(nystatin · DailyMed)
POSITON CREAM
Triamcinolone Acetonide/Neomycin Sulphate/Nystatin
What it does
Acetonide is a medication used to reduce inflammation and treat various skin conditions.
Commonly used for: skin inflammation, eczema, dermatitis, allergic reactions
Read more in plain English ↓Plain-language summary for general understanding - not medical advice. Always follow your pharmacist/doctor.
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Answers come only from this medicine's registration record, BNF monograph and interaction data - not medical advice.
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Sourcing - Kenya onlyRegistration & product details
Source: Food and Drugs Authority · fetched 2026-04-18 08:37:10 · updated 2026-09-18 04:00:11
Drug Interactions
49Pharmacodynamic Warnings
Neomycin appears in TABLE 2: Drugs that cause nephrotoxicity
Triamcinolone appears in TABLE 17: Drugs that reduce serum potassium
Neomycin appears in TABLE 19: Drugs that cause ototoxicity
Neomycin appears in TABLE 20: Drugs with neuromuscular blocking effects
Severe (3)
Agalsidasealfa - decreases effects
Aminoglycosidesarepredictedtodecreasetheeffectsof agalsidasealfa.Avoid.oTheoretical
Agalsidasebeta - decreases effects
Aminoglycosidesarepredictedtodecreasetheeffectsof agalsidasebeta.Avoid.oTheoretical
Mifamurtide - decreases efficacy
Corticosteroidsarepredictedtodecreasetheefficacyof mifamurtide.Avoid.rTheoretical
Moderate (20)
Corticosteroids - increases exposure
Dronedarone is predicted to increase the exposure to corticosteroids (methylprednisolone). Monitor and adjust dose.
Corticosteroids - increases concentration
Miconazole is predicted to increase the concentration of corticosteroids (methylprednisolone). Monitor and adjust dose.
Corticosteroids - increases exposure
Antifungals, azoles (fluconazole, isavuconazole, posaconazole) are predicted to increase the exposure to corticosteroids (methylprednisolone). Monitor and adjust dose.
Corticosteroids - decreases exposure
Cenobamate is predicted to decrease the exposure to corticosteroids (fluticasone). Adjust dose.
Corticosteroids - decreases efficacy
Mifepristone is predicted to decrease the efficacy of corticosteroids. Use with caution and adjust dose.
Unknown (26)
Aminoglycosides - decreases exposure
Miconazole potentially decreases the exposure to aminoglycosides (tobramycin).
Aspirin - decreases concentration
Corticosteroids are predicted to decrease the concentration of aspirin (high-dose) and aspirin (high-dose) increases the risk of gastrointestinal bleeding when given with corticosteroids.
Choline Salicylate - decreases concentration
Corticosteroids are predicted to decrease the concentration of cholinesalicylate. Ciclesonide → see corticosteroids Ciclosporin → see TABLE 2 p. 1517 (nephrotoxicity), TABLE 16 p. 1521 (increased seru
Corticosteroids - increases exposure
Cobicistat is predicted to increase the exposure to corticosteroids (beclometasone) (risk with beclometasone is likely to be lower than with other corticosteroids).
Corticosteroids - increases risk of gastrointestinal perforation
Erlotinib is predicted to increase the risk of gastrointestinal perforation when given with corticosteroids.
Data from BNF 85 (British National Formulary). This is not a substitute for professional medical advice. Matched via: class
About acetonide
Acetonide is a medication used to reduce inflammation and treat various skin conditions.
What it treats
- skin inflammation
- eczema
- dermatitis
- allergic reactions
How it works
Acetonide works by decreasing swelling, redness, and itching in the affected area.
Who it's for
This medication is suitable for adults and children with certain skin conditions.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About neomycin
Neomycin is an antibiotic used to treat infections caused by certain bacteria.
What it treats
- bacterial infections
- skin infections
- ear infections
How it works
Neomycin works by stopping the growth of bacteria.
