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Chemosensitization in vitro: potentiation of melphalan toxicity by misonidazole, metronidazole and nitrofurazone.

Misonidazole, metronidazole and nitrofurazone can enhance the cytotoxicity of melphalan in vitro if the cells are subjected to a hypoxic pretreatment with the drug prior to exposure of melphalan in air. Potentiation of melphalan is dependent upon the concentrations of the nitro compound and the duration of the hypoxic pretreatment. On a concentration basis, nitrofurazone was most effective at enhancing melphalan toxicity and metronidazole was the least effective. This potentiating activity correlates with the electron affinity of each drug.

Animals↗

Synthesis and in vitro evaluation of potential antichagasic hydroxymethylnitrofurazone (NFOH-121): a new nitrofurazone prodrug.

The synthesis of mutual prodrugs of nitrofurazone with primaquine, using specific and nonspecific spacer groups, has been previously attempted seeking selective antichagasic agents. The intermediate reaction product, hydroxymethylnitrofurazone (NFOH-121), was isolated and tested in LLC-MK(2) culture cells infected with trypomastigotes forms of Trypanosoma cruzi showing higher trypanocidal activity than nitrofurazone and benznidazol in all stages. The mutagenicity tests showed that the prodrug was less toxic than the parent drug. Degradation assays were carried out in pH 1.2 and 7.4.

Animals↗

CoMFA-SIMCA model for antichagasic nitrofurazone derivatives.

The physico-chemical properties of some 5-nitro-2-furaldehyde semicarbazones (nitrofurazones) and thiophene analogues were compared with their in vitro and in vivo trypanocidal activity against Trypanosoma cruzi (Tulahuen strain). 3D-QSAR models were obtained by applying the SIMCA methodology to the electrostatic and steric fields (CoMFA fields) of the molecules. Nitrofurazones bearing N4 substituents. which cover a range of 14-17 A from the nitro group with a thickness of about 6 A when considering the extended conformer. produced complete survival in infected mice. The in vitro model allows larger N4 substituents than the SURVival model, but they must not bear positive centres in the region 15-16 A from the nitro group. Moreover, the in vitro model is in agreement with the active site of trypanothione reductase (TR). Both models can be of use in the design of novel drugs bearing an amide-like group at a distance of 7-9 A from an easily reducible group.

Animals↗

Evidence for the involvement of a nitrenium ion in the covalent binding of nitrofurazone to DNA.

We have shown that the xanthine oxidase-catalyzed anaerobic reduction of nitrofurazone in the presence of added DNA leads to the formation of covalently bound adducts. Further, by systematically decreasing the pH of the reaction mixture, we have demonstrated that generation of the reactive species is facilitated under mildly acidic conditions. From these observations, we conclude that it is the nitrenium ion formed from nitrofurazone which binds to DNA.

Animals↗

Some pharmacokinetic data about furaltadone and nitrofurazone administered orally to preruminant calves.

A single oral dosage of furaltadone and nitrofurazone (14.0 mg/kg) to 5 preruminant calves (in a cross-over trial) revealed mean maximum plasma concentration of 2.5 and 3.5 microgram/ml, respectively, at approximately 3 h after administration. The final elimination half-lives of furaltadone and nitrofurazone were 2.5 and 5 h, respectively. Urinary recovery of these two nitrofurans in 3 calves revealed approximately 2% of the orally administered dose. The renal clearance of the unbound drugs did not differ (for both drugs approximately 0.42 ml/min/kg); furaltadone clearance was strongly related to urine flow.

Administration, Oral↗

Effects of nitrofurazone on spermatogenesis and reproductive toxicity in male rats--part of a collaborative work to determine optimal administration period and endpoints.

To determine an appropriate administration period and sensitive end-points for the evaluation of effects on male fertility, male Sprague-Dawley rats were orally given nitrofurazone, a model compound, at doses of 12.5, 25, or 50 mg/kg/day for 4 weeks, or at doses of 12.5 or 25 mg/kg/day for 9 weeks before mating with untreated females. Copulation and fertility indices were decreased, and pregnancy did not result at doses of 25 mg/kg/day and over with both dosing periods. An increase in preimplantation loss, and decreases in implants and live fetuses were observed with 12.5 mg/kg/day after 9-weeks dosing. However, no reproductive endpoints were affected by the same dose level for 4-weeks. Sperm head count was reduced at doses of 25 mg/kg/day and over with both dosing periods. Histopathology revealed tubular degeneration and interstitial cell hyperplasia at doses of 25 mg/kg/day and over after both periods of dosing. Moreover, failure of spermiation in tubular epithelia was also detected in the 12.5 mg/kg groups. These results suggest that 4-weeks premating exposure is sufficient for evaluation of the effects of nitrofurazone on mate fertility, and the most sensitive endpoint in this 4-week premating-dose study is a histopathological change.

