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Biomedical subjects

D D Tang-Liu

Publications and source records attributed to D D Tang-Liu.

At least 19 recordsLinked to original sources

The pharmacology of bimatoprost (Lumigan).

Bimatoprost (Lumigan) is a pharmacologically unique and highly efficacious ocular hypotensive agent. It appears to mimic the activity of a newly discovered family of fatty acid amides, termed prostamides. One biosynthetic route to the prostamides involves anandamide as the precursor. Bimatoprost pharmacology has been extensively characterized by binding and functional studies at more than 100 drug targets, which comprise a diverse variety of receptors, ion channels, and transporters. Bimatoprost exhibited no meaningful activity at receptors known to include antiglaucoma drug targets as follows: adenosine (A(1-3)), adrenergic (alpha(1), alpha(2), beta(1), beta(2)), cannabinoid (CB(1), CB(2)), dopamine (D(1-5)), muscarinic (M(1-5)), prostanoid (DP, EP(1-4), FP, IP, TP), and serotonin (5HT(1-7)). Bimatoprost does, however, exhibit potent inherent pharmacological activity in the feline iris sphincter preparation, which is prostamide-sensitive. Bimatoprost also resembles the prostamides in that it is a potent and highly efficacious ocular hypotensive agent. A single dose of bimatoprost markedly reduces intraocular pressure in dogs and laser-induced ocular hypertensive monkeys. Decreases in intraocular pressure are well maintained for at least 24 hr post-dose. Human studies have demonstrated that systemic exposure to bimatoprost is low and that accumulation does not occur. The sclera is the preferred route of accession to the eye. The high scleral permeability coefficient Papp is a likely contributing factor to the rapid onset and long-acting ocular hypotensive profile of bimatoprost.

Amides↗

Ophthalmic drops causing coma in an infant.

A 1-month-old infant with Peters anomaly had recurrent episodes of unresponsiveness, hypotension, hypotonia, hypothermia, and bradycardia. An extensive medical evaluation determined these episodes to be caused by brimonidine, an anti-glaucoma agent. There is the potential for serious toxic effects from the systemic absorption of topically applied ophthalmic agents in children.

Adrenergic alpha-Agonists↗

Distribution of cyclosporin A in ocular tissues after topical administration to albino rabbits and beagle dogs.

PURPOSE: To determine the ocular pharmacokinetics of cyclosporin A after topical ophthalmic administration. METHODS: Radiolabled cyclosporin A in either a castor oil-in-water emulsion or a corn oil ointment was applied to the eyes of beagle dogs or albino rabbits using the following paradigms: (i) single doses of 0.2% emulsion to rabbits and dogs, (ii) single doses of 0.05%, 0.2%, or 0.4% emulsion to rabbits, (iii) multiple doses of 0.2% emulsion to dogs, (iv) single and multiple doses of 0.2% ointment to rabbits. The distribution of cyclosporin A was determined by measuring the distribution of radioactivity. RESULTS: After a single dose, cyclosporin A was rapidly absorbed into the conjunctiva (Cmax: dogs, 1490 ng/g; rabbits, 1340 ng/g) and cornea (Cmax: dogs, 311 ng/g; rabbits, 955 ng/g). High concentrations (>300 ng/g) could be detected in the cornea up to 96 hours post-dose. Lower concentrations were found in the intraocular tissues, and systemic absorption was minimal. After multiple doses, there was some accumulation in the cornea, lens, lacrimal gland, and iris-cilliary body, but limited accumulation in the conjunctiva and sclera. Ocular tissue concentrations of cyclosporin A increased with increasing dose concentration; proportionally in lacrimal gland and intraocular tissues; less than proportionally in conjunctiva and cornea. The pharmacokinetic profile of the cyclosporin A corn oil ointment was similar to that of the emulsion. CONCLUSIONS: Topical ophthalmic cyclosporin A penetrated into extraocular tissues at concentrations adequate for local immunomodulation while penetration into intraocular tissues was much less and absorption into the blood was minimal.

Absorption↗

Clinical pharmacokinetics and drug metabolism of tazarotene: a novel topical treatment for acne and psoriasis.