Who it's for
Neomycin is for people who have bacterial infections that are sensitive to this antibiotic.
Drug class
Aminoglycosides
Cautions
- • Be careful if you are taking other medications that can harm the kidneys.
- • Avoid use with drugs that may cause hearing problems.
- • Use caution with medications that can affect muscle function.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About nystatin
Nystatin is an antifungal medicine used to treat infections caused by fungi.
What it treats
- fungal infections
- thrush (oral candidiasis)
- fungal skin infections
How it works
Nystatin works by stopping the growth of fungus, helping to clear up the infection.
Who it's for
Nystatin is suitable for adults and children who have fungal infections.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
About triamcinolone
Triamcinolone is a corticosteroid used to reduce inflammation and treat various conditions.
What it treats
- inflammation
- allergic reactions
- skin disorders
- asthma
- arthritis
How it works
It works by suppressing the immune system to reduce inflammation and allergic responses.
Who it's for
Triamcinolone is for people with conditions that involve inflammation or an overactive immune response.
Drug class
Corticosteroids
Cautions
- • Be cautious if you are taking other medications that lower potassium levels.
AI-assisted summary grounded in BNF data - general information only, not medical advice. Always confirm with your pharmacist or doctor.
Clinical monograph: Nystatin
BNF-referencedNystatin is a polyene antifungal agent primarily used to treat fungal infections, particularly those caused by Candida species. It is effective against oral and perioral candidiasis and is administered orally. Nystatin works by binding to sterols in the fungal cell membrane, leading to increased permeability and cell death. It is not active against bacteria or viruses and is available in forms such as oral suspension and tablets.
Indications
- Oral candidiasis
- Perioral fungal infections
- Oropharyngeal candidiasis
Dosage
Children: 100,000 units by mouth 4 times a day, usually for 7 days, continued for 48 hours after lesions have resolved.
Adults: 100,000 units by mouth 4 times a day, usually for 7 days, continued for 48 hours after lesions have resolved.
Mechanism of action
Nystatin is a channel-forming ionophore that binds to ergosterol, a sterol found in fungal cell membranes, creating membrane-spanning pores. This disrupts the membrane's integrity, resulting in the leakage of intracellular components and loss of electrochemical gradients essential for cell function, leading to cell death.
Pharmacodynamics
Nystatin exhibits both fungistatic and fungicidal activity against a wide range of yeasts and yeast-like fungi, particularly _Candida albicans_. Resistance is minimal with _Candida albicans_ but may develop in other _Candida_ species. It is ineffective against bacteria, protozoa, or viruses and has significant systemic toxicity, limiting its use to topical and oral applications.
Pharmacokinetics
Nystatin is poorly absorbed from the gastrointestinal tract, which allows it to exert its effects locally within the gut and oral cavity. Because of its limited systemic absorption, it is primarily used for local treatment of fungal infections. The drug is not metabolized systemically and is excreted unchanged in the feces.
Contra-indications
- Infants with impaired swallowing
- Acute porphyrias
Adverse effects
- Abdominal distress
- Angioedema
- Diarrhoea
- Face oedema
- Nausea
- Sensitisation
- Skin reactions
- Stevens-Johnson syndrome
- Vomiting
Precautions
- Caution in patients with acute porphyrias
- Use with care in patients with a history of hypersensitivity to nystatin or other polyene antifungals
Pregnancy
Nystatin is generally considered safe in pregnancy; however, it should be used only if clearly needed and prescribed by a healthcare provider.
Breast-feeding
Nystatin is excreted in breast milk but is considered safe for use during breastfeeding as it is poorly absorbed systemically.
Storage
Store at room temperature, away from direct sunlight and moisture. Keep out of reach of children.
