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Biomedical subjects

N Bodor

Publications and source records attributed to N Bodor.

At least 91 records · Page 5Linked to original sources

Suppression of plasma testosterone and prostate carcinoma size by a redox-based, brain-targeted estrogen delivery system in the rat.

Studies were undertaken to examine the effects of an estradiol-chemical delivery system (E2-CDS) or castration (CAST) on plasma testosterone (T) and growth of the Segaloff 11095 carcinoma. Fischer 344 rats were implanted subcutaneously with the Segaloff 11095 tumor and tumor growth was monitored thereafter. After optimal tumor growth, when the average tumor size was approximately 25 x 15 mm (length x width; 4-5 g wet weight), rats were randomized into (1) testis-intact controls; (2) CAST; (3) intact+E2-CDS groups (rats received weekly injection of the E2-CDS at 0.5 mg/kg). Animals were killed 7 or 14 days after the initiation of treatments. Blood and tissue samples were collected for subsequent analysis. Plasma T levels were suppressed by 98% and 97% through 14 days after CAST or E2-CDS treatment. CAST increased plasma gonadotropin (LH) concentrations, while E2-CDS reduced LH compared to intact control levels. E2-CDS treatment increased plasma E2 levels to 24 (one injection) or 75 pg/ml (two injections) at 7 or 14 days, respectively. E2-CDS, given once a week for 2 consecutive weeks, resulted in a decreased growth of the prostate tumor by 61%, while CAST reduced the weights of these tumors by only 20%. In response to E2-CDS (one or two injections), weights of the in situ ventral prostate and seminal vesicles were significantly reduced by 70% and 50%, respectively, in tumor-bearing rats. Similarly, CAST reduced the weights of these tissues by 80% (prostate) or 52% (seminal vesicle) at 7 or 14 days after treatment. Pituitary weight increased, while testes weight decreased by 20% with two injections of E2-CDS, compared with intact control rats. Collectively, these data indicate that E2-CDS is effective in reducing the growth rate of prostatic tumors in the rat.

Animals↗

The effect of dihydronicotinate N-substitution on the brain-targeting efficacy of a zidovudine chemical delivery system.

Enhanced brain delivery of zidovudine (AZT) has been demonstrated using a redox-based chemical delivery system (CDS). Optimization of the prototype AZT-CDS (5'-[(1-methyl-1,4-dihydropyridin-3-yl)carbonyl]-3'-azido-3'-deoxy thymidine ) was investigated by manipulation of the N-methyl group present on the dihydronicotinate portion of the molecule and examining the release of AZT in vivo in a rat model. Of the five compounds examined, all produced higher brain levels and lower blood levels of AZT than did AZT itself. In comparing the novel AZT-CDS analogues to the N-methyl benchmark, the N-propyl system proved to be the most efficient of the compounds tested.

Animals↗

Oral pharmacokinetics of carbamazepine in dogs from commercial tablets and a cyclodextrin complex.

The extent of absorption of carbamazepine from a 2-hydroxypropyl-beta-cyclodextrin/carbamazepine complex was significantly greater and the rate of absorption was faster when compared with an immediate-release carbamazepine tablet in the dog. Six dogs were dosed orally in a two-way crossover study in which the tablet was compared with an equivalent dose of the complex in solution. The area under the curve of concentration versus time for the complex was 5.6 times greater than the tablet, whereas the mean time to reach maximum concentration for the tablet was 1.4 hours versus 0.5 hours for the complex. The complex, therefore, had a greater rate and extent of absorption. A rapidly acting and better absorbed carbamazepine product has the potential to decrease the daily dose of carbamazepine, increase its utility as emergency treatment of epileptic seizures, and provide an acceptable alternative dosage form in patients who are unable to swallow tablets.

Administration, Oral↗

A strategy for delivering peptides into the central nervous system by sequential metabolism.

Most peptides do not enter the central nervous system because of their hydrophilic character and the presence of peptidolytic enzymes in the lipoidal blood-brain barrier. To achieve brain delivery of a peptide conjugate, an opioid peptide (enkephalin) was placed in a molecular environment that disguises its peptide nature and provides biolabile, lipophilic functions to penetrate the blood-brain barrier by passive transport. The strategy also incorporates a 1,4-dihydrotrigonellinate targetor that undergoes an enzymatically mediated oxidation to a hydrophilic, membrane-impermeable trigonellinate salt. The polar targetorpeptide conjugate that is trapped behind the lipoidal blood-brain barrier is deposited in the central nervous system. Analgesia was observed with "packaged" enkephalin but not with the unmodified peptide or lipophilic peptide precursors.

Amino Acid Sequence↗

An extended version of a novel method for the estimation of partition coefficients.

