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Biomedical subjects

Y W Chien

Publications and source records attributed to Y W Chien.

At least 19 recordsLinked to original sources

In vitro and in vivo evaluations of biodegradable implants for hormone replacement therapy: effect of system design and PK-PD relationship.

This investigation evaluated the feasibility of using subdermally implantable devices fabricated by nonconventional 3-dimensional printing technology for controlled delivery of ethinyl estradiol (EE2). In vitro release kinetics of EE2 and in vivo pharmacokinetics/pharmacodynamics in ovariectomized New Zealand White rabbits were carried out to study 3 implant prototypes: implant I (single-channel EE2 distribution in polycaprolactone polymer core), implant II (homogeneous EE2 distribution in polycaprolactone polymer matrix), and implant III (concentration-gradient EE2 distribution in polycaprolactone and poly(dl-lactide-co-glycolide) (50:50 matrix). EE2 was found to be released from all the implants in a nonlinear pattern with an order of implant III > implant II > implant I. The noncompartmental pharmacokinetic analysis of plasma EE2 profiles in rabbits indicated a significant difference (p < .05) in Cmax, tmax, and mean residence time between implant I and implants II and III, but no difference in the area under the plasma concentration time curves calculated by trapezoidal rule (AUC) among the implants. For pharmacodynamic studies, endogenous follicle-stimulating hormone (FSH) and luteinizing hormone (LH) levels were observed to be suppressed following implantation of all implants, which demonstrated that a therapeutically effective dose of EE2 had been delivered. Furthermore, the noncompartmental analysis of plasma FSH and LH profiles in rabbits showed a significant difference (p < .05) in AUC and the mean residence time between implant III and implants I and II. A good in vivo/in vitro relationship was observed between daily amounts of EE2 released and plasma profiles of EE2 for all implants. This relationship suggests that plasma profiles of EE2 could be predicted from in vitro measurement of daily amount of EE2 released. Therefore, performing in vitro drug release studies may aid in the development of an EE2 implant with the desired in vivo release rate.

Absorbable Implants↗

Statistical optimization of gastric floating system for oral controlled delivery of calcium.

The development of an optimized gastric floating drug delivery system is described. Statistical experimental design and data analysis using response surface methodology is also illustrated. A central, composite Box-Wilson design for the controlled release of calcium was used with 3 formulation variables: X1 (hydroxypropyl methylcellulose [HPMC] loading), X2 (citric acid loading), and X3 (magnesium stearate loading). Twenty formulations were prepared, and dissolution studies and floating kinetics were performed on these formulations. The dissolution data obtained were then fitted to the Power Law, and floating profiles were analyzed. Diffusion exponents obtained by Power Law were used as targeted response variables, and the constraints were placed on other response variables. All 3 formulation variables were found to be significant for the release properties (P <.05), while only HPMC loading was found to be significant for floating properties. Optimization of the formulations was achieved by applying the constrained optimization. The optimized formulation delivered calcium at the release rate of 40 mg/hr, with predicted n and T50% values at 0.93 and 3.29 hours, respectively. Experimentally, calcium was observed to release from the optimized formulation with n and T50% values of 0.89 (+/- 0.10) and 3.20 (+/- 0.21) hours, which showed an excellent agreement. The quadratic mathematical model developed could be used to further predict formulations with desirable release and floating properties.

Administration, Oral↗

Characterization of captopril sublingual permeation: determination of preferred routes and mechanisms.

Although sublingual captopril has been used clinically to treat hypertensive emergencies, a mechanistic understanding of sublingual permeation will facilitate the optimization of drug delivery. A correlation of sublingual steady-state flux with donor captopril concentration in a porcine model showed the absence of saturability and suggested a passive diffusion permeation mechanism. A simultaneous evaluation of permeability and partition coefficient demonstrated that the paracellular route is the predominant pathway for sublingual permeation. The enhancement factors of specific ion permeabilities in the presence of tight junction perturbants indicated that although the paracellular pathway is preferred by the ionized species of captopril, the lipophilic transcellular pathway is preferred by the neutral, un-ionized species.

Animals↗

Computer-aided measurement and grading of cranial asymmetry in children with and without torticollis.