Animals↗

Topical nitrofurazone, a potent sensitizer of the skin and mucosae.

Although freely available, topical nitrofurazone (Furacin) frequently causes severe contact dermatitis, necessitating hospitalization. Six patients with sensitivity reactions to topical nitrofurazone are described. Our experience suggests that the free availability of this drug may increase the incidence of reactions due to its use, and should be condemned.

Adult↗

Effect of blood and serum on in vitro antibacterial activity of nitrofurazone.

The effect of various volumes of blood and serum on the in vitro antibacterial activity of 0.2% nitrofurazone soluble dressing (NSD) was studied. The antibacterial activity of NSD was tested with an agar well diffusion technique. Zones of inhibition against susceptible strains of Escherichia coli and coagulase-positive Staphylococcus aureus were measured with a micrometer. Bacterial concentrations of 10(5) and 10(8) colony-forming units per milliliter were tested to evaluate a possible effect of inoculum size. Wells contained full-strength (undiluted) NSD or 75%, 50%, or 25% NSD dilutions (w/w) in blood, serum, or 0.9% sodium chloride injection. The mean decrease in inhibition zone size produced by blood and serum was only 7.2%. The diminution of activity, albeit small, was statistically significant. The zones produced were still much larger than those associated with clinical cure. Therefore, the impact of blood and serum on nitrofurazone's in vitro antibacterial activity can best be described as a slight reduction in rather than an elimination of effectiveness. This small reduction in activity is unlikely to be clinically important in patients with burns or other surface wounds that contain blood or serum. An effect of inoculum size was demonstrated for both organisms. Blood and serum produced a small but significant reduction in NSD's antibacterial activity in vitro. Controlled clinical studies are needed to ascertain the clinical importance of these findings.

Blood↗

Occupational allergic contact dermatitis to airborne nitrofurazone.

Allergic contact dermatitis to nitrofurazone has been reported from Europe and elsewhere from the use of eyedrops and topical ointments, and the drug in some livestock feeds and veterinary medications has caused a few cases of allergic contact dermatitis in humans. The authors report what appears to be the first case of contact dermatitis from airborne nitrofurazone secondary to a powdered aquarium water additive.

Air Pollutants, Occupational↗

Liquid chromatographic determination of carbadox, desoxycarbadox, and nitrofurazones in pork tissues.

A liquid chromatographic (LC) method has been developed for the determination of carbadox, desoxycarbadox, and nitrofurazones in the 10-40 ppb range in pork muscle, liver, and kidney tissues. Tissues were homogenized in absolute ethanol, and the homogenates were treated with metaphosphoric acid and reduced in volume by rotovaporization. Hexane was added to the concentrates, which were then centrifuged to remove fat. After addition of KH2PO4 to the aqueous phase and extraction with ethyl acetate, the extracts were passed through alumina columns before analysis by reverse phase LC. Overall average recoveries (10-40 ppb range) for carbadox and desoxycarbadox from spiked tissues were 53% +/- 13.6 and 61% +/- 7.2, respectively; overall average recoveries for nitrofurazone and furazolidone were 43% +/- 7.3 and 77% +/- 10.9, respectively. Before these optimum determinations, degradation by even minimal incandescent light was found to reduce recovery especially of desoxycarbadox. The results of this photochemical degradation are reported and briefly discussed.

Animals↗

Nitrofurazone: reproductive assessment by continuous breeding in Swiss mice.