Using the semi-empirical AM1 method, 302 compounds have been studied and equilibrium properties calculated. Functions based on linear combinations of subsets of calculated properties have been fit to the 1-octanol-water partition coefficients. The best such semi-empirical approach function has 18 parameters, has a standard deviation of 0.306, and seems to describe the partition coefficients of the 302 compounds. The predictive power of the function was tested and found to be good. Since this new version is based on a much larger number of, and structurally more varied, compounds and uses an improved, new function, we expect it to be a very useful method to predict partition properties of a wide variety of compounds.

Chemistry, Physical↗

A new method for the estimation of the aqueous solubility of organic compounds.

Using a semiempirical quantum chemical method (AM1), various properties (dipole moment, charge distribution, geometrical parameters, etc.) of 331 compounds were calculated. Various linear functions of these properties and their combinations were fitted to reproduce experimental aqueous solubilities. An 18-parameter function was derived that is reasonably simple, yet appears to be able to describe the aqueous solubilities of a wide range of organic compounds. The parameter set is essentially the one used in a recent similar study of octanol-water partition coefficients. The derived equation has important predictive value.

Models, Theoretical↗

Pharmacokinetic characterization and tissue distribution of the new glucocorticoid soft drug loteprednol etabonate in rats and dogs.

Loteprednol etabonate, a new glucocorticoid soft drug with a characteristic chloromethyl ester function in the 17 beta-position, is currently in the early phases of clinical development. As the basis for human trials, this study describes a new reversed-phase high-performance liquid chromatographic method for the determination of levels of drug in plasma and urine samples and assesses the pharmacokinetic properties of loteprednol etabonate in dogs and rats. Intravenous administration of loteprednol etabonate (5 mg/kg) to dogs revealed a terminal half-life of 2.8 h, a volume of distribution of 3.7 L/kg, and a total body clearance of 0.9 L/h/kg. Intact loteprednol etabonate was not detectable in the urine. After oral administration of the drug (5 mg/kg) to dogs, only metabolites, but no intact drug, were found in the plasma, an indication for a high first-pass effect. A pronounced binding of the drug to plasma protein (> 90%) and a high erythrocyte-buffer partition coefficient of 7.8 were determined in vitro. Preliminary information about tissue distribution and possible metabolic pathways were obtained in rats after oral administration of a 14C-labeled loteprednol etabonate suspension (5 mg/kg). pH-selective extraction into ethyl acetate revealed three distinguishable fractions: (1) a neutral lipophilic fraction, presumably intact drug, (2) an acidic, lipophilic fraction, and (3) a hydrophilic nonextractable fraction. Levels of intact drug and metabolites were highest in liver and kidney, whereas significantly lower levels were found in other investigated organs (lung, brain, heart).(ABSTRACT TRUNCATED AT 250 WORDS)

Androstadienes↗

Chemical systems for delivery of antiepileptic drugs to the central nervous system.

The chemical delivery system (CDS) approach, a recently developed procedure conceived to enhance the specific central nervous system (CNS) uptake of drugs, has been applied to several antiepileptic agents. CDSs based on dihydropyridine<-->pyridinium salt type redox targetors, reversibly linked to the drug, were designed, synthesized and tested for some traditional (phenytoin, valproate) and potential (stiripentol) antiepileptic drugs, as well as some compounds (GABA, adenosine) with important roles in epileptogenesis. Physicochemical, in vitro stability, in vivo tissue distribution, activity and toxicity studies were performed for the new derivatives. The results of these investigations indicated that selected CDSs possessed properties required for delivering the drugs to the CNS. In vivo experiments indicated improved brain uptake and enhanced pharmacologic activity in some of the examined cases. On the other hand, no toxic side effects were registered during the studies. Properly developed CDSs could enhance the therapeutic indexes of the anticonvulsant drugs.

Animals↗

Improved delivery through biological membranes. XLV. Synthesis, physical-chemical evaluation, and brain uptake studies of 2-chloroethyl nitrosourea delivery systems.

The dihydropyridine in equilibrium with pyridinium redox chemical delivery system (CDS) was supplied to two 2-chloroethylnitrosoureas, i.e., HECNU and CCNUOH, and the physicochemical properties of the delivery systems were studied to assess their potential as improved delivery forms to the CNS. Detailed physicochemical evaluation and brain uptake studies were performed on one of the delivery systems (CCNUOH-CDS) derived from trans-4-hydroxy-CCNU, an active metabolite of CCNU. Two aqueous-based formulations derived from hydroxypropyl-beta-cyclodextrin (HP beta CD) and Tween 80:ethanol:water system were developed for CCNUOH-CDS to overcome the poor aqueous solubility conferred upon it by its high lipophilicity. The formulations enabled a 200- to 400-fold improvement in the water solubility of CCNUOH-CDS. Dose- and vehicle-dependent comparative tissue distribution studies in rats indicated improved brain-to-organ ratios of the delivery system at lower doses.

Animals↗

New water-soluble pilocarpine derivatives with enhanced and sustained muscarinic activity.