Tazarotene (AGN 190168) is a new acetylenic retinoid which is effective for the topical treatment of patients with stable plaque psoriasis and mild to moderate acne vulgaris. Topical gel application provides direct delivery of tazarotene into the skin. At 10 hours after a topical application of 0.1% tazarotene gel to the skin of healthy individuals and patients with psoriasis, approximately 4 to 6% of the dose resided in the stratum corneum and 2% of the dose distributed to the viable epidermis and dermis. Tazarotene is rapidly hydrolysed by esterases to its active metabolite, tazarotenic acid. Tazarotenic acid does not accumulate in adipose tissue, but undergoes further metabolism to its sulfoxide and to other polar metabolites and is rapidly eliminated via both urinary and faecal pathways with a terminal half-life of about 18 hours. Percutaneous absorption is similar between healthy individuals and patients with facial acne, leading to plasma concentrations below 1 microg/L. The systemic bioavailability of tazarotene (measured as tazarotenic acid) is low, approximately 1% after single and multiple topical applications to healthy skin. In patients with psoriasis under typical conditions of use, systemic bioavailability increased during the initial 2 weeks of treatment from 1% (single dose) to 5% or less (steady state). The increased bioavailability is probably related to decreases in plaque elevation and scaling due to successful treatment, resulting in a less effective skin penetration barrier to tazarotene. Steady-state concentrations of tazarotenic acid are achieved within 2 weeks of topical treatment in both healthy and psoriatic skin types. The large variability in plasma concentrations observed in patients with psoriasis is probably because of the large differences in lesional skin condition, the amount of drug applied and the surface area of application. There was no significant drug accumulation in the body with long term treatment of patients with psoriasis. Topical administration of tazarotene requires dosages much smaller than those usually required for oral retinoids, such as isotretinoin, acitretin and etretinate, and it delivers the drug directly into the target skin tissues. The low systemic absorption and rapid systemic elimination of tazarotene and tazarotenic acid results in limited systemic exposure. Thus, topical tazarotene has a low potential for systemic adverse effects and is effective in the treatment of patients with acne and psoriasis.

Acne Vulgaris↗

Penetration of natural prostaglandins and their ester prodrugs and analogs across human ocular tissues in vitro.

The objective of this study was to assess the corneal and scleral permeabilities of natural prostaglandins as well as their prodrugs and analogs through human cornea and sclera in vitro. The "apparent permeability coefficients" (Papp) of natural prostaglandins (PGF2alpha, PGD2 and PGE2), ester prodrugs of PGF2alpha (1-isopropyl PGF2alpha, 11-pivaloyl PGF2alpha and 11,15-dipivaloyl PGF2alpha) and four analogs (16-m-chlorophenoxy tetranor PGF2alpha, 17-phenyl trinor PGF2alpha, 17-phenyl trinor PGE2 and AH 13205) were measured using modified Ussing perfusion chambers and quantitative high performance liquid chromatography. Our results indicate that the corneal penetration of natural prostaglandins (PGs) is poor (the Papp values ranged from 1.65 x 10(-6) to 2.38 x 10(-6) cm/sec), while the PGF2alpha prodrugs showed higher corneal penetration than PGF2alpha. The 11-pivaloyl ester of PGF2alpha penetrated the cornea faster than both 1-isopropyl ester and the lipophilic 11,15-dipivaloyl ester. The PG analogs also showed poor corneal penetration (Papp values ranged from 0.696 x 10(-6) to 1.49 x 10(-6) cm/sec) except for AH 13205. All compounds tested showed good scleral penetration (Papp values ranged from 6.90 x 10(-6) to 17.1 x 10(-6) cm/sec) except PGF2alpha 11,15-dipivaloyl (Papp = 1.22 x 10(-6) cm/sec). The penetration profiles correlated well with tissue uptake ratios (ratio of final tissue concentration to initial dose) for all compounds except 11,15-dipivalate PGF2alpha. All ester prodrugs (but not the PGs and analogs) underwent corneal first-pass metabolism. The study results demonstrate that transcleral absorption may play a significant role in the ocular absorption of these compounds.

Cornea↗

Ocular penetration and bioconversion of prostaglandin F2alpha prodrugs in rabbit cornea and conjunctiva.

