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Biomedical subjects

I Orienti

Publications and source records attributed to I Orienti.

At least 19 recordsLinked to original sources

Amphiphilic poly(vinyl alcohol) derivatives as complexing agents for fenretinide.

Poly(vinyl alcohol) (PVA) substituted with oleyl chains and tetraethyleneglycol monoethyl ether chains (TEGMEE) at 1.5% and 1% degrees of substitution respectively (mol of substituent to mol of hydroxyvinyl monomer) has previously been shown to self-assemble in water, providing aggregates selectively cytotoxic toward tumor cells vs normal cells. These polymers have also been shown to increase the long-term survival of nude mice injected with both human and murine neuroblastoma cell lines. In the present work, we changed the substitution degree of the oleyl chains on the poly(vinyl alcohol) backbone and maintained constant at 1% the degree of TEGMEE substitution. We evaluated the main physicochemical characteristics of the final polymers, their cytotoxicity toward tumor cells, and their complexing ability for hydrophobic molecules. The aim was to investigate the possibility of improving intrinsic antitumor efficacy of the polymer by changing the degree of oleyl chain substitution and further increase activity by complexation with antitumor drugs. The polymers were prepared at oleyl chain substitution degrees ranging from 0.5 to 3% (mol of substituent to mol of hydroxyvinyl monomer). The most active was again the 1.5% substituted polymer. It was further characterized by exhibiting the highest complexing ability toward hydrophobic molecules allowing the formation of a complex with fenretinide (HPR). The polymer-HPR complex was stable in aqueous environment and released the free drug prevalently in the presence of fluid hydrophobic phases. It was cytotoxic toward tumor cells with minimal activity toward normal cells. Antitumor activity exceeded that of the separate complex components resulting from the concomitant effect of the polymer and the HPR solubilized by complexation.

Animals↗

Modified polyvinylalcohol for encapsulation of all-trans-retinoic acid in polymeric micelles.

All-trans-retinoic acid (ATRA) is now included in many antitumor therapeutic schemes for the treatment of acute promyelocytic leukaemia, Kaposi's sarcoma, head and neck squamous cell carcinoma, ovarian carcinoma, bladder cancer and neuroblastoma. Unfortunately its poor aqueous solubility hampers its parenteral formulation. To date, there is no parenteral formulation of ATRA commercially available and oral administration of ATRA is associated with progressively diminishing ATRA levels in plasma, which is related to induction of retinoic acid-binding protein and increased drug catabolism by cytochrome P-450-mediated reaction. An ATRA formulation, obtained by complexation of the drug into polymeric micelles, might be suitable for parenteral administration overcoming these unwanted effects. To this purpose we prepared an amphiphilic polymer by polyvinylalcohol (PVA) substitution with oleyl amine at 1.5% substitution degree (mol substituent per 100 mol hydroxyvinylmonomer) and evaluated its functional properties with regard to ATRA complexation. The substituted polymer displayed ability to interact with ATRA both in aqueous solution and in the solid state following spray-drying of drug-polymer hydro-alcoholic solutions. The spray-dried complexes rapidly dissolved in water providing high levels of ATRA solubilization as a function of the drug-polymer weight ratio. The complexes characterized by 1:5 drug-polymer weight ratio provided higher levels of ATRA solubilization than 1:3 and 1:10 drug-polymer weight ratios respectively. Pre-formed polymeric micelles in water equilibrated in the presence of excess solid ATRA provided the lowest levels of solubilization. The drug release from the complexes was very slow in PBS, indicating their suitability in antitumor drug targeting where a fundamental requirement is stability towards drug release for at least 24 h, corresponding to the average circulation time period of macromolecular carriers. The cytotoxicity studies against neuroblastoma cell lines outlined increased cytotoxicity of complexed ATRA with respect to free ATRA, likely due to the increased bioavailability of the hydrophobic drug from the complex. We conclude that ATRA entrapped into self-assembling polymer micelles may be a useful parenteral ATRA formulation overcoming the unwanted pharmacological mechanism that lead to acquired retinoid resistance.

