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Effect of a novel adenosine deaminase inhibitor (co-vidarabine, co-V) upon the antiviral activity in vitro and in vivo of vidarabine (Vira-Atm) for DNA virus replication.

A new potent inhibitor of adenosine deaminase (co-vidarabine) was used in combination studies with adenine arabinoside (vidarabine, Vira-ATM) to protect this purine nucleoside from enzymatic deamination to the more weakly active metabolite, hypoxanthine arabinoside. Comparing the combination to vidarabine alone, a significant increase (10-fold) of the antiviral activity of the combined drugs was observed against herpes and vaccinia viruses in tissue culture and subcutaneously, against cranial herpesvirus infections in mice. Several other investigators have also recently reported several-fold enhancement of vidarabine activity by newly described deaminase inhibitors. They observed that plaque formation by several large DNA-containing viruses (herpes, vaccinia, varicella zoster) and an RNA-containing oncogenic virus was markedly prevented by the combination compared to vidarabine alone. In animals, enhanced protection (increased survivors) and/or highly significant increase in the life span of dying mice treated with the 2-drug combination, was also observed compared to vidarabine administered singly. These observations in animals clearly indicate that combination studies with vidarabine (Vira-ATM) and co-vidarabine (deaminase inhibitor) deserve serious consideration as future therapy for systemic virus infections in man including herpesvirus encephalitis.

Adenosine Deaminase Inhibitors↗

Physical model evaluation of topical prodrug delivery--simultaneous transport and bioconversion of vidarabine-5'-valerate III: Permeability differences of vidarabine and n-pentanol in components of hairless mouse skin.

The permeation behavior of 3H-vidarabine (3H-9-beta-D-ara-binofuranosyladenine) and 14C-n-pentanol through different strata of hairless mouse skin was studied using a diffusion cell at 37 degrees under steady-state conditions. Partition coefficients for the skin components verus 0.9% aqueous NaCl solution also were obtained. Various skin preparations including full-thickness skin, cellophane-stripped skin, and dermis membranes of different thicknesses were employed. The dermis membranes were considered to be diffusionally homogenous, and the product of the permeability coefficient and the thickness was taken as the apparent diffusivity. The apparent diffusivities for both compounds investigated were independent of thickness. Therefore, it was concluded that the molecular diffusivity is constant throughout the dermis. Comparisons of permeability coefficients in various strata of the skin revealed that, while the stratum corneum is the major diffusional barrier, the epidermis appears to be significantly less permeable than the dermis.

Administration, Topical↗

A controlled trial comparing vidarabine with acyclovir in neonatal herpes simplex virus infection. Infectious Diseases Collaborative Antiviral Study Group.

BACKGROUND: Despite the use of vidarabine, herpes simplex virus (HSV) infection in neonates continues to be a disease of high morbidity and mortality. We undertook a controlled trial comparing vidarabine with acyclovir for the treatment of neonatal HSV infection. METHODS: Babies less than one month of age with virologically confirmed HSV infection were randomly and blindly assigned to receive either intravenous vidarabine (30 mg per kilogram of body weight per day; n = 95) or acyclovir (30 mg per kilogram per day; n = 107) for 10 days. Actuarial rates of mortality and morbidity among the survivors after one year were compared overall and according to the extent of the disease at entry into the study (infection confined to the skin, eyes, or mouth; encephalitis; or disseminated disease). RESULTS: After adjustment for differences between groups in the extent of disease, there was no difference between vidarabine and acyclovir in either morbidity (P = 0.83) or mortality (P = 0.27). None of the 85 babies with disease confined to the skin, eyes, or mouth died. Of the 31 babies in this group who were treated with vidarabine and followed for a year, 88 percent (22 of 25) were judged to be developing normally after one year, as compared with 98 percent (45 of 46) of the 54 treated with acyclovir (95 percent confidence interval for the difference, -4 to 24). For the 71 babies with encephalitis, mortality was 14 percent with vidarabine (5 of 36) and with acyclovir (5 of 35); of the survivors, 43 percent (13 of 30) and 29 percent (8 of 28), respectively, were developing normally after one year (95 percent confidence interval for the difference, -11 to 39). For the 46 babies with disseminated disease, mortality was 50 percent (14 of 28) with vidarabine and 61 percent (11 of 18) with acyclovir (95 percent confidence interval for the difference, -20 to 40); of the survivors, 58 percent (7 of 12) and 60 percent (3 of 5), respectively, were judged to be developing normally after one year (95 percent confidence interval for the difference, -40 to 50). Both medications were without serious toxic effects. CONCLUSIONS: In this multicenter, randomized, blinded study there were no differences in outcome between vidarabine and acyclovir in the treatment of neonatal HSV infection. The study lacked statistical power to determine whether there were sizable differences within the subgroups of those with localized HSV, encephalitis, or disseminated disease.