The objective of this study was to identify prostaglandin F2alpha (PGF2alpha) prodrugs that have an optimal ocular absorption profile and therefore could be potentially useful for the treatment of glaucoma. Rabbit cornea, conjunctiva, and iris/ciliary body were mounted in a flow-through chamber to evaluate the permeability and bioconversion of PGF2alpha and its prodrugs. The prodrugs tested were PGF2alpha 1-isopropyl, 1,11-lactone, 15-acetyl, 15-pivaloyl, 15-valeryl, and 11,15-dipivaloyl esters. After 4 h in the donor or acceptor compartments, the products and formation of PGF2alpha were analyzed by HPLC. Effects on intraocular pressure and ocular surface hyperemia were also determined. All prodrugs penetrated the rabbit cornea faster than PGF2alpha by 4- to 83-fold. All prodrugs penetrated conjunctiva faster than PGF2alpha, except the 15-acetyl ester prodrug, which was equally permeable. No direct correlation between drug lipophilicity and permeability across the cornea or conjunctiva was apparent. The most metabolically stable prodrug was the 1,11-lactone, followed by the 11,15-dipivaloyl, 15-pivaloyl, 15-acetyl, 1-isopropyl, and the 15-valeryl esters, the latter of which was extensively converted to PGF2alpha. A separation index for various prodrugs was calculated from the ratio of the bioavailable PGF2alpha for ocular hypotension to the bioavailable PGF2alpha for hyperemia. The highest separation index was observed for the 1,11-lactone prodrug (2.33), followed by the 11,15-dipivaloyl ester prodrug (1.80). Thus the 1,11-lactone and 11,15-dipivaloyl ester prodrugs appeared to be superior to the others in providing bioavailable PGF2alpha for ocular hypotension, while minimizing hyperemia. The favorable separation index for these compounds appeared to be due to their metabolic stability at the corneal surface and conjunctiva combined with sufficient bioavailability for ocular hypotension.

Absorption↗

Effect of benzalkonium chloride/EDTA on the ocular bioavailability of ketorolac tromethamine following ocular instillation to normal and de-epithelialized corneas of rabbits.

This study was designed to examine the effect of benzalkonium chloride/ethylenediaminetetraacetic acid (BAK/EDTA) on the ocular bioavailability (Focular) of ketorolac tromethamine after ocular instillation to normal and de-epithelialized corneas of rabbits both in vitro and in vivo. The in vitro Focular of the formulations was measured in flow-through perfusion chambers. For in vivo studies, a 35 microL dose of 0.5% ketorolac tromethamine with or without BAK/EDTA was instilled into rabbit eyes with intact or de-epithelialized corneas. At 0.5, 1, 2, 4, 6, and 8 h postdose, rabbits were euthanized, and the corneas and aqueous humor were collected from both eyes. The ketorolac concentrations from both in vivo and in vitro samples were quantified by reversed-phase high-performance liquid chromatography. The in vitro study results indicated that BAK/EDTA statistically significantly increased the Focular of ketorolac through de-epithelialized corneas but not through intact corneas. The in vivo study results showed that BAK/EDTA had no effect on the Focular of ketorolac in rabbits with intact corneas, based on the values of the area under the aqueous humor concentration versus time curves (AUC0-6h) of ketorolac. As expected, de-epithelialization of the corneas produced a faster and greater ocular absorption of ketorolac as evidenced by the smaller Tmax and larger AUC values compared to those for the intact corneas in vivo. However, BAK/EDTA decreased the ocular absorption of ketorolac in rabbits with de-epithelialized corneas. The half-lives (t 1/2) of ketorolac in corneal tissue and aqueous humor were longer in rabbits with intact corneas than those in rabbits with de-epithelialized corneas. In conclusion, the in vivo Focular of ketorolac was not altered by BAK/EDTA in rabbits with intact corneas, but it was decreased by BAK/EDTA in rabbits with de-epithelialized corneas. Therefore, the formulation with ketorolac alone may be better as a post-operative ocular analgesic.

Animals↗

Measurement of brimonidine concentrations in human plasma by a highly sensitive gas chromatography/mass spectrometric assay.

Brimonidine is an alpha 2-adrenergic agonist that is efficacious in lowering intraocular pressure in humans. A highly sensitive and selective gas chromatography/mass spectrometry (GC/MS) assay is described for quantitation of brimonidine in human plasma following ocular installation. Brimonidine in 1 ml of plasma was extracted together with tetradeuterated brimonidine (internal standard) and clonidine (carrier) by solvent extraction. After solvent evaporation, 3,5-bis(trifluoromethyl)benzoyl derivatives were formed and injected onto a GC/MS apparatus under negative chemical ionization conditions. The ions monitored for derivatized brimonidine and tetradeuterated brimonidine were m/z 691 [M-HBr] and m/z 694 [M-DBr], respectively. Calibration curves were linear from 2 to 1000 pg ml-1 (r2 = 0.981-0.996). The method was specific for brimonidine relative to endogenous compounds in plasma. The inter-day relative standard deviation for analysis of quality controls was 12% or less, and the inter-day assay accuracy ranged from 97 to 104% of nominals. The GC/MS assay showed adequate sensitivity for analysis of human samples from volunteers ocularly dosed with 0.5% brimonidine tartrate solution. Overall, the GC/MS assay showed excellent precision and accuracy, and a minimum quantifiable concentration of 2 pg ml-1.