Amines↗

Influence of different chitosan salts on the release of sodium diclofenac in colon-specific delivery.

Chitosan (CH) was dissolved in aqueous solutions containing aspartic, glutamic, hydrochloric, lactic and citric acids to obtain different chitosan salts. Chitosan salts were collected from the solutions by spray-drying and the powders obtained were mixed with Sodium Diclofenac (SD), taken as a model anti-inflammatory drug. This study evaluated in vitro the influence of acid type on the release behaviour of SD from the physical mixture during gastrointestinal transit. The physical mixture of the chitosan salts with SD provided slower drug release than the pure drug both in acidic and alkaline pHs. In addition, the interaction with beta-glucosidase at pH 7.0 enhanced the release rate. Among the CH salts used, glutamic and aspartic salts provided the best control of release.

Algorithms↗

Physically cross-linked chitosan hydrogels as topical vehicles for hydrophilic drugs.

Physically cross-linked chitosan hydrogels with lauric, myristic, palmitic or stearic acid were prepared by freeze-drying and have been studied for topical use. This study selected propranolol hydrochloride as a hydrophilic model drug to design a transdermal delivery system. We evaluated the effect of the nature of the cross-linker on drug permeation through porcine skin and the main permeation parameters (diffusion coefficient, flux and lag time) were calculated. All the chitosan hydrogels analysed provided more transcutaneous permeation of propranolol hydrochloride than the corresponding solution of the commercial drug. Among the different chitosan vehicles, chitosan-laurate and chitosan-myristate hydrogels enhanced lyophilised drug diffusion through the skin with respect to chitosan-palmitate and chitosan-stearate hydrogels. This can been explained by the interaction of the hydrogels with the stratum corneum, increasing the solubility of the drug in the skin.

Administration, Cutaneous↗

Self-assembling poly(vinyl alcohol) derivatives, interactions with drugs and control of release.

The self-assembling properties of poly(vinyl alcohol) substituted with 2-hydroxypropyltrimethylammonium and with acyl chains of different molecular weights (butyryl, capryloyl, lauroyl, or myristoyl) were evaluated to assess the conditions favoring interaction with a poorly soluble drug such as indomethacin to increase its availability. To evaluate the effect of drug-polymer interactions on the solubility of the drug, phase-solubility diagrams were obtained from each substituted polymer at pH 2.0, 5.5, and 7.4 in the presence of indomethacin. To evaluate the availability of the free drug in solution, release profiles of the free drug from drug-polymer physical mixtures were obtained by a dissolution-diffusion apparatus containing a dialysis membrane allowing diffusion of the free drug towards a receiving phase where its concentration was determined over time. The phase-solubility diagrams revealed increasing drug solubility on increasing the polymer concentration. The drug-polymer affinity was slightly increased by lengthening the chain of the substituent on the polymer and was strongly increased by raising the pH of the aqueous phase. The thermodynamic evaluation of the drug-polymer interactions indicated that the interaction is enthalpically driven while the increase in drug-polymer affinity with increasing chain length could be attributed to an entropic contribution. The free drug availability from the drug-polymer systems increased on enhancing the drug-polymer affinity because it corresponded to an increase in the solubilizing effect of the polymer on the drug.

Delayed-Action Preparations↗

Crosslinked polyvinylalcohol hydrogels as vehicles for hydrophilic drugs.

Polyvinylalcohol crosslinked with succinyl, adipoyl, or sebacoyl chloride at two different degrees of crosslinking was prepared and employed as a supporting material for aqueous topical gels containing propranolol hydrochloride, which was chosen as a hydrophilic model drug suitable for transdermal delivery. We analysed the effect of the nature of the crosslinker and the degree of crosslinking on drug permeation through porcine skin by means of the permeation parameters obtained from the gels and the corresponding aqueous solution. The gels showed greater drug permeation than the liquid solution due to an increase in drug solubility in the skin. Increasing degree of crosslinking and decreasing crosslinker acyl chain length in the gel enhance the drug permeability through the skin.

