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Restoration of cyclophosphamide-suppressed primary immune response in mice by Tołpa Peat Preparation (TPP)--comparison with calf thymus extract.

In order to induce pharmacological immunosuppression in Balb/c mice, the animals were given cyclophosphamide intraperitoneally, 200 mg/kg 144 hours or 24 hours prior to SRBC immunization. Tołpa Peat Preparation (TPP) was administered in doses of 10 and 50 mg/kg on the day of immunization and then every 24 hours for 3 consecutive days. It was given both to mice cyclophosphamide-treated and non-treated. Calf thymus extract (TFX) was administered (1 and 5 mg/kg) parallelly, for comparison with TPP. The following immunologic indices were determined: percent of splenocytes forming E- and EAC-rosettes, number of plaque-forming cells (PFC) and the levels of 19S+7S and 7S anti-SRBC haemagglutinins. The immunosuppressing action of a single cyclophosphamide dose decreased the percentage of EAC rosettes, number of PFC and serum anti-SRBC haemagglutinin titre. TPP is able to restore the percent of EAC rosettes, the number of PFC and anti-SRBC haemagglutinin titre, either partially or totally, after cyclophosphamide-induced immunosuppression. The effectiveness of TPP depends mainly on the dose and timing of cyclophosphamide administration prior to SRBC immunization. The most pronounced restoration of the cells in mice was observed with the TPP dose of 50 mg/kg after cyclophosphamide suppression 144 h before immunization. TFX (1 mg/kg) only partially restored the number of PFC and 7S anti-SRBC haemagglutinin titre, which had been depressed due to cyclophosphamide treatment 144 h prior to immunization. However, it did not change the depressing effect of cyclophosphamide on the percent of EAC rosette-forming splenocytes.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids↗

Differential activation of cyclophosphamide and ifosphamide by cytochromes P-450 2B and 3A in human liver microsomes.

The present study identifies the specific human cytochrome P-450 (CYP) enzymes involved in hydroxylation leading to activation of the anticancer drug cyclophosphamide and its isomeric analogue, ifosphamide. Substantial interindividual variation (4-9-fold) was observed in the hydroxylation of these oxazaphosphorines by a panel of 12 human liver microsomes, and a significant correlation was obtained between these 2 activities (r = 0.85, P < 0.001). Enzyme kinetic analyses revealed that human liver microsomal cyclophosphamide 4-hydroxylation and ifosphamide 4-hydroxylation are best described by a 2-component Michaelis-Menten model composed of both low Km and high Km P-450 4-hydroxylases. To ascertain whether one or more human P-450 enzymes are catalytically competent in activating these oxazaphosphorines, microsomal fractions prepared from a panel of human B-lymphoblastoid cell lines stably transformed with individual P-450 complementary DNAs were assayed in vitro for oxazaphosphorine activation. Expressed CYP2A6, -2B6, -2C8, -2C9, and -3A4 were catalytically competent in hydroxylating cyclophosphamide and ifosphamide. Whereas CYP2C8 and CYP2C9 have the characteristics of low Km oxazaphosphorine 4-hydroxylases, CYP2A6, -2B6, and -3A4 are high Km forms. In contrast, CYP1A1, -1A2, -2D6, and -2E1 did not produce detectable activities. Furthermore, growth of cultured CYP2A6- and CYP2B6-expressing B-lymphoblastoid cells, but not of CYP-negative control cells, was inhibited by cyclophosphamide and ifosphamide as a consequence of prodrug activation to cytotoxic metabolites. Experiments with P-450 form-selective chemical inhibitors and inhibitory anti-P-450 antibodies were then performed to determine the contributions of individual P-450s to the activation of these drugs in human liver microsomes. Orphenadrine (a CYP2B6 inhibitor) and anti-CYP2B IgG inhibited microsomal cyclophosphamide hydroxylation to a greater extent than ifosphamide hydroxylation, consistent with the 8-fold higher activity of complementary DNA-expressed CYP2B6 with cyclophosphamide. In contrast, troleandomycin, a selective inhibitor of CYP3A3 and -3A4, and anti-CYP3A IgG substantially inhibited microsomal ifosphamide hydroxylation but had little or no effect on microsomal cyclophosphamide hydroxylation. By contrast, the CYP2D6-selective inhibitor quinidine did not affect either microsomal activity, while anti-CYP2A antibodies had only a modest inhibitory effect. Overall, the present study establishes that liver microsomal CYP2B and CYP3A preferentially catalyze cyclophosphamide and ifosphamide 4-hydroxylation, respectively, suggesting that liver P-450-inducing agents targeted at these enzymes might be used in cancer patients to enhance drug activation and therapeutic efficacy.

Antibodies↗

Phase I trial with pharmacokinetic analyses of high-dose carboplatin, etoposide, and cyclophosphamide with autologous bone marrow transplantation in patients with refractory germ cell tumors.