Acyclovir↗

Pharmacology, tolerance, and antiviral activity of vidarabine monophosphate in humans.

Vidarabine (adenine arabinoside) is a purine nucleoside useful in humans for therapy of herpes simplex virus encephalitis and herpes zoster virus infections in immunocompromised patients. However, the potential usefulness of vidaribine is limited by its poor solubility, which requires continuous infusion in relatively large volumes of intravenous fluid. Vidarabine 5'-monophosphate is highly soluble and has the advantage that it can be administered intermittently intramuscularly or intravenously. In a clinical, pharmacokinetic study, plasma levels and urinary excretion of vidarabine 5'-monophosphate were determined after intravenous and intramuscular administration in 29 immunosuppressed patients with herpes simplex or zoster virus infections at dosages of 15 to 30 mg/kg per day administered for 5 days. As determined by high-pressure liquid chromatography, vidarabine 5'-monophosphate was metabolized in a fashion comparable to the metabolism of vidarabine and its major metabolite in plasma was arabinosyl hypoxanthine. After administration, 40 to 50% of the vidarabine 5'-monophosphate was recovered from the urine as arabinosyl hypoxanthine, and 3 to 4% was recovered as vidarabine. Determinations of areas under the curve for arabinosyl hypoxanthine were not statistically different by dosage for intramuscular or intravenous routes of administration. At all dosages studied, viral clearance appeared to occur with therapy. The advantage of increased solubility will lead to controlled clinical investigations in which vidarabine 5'-monophosphate is administered by intramuscular or intravenous routes against targeted human herpesvirus infections.

Antiviral Agents↗

Therapeutic basis of vidarabine on adenovirus-induced haemorrhagic cystitis.

When adenovirus causes haemorrhagic cystitis in immunocompromised patients, vidarabine is used for its treatment because therapeutic choice is limited. Although vidarabine has been reported to be effective for these patients, its therapeutic basis has not yet been established. Vidarabine dose-dependently inhibited viral replication as assessed by a yield reduction assay. Viral protein synthesis was dose-dependently inhibited by vidarabine but not at all by acyclovir, and the degree of inhibition by vidarabine was different for each of the viral proteins, ranging from 0-40% of the untreated control. These results indicated the specificity and mechanism of action of vidarabine against adenovirus. The concentration of vidarabine and its metabolite in the bladder is suggested to exhibit effective anti-adenoviral activity in suppressing the replication of adenovirus. Thus, our results support vidarabine therapy as a possible candidate for adenovirus-induced haemorrhagic cystitis in immunocompromised patients.

Acyclovir↗

Iontophoresis of vidarabine monophosphate into rabbit eyes.