Administration, Topical↗

Complexation of ursodeoxycholic acid with beta-cyclodextrin-choline dichloride coprecipitate.

The inclusion complexes of ursodeoxycholic acid (UDCA) with beta-cyclodextrin (betaCD) coprecipitated with choline dichloride (CDC) or beta-cyclodextrin were investigated to evaluate the effect of the presence of choline for UDCA inclusion in betaCD. The inclusion complexes were investigated in solution by phase solubility diagrams and 1H NMR spectrometry and in solid state (kneading, freeze-drying, sealed heating and spray-drying) by DSC, SEM, HSM, XRD and IR spectroscopy. Stability constants were determined at pH 5.5 and 7.0 to simulate the environmental pH of the first intestinal tract and at different temperatures (25, 30 and 37 degrees C) to obtain the thermodynamic parameters of inclusion. Both betaCD-CDC and betaCD increased the water solubility of UDCA particularly betaCD-CDC. All complexes showed a high dissolution rate particularly the spray-dried complexes obtained in the presence of betaCD-CDC.

Calorimetry, Differential Scanning↗

Controlled insulin release from chitosan microparticles.

This study deals with the production of chitosan microparticles containing insulin by interfacial crosslinkage of chitosan solubilized in the aqueous phase of a water/oil dispersion in the presence of ascorbyl palmitate. The use of ascorbyl palmitate as interfacial crosslinker is based on its amphiphilic properties allowing its disposition at the water/oil interface of the preparative dispersion, thus permitting covalent bond formation with the amino groups of chitosan when its oxidation to dehydroascorbyl palmitate takes place during microparticle preparation. This preparation method produced microparticles characterized by high loading levels of insulin, completely releasing the drug in about 80 h at an almost constant release rate as determined by spectrophotometric and spectrofluorimetric methods. In contrast, the replacement of ascorbyl palmitate by dehydroascorbyl palmitate provided microparticles incompletely releasing the incorporated drug and characterized by a non-constant release rate over time due to the higher lipophilicity of dehydroascorbyl palmitate which hinders its disposition at the water/oil interface and thus decreases the crosslinking efficiency and increases the lipophilicity of the microparticle surface. The efficiency of the spectrofluorimetric and spectrophotometric methods used for determination of the stability and release of the insulin from the chitosan microparticles is also discussed.

Ascorbic Acid↗

Substituted poly(methyl vinyl ether-alt-maleic anhydride) for the release control and targeting of methotrexate.

Poly(methyl vinyl ether-alt-maleic anhydride) substituted with cholamine (CA), aminoethylcholamine (AECA), or aminooctylcholamine (AOCA) at different substitution degrees, were used for methotrexate (MTX) complexation. The solid complexes, isolated by precipitation from the preparative mixture, showed lower fractional releases at pH 7.4 than at 5.5. This was ascribed to the establishment of ionic interactions between the ionized carboxyls of both the polymer and the drug and the quaternary ammonium groups of the substituents (CA, AECA, AOCA) inducing polymer self-aggregation and thus complex stabilization. The fractional release in pH 7.4 decreases with the increase in the substitution degree until a minimum characteristic for each substituent analyzed is reached and then rises with the increase in substitution degree. The minimum release at pH 7.4 was observed in the presence of AECA at the degree of substitution corresponding to 0.35 mole of substituent per mole of dimer (methyl vinyl ethermaleic anhydride). None of the substituted polymers studied had any haemolytic effect, indicating good biocompatibility.

Animals↗

Release of ketoprofen from dermal bases in presence of cyclodextrins: effect of the affinity constant determined in semisolid vehicles.

We describe a method to determine the affinity constant values between Ketoprofen and beta-cyclodextrin and hydroxypropyl-beta-cyclodextrin in semisolid vehicles. The method is based on the diffusion of the drug, released from semisolid vehicles, through a lipidic non porous membrane. The affinity constants of Ketoprofen towards cyclodextrins as determined in semisolid media better represent the release of the drug from dermal bases than the corresponding values in aqueous systems.