Our aim was to develop a simple, non-invasive method that could be used to objectively record cranial symmetry over time. We utilized this new method to investigate the relationship between torticollis and progressive plagiocephaly. From 1995 to 1999, the head shapes of 419 torticollis patients and 1 211 normal children were evaluated. We used Ezeform strip, a splint material, to make a permanent ring of the head circumference. Each head ring was recorded, scanned, and analyzed. An asymmetric index (AI) was designed. Double-blind comparisons of clinical assessment with AI values demonstrated a good agreement. Asymmetry of the cranium was found with similar frequency in torticollis and normal babies up to 12 months old. After 1 year of age, the deformity persists in patients with torticollis into their adolescence, while the normal group shows increased symmetry. This new recording system offers an objective and efficacious methods for following the natural history of cranial asymmetry.

Journal Article↗

An in vitro pulmonary permeation system with simulation of respiratory dynamics.

To study the effect of respiration on transpulmonary permeation kinetics of drugs, an in vitro pulmonary permeation system, which consists of a setup for the simulation of respiratory dynamics, was developed. The system is composed offour major components: a pair of horizontal-type half-cells, a model air-blood barrier, an instrument for the application and regulation of respiratory pressure, and a pressure monitoring system. Calibration studies were performed and results showed that the primary respiration parameters (the peak inspiration pressure, respiratory frequency, and the percent inspiration time) can be controlled at a reproducible manner. This system appears to simulate very well the respiratory dynamics observed normally under physiologic conditions. After calibration, the system was utilized to characterize and quantitate the effect of respiration on the transpulmonary permeation of drugs using progesterone as the model drug. The results showed that progesterone permeability is increased as much as 1.8-5.6 folds by application of a respiratory pressure, depending on the combination of respiration parameters. Further studies demonstrated that the enhancement in pulmonary permeation triggered by respiratory pressure is resulted from the stretching of the lung tissue, not by the pressure gradient itself. The observations lead to the conclusion that the system developed in this investigation is a useful in vitro tool for studying the kinetics of pulmonary drug permeation under a physiologically simulating respiratory dynamics. The studies have provided scientific evidence for demonstrating that respiration is an important factor in determining the kinetics of transpulmonary drug permeation through possible alteration in the properties of the air-blood barrier.

Animals↗

A mechanistic analysis to characterize oramucosal permeation properties.

The hypotheses of this study are that the permeation of ionizable molecules follows the pH-partition theory, that the preferred transport pathway for penetrants depends on their charge status and that transport resistance is related to the membrane-coating granules (MCG). Transcellular resistance is believed to be proportional to the volume of MCG in the intracellular space while paracellular resistance is believed to result from the extrusion of the lipid contents of the MCG into the intercellular space. Nicotine, an ionizable model compound with two pK(a) values (3.4 and 8.2), was chosen as a molecular probe to investigate the pH-partition theory on permeation through porcine oramucosae, to characterize the differences in permeability among various oramucosae, and to explore the preferred transport pathways of each nicotine species through oramucosae. The pH-partition theory was proved from the observations that permeability, partition coefficient and diffusivity of nicotine varied as a function of pH. The keratinized gingiva was found to have greater permeability than the non-keratinized buccal and sublingual mucosae. The neutral nicotine species had a higher permeability than the ionized species due to its higher partition coefficient and diffusivity. A mechanistic analysis (permeability ratio-pH profile) was conducted to determine the preferred transport pathway of each nicotine species. The permeability of neutral nicotine was found to be proportional to the occupied volume of MCG in the intracellular space. This indicates that the preferred transport pathway for neutral nicotine is transcellular. As the solution pH was decreased, and a greater fraction of nicotine became protonated, the transport of hydrophilic, charged nicotine species along the intercellular pathway was preferred.

Animals↗

Transdermal testosterone delivery: comparison between scrotal and nonscrotal delivery systems.