In order to investigate the efficacy of iontophoresis for increasing the penetration of vidarabine monophosphate into the eye, tritium-labeled vidarabine monophosphate was applied to rabbit eyes by topical and iontophoretic application, and the penetration of the compound into the eye, and its subsequent metabolism, were studied. At 20 min after treatment, the ratios of radioactivity for cathodal iontophoresis compared to topical application alone were cornea 8.6, aqueous humor 4.8, and iris 2.4; for 60 min the ratios were cornea 12.2 aqueous humor 17.5 and iris 2.5. In addition, the acid-soluble components were extracted from the cornea and aqueous humor. Vidarabine monophosphate, vidarabine, hypoxanthine arabinoside, adenosine, hypoxanthine, and adenine from the acid-soluble fraction were separated by thin-layer chromatography. The amount of vidarabine monophosphate and vidarabine in the cornea and aqueous humor from the iontophoretically treated group was six to 15 times higher than from the group that received topical application of the drug. It was concluded that cathodal iontophoresis resulted in significantly increased penetration of the antiviral drug vidarabine monophosphate into the anterior chamber of the eye. The effects of iontophoresis of vidarabine monophosphate on corneal epithelium, as observed by scanning electron micrographs, were equal to or less than those seen with the topical application of widely used preservatives in ophthalmic preparations.

Adenine↗

Comparative trial of acyclovir and vidarabine in disseminated varicella-zoster virus infections in immunocompromised patients.

A comparative assessment of vidarabine and acyclovir in the treatment of varicella and disseminated zoster in immunosuppressed patients was undertaken. Thirty-eight immunosuppressed patients with varicella (N = 18) or disseminated zoster (N = 20) were treated intravenously with 10 mg/kg/day of vidarabine or 30 mg/kg/day of acyclovir for 5 days according to a preestablished code within each diagnosis group--varicella and disseminated zoster. Two deaths, although not directly related to VZV infection, were observed in the vidarabine-treated varicella group. The times to cessation of formation of new lesions and to the disappearance of fever were similar for vidarabine and acyclovir in each group. In the varicella group, VZV was isolated on day 5 in four out of five vidarabine patients versus one out of five acyclovir patients. No severe adverse effects were observed with either drug. Neutropenia present in patients of both drug groups was transitory and most often related to previous cytolytic chemotherapy. These data suggest that either vidarabine or acyclovir could be used in the treatment of severe VZV infections in immunosuppressed patients, although a larger number of patients would be required for definitive conclusion. Because of the large amount of solute required for vidarabine administration, acyclovir may be preferred when the risk of cardiorespiratory failure is high.

Acyclovir↗

Synergistic antiviral activity of acyclovir and vidarabine against herpes simplex virus types 1 and 2 and varicella-zoster virus.

Acyclovir and vidarabine both exhibit anti-herpetic activity. Because different mechanisms of action of vidarabine and acyclovir have been reported, we analyzed their combined anti-herpetic activity on plaque formation of herpes simplex virus (HSV)-1, HSV-2, and varicella-zoster virus (VZV) by isobolograms. The results indicate that acyclovir and vidarabine have a synergistic effect on wild type HSV-1, HSV-2, and VZV. The susceptibility of thymidine kinase-deficient HSV-1 to vidarabine was not affected by the presence of acyclovir, suggesting that phosphorylation of acyclovir is essential for synergism. The combined anti-HSV activity of acyclovir and vidarabine against phosphonoacetic acid-resistant HSV-1 with DNA polymerase mutation did not show synergism in contrast to that against wild-type herpesviruses. Alteration of the substrate specificity of viral DNA polymerase to acyclovir and vidarabine annihilated the synergism. Thus, the nature of their binding sites on DNA polymerase is important to the synergistic anti-herpesvirus activity of acyclovir and vidarabine.

Acyclovir↗

A controlled trial comparing foscarnet with vidarabine for acyclovir-resistant mucocutaneous herpes simplex in the acquired immunodeficiency syndrome. The AIDS Clinical Trials Group.