Adrenergic alpha-Agonists↗

Comparison of concentration-time profiles of levobunolol and timolol in anterior and posterior ocular tissues of albino rabbits.

The potential effects of anti-glaucoma drugs, such as levobunolol and timolol, on blood flow in the posterior segment of the eye are of great interest in terms of changes in optic nerve head perfusion and prevention of visual field loss. These effects are related to the rate and extent of their absorption into the site of action. In this study, the concentrations of timolol and levobunolol in the aqueous humor, iris-ciliary body, vitreous humor, choroid-retina, and optic nerve were compared following instillation of a single drop of 0.5% ophthalmic solutions into albino rabbit eyes. Tissue drug and metabolite concentrations were measured by liquid chromatography-mass spectrometry. Dihydrobunolol (DHB) is an equipotent metabolite of levobunolol. In the anterior segment of the eye, levobunolol plus DHB concentrations were higher than timolol concentrations in aqueous humor and were comparable to those of timolol in iris-ciliary body. However, in the choroid-retina and optic nerve, timolol concentrations were greater than those of levobunolol plus DHB. Overall, the study demonstrates comparable concentrations of levobunolol and timolol in the anterior section of the eye. The low availability of levobunolol in the posterior segment as compared to timolol may be a key advantage for levobunolol in producing less adverse effect on blood flow in the choroid-retina and optic nerve.

Absorption↗

Comparative ocular pharmacokinetics of brimonidine after a single dose application to the eyes of albino and pigmented rabbits.

Brimonidine is a potent ocular hypotensive drug. The ocular pharmacokinetics of 14C-brimonidine in albino and pigmented rabbits were compared after ocular instillation of a 35-microliters drop of a 0.5% 14C-brimonidine solution. Ocular drug and metabolite concentrations were measured as total radioactivity and by a selective HPLC method. Rapid ocular absorption resulted in peak drug concentrations in aqueous humor of 2.16 +/- 0.75 micrograms/ml (mean +/- SD) and 1.52 +/- 0.38 micrograms/ml at 0.67 hr postdosing in albino and pigmented rabbits, respectively. Drug elimination from aqueous humor was rapid initially with a half-life of 1 hr in rabbits, followed by a slower decline phase in pigmented rabbits. Radioactivity concentration in iris-ciliary body of albino rabbit reached a peak of 5.04 micrograms-eq/g at 40 minutes and declined to 0.10 micrograms-eq/g at 6 hr postdosing with a half-life of 1 hr. The radioactivity concentrations in pigmented iris-ciliary body rose to a peak of 20.1 micrograms-eq/g at 1.5 hr and stayed relatively steady for at least 4 hr before declining slowly to 0.43 micrograms-eq/g 90 days postdose. The terminal half-life of brimonidine in pigmented iris-ciliary body was 160 hr. Three metabolites were detected in the conjuctiva and iris-ciliary body, and brimonidine was the major drug-related substance in aqueous humor and iris-ciliary body. The results indicate that brimonidine is absorbed rapidly into rabbit eyes, metabolized in ocular tissues, and has significant affinity for melanin-containing tissues.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic alpha-Agonists↗

Effects of four penetration enhancers on corneal permeability of drugs in vitro.

The usefulness of penetration enhancers in promoting drug permeation across the cornea was investigated for drugs varying from hydrophilic to lipophilic. Four purported penetration enhancers [Azone (laurocapram), hexamethylenelauramide, hexamethyleneoctanamide, and decylmethylsulfoxide] were employed. Corneal permeability coefficients of drugs that were either hydrophilic (acetazolamide, cimetidine, guanethidine, and sulfacetamide), moderately lipophilic (bunolol and prednisolone), or lipophilic (flurbiprofen and its amide analogue) were measured in the absence or in the presence of various Azone concentrations. The effects of penetration enhancers on the corneal penetration of cimetidine were also compared. The corneal penetration of hydrophilic compounds was enhanced by at least 20-fold at 0.1% Azone. For prednisolone and bunolol, the maximal enhancement was at 0.025-0.1% Azone and was marginal (two- to 5-fold), whereas Azone inhibited rather than enhanced the corneal penetration of the lipophilic flurbiprofen and its amide analogue. All four enhancers behaved similarly in enhancing corneal penetration of cimetidine and corneal hydration after incubation in vitro. Possible mechanisms of penetration enhancers on corneal drug penetration were discussed. Penetration enhancers may have clinical benefits in improving ocular drug delivery of hydrophilic compounds, however, their utility may depend on the toxicological profiles.