The purpose of this investigation was to study the bioequivalence of two testosterone transdermal delivery systems (T-TDSs). Testoderm, designed to deliver testosterone through scrotal skin, and Androderm, designed for nonscrotal permeation. In vitro permeation and release kinetics as well as in vivo pharmacokinetics in the castrated Yucatan miniature swine (minipigs) model of both T-TDSs were studied side by side under the same experimental conditions. In vitro skin permeation kinetics studies demonstrated that testosterone permeates through minipig dorsal skin at zero-order kinetics from both T-TDSs. The nonscrotal T-TDS, however, has a permeation rate which is approximately 13 times higher than that for the scrotal T-TDS. The release of testosterone from the nonscrotal T-TDS showed a biphasic release profile between cumulative amount released and time, whereas a monophasic release profile between cumulative amount released and square root of time was observed for the scrotal T-TDS. Pharmacokinetic analysis of plasma testosterone profiles in minipigs indicated a significant difference (p < 0.001) in daily dose of testosterone delivered (1.20 versus 4.83 mg/day), maximum concentration (Cmax) (54.2 versus 218.0 ng/dl), and area under concentration-time curve (AUC0-28)[665 versus 3208 (ng/dl) x hr] between these T-TDSs. However, there is no difference in time to reach Cmax mean residence time, and daily-delivered-dose-normalized Cmax and AUC0-28. The difference in pharmacokinetic profiles resulted from the difference in daily doses delivered, which could be attributed remarkably to the difference in permeation rate (approximately 13-fold) between the nonscrotal and scrotal T-TDSs.

Administration, Cutaneous↗

Insulin lispro: in-vivo potency determination by intravenous administration in conscious rabbits.

Insulin lispro is a monomeric analogue of human insulin, produced by genetic engineering, and has been reported to have a more rapid absorption following subcutaneous injection than insulin. Since it has been shown to have a similar hypoglycaemic action to insulin in clinical studies and comparable properties in radioimmunoassay, the feasibility of using a bioassay which was designed originally for insulin, to measure insulin lispro potency was evaluated in this investigation. A random-dose bioassay protocol, in which insulin lispro and two insulin standards were administered intravenously in a random sequence, was used and validated in nine conscious healthy rabbits. The decline in blood-glucose levels, following the intravenous injection of a dose of insulin or its lispro analogue, was monitored by a continuous glucose monitoring system. A glucose response curve was generated, from which various pharmacodynamic parameters were determined. Compared with the insulin standards, the potencies of insulin lispro determined from nadir, basal glucose normalized nadir, glycaemic reduction and ABGC (area of the blood-glucose response curve under baseline) were observed to have mean (95% confidence limits) values of 97.0 (69.5-124.6)%, 106.3 (72.4-140.2)%, 949 (51.8-138.0)% and 102.4 (76.3-128.5)%, respectively. In addition, the coefficients of variation for correspondent parameters were 36.9, 41.5, 59.1 and 33.2%, respectively. The results indicated that the hypoglycaemic potency calculated from the ABGC values was the most accurate (102.4%) with the least coefficient of variation (33.2%). In conclusion, the potency of insulin lispro can be determined accurately from the ABGC values measured by the random-dose bioassay used.

Animals↗

Transdermal testosterone delivery in castrated Yucatan minipigs: pharmacokinetics and metabolism.

The feasibility of using the castrated Yucatan minipig as a hypogonadal animal model to investigate the transdermal controlled systemic delivery of testosterone was studied. During a 24 h application of a testosterone transdermal delivery device (T-TDD), serial blood samples were withdrawn from the minipigs, without anesthesia, at predetermined time intervals and the plasma concentrations of testosterone as well as its major metabolites, dihydrotestosterone and estradiol, were assayed by radioimmunoassay. The compartmental pharmacokinetic modeling analysis of the plasma profiles of total testosterone indicated that as much as 92% of the total testosterone dose released from the T-TDD had been delivered transdermally into the systemic circulation during the initial rapid input period (the first 11 h of the application), while only 8% was delivered during the slow input period (up to 23h). Good correlation was observed between the in vivo input doses [1.9 (+/- 0.2), 4.8 (+/- 0.2) and 6.4 (+/- 0.5) mg/day], determined by the Wagner-Nelson equation, and the daily doses released [1.9 +/- (0.2), 4.7 (+/- 0.2) and 6.6 (+/- 0.5) mg/day, respectively, for 1, 2, and 3 units of T-TDD]. While the in vivo rate of input in the castrated minipigs was observed to be similar to that in hypogonadal men treated with the T-TDD during the first 8 h period, the input rate was found to be slower during the last 12 h. The agreement could suggest that the mechanism for the transdermal systemic delivery of testosterone in the castrated minipig could be similar to that in the hypogonadal men. However, the plasma testosterone profiles attained in the castrated minipigs were observed to be similar to, but slightly lower than that in the hypogonadal men reported in the literature. The delta Cmax (baseline normalized peak plasma concentration) and delta Cavg (baseline normalized average plasma concentration) data in the castrated minipigs were 40 and 44%, respectively, of that in hypogonadal men. The approximately 2.4 fold lower values in delta Cmax and delta Cavg data could result from the difference in the clearance rate of testosterone which approximately 2.8 fold higher in minipigs than in the human. Despite the difference in clearance rate, the castrated minipigs could be a suitable large animal model for studying the pharmacokinetics of testosterone delivered transdermally in human with hypogonadism.