Formulations
- Nystatin oral suspension 100,000 units/ml
- Nystatin tablets
- Nystatin capsules
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: Neomycinsulfate
BNF-referencedNeomycin sulfate is an aminoglycoside antibiotic used primarily for its effectiveness against a wide range of gram-negative bacterial infections. It is often employed in topical formulations but can also be used systemically for bowel sterilization before surgical procedures and in the treatment of hepatic coma. The drug acts by inhibiting bacterial protein synthesis, thus halting bacterial growth and replication.
Indications
- Bowel sterilization before surgery
- Hepatic coma
- Topical infections caused by susceptible organisms
Dosage
Children: Refer to the BNF for Children for appropriate dosing information.
Adults: By mouth: 1 g every 1 hour for 4 hours, then 1 g every 4 hours for 2–3 days. For hepatic coma: Up to 4 g daily in divided doses usually for 5–7 days.
Mechanism of action
Neomycin sulfate binds to the 30S ribosomal subunit of bacteria, leading to the misreading of mRNA and the inhibition of protein synthesis. This disrupts the production of essential proteins needed for bacterial growth and function, ultimately resulting in cell death.
Pharmacodynamics
Neomycin demonstrates bactericidal activity against susceptible bacteria. Its efficacy is enhanced in alkaline environments, which is why it is often used in combination with other agents for surgical prophylaxis. The drug is primarily effective against a range of gram-negative organisms, including Escherichia coli and Klebsiella species, but also has some activity against gram-positive organisms.
Pharmacokinetics
Neomycin is poorly absorbed from the gastrointestinal tract, and its systemic absorption is minimal when administered orally. In cases of systemic use, such as intramuscular or intravenous administration, neomycin is distributed widely in the body but is primarily excreted unchanged in the urine. The elimination half-life varies but is generally around 2 to 3 hours in individuals with normal renal function. Monitoring of serum concentrations is essential to prevent toxicity, especially in patients with renal impairment.
Adverse effects
- neurotoxicity
- ototoxicity
- nephrotoxicity
- allergic reactions
- skin rashes
- hearing loss
Interactions
- other nephrotoxic drugs
- loop diuretics
- neuromuscular blocking agents
Precautions
- monitor renal function
- use cautiously in patients with hearing impairment
- avoid concurrent use with other ototoxic medications
- ensure adequate hydration
Pregnancy
Safety in pregnancy has not been established. Use only if the potential benefit justifies the potential risk to the fetus.
Breast-feeding
Use caution; neomycin can be absorbed systemically and may affect the nursing infant.
Storage
Store at room temperature, away from light and moisture. Keep out of reach of children.
Formulations
- oral tablets
- topical ointments
- injectable solutions
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: acetonide
Acetonide is a synthetic corticosteroid used primarily for its anti-inflammatory and immunosuppressive properties. It is often utilized in dermatological preparations to treat various skin conditions due to its ability to reduce inflammation and suppress immune responses. Acetonide can be found in formulations for topical administration and is effective in conditions such as eczema, psoriasis, and contact dermatitis.
Indications
- Eczema
- Psoriasis
- Contact dermatitis
- Allergic dermatitis
- Seborrheic dermatitis
Dosage
Children: Refer to specific product information or clinical guidelines for appropriate dosing in children, as it varies by formulation and condition treated.
Adults: Refer to specific product information or clinical guidelines for appropriate dosing, as it varies by formulation and condition treated.
Mechanism of action
Acetonide exerts its effects by binding to glucocorticoid receptors in the cytoplasm of target cells, leading to the translocation of the receptor-ligand complex into the nucleus. This complex then influences the expression of specific genes, resulting in decreased production of pro-inflammatory cytokines and increased production of anti-inflammatory proteins. This modulation of gene expression contributes to its anti-inflammatory and immunosuppressive effects.
Pharmacodynamics
The pharmacodynamics of acetonide involve its ability to inhibit the migration of leukocytes to sites of inflammation, reduce the production of inflammatory mediators such as prostaglandins and leukotrienes, and suppress the immune response. The potency and duration of action can vary based on the specific formulation and concentration used.