Animals↗

Comparative tear concentrations over time of ofloxacin and tobramycin in human eyes.

The pharmacokinetic profiles of 0.3% ofloxacin and 0.3% tobramycin ophthalmic solutions after multiple administrations in the eyes of 160 healthy volunteers were evaluated. In human tears, ofloxacin and tobramycin were found to have terminal half-lives of 226 and 154 minutes, respectively. The mean residence time in the ocular tear fluid was 326 minutes for ofloxacin and 106 minutes for tobramycin. The mean duration of time that ofloxacin remained above the MIC90 value for five bacterial species evaluated was 605 minutes, compared with 251 minutes for tobramycin. The mean area under the inhibitory curve for the five bacterial species evaluated was greater for ofloxacin (2224) compared with tobramycin (1549). The duration of time above the MIC90 for ofloxacin was longer compared with tobramycin for gram-positive isolates. Overall, the pharmacokinetic and pharmacodynamic profiles of ofloxacin were superior to those of tobramycin for most parameters studied.

Adolescent↗

The effect of pilocarpine on ocular levobunolol absorption from ophthalmic solutions.

Studies in vitro and in vivo were conducted to investigate the effect of pilocarpine on ocular absorption of levobunolol when both drugs were formulated in one solution dosage. The ocular absorption of levobunolol is pH-dependent. Due to the large buffering capacity of pilocarpine at pH 5.5, the ocular absorption of levobunolol from pilocarpine-containing solutions was reduced by approximately four-fold as compared to a non-pilocarpine-containing formulation at pH 7.2. The ocular absorption of levobunolol in the presence of pilocarpine at acidic pH was enhanced by the use of sulfosuccinates, specifically Schercopol CMS.

Absorption↗

Disposition of SK&F L-190144 in rats and monkeys after oral, intravenous or ocular administration.

The objective of the study was to investigate the systemic disposition of 14C-SK&F L-190144 after single intravenous (10 mg kg-1) and oral (200 mg kg-1) doses to rats and after single intravenous and ocular doses (0.33 mg kg-1) to monkeys. After the intravenous dose, the blood concentration-time profile of 14C-SK&F L-190144 followed a rapid triexponential decline with half-lives of 2.5, 15, and 246 min in rats and 3, 19, and 2520 min in monkeys. The 14C-label in blood was mainly the parent compound. The terminal elimination half-life detected in rats using the urinary excretion rate-time data was 700 min. The total body clearance values were 17.6 +/- 2.1 (mean +/- SD, n = 6) and 1.11 +/- 0.41 (n = 4) ml min-1 kg-1 for rats and monkeys, respectively. Both species had similar values of volume of distribution at the terminal phase, 4 to 6 l kg-1, and similar excretion patterns, approximately 60 per cent and 30 per cent of the dose were excreted in the urine and feces, respectively. 14C-SK&F L-190144 was not absorbed orally in rats with the majority of the dose recovered in the feces. Following ocular administration to monkeys, the plasma drug concentrations peaked at 8 h post-dosing but did not reach a biexponential elimination phase until 18 h post-dosing, suggesting slow systemic absorption of drug from the ocular site. The monkeys excreted 42 per cent of the dose in urine and 50 per cent in feces after ocular administration. This increase in fecal excretion compared to the intravenous route of administration may have been due to the slow absorption by the ocular and nasal tissues altering the relative proportions of drug elimination via the renal and hepatic routes, or to a proportion of the dose passing into the gastrointestinal tract and exiting unabsorbed. Study results demonstrate similar excretion patterns and volume of distribution after intravenous administration in both species. The slow terminal elimination phase in monkeys was attributed to the low body clearance. The low oral bioavailability was possibly due to the poor partitioning behavior of the drug (logarithm of partition coefficient -2.6). A significant fraction of the dose was absorbed in the body via the ocular route.

Administration, Oral↗

Precorneal sampling techniques for ophthalmic gels.