Chemical Phenomena↗

Chemical properties-dissolution relationship. IV. Behaviour in solution of the diclofenac/N-(2-hydroxyethyl) pyrrolidine salt (DHEP).

The behaviour in solution of the salt formed between diclofenac and N-(2-hydroxyethyl) pyrrolidine (DHEP) was examined. This salt is more soluble and dissolves more rapidly than sodium diclofenac and tends to give rise to supersaturated solutions, that only slowly evolve to equilibrium. Above 35 mM of DHEP, the solutions show unexpected solubilization ability towards sparingly soluble materials. The faster plasma level found, when DHEP is administered per os, can be associated to this weak detergency. These properties make DHEP a suitable pharmaceutical form to prepare extemporary solutions for short term analgesic therapy.

Diclofenac↗

Diffusion of naproxen in presence of beta-cyclodextrin across a silicone rubber membrane.

The diffusion of Naproxen through a silicone rubber membrane has been studied for four different release systems: solution and suspension both of Naproxen and Naproxen beta-cyclodextrin coprecipitates. Differences in transport between the two forms indicate the existence of an interaction between the acid and beta-cyclodextrin in solution. Independence of the transport on pH in the case of the coprecipitate indicates rapid liberation of Naproxen from the complex prior to entering the membrane. Increase in the cumulative amount diffused for the suspension of Naproxen with increasing pH was interpreted as due to an increase in its solubility with increasing pH.

Cyclodextrins↗

Controlled release of hydrocortisone acetate from dermal bases.

The effect of the complexation with beta-cyclodextrin, hydroxypropyl beta-cyclodextrin and polyvinylpyrrolidone on the diffusion kinetics of hydrocortisone acetate through a non porous lipidic membrane was analyzed starting from different dermal bases: a Carbopol gel and lanovaseline. A constant diffusive gradient was achieved; this suggests that the complexation equilibrium controls the diffusable form, according to its stability constant. The following sequence was observed for the cumulative amount diffused: hydrocortisone acetate greater than hydrocortisone acetate/polyvinylpyrrolidone greater than hydrocortisone acetate/hydroxypropyl beta-cyclodextrin greater than hydrocortisone acetate/beta-cyclodextrin. Such behaviour was analyzed in terms of the main physical chemical parameters of the systems examined.

Acrylic Resins↗

Availability of NSAIDH beta-cyclodextrin inclusion complexes.

The diffusion of a series of non steroidal antiinflammatory drugs through a silicone rubber membrane has been studied from suspensions both of the free and beta-cyclodextrin complexes forms at different pH values of the medium. Higher diffusion rates of the complexed forms as compared with the free ones and a rate-limiting effect of the apparent stability constant in the diffusion of the complexes were observed.

Administration, Topical↗

Diffusion of ketoprofen from coprecipitates through a non porous lipidic membrane.

The effect of inclusion with beta-cyclodextrin or hydroxypropyl beta-cyclodextrin on the diffusion kinetics of Ketoprofen through a non porous lipidic membrane was analyzed starting from different dermal bases: a Carbopol gel, o/w emulsion and a fatty ointment. A constant diffusive gradient was achieved with the included forms at each concentration of the active principle in the vehicle. This suggests that the complex controls the diffusable form, according to its stability constant. The following sequence was observed for the diffusion rate: Carbopol gel greater than o/w emulsion greater than fatty ointment appears to depend mainly on the membrane/vehicle partition coefficient.

Chemical Phenomena↗

Dissolution and partition thermodynamic functions of some nonsteroidal anti-inflammatory drugs.

Solubility values of a selected group of nonsteroidal anti-inflammatory drugs have been determined in water and 1-octanol as a function of temperature. Thermodynamic functions of dissolution and partition have been calculated and discussed with respect to various physical parameters of each solute and the two solvents. The calculated solubility values show good agreement with the experimental values. The analysis of the experimental solubility values of these compounds in terms of solid-state contribution and solute-solvent interaction suggests the different importance of these parameters in promoting solubility of solid nonelectrolytes.

Anti-Inflammatory Agents↗