Pharmacokinetics
Acetonide is absorbed through the skin when applied topically, with systemic absorption depending on the formulation, application area, and duration of use. It undergoes hepatic metabolism, and its metabolites are excreted primarily through the urine. The half-life and clearance rates can vary based on individual patient factors and specific formulations.
Contra-indications
- Hypersensitivity to acetonide or any component of the formulation.
- Active or untreated infections at the site of application.
Adverse effects
- Local irritation or burning sensation at the application site.
- Skin thinning or atrophy with prolonged use.
- Systemic effects such as adrenal suppression with high doses or prolonged therapy.
Interactions
- Increased risk of systemic effects when used with other corticosteroids.
- Potentially altered metabolism when administered with CYP3A4 inhibitors or inducers.
Precautions
- Use with caution in patients with a history of tuberculosis or other infections.
- Monitor for signs of adrenal insufficiency in patients on high doses.
- Avoid application to large areas of the body or under occlusive dressings.
Pregnancy
Acetonide should be used during pregnancy only if the potential benefit justifies the potential risk to the fetus. Consult with a healthcare professional before use.
Breast-feeding
Limited data available. Use with caution as it may be excreted in breast milk. Consult with a healthcare professional before use.
Storage
Store at room temperature, away from direct sunlight and moisture. Keep out of reach of children.
Formulations
- Topical cream
- Topical ointment
- Topical solution
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: neomycin
BNF-referencedNeomycin is an aminoglycoside antibiotic that is primarily used to treat infections caused by aerobic bacteria. It acts by binding to the 30S ribosomal subunit of bacteria, leading to the misreading of mRNA and disrupting protein synthesis. Neomycin is effective against a range of gram-positive and gram-negative bacteria, including strains of Escherichia coli and Klebsiella species. It is also utilized in specific clinical situations such as hepatic coma to reduce ammonia-producing bacteria in the colon, thereby improving neurologic symptoms.
Indications
- Bacterial infections caused by aerobic organisms
- Topical treatment of skin infections
Mechanism of action
Neomycin binds to specific proteins and 16S rRNA within the 30S ribosomal subunit of susceptible bacteria. This binding interferes with the decoding site, causing misreading of mRNA and leading to the incorporation of incorrect amino acids into polypeptides. As a result, nonfunctional or toxic peptides are produced, and polysomes are disrupted into nonfunctional monosomes. Neomycin's bactericidal action is characterized by its ability to irreversibly bind to the 30S ribosomal subunit, thereby inhibiting bacterial protein synthesis.
Pharmacodynamics
Neomycin is primarily active against aerobic bacteria and is not effective against fungi, viruses, or most anaerobic bacteria. It mediates its bactericidal effects by inhibiting protein synthesis, which suppresses bacterial growth and survival. Following oral administration, neomycin exhibits a duration of bactericidal activity lasting between 48 to 72 hours. It is particularly useful in treating infections caused by strains of E. coli and Klebsiella, and it also acts to reduce colonic bacterial populations in patients with hepatic coma.
Pharmacokinetics
Neomycin is poorly absorbed from the gastrointestinal tract when taken orally, which limits its systemic availability and enhances its utility in targeting colonic bacteria. It is generally not used parenterally due to its potential for nephrotoxicity and ototoxicity. The duration of action following oral administration can last from 48 to 72 hours, and it is primarily excreted unchanged in the urine. Caution should be exercised when using neomycin in patients with renal impairment, as the risk of toxicity increases.
Adverse effects
- Nephrotoxicity
- Ototoxicity
- Allergic reactions
- Diarrhea
- Nausea
- Vomiting
Interactions
- neomycin+digoxin: Unknown (decreases absorption)
- neomycin+sorafenib: Unknown (decreases exposure)
Precautions
- Use with caution in patients with renal impairment
- Monitor renal function during therapy
- Evaluate hearing function in long-term use
Pregnancy
Neomycin is classified as category D; it should be used only if the potential benefit justifies the potential risk to the fetus.