Drug-cornea contact time is a critical issue in ocular drug delivery. Existing methods for its experimental determination are developed mainly for eye drops and ointments, and have not been reported for ophthalmic gels. The present study evaluated two tear film sampling techniques (capillary tubes and Schirmer strips) and one recovery technique (cotton swab) for their suitability for the determination of precorneal drug concentration as a function of time for ophthalmic gels. The study was conducted using the rabbit eye model, and the gel studied was a commercial polyacrylate-based gel containing pilocarpine HCl. The three techniques explored yield similar results with respect to drug-cornea contact time, about one hour for the gel studied. The strip method suffers from a gel-carry-over problem at the early time points; therefore it is not recommended for tear sampling until most of the gel is cleared from the cul-de-sac. Successful tear sampling was accomplished using capillary tubes. Drug concentration in the tear film as a function of time determined using this technique reveals not only the duration of contact between the drug and the cornea, but also demonstrates a nonuniform drug distribution in the tear film at the early time points (10 and 30 minutes). Finally the cotton swab technique is gentle, easy, and nondestructive. It recovers total drug remaining in the cul-de-sac but does not yield information for the tear film.

Animals↗

Lenticular uptake and distribution of xenobiotics and amino acids.

The objective of this study was to explore the relationship between lipophilicity and the lenticular uptake of radiolabeled xenobiotics. The lenticular uptake of amino acids was also investigated. An organ-culture technique was employed and the partitioning of compounds into the rabbit lens was measured for compounds with log octanol/water partition coefficients (log P o/w) ranging from -1 to 7.3. Drug distribution in the lens was expressed as the concentration ratio of that in the lenticular section (capsule/epithelium, cortex, and nucleus) to that in the incubation medium, (C(lens) section/Cm). The drug partitioning into the lens capsule was facile for all of the compounds tested. The drug concentrations in the lens capsule were higher than those in the cortical and nuclear regions. For compounds with low partition coefficients (such as sulfacetamide and cimetidine), an apparent distribution equilibrium was achieved during a 5-hr period. The C(lens)/Cm value of polar compounds, being less than one, did not further increase by prolonging the incubation period. Only compounds with log Po/w values between 3 and 6 had Cnucleus/Cm values exceeding unity. The maximal values of Ccortex/Cm and Cnucleus/Cm, approximately 15 and 4, respectively, for anthracene (log Po/w = 4.5) and diethylstilbestrol (log Po/w = 5.1), were observed in this study. A bell-shaped relationship was observed between the lenticular uptake rate and drug lipophilicity, of which the maximum occurred around log Po/w of 4. These results indicate the existence of a lipophilicity window for favorable drug distribution into the deeper region of the lens. For several lipophilic compounds, such as padimate-O, values of Cnucleus/Cm increased steadily over a 24-hour incubation period. This suggests that the nucleus behaved as a deep compartment for these compounds. L-Cysteine and L-serine were actively taken up by the lens and the lenticular absorption of L-cysteine was concentration-dependent with Vmax and Km values of 18.3 mumol/gm/hr and 49.8 mM, respectively. In summary, a relationship between lenticular uptake and drug lipophilicity was demonstrated. The optimal log Po/w value for drug uptake into the lens was between 4 and 5. The slowness of reaching significant drug concentrations in the nucleus necessitates a chronic dosing regimen to deliver therapeutic drug levels inside the lens.

Amino Acids↗

Ofloxacin in human serum, urine, and tear film after topical application.

We evaluated the systemic absorption of ofloxacin eyedrops in humans and their availability in the tear film. Serum, urine, and tear film concentrations of ofloxacin were measured in 30 healthy women topically treated with 0.3% ofloxacin, in both eyes, four times daily for 10 1/2 days. Serum was collected before the first daily dose on days 1 and 11 and at 18 time points before the second dose. Maximum serum ofloxacin concentrations (1.89 +/- 1.13 ng/ml) after 10 1/2 days of topical dosing were more than 1,000 times lower than those reported after standard oral doses of 300 mg ofloxacin. Urine was collected for the 24-h period after the first daily dose on days 1 and 10. Topical ofloxacin was excreted in the urine primarily in unmodified form and recovery rates were significantly higher on day 10 (76.1 +/- 41.5%) than on day 1 (56.6 +/- 31.6%) (p less than 0.05). Both serum and urine data give evidence to accumulations of ofloxacin over a 10 1/2-day period. The low serum concentration at steady state suggests an extremely low potential for producing systemic effects. No systemic side effects attributable to topical ofloxacin were observed. Mild ocular irritation was reported by two patients while under treatment. Tears were collected 4 h after the first treatment on day 11 and at 5, 10, 20, 30, and 40 min after the second treatment.(ABSTRACT TRUNCATED AT 250 WORDS)

Absorption↗