Administration, Cutaneous↗

Comparative biomembrane permeation of tacrine using Yucatan minipigs and domestic pigs as the animal model.

Tacrine (THA), a centrally acting acetylcholine-esterase inhibitor, is presently administered perorally for the treatment of Alzheimer's disease (AD). However, its low bioavailablity (i.e., 17%) and short half-life (2-4 h) demand the search for alternative routes of administration. The primary objective of this study was to assess the potential of absorptive mucosae and skin as routes for improving the systemic delivery of THA. The Yucatan minipig, which has been used increasingly in biomedical research as a useful model for humans, and the domestic pig, which is available at low cost, were evaluated for their suitability as animal model. Permeation kinetics of THA across various absorptive mucosae (nasal, buccal, sublingual, and rectal) of both species of swine were studied in the hydrodynamically well-calibrated Valia-Chien permeation cells. For comparison, permeation through various intestinal segments (duodenum, jejunum, and ileum) was also measured. Results indicated that both species display similar permeation characteristics. However, the data obtained for the domestic pigs shows lower intra- and inter-animal variabilities than that of the Yucatan minipigs. The nasal mucosa was found to have the highest permeability, while the buccal mucosa had the lowest among the absorptive mucosae. The intrinsic permeabilities and diffusivity of THA across the four absorptive mucosae were not significantly different between species but lower than that for the intestinal segments for both species. Using dorsal skin as the model, the skin permeation of THA was also investigated and the results indicated that the domestic swine has a significantly higher skin permeability than the Yucatan minipig, with more than a 2-fold difference in intrinsic permeabilities. The intrinsic permeability, partition coefficient, and diffusivity for domestic pig skin are very similar to that for human cadaver skin. Considering the potential of bypassing the hepatic "first-pass" elimination, the absorptive mucosae may be useful routes for systemic delivery of THA to achieve improved bioavailability. With additional advantages of lower variability, ease of membrane excision, good accessibility, and lower cost, it is concluded that the domestic swine is a better animal model than the Yucatan minipig for preclinical studies on the systemic delivery of tacrine.

Animals↗

Comparative pharmacokinetic and pharmacodynamic studies of human insulin and analogues in chronic diabetic Yucatan minipigs.

Pharmacokinetics and pharmacodynamics of insulin analogues were compared with human insulin in streptozotocin-induced chronic diabetic Yucatan minipigs. After overnight fasting, insulin or one of the insulin analogues (0.6 nmol/kg) in acid solutions (pH approximately 3.0) was administered to the minipigs s.c. The plasma insulin concentrations were then measured by radioimmunoassay at predetermined time intervals although blood glucose levels were monitored continuously. The mean (+/-S.E.) values of DeltaCmax (difference between peak and basal plasma insulin levels) were 598 (+/-21), 528 (+/-44), 176 (+/-21), 325 (+/-60) and 228 (+/-33) pM, respectively, for analogue AspB9GluB27, AspB9, GluB27, AspB28 and insulin. The differences in DeltaCmax values were statistically significant between AspB9GluB27 and insulin (P < .02), and between AspB9 and insulin (P < .01), but not between GluB27 or AspB28 and insulin. Moreover, the mean (+/-S.E.) values of DeltaAUC0-->6 (integrated area between plasma insulin concentration curve and basal level) were 1877 (+/-169), 1897 (+/-70), 485 (+/-36), 500 (+/-32) and 677 (+/-105) pM x hr, respectively, for AspB9GluB27, AspB9, GluB27, AspB28 and insulin. The differences in DeltaAUC0-->6 values were statistically significant between AspB9GluB27 and insulin (P < .05) and between AspB9 and insulin (P < .02), but not between GluB27 or AspB28 and insulin. However, there was no significant difference in the values of Deltanadir (difference between nadir and basal levels) and ABGC0-->12 (integrated area between blood glucose response curve and basal level) between insulin and various analogues. In conclusion, although the insulin analogues are different from human insulin in pharmacokinetics, they exhibit similar biological activity to human insulin in the streptozotocin-induced chronic diabetic minipigs.

Animals↗

Novel methods of insulin delivery: an update.