BACKGROUND AND METHODS: Most strains of herpes simplex virus that are resistant to acyclovir are susceptible in vitro to both foscarnet and vidarabine. We conducted a randomized trial to compare foscarnet with vidarabine in 14 patients with the acquired immunodeficiency syndrome (AIDS) and mucocutaneous herpetic lesions that had been unresponsive to intravenous therapy with acyclovir for a minimum of 10 days. The patients were randomly assigned to receive either foscarnet (40 mg per kilogram of body weight intravenously every 8 hours) or vidarabine (15 mg per kilogram per day intravenously) for 10 to 42 days. In the isolates of herpes simplex virus we documented in vitro resistance to acyclovir and susceptibility to foscarnet and vidarabine. RESULTS: The lesions in all eight patients assigned to foscarnet healed completely after 10 to 24 days of therapy. In contrast, vidarabine was discontinued because of failure in all six patients assigned to receive it. The time to complete healing (P = 0.01), time to 50 percent reductions in the size of the lesions (P = 0.01) and the pain score (P = 0.004), and time to the end of viral shedding (P = 0.006) were all significantly shorter in the patients assigned to foscarnet. Three patients had new neurologic abnormalities while receiving vidarabine. No patient discontinued foscarnet because of toxicity. Although initial recurrences of herpes simplex infection after the index lesion had healed tended to be susceptible to acyclovir, acyclovir-resistant infection eventually recurred in every healed patient, a median of 42.5 days (range, 14 to 191) after foscarnet was discontinued. CONCLUSIONS: For the treatment of acyclovir-resistant herpes simplex infection in patients with AIDS, foscarnet has superior efficacy and less frequent serious toxicity than vidarabine. Once the treatment is stopped, however; there is a high frequency of relapse.

Acquired Immunodeficiency Syndrome↗

Pharmacokinetics of paracetamol, diclofenac and vidarabine during plasma exchange.

In order to establish guidelines for prescribing drugs in patients treated with plasma exchange (PE), we studied the pharmacokinetics of paracetamol (5 patients), diclofenac (4 patients) and vidarabine (3 patients) during one or several PE. Results were compared with those obtained without PE. Diclofenac and paracetamol were chosen because they presented different volume distribution and protein binding characteristics. Vidarabine was studied because we use it for the treatment of patients with polyarteritis nodosa related to hepatitis B virus. Diclofenac (100 mg) and paracetamol (1000 mg) were given 1 hour before PE. Samples were obtained 60 and 30 min before PE, every 15 min during PE and hourly for 2 hours after the end of PE. Vidarabine was given in continuous infusion, 15 mg/kg/d during the first week of treatment and 7.5 mg/kg/d during subsequent weeks. Samples were obtained before PE, 3 times during PE and every 30 min for 4 hours after the end of PE. Paracetamol, diclofenac, vidarabine and hypoxanthine arabinoside were assayed by high performance liquid chromatography. During each PE 60 ml/kg were removed and replaced by albumin. We found that 17% of diclofenac, 4.3% of paracetamol and 4.9% of vidarabine were removed during each session. Plasmapheresis clearance was 51% of plasma clearance for diclofenac, 15% for paracetamol and 10% for vidarabine. Drugs which are mainly removed during PE are those which are bound to proteins with a small distribution volume. Those drugs, such as diclofenac, must be administered after the end of each PE session. Drugs which present a large distribution volume and low protein binding can be given before the session. Vidarabine can be administered during PE without loss of effectiveness due to drug removal.

Acetaminophen↗

A trial of vidarabine for cytomegalovirus infection in renal transplant patients.

Vidarabine was evaluated in renal transplant patients as a potential therapeutic agent in cytomegalovirus (CMV) infection. Four patients received vidarabine on an open protocol, then ten additional patients were enrolled in a double-blind protocol. Among the nine patients who received vidarabine, no notable clinical improvement occurred in either the vidarabine- or placebo-treated groups. Thus, vidarabine showed no therapeutic effect in the treatment of CMV infections at the dosages used. Four patients showed dramatic CNS deterioration within several days of the onset of vidarabine therapy. Tremors and myoclonus were common, and one patient had unusual brain pathologic changes with widespread neuronal chromatolysis. The pathologic findings in the brain in the other three patients were complex and included intracerebral hemorrhage, Fabry's disease, coccidioidomycosis meningitis, and cerebral vascular occlusion. Thus, there was no conclusive proof that vidarabine contributed to the sudden neurologic deterioration of these patients.

Adult↗

Topical vaginal drug delivery I: effect of the estrous cycle on vaginal membrane permeability and diffusivity of vidarabine in mice.