Nitrofurazone (NTFZ), a nitrofuran antibiotic, was evaluated for reproductive toxicity in Swiss CD-1 mice using the Reproductive Assessment by Continuous Breeding protocol. Male and female mice were cohabited for 15 weeks and exposed to NTFZ in feed at concentrations of 0, 100, 375, and 750 ppm (14-102 mg/kg/day). Fzero 750-ppm breeding pairs had significantly reduced fertility after 7 days of exposure to NTFZ (17% fertile compared to 98% for control pairs) and were infertile after the second litter. Fzero mid-dose pairs had progressively decreasing fertility (47% by the fifth litter), reduced litter size, and reduced proportion of pups born alive. Crossover breeding of control and high-dose Fzero animals confirmed infertility in high-dose males and reduced litter size and pup weight in high-dose females when compared to the control x control group. At necropsy, there were no effects on body weight, but Fzero males had reduced testis weight at the high dose and reduced epididymal sperm concentration and abnormal sperm morphology at all doses of NTFZ. Increased liver as well as kidney and adrenal weights (combined) were observed at 375 and 750 ppm; hepatic hypertrophy was noted microscopically at 750 ppm. Fzero females had reduced body weight, hepatic hypertrophy, and altered estrous cycles at 750 ppm and reduced ovarian weight at all doses. In the second generation, F1 mice at 375 ppm had reduced postnatal survival and body weight and produced smaller F2 litters compared to control mice. At necropsy, F1 males had reduced testes weight and epididymal sperm concentration, abnormal sperm morphology, hepatic hypertrophy at 375 ppm, and borderline nephropathy at 100 and 375 ppm. F1 females had decreased body, liver, and ovarian weight at 375 ppm and altered estrous cycles at 100 and 375 ppm. Thus, NTFZ at > or = 100 ppm (> or = 14 mg/kg/day) caused adverse reproductive effects in Fzero male and female and F1 female mice in the presence of relatively mild systemic toxicity.

Animals↗

Testicular toxicity of nitrofurazone causing germ cell apoptosis in rats.

In order to clarify the mechanism underlying testicular toxicity of nitrofurazone (NF), two experiments were performed. In experiment 1, sequential histopathological examination of testes after a single oral administration of 100 or 300 mg/kg NF to male rats demonstrated that degeneration of pachytene spermatocytes with an eosinophilic, shrunken appearance in stages VII-VIII and vacuolation of Sertoli cells were first observed 12 h after treatment. By 24 h, degeneration of pachytene spermatocytes in stages VII-XII and diplotene spermatocytes were observed. On post-treatment day 4, neither spermatocytes nor spermatids located inside the pachytene spermatocytes in stage VII were seen anywhere. Generation of seminiferous epithelium progressed with recovery to almost normal morphology after 12 weeks, although some morphological changes were still present. No lesions were apparent in spermatogonia, preleptotene spermatocytes, leptotene spermatocytes, zygotene spermatocytes or Leydig cells. Degenerate pachytene spermatocytes and some round spermatids seen after 24 h showed positive TdT-mediated dUTP-biotin nick end labeling (TUNEL). In addition, DNA laddering patterns were detected with agarose gel electrophoresis, and increased electron density of nuclei and cytoplasm of degenerating spermatocytes with nuclear chromatin focal aggregations were observed by electron microscopy, indicating that cell death was attributable to apoptosis. In experiment 2, sequential serum sex-related hormone levels were assayed after a single oral administration of 300 mg/kg NF to male rats and revealed a significant increase of testosterone and a decrease of progesterone at 6 h, and decreases of luteinizing hormone at 12 h and testosterone at 24 h. Prolactin tended to decrease from 12 h after treatment and the decrease was significant at 48 h. No significant changes were observed in levels of follicle-stimulating hormone or estradiol. The probability that NF damages germ cells by causing a hormonal imbalance is extremely low, since no pattern of hormonal imbalance that could be regarded as the cause of the testicular degeneration was observed until 12 h after NF treatment when pachytene spermatocytes began to degenerate. The present experiments suggest that NF damages Sertoli cells and pachytene spermatocytes in stages VII-XII directly.

Administration, Oral↗

A coumarin derivative covalently immobilized on sensing membrane as a fluorescent carrier for nitrofurazone.

A coumarin derivative 4-methyl-8-methylacrylamide-2H, 5H-pyrano [3, 2-C] benzpyran 2, 5-dione (MMPBD) has been synthesized as a fluorescent carrier for preparing an optical chemical sensor. The carrier is immobilized on a quartz glass plate surface treated with a silanizing agent to prevent the leakage of the dye. This MMPBD sensor can be utilized for a nitrofurazone (NF) assay based on fluorescence quenching. The sensor shows good repeatability, a long lifetime and a fast response of less then 50 s. NF can be determined in the range between 1.0x10(-6)-1.0x10(-3 )mol L(-1) with a detection limit of 8.0x10(-7) mol L(-1 )at pH 7.0.

Coumarins↗

Studies on the effect of ascorbic acid and selenium on the genotoxicity of nitrofurans: nitrofurazone and furazolidone.