Conventional insulin therapies involve multiple daily subcutaneous injections. However, the resultant disposition of insulin and blood glucose differs considerably from that following the physiological secretion of pancreatic insulin. A variety of alternative routes/methods have been investigated to improve systemic insulin delivery. Peroral and nasal insulin administration have demonstrated good potential for the treatment of diabetes. Facilitated transdermal delivery has also enjoyed success in promoting the systemic delivery of insulin. In addition, pulmonary, buccal, and ocular insulin administration have been shown to decrease serum glucose concentrations. Other methods that have been investigated for their potential in systemic insulin delivery include rectal, vaginal, and uterine routes.

Administration, Oral↗

Biomembrane permeation of nicotine: mechanistic studies with porcine mucosae and skin.

In the present study, the permeation and partitioning of nicotine as a function of pH was investigated with various regions of skin and absorptive mucosae that were freshly excised from domestic pigs. As an ionizable compound (pKa values of 3.04 and 7.84), nicotine in solutions of different pH values provides a model for determining the influence of the charge status of a molecule on permeation. The permeation of nicotine across porcine mucosae and skin followed zero-order kinetics. The rate of permeation was dependent on donor solution pH and increased exponentially as the pH increased. With an exception of the nasal mucosa, which showed similar permeabilities for all species of nicotine, the permeability of nicotine across various skin and mucosal specimens was significantly higher (p < 0.001) for the un-ionized species (NN) than for the ionized species (NNH+, NH+NH+). It was also seen that un-ionized nicotine molecules were more permeable through absorptive mucosae (nasal, buccal, sublingual, and gingival) than through skin (abdominal, dorsal, thigh, and ear pinna). Partition studies were performed and the results further confirmed that biomembrane permeation of nicotine follows the pH-partition theory.

Animals↗

Pulmonary drug delivery: physiologic and mechanistic aspects.

Peptide and protein drugs are being used increasingly in major research and development programs in the pharmaceutical industry and are also an important class of therapeutic agents due to advances in genetic engineering and biotechnology. Systemic delivery of these macromolecular drugs, however, has been limited to the parenteral route largely because of their extensive presystemic elimination when taken orally. Faced with this dilemma concerning the systemic delivery of these macromolecules with their unique conformational complexity for therapeutic activity, pharmaceutical scientists have evaluated the potential of various non-oral routes of administration as alternatives. Despite the tremendous efforts that have been devoted to this problem, only limited success has been achieved--mostly with small peptides. Growing attention has been given to the potential of a pulmonary route as an alternative non-invasive means for systemic delivery of peptide/protein-based therapeutic agents due to the fact that the lung provides a huge but extremely thin absorptive mucosal membrane. Although current studies show great promise, pulmonary delivery of therapeutic peptides and proteins is complicated by the complexity of the anatomic structure of the human respiratory system and the influence on drug deposition exerted by respiration. This review discusses the fundamental structure and physiology of the human respiratory system, current methodology used to study pulmonary drug absorption, approaches of drug delivery to the distal lung, and recent progress in pulmonary drug delivery by case studies. The mechanisms of pulmonary drug absorption are also discussed.

Absorption↗

Transdermal delivery of dideoxynucleoside-type anti-HIV drugs. 2. The effect of vehicle and enhancer on skin permeation.

The effects of vehicles and enhancers on the skin permeation of the dideoxynucleoside-type anti-HIV drugs Zalcitabine (DDC), Didanosine (DDI), and Zidovudine (AZT) were studied using hairless rat skin at 37 degrees C. After each drug was saturated in various volume fractions of ethanol (EtOH)/water or EtOH/tricaprylin (TCP) cosolvent system for 48 h at 37 degrees C, an in vitro skin permeation study was conducted using Valia-Chien permeation cells for 30 h. The skin permeation rates of DDC, DDI, and AZT from both EtOH/water and EtOH/TCP cosolvent systems increased as the volume fraction of ethanol was increased, reached maximum values at 50-60% (v/v) of ethanol, and then decreased with further increase of ethanol volume fraction. The EtOH/water cosolvent system seems to enhance the skin permeation of these drugs by increasing both the solubility of drug in the vehicles and partitioning of drug into the skin. The skin permeation enhancing effect of EtOH/TCP seems to be solely due to the increase in partitioning of drug into the skin. Addition of 1.0% (v/v) of permeation enhancers, such as oleic acid (OA) and N-methyl-2-pyrrolidone (NMP), in the EtOH/TCP (50:50) cosolvent system could not significantly increase the permeation rate of these drugs. Incorporation of viscous TCP into ethanol probably reduced the thermodynamic activity of enhancers to distribute from the vehicle to the skin. However, incorporation of 1.0% (v/v) of OA in the EtOH/water (60:40) cosolvent system dramatically enhanced the skin permeation of these drugs while reducing the lag time. The permeation rates of these drugs increased as OA concentration was increased up to 0.3% (v/v) in the EtOH/water (60:40) cosolvent system and reached a plateau with further addition of OA. Using a saturated solution in the EtOH/water (60:40) cosolvent system containing 1.0% (v/v) OA, DDC, and AZT reached the target permeation rate required to maintain a therapeutic system level across hairless rat skin. Although only DDC reached the target permeation rate across human cadaver skin, these results suggest that the mutual enhancement effect of ethanol and OA may make transdermal delivery of dideoxynucleoside-type anti-HIV drugs feasible.