The synthesis of an homologous series of new water-soluble derivatives of pilocarpine is described. The new compounds, referred to as soft quaternary salts, are water soluble by virtue of a cationic ammonium head and their lipophilicity can be modulated by manipulating the size and the nature of the substituent in the inactive portion of the molecule. The miotic activity of the compounds was evaluated after administration to normotensive New Zealand White rabbits. Changes in pupil size indicated a substantial cholinergic effect on the iridal sphincter musculature. The best candidate, compound 20, which has a 16-carbon side chain, was evaluated for reduction of the intraocular pressure in genetically glaucomatous Beagles. Compound 20 is superior to pilocarpine in both tests, with a potency 10 to 20 times that of the parent compound and a longer duration of action. It is suggested that the new compounds are prodrug forms of pilocarpine which greatly enhance the corneal bioavailability of the parent compound.

Animals↗

Metabolism, distribution, and transdermal permeation of a soft corticosteroid, loteprednol etabonate.

The soft corticosteroid, loteprednol etabonate (chloromethyl 17 alpha-ethoxycarbonyloxy-11 beta-hydroxy-3-oxoandrosta-1,4-diene-17 beta-carboxylate), I, was designed based on the "inactive metabolite approach." Accordingly, I should be metabolized by hydrolysis to the corresponding inactive cortienic acid derivative, II. The in vitro and in vivo metabolism of I indeed yielded mainly this inactive metabolite, which is more hydrophilic and thus readily eliminated from the body. Relatively high levels of I were found in tissues after intravenous administration of the drug in rats. The permeability of I through hairless mouse skin was comparable to what has been found for related "hard" steroids, without significant metabolism taking place in the skin.

Androstadienes↗

A comparison of intraocular pressure elevating activity of loteprednol etabonate and dexamethasone in rabbits.

A "Soft" corticosteroid, loteprednol etabonate I, designed based on the "inactive metabolite" concept can be used as a safe ophthalmic anti-inflammatory drug. By design, the metabolism of I follows a predicted biotransformation pathway, thus unwanted systemic side effects are avoided. Local side effects are also reduced. Accordingly, in a cross-over study I did not elevate the intraocular pressure (IOP) in rabbits, as opposed to dexamethasone.

Administration, Topical↗

Redox derivatives of tranylcypromine: syntheses, properties, and monoamine oxidase inhibitor activity of some chemical delivery systems.

Several brain-targeting chemical delivery systems (CDS) based on a dihydropyridine----pyridinium salt type redox system were synthesized for the monoamine oxidase (MAO) inhibitor tranylcypromine (TCP). The dihydronicotinate moiety was chemically attached to the amino group of TCP by either an amide or substituted carbamate linkages. Physicochemical studies of the new derivatives, including chromatographic Rm determinations, were performed. Only the substituted carbamate-type derivatives manifested an increased lipophilicity relative to the parent compound. In vitro oxidation stability studies were also performed on selected derivatives using a ferricyanide-mediated method. Results of this assay showed that the dihydropyridine-type derivatives oxidized to the respective quaternary salt forms with stabilities which empirically correlated with other effective CDSs. Preliminary in vivo studies performed in rats indicated that some of the new derivatives exerted significant biological activity.

Animals↗

Development of aqueous parenteral formulations for carbamazepine through the use of modified cyclodextrins.

The poor aqueous solubility of carbamazepine was dramatically increased via complexation with various chemically modified beta-cyclodextrins and gamma-cyclodextrins. A preparation of carbamazepine and 2-hydroxypropyl-beta-cyclodextrin was found to be stable to steam sterilization and to storage under a variety of conditions. Carbamazepine, when solubilized in this manner, was found to exert potent anticonvulsant effects in various seizure models and the formulation was tolerated in animals at high doses (100 mg/kg carbamazepine and 1200 mg/kg of the cyclodextrin excipient). The onset of anticonvulsant action was rapid and consistent with almost instantaneous in vivo complex dissociation. The low toxicity of 2-hydroxypropyl-beta-cyclodextrin, when administered via the parenteral route, and its ability to enhance the aqueous solubility of carbamazipine highly favor the use of this excipient.

Animals↗

Brain, blood, and cerebrospinal fluid distribution of a zidovudine chemical delivery system in rabbits.

Improved brain delivery of zidovudine (AZT) was shown to occur after iv dosing of a chemical delivery system (CDS) for the modified deoxynucleoside. Specifically, administration of a 25-mg/kg dose of 5'-[(1-methyl-1,4-dihydropyridin-3-yl)carbonyl]-3'-azido-3'-deoxyt hymidine (AZT-CDS) generated higher and more sustained levels of AZT in brain tissue of rabbits than did dosing with AZT itself. The significant increase in the area under the AZT brain concentration-time curve occurred with lower AZT present in the systemic circulation and with similar AZT levels in cerebrospinal fluid. These results, as well as previously published reports examining AZT-CDS in mice, rats, and dogs, indicate that this delivery system may be beneficial in the treatment of AIDS-related encephalopathy.

Animals↗