ionization; limit of detection: 5 ng/mL

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

Computed Properties

Molecular Weight:436.5
XLogP3:1.4
Hydrogen Bond Donor Count:2
Hydrogen Bond Acceptor Count:7
Rotatable Bond Count:2
Exact Mass:436.22611693
Monoisotopic Mass:436.22611693
Topological Polar Surface Area:93.1
Heavy Atom Count:31
Complexity:868
Defined Atom Stereocenter Count:9
Covalently-Bonded Unit Count:1
Compound Is Canonicalized:Yes

Scan the QR Code to Share

Feedback & Suggestions
Send Message

Thank you for your feedback. If you require further assistance, please contact us by email at info@echemi.com or call us at +86-532-55729510.