Breast-feeding
Neomycin is excreted in breast milk; caution should be exercised when administered to nursing mothers.
Storage
Store in a cool, dry place away from light. Keep out of reach of children.
Formulations
- Topical ointment
- Cream
- Eye drops
- Oral tablets
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Clinical monograph: triamcinolone
BNF-referencedTriamcinolone is a synthetic corticosteroid that exhibits potent anti-inflammatory properties. It is used in various clinical conditions to reduce inflammation and suppress immune responses. As a member of the glucocorticoid family, triamcinolone acts by modulating gene expression and inhibiting the synthesis of inflammatory mediators. Its therapeutic applications include treatment of diseases like asthma, allergies, autoimmune disorders, and dermatological conditions among others.
Indications
- Asthma
- Allergic rhinitis
- Rheumatoid arthritis
- Systemic lupus erythematosus
- Dermatitis
- Psoriasis
- Inflammatory bowel disease
Dosage
Children: Refer to BNF for Children for specific dosing recommendations based on condition and formulation.
Adults: Refer to BNF for specific dosing recommendations based on condition and formulation.
Mechanism of action
Triamcinolone inhibits phospholipase A2 on cell membranes, preventing the breakdown of lysosomal membranes of leukocytes. This action reduces the formation of arachidonic acid, leading to decreased expression of cyclooxygenase and lipoxygenase, which inhibits the synthesis of prostaglandins and leukotrienes. Additionally, triamcinolone inhibits nuclear factor kappa-B, reducing pro-inflammatory signals such as interleukin-6 and interleukin-8. It interacts with specific intracellular receptor proteins to alter the expression of corticosteroid-responsive genes, leading to the synthesis of proteins like lipocortin that further inhibit inflammatory pathways.
Pharmacodynamics
Triamcinolone exhibits significant anti-inflammatory effects through multiple mechanisms, including suppression of immune cell migration and modulation of inflammatory mediator production. Its effects can lead to reduced edema, erythema, and pain associated with inflammatory processes. The drug’s action is mediated by its ability to influence gene expression in target tissues, resulting in a broad range of effects on the immune response and inflammation.
Pharmacokinetics
Triamcinolone is well absorbed following parenteral administration, with peak plasma concentrations typically observed within a few hours. It has a relatively long half-life, which allows for sustained therapeutic effects. The drug is metabolized primarily in the liver and excreted via the kidneys. Its pharmacokinetic profile may vary depending on the route of administration and the specific formulation used.
Interactions
- mitotane+triamcinolone: Moderate (decreases exposure)
- rifampicin+triamcinolone: Moderate (decreases exposure)
- cobicistat+triamcinolone: Unknown (increases exposure)
- idelalisib+triamcinolone: Unknown (increases exposure)
- clarithromycin+triamcinolone: Unknown (increases exposure)
Pregnancy
Corticosteroids, including triamcinolone, should be used during pregnancy only if the potential benefit justifies the potential risk to the fetus. They may cause fetal harm, particularly when used in high doses or for prolonged periods in the second and third trimesters.
Breast-feeding
Triamcinolone is excreted in human milk, and caution should be exercised when administering to nursing mothers. The benefits of breastfeeding should be weighed against the potential risk of adverse effects on the infant.
Storage
Store at room temperature, away from light and moisture. Do not freeze.
AI-synthesized from BNF references - general information only, not a substitute for professional medical advice or the current BNF. Verify doses with a pharmacist.