Preliminary studies showed that the vaginal membrane permeability coefficients for vidarabine (9-beta-D-arabinofuranosyladenine) varied widely within a group of mice of the same species and age. This finding prompted an investigation of the influence of the female mouse sexual cycle on the vidarabine permeability. By means of a vaginal smear technique, the sexual cycle, which was approximately 5 days in duration, was divided into five phases. The vaginal membrane permeability of vidarabine was determined during each phase. The results revealed that the permeability coefficients for vidarabine during the diestrus phase (3 X 10(-6)-4 X 10(-5) cm/sec) were 10-100 times higher than those obtained at the early estrus or estrus phases (1-3 X 10(-7) cm/sec). Further permeation studies on membranes at early estrus and estrus were performed by separating the cornified layer from the noncornified portion of the membrane. The low permeability coefficient of vidarabine across the cornified layer (4 X 10(-7) cm/sec) suggests that this layer may be the major diffusion barrier for vidarabine when the drug is topically applied. Collectively, the data also suggest that during estrus a three-layer diffusion model is appropriate, that during early diestrus a single-layer diffusion model may apply, and that during proestrus and postestrus the situations are intermediate and more complicated.

Animals↗

Comparative efficacy of acyclovir and vidarabine on the replication of varicella-zoster virus.

Acyclovir and less frequently, vidarabine are (or have been) used in the treatment of varicella-zoster virus (VZV) infection and are administered either intravenously (vidarabine) or orally (acyclovir, up to five times per day). The pharmacological bases of the administration interval were modeled in vitro in this study. Incubation of VZV-infected cultures with acyclovir or vidarabine for 24, 48, 72 and 96h showed similar duration-dependent anti-viral activities as assessed by a plaque-reduction assay. Treatment with vidarabine for only 8h/day for 4 days (intermittent treatment) showed anti-VZV activity equivalent to that of continuous treatment for 4 days in terms of the inhibitory dose that reduced plaque formation by 50% (IC(50)). In contrast, intermittent treatment with acyclovir exhibited a 7.9 times higher IC(50) value than that of continuous treatment. The mode of inhibition of expression of most of viral protein was similar in both drugs, but the degree of inhibition was different for each protein. Thus, vidarabine with a limited period of treatment showed anti-VZV activity comparable to continuous treatment with acyclovir, indicating the longer duration of anti-viral activity of vidarabine.

Acyclovir↗

Vidarabine versus acyclovir therapy in herpes simplex encephalitis.

We randomly assigned 208 patients who underwent brain biopsy for presumptive herpes simplex encephalitis to receive either vidarabine (15 mg per kilogram of body weight per day) or acyclovir (30 mg per kilogram per day) for 10 days. Sixty-nine patients (33 percent) had biopsy-proved disease; 37 received vidarabine, and 32 acyclovir. The mortality in the vidarabine recipients was 54 percent, as compared with 28 percent in the acyclovir recipients (P = 0.008). Six-month mortality varied according to the Glasgow coma score at the onset of therapy. For scores of greater than 10, 7 to 10, and less than or equal to 6, mortality was 42, 46, and 67 percent in the patients treated with vidarabine, as compared with 0, 25, and 25 percent in those treated with acyclovir. A six-month morbidity assessment using an adapted scoring system revealed that 5 of 37 patients receiving vidarabine (14 percent) as compared with 12 of 32 receiving acyclovir (38 percent) were functioning normally (P = 0.021). Eight vidarabine-treated patients (22 percent) and three acyclovir-treated patients (9 percent) had moderate debility. Patients under 30 years of age and with a Glasgow coma score above 10 had the best outcome with acyclovir treatment. We conclude that acyclovir is currently the treatment of choice for biopsy-proved herpes simplex encephalitis.

Acyclovir↗

Pharmacokinetics of vidarabine in the treatment of polyarteritis nodosa.