The genotoxic properties of nitrofurazone and furazolidone were studied using the Ames test and SOS-chromotest. Both compounds were found to act as strong mutagens on the TA97 and TA102 strains of S. typhimurium and to induce the SOS-repair system in the PQ37 strain of E. coli. A good concordance was found between the mutagenic activity and the ability to induce the SOS system. Ascorbic acid and sodium selenite only very slightly lowered the genotoxic effect of the 2 nitrofurans studied both in the Ames test and in the SOS-chromotest.

Antioxidants↗

Nitrofurazone-induced gene expressions in rat hepatocytes and their modification by N-acetylcysteine.

The antibiotic nitrofurazone (NF) at a subtoxic dose has been shown to increase hepatocyte DNA synthesis with no preceding cell damage or necrosis. This was suppressed by concomitant administration of the antioxidant N-acetylcysteine (NAC), which suggests that free radical production is involved in the process. In this study, male F344 rats were given a single oral subtoxic dose of NF to investigate the changes in genes implicated in hepatocyte proliferation between 1 and 20h postdose by real-time PCR. Some rats were also given NAC to examine the involvement of free radicals. There were transient and sequential increases in mRNA levels of c-myc and c-jun shortly after the administration, followed by tumor necrosis factor-alpha (TNF-alpha), transforming growth factor-alpha (TGF-alpha), c-Ha-ras, and cyclin E. The increases were blocked by concomitant administration of NAC. In contrast, there were no NF-specific increases in c-fos, hepatocyte growth factor, epidermal growth factor or cyclin D1 mRNAs. These results indicate that the induction of hepatocyte proliferation by NF is triggered by free radicals, with a pathway involving increases in c-jun, c-myc, TNF-alpha, TGF-alpha, c-Ha-ras, and cyclin E. The results also indicate that NF-induced proliferation resembles that of other mitogens.

Acetylcysteine↗

Possible mechanisms underlying mammary carcinogenesis in female Wistar rats by nitrofurazone.

Mechanisms underlying mammary carcinogenesis in female rat given nitrofurazone (NF) were examined. Experiment I: female Wistar rats were divided into three groups, and given diets containing 0, 500 or 1000 ppm NF for 5 weeks. At terminal sacrifice, body and uterus weights were the same in all groups, although ovary weights in NF-treated animals were significantly higher than in control animals, the increase being dose-dependent. Serum prolactin (PRL) concentrations in NF-treated groups at 17:00 h on the day of proestrus were also dose-dependently higher than that in control group. Experiment II: a two-stage rat mammary carcinogenesis protocol was performed. Rats were divided into four groups, Groups 2 and 4 being treated by 9,10-dimethyl-1,2-benzanthracene (DMBA) at 7-weeks-old. Groups 3 and 4 were given diets containing 1000 ppm of NF between 8 and 27 weeks of age, when all surviving rats were autopsied. DMBA-treated animals demonstrated mammary tumors at high incidences, 91.1 and 90.5%, respectively, in Groups 2 and 4, no tumor development being observed without the initial carcinogen exposure (Groups 1 and 3). The mean tumor weights and the mean numbers of tumors per tumor-bearing rats in Group 4 were increased as compared with Group 2, albeit not significantly. Serum PRL (proestrus day at 17:00 h) and progesterone (PG) (diestrus day at 10:00 h) concentrations in NF-treated animals (Groups 3 and 4) were significantly higher than those in untreated rats (Groups 1 and 2). These results suggest that increases of serum PRL and PG concentrations by NF may be the most important factors regarding its promotion of mammary tumor growth and/or enhancement of mammary carcinogenesis in female rats.

9,10-Dimethyl-1,2-benzanthracene↗

Treatment of second degree burns: nitrofurazone, povidone-iodine, and silver sulfadiazine.

Nitrofurazone (N), povidone-iodine (P), and silver sulfadiazine (S) were compared in the emergency department outpatient treatment of 84 patients suffering second degree burns over less than 15% (adults) or 5% (children) of their total body surface area. Indices of healing were percent of healing, degree of dryness, crust separation, eschar separation, tissue granulation, and wound pain. Statistical analysis indicates that healing in N-treated patients was superior to that in S-treated patients: tissue granulation began sooner, crusts separated more rapidly, wounds were dryer, and the amount of healing at two weeks was greater. Results in P-treated patients were equivalent to those in N-treated when cases with complications were excluded from analysis. Among patients with less serious burns, N-treated patients suffered less pain than S-treated, but there was no significant difference in pain between N and P or between P and S. In patients with more serious second-degree burns there was more pain with P than with N, but neither P nor N differed significantly from S in this regard.

Burns↗