Molecular reference: Nystatin
PubChem CID 6433272Molecular formula: C47H75NO17
Mechanism of action
Nystatin is a channel-forming ionophore, meaning it exerts its therapeutic effect via formation of a membrane-spanning pore in the fungal plasma membrane. The formation of this pore results in a change in membrane permeability that allows for leakage of intracellular contents and the subsequent disruption of electrochemical gradients necessary for proper cell function. Selectivity for fungal cells over mammalian cells is due to nystatin’s greater binding affinity for ergosterol, a key sterol found in fungal cell walls, as opposed to its mammalian counterpart, cholesterol. Nystatin exerts its antifungal activity by binding to sterols in the fungal cell membrane. The drug is not active against organisms (e.g., bacteria) that do not contain sterols in their cell membrane. As a result of this binding, the membrane is no longer able to function as a selective barrier, and potassium and other cellular constituents are lost. ... /Antimicrobial/ agents that act directly on the cell membrane of the microorganism, affecting permeability and leading to leakage of intracellular compounds; these include ... the polyene antifungal agents nystatin ... which bind to cell-wall sterols ...
Pharmacodynamics
Nystatin is an antifungal that is both fungistatic and fungicidal in vitro against a wide variety of yeasts and yeast-like fungi. It exerts its antifungal effects via disruption of the fungal cell membrane. Resistance to nystatin is minimal in _Candida albicans_, but tends to develop in other species of _Candida_. Nystatin carries no significant activity against bacteria, protozoa, or viruses. It carries significant systemic toxicity and is currently unavailable in a formula appropriate for systemic use - its efficacy is currently restricted, therefore, to topical, oral, and gastrointestinal infections.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: neomycin
PubChem CID 8378Molecular formula: C23H46N6O13
Mechanism of action
Framycetin binds to specific 30S-subunit proteins and 16S rRNA, four nucleotides of 16S rRNA and a single amino acid of protein S12. This interferes with decoding site in the vicinity of nucleotide 1400 in 16S rRNA of 30S subunit. This region interacts with the wobble base in the anticodon of tRNA. This leads to interference with the initiation complex, misreading of mRNA so incorrect amino acids are inserted into the polypeptide leading to nonfunctional or toxic peptides and the breakup of polysomes into nonfunctional monosomes. Like other aminoglycoside antibiotic drugs, neomycin inhibits bacterial ribosomes by binding to the 30S ribosomal subunit of susceptible bacteria and disrupting the translational machinery of bacterial protein synthesis. Bacterial translation is normally initiated by the mRNA binding to the 30S ribosomal subunit and subsequent binding with 50S subunit for elongation. Aminoglycosides are usually bactericidal in action. Although the exact mechanism of action has not been fully elucidated, the drugs appear to inhibit protein synthesis in susceptible bacteria by irreversibly binding to 30S ribosomal subunits. /Aminoglycosides/ A class of angiogenesis inhibitor has emerged from our mechanistic study of the action of angiogenin, a potent angiogenic factor. Neomycin, an aminoglycoside antibiotic, inhibits nuclear translocation of human angiogenin in human endothelial cells, an essential step for angiogenin-induced angiogenesis. The phospholipase C-inhibiting activity of neomycin appears to be involved, because U-73122, another phospholipase C inhibitor, has a similar effect. In contrast, genistein, oxophenylarsine, and staurosporine, inhibitors of tyrosine kinase, phosphotyrosine phosphatase, and protein kinase C, respectively, do not inhibit nuclear translocation of angiogenin. Neomycin inhibits angiogenin-induced proliferation of human endothelial cells in a dose-dependent manner. At 50 microM, neomycin abolishes angiogenin-induced proliferation but does not affect the basal level of proliferation and cell viability. Other aminoglycoside antibiotics, including gentamicin, streptomycin, kanamycin, amikacin, and paromomycin, have no effect on angiogenin-induced cell proliferation. Most importantly, neomycin completely inhibits angiogenin-induced angiogenesis in the chicken chorioallantoic membrane at a dose as low as 20 ng per egg. These results suggest that neomycin and its analogs are a class of agents that may be developed