The pharmacokinetics of vidarabine were studied in 8 patients with polyarteritis nodosa related to hepatitis B virus infection. The drug was administered by continuous infusion for three weeks at doses of 15 (1 week) and 7.5 (2 weeks) mg/kg per day, during which time 15 plasma exchanges were performed. Plasma was assayed for vidarabine and its principal metabolite, hypoxanthine arabinoside by high pressure liquid chromatography. Vidarabine was not detected in the plasma of any patients. Hypoxanthine arabinoside levels were used to evaluate vidarabine kinetics. The serum levels of hypoxanthine arabinoside ranged from 3.6 to 21.5 mg/l. The mean elimination half-life (+/- SD) was 3.0 +/- 1.7 h. The plasma clearance (mean +/- SD) was 195 +/- 270 ml/min when the dose was 7.5 mg/kg per day and 66.3 +/- 47 ml/min for a 15 mg/kg per day/dose (NS). Except for the elimination half-life, these results were not fully consistent with those observed in other studies. The influence of multiple plasma exchanges on vidarabine kinetics is limited and dosage adjustment is not required based on the continuous infusion of vidarabine.

Humans↗

Comparison of the efficacy of vidarabine, its carbocyclic analog (cyclaradine), and cyclaradine-5'-methoxyacetate in the treatment of herpes simplex virus type 1 encephalitis in mice.

The relative therapeutic effects of vidarabine (9-beta-D-arabinofuranosyladenine), cyclaradine (the adenosine deaminase-resistant carbocyclic analog of vidarabine), and cyclaradine-5'-methoxyacetate in the parenteral treatment of systemic herpes simplex virus type 1 infections in Swiss mice were determined. Among control mice inoculated intraperitoneally with virus, a mortality rate of 95% was observed. The intraperitoneal administration of nontoxic doses of vidarabine (125 to 250 mg/kg per day) or cyclaradine (113 to 450 mg/kg per day), by daily injections for 7 days beginning 4 h after virus inoculation, reduced mortality to 0 to 10%. Among control animals inoculated intracerebrally with 32 50% lethal doses of virus, 100% mortality was observed, with a mean survival time of 4.6 days. Treatment with either drug at equimolar dose levels ranging from ca. 32 to 750 mg/kg per day produced significant (P less than 0.0005), dose-dependent increases in the mean survival time of animals dying of herpesvirus encephalitis. Mice inoculated intracerebrally with 10 50% lethal doses of virus exhibited 97% mortality and a mean survival time of 5.5 to 6.4 days. Treatment with vidarabine, cyclaradine, or cyclaradine-5'-methoxyacetate significantly increased the mean survival time of dying animals and, at doses ranging from 250 to 750 mg/kg per day, produced significant increases in survival. The three drugs displayed equivalent antiviral efficacy in vivo. Drug toxicity (measured by weight loss) was not detected in mice treated with cyclaradine or cyclaradine-5'-methoxyacetate at 750 mg/kg per day, whereas severe toxicity (weight loss of greater than or equal to 3 g) was observed in mice treated with vidarabine at an equivalent dose level. Thus, cyclaradine or its 5'-methoxyacetic acid ester may possess some advantage over vidarabine in the treatment of severe herpesvirus infections and should therefore be considered for clinical trials in humans.

Animals↗

Current therapy of varicella zoster virus infection in immunocompromised patients. A comparison of acyclovir and vidarabine.

Both acyclovir and vidarabine are effective treatment for varicella zoster virus (VZV) infection in immunosuppressed patients. To determine which is preferable, therapy with these two agents was compared in a prospective, randomized trial. A total of 22 immunocompromised patients undergoing treatment for hematologic malignancies and presenting with VZV infection within 72 hours of the onset of rash were randomly assigned to receive intravenous acyclovir or vidarabine; 11 patients were randomly assigned to each treatment group. Acyclovir was significantly more effective than vidarabine in preventing complications of VZV infection, and treatment failures requiring a change to the alternate therapy occurred only among those treated with vidarabine. As compared with vidarabine, acyclovir shortened the median period during which results of viral culture specimens were positive and new lesions formed. Acyclovir also shortened the median interval until the first decrease in pain, the crusting of all lesions, and the complete healing of lesions. Acyclovir is more effective than vidarabine in the treatment of VZV infection in severely immunocompromised patients and should be considered the treatment of choice in such cases.

Acyclovir↗