Animals↗

Characterization of in-vitro spermicidal activity of chelating agent against human sperm.

The effect of ethylenediaminetetraacetic acid (EDTA), a cationic chelating agent, on sperm motility and sperm penetration through cervical mucus was evaluated. EDTA exerted a relatively mild dose-dependent effect on sperm motility. Total loss of sperm motility (EC100) was achieved at a concentration of about 5.0 mg/mL of EDTA, which is much greater than the 200 micrograms/mL concentration of Nonoxynol-9 (N-9). EDTA salts, such as EDTA-Na2 and EDTA-Na4, showed weak spermicidal activity, while EDTA-K2 and EDTA-Ca had no spermicidal activity at concentrations up to 5.0 mg/mL. EDTA appeared to decrease the in vitro percentage of motile sperm as a function of exposure time. EDTA completely impeded the penetration of sperm into cervical mucus at a concentration much lower than that for 100% inhibition of sperm motility in semen. In the presence of 500-3200 micrograms/mL extra calcium, the first-order rate constant for sperm immobilization, which was derived from the slopes of a relative sperm motility curve, was reduced by 38.9--55.6% of the control and was inversely proportional to calcium concentration. After exposure to EDTA, the calcium ion concentration in semen was reduced as a function of EDTA concentration, which yielded a linear reduction of sperm motility. A decrease of approximately 65% in calcium ion concentration in semen seemed to be the threshold at which total loss of sperm motility occurred. Calcium ion was shown to play an essential role in regulating sperm molitility in semen, and EDTA was demonstrated to exert spermicidal activity by modulating calcium ion concentration in semen.

Animals↗

Comparative in vitro spermicidal activity of chelating agents and synergistic effect with nonoxynol-9 on human sperm functionality.

Nonoxynol-9 (N-9), a nonionic surfactant, exerts both spermicidal and anti-viral activities and is the most widely used spermicide. Although N-9 has been regarded as an efficient spermicidal agent for barrier contraception, it has been reported to cause vaginal irritation and allergic vaginitis, and its spermicidal action in the vaginal mucus may be limited. To address these problems, the spermicidal activity of several chelating agents against human semen and their synergistic effect on the spermicidal activity of N-9 were evaluated using computer-assisted semen analysis and a cervical mucus penetration test. Carbopol 934P, chosen as a polymer base for dispersion of N-9 and chelating agent, was also evaluated for its potential spermicidal activity. Chelating agents, such as ethylenediaminetetraacetic acid (EDTA), ethylene bis(oxyethylenenitrilo)tetraacetic acid, and gramicidin, had spermicidal activity against human sperm at the tested concentration range and exerted spermicidal activity within mucus, impeding sperm penetration to the extended cervical space. A synergistic effect was shown between N-9 and EDTA on sperm motility. In dose-response curves, 0.1% EDTA significantly increased binding affinity constant and spermicidal potency of N-9 and reduced the concentration of N-9 at which 50% of the maximum response was observed from 144.5 to 66.4 (micrograms/mL). A synergistic effect was also shown between EDTA and carbopol 934P polymer on inhibition of sperm penetration through the cervical mucus. Therefore, EDTA can be used as a supplementary agent and potentiator for N-9. Development of a carbopol 934P-based drug delivery system for dual controlled release of N-9 in combination with chelating agents seems to be a promising approach for increasing the efficacy of fertility control.

Animals↗