for anti-angiogenin therapy. ... Aminoglycosides are aminocyclitols that kill bacteria by inhibiting protein synthesis as they bind to the 16S rRNA and by disrupting the integrity of bacterial cell membrane. Aminoglycoside resistance mechanisms include: (a) the deactivation of aminoglycosides by N-acetylation, adenylylation or O-phosphorylation, (b) the reduction of the intracellular concentration of aminoglycosides by changes in outer membrane permeability, decreased inner membrane transport, active efflux, and drug trapping, (c) the alteration of the 30S ribosomal subunit target by mutation, and (d) methylation of the aminoglycoside binding site. ... /Aminoglycosides/
Pharmacodynamics
Framycetin is used for the treatment of bacterial eye infections such as conjunctivitis. Framycetin is an antibiotic. It is not active against fungi, viruses and most kinds of anaerobic bacteria. Framycetin works by binding to the bacterial 30S ribosomal subunit, causing misreading of t-RNA, leaving the bacterium unable to synthesize proteins vital to its growth. Framycetin is useful primarily in infections involving aerobic bacteria bacteria. Neomycin mediates its bactericidal action by inhibiting bacterial protein synthesis, thereby suppressing the growth and survival of susceptible bacteria. Following oral administration, the duration of bactericidal activity of neomycin ranged from 48 to 72 hours. By decreasing colonic bacteria that produce ammonia, neomycin was shown to be effective as an adjunctive therapy in hepatic coma to improve neurologic symptoms. Neomycin is active against both gram positive and gram negative organisms, including the major _E. coli_ species resident in the colon as well as the enteropathogenic forms of _E. coli_. It is also active against _Klebsiella_-_Enterobacter_ group. Resistant strains of _E. coli_, _Klebsiella_ and _Proteus spp_. may emerge from neomycin therapy. Neomycin has no antifungal activity and has some activity against some protozoa.
Biological pathways
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
Molecular reference: triamcinolone
PubChem CID 31307Molecular formula: C21H27FO6
Mechanism of action
Corticosteroids like triamcinolone inhibit phospholipase A2 on cell membranes, preventing the breakdown of lysosomal membranes of leukocytes, which in turn prevent the formation of arachidonic acid, which decrease expression of cyclooxygenase and lipoxygenase, inhibiting synthesis of prostaglandins and leukotrienes. Anti-inflammatory activity occurs via reversal of vascular dilation and reducing permeability, which prevents macrophage and leukocyte migration. Triamcinolone also inhibits nuclear factor kappa-B, which decreases the production of pro-inflammatory signals such as interleukin-6, interleukin-8, and monocyte chemoattractant protein-1. 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)/ The potent anti-inflammatory action may be due to an inhibition of the secretion of growth factors, endothelial activating and other cytokines from lymphocytes, eosinophils, macrophages, fibroblasts, and mast cells. The results are decreased influx of inflammatory cells into the bronchial walls, due in part to inhibition of expression of adhesion molecules on the endothelium and in the tissue. Decreased activation and survival of eosinophils in the lung tissue and a reduction in numbers of mast cells are further effects. Corticosteroids may inhibit release of mediators from basophils and enzymes from macrophages. There is decreased permeability through vasoconstriction and direct inhibition of endothelial cell contradiction. Beta-adrenergic-receptor numbers may be increased, which results in an enhanced response to beta-adrenergic bronchodilators and reduced down-regulation of beta-receptors after prolonged beta-agonist exposure. Inhaled corticosteroids also inhibit mucus secretion in airways, possibly by a direct action on submucosal gland cells and an indirect inhibitory effect caused by the reduction in inflammatory mediators that stimulate mucus secretion. The amount and viscosity of sputum are reduced. /Corticosteroids (inhalation-local/
Pharmacodynamics
Triamcinolone is a corticosteroid with anti-inflammatory properties. These properties are used to treat inflammation in conditions that affect various organs and tissues. Triamcinolone should not be administered as an epidural injection.
Source: PubChem (NCBI) · pathways from PathBank, Reactome, WikiPathways & PharmGKB.
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