Thirty patients with cisplatin-refractory germ cell tumor were treated with high-dose carboplatin, etoposide, and cyclophosphamide and autologous bone marrow transplantation. The total dose of carboplatin was 1500 mg/m2, etoposide 1200 mg/m2, and cyclophosphamide was increased by increments from 60 to 150 mg/kg. Twenty-five cycles of treatment, given to 17 patients, did not include granulocyte-colony stimulating factor (G-CSF). Nineteen cycles of high-dose chemotherapy, given to 13 patients at the 2 highest dose levels of cyclophosphamide, included G-CSF. The dose of cyclophosphamide was escalated to 150 mg/kg/cycle without prohibitive toxicity. The use of G-CSF resulted in a shorter duration of neutropenia (P = 0.07); the median number of days until the recovery of an absolute granulocyte count > 0.5 was 25 without G-CSF and 14 with G-CSF. The most frequent nonhematological toxicity was hepatic, and there were 2 (7%) treatment-related deaths. Thirteen (43%) patients achieved a complete response, and 8 are alive and free of disease (27%); 7 are in continuous complete response (23%), and 1 after resection of a solitary site of disease following a relapse after high-dose chemotherapy. Five patients had pharmacology studies performed to determine the area under the curve (AUC) of free and total platinum, carboplatin, etoposide, cyclophosphamide, and phosphoramide mustard. There was a decrease in the AUC of cyclophosphamide and an increase in the AUC of phosphoramide mustard, the "active" metabolite, with successive days of treatment. The interpatient variability of the AUC of cyclophosphamide/phosphoramide mustard that was demonstrated was most likely a result of each individual's metabolic capacity. The measured AUC of carboplatin and/or free platinum closely approximated the predicted AUC of carboplatin calculated by renal function in 3 of the 5 patients. In summary, cyclophosphamide administered at a dose of 50 mg/kg x 3 days was achieved with acceptable toxicity, and no further dose escalation is planned. High-dose carboplatin, etoposide, and cyclophosphamide achieved a 23% continuous complete response proportion (27% alive, free of disease) when used as third-line therapy in germ cell tumor patients refractory to cisplatin + ifosfamide-based chemotherapy. Ongoing studies are addressing the role of high-dose carboplatin-containing chemotherapy in previously untreated patients with poor prognostic features or as a part of first-line salvage.

Adolescent↗

Monthly intravenous pulse cyclophosphamide therapy in Wegener's granulomatosis.

OBJECTIVE: To study the long term effects of monthly intravenous cyclophosphamide therapy in Wegener's granulomatosis. METHODS: Fourteen consecutive patients with active Wegener's granulomatos treated with a first-line combination of high-dose prednisone and monthly intravenous pulse cyclophosphamide were retrospectively studied. RESULTS: One patient died from septicemia complicating severe leukopenia after the first pulse. At 8 months after instituting intravenous pulse cyclophosphamide therapy, failure was observed in 6 other patients. Between month 16 and 18, 2 other patients relapsed when the time between 2 pulses was lengthened. Five patients developed cyclophosphamide-related side-effects: infection (n = 2), amenorrhea (n = 1), alopecia (n = 2) and vomiting (n = 2). Except for one fatal infection, no major side-effect of intravenous cyclophosphamide therapy was observed. At the end of the study, all patients were off intravenous cyclophosphamide therapy with more than 6 months of followup. The 6 responders were in remission on low-dose prednisone or without treatment. CONCLUSION: A combination of high-dose prednisone and intravenous cyclophosphamide may achieve long-term remission in 42% of patients with Wegener's granulomatosis. Responders to intravenous cyclophosphamide therapy had less extensive disease than non-responders.

Adolescent↗

Cyclophosphamide in cardiac transplant recipients with frequent rejection: a six-year retrospective review.

Allograft rejection remains a major cause of morbidity and mortality. Cyclophosphamide, a nitrogen mustard, is a potent immunosuppressive agent with effects on both T- and B-lymphocytes, and thus may be effective in preventing further cellular and/or humoral rejection in cardiac transplant recipients with recurrent or recalcitrant rejection. We retrospectively reviewed the records of 320 surviving cardiac transplant recipients. Cyclophosphamide was substituted for azathioprine in 28 patients because of frequent allograft rejection. We then reviewed the rejection history of these 28 patients, specifically looking at rejection frequency, type (cellular, vascular or mixed), and treatment. Cyclophosphamide was substituted for azathioprine at an average of 8.4 +/- 2.8 months after transplantation. Despite a 56.0% reduction in prednisone dose (p < 0.001), at least a threefold reduction in rejection frequency (p < 0.001) was observed, while cyclosporine levels were unchanged. Twenty-eight percent of the patients did not experience even mild rejection after beginning therapy with cyclophosphamide, 55% had 1 or 2 subsequent mild or moderate rejection episodes, and only 17% had more than two subsequent episodes of mild or moderate rejection. Overall, the number of treated rejection episodes decreased from 0.37 episodes per patient month with azathioprine to 0.10 episodes per patient month on therapy with cyclophosphamide. Separating the patients into two groups based on the predominant rejection type (cellular vs. vascular) occurring at the time of cyclophosphamide substitution revealed a similar reduction in cellular and vascular rejection in each respective group. While white blood cell count decreased by 16%, cyclophosphamide was not discontinued in any patient due to leukopenia, and no change was noted in hematocrit. Cyclophosphamide appears to be safe and effective in maintenance immunosuppression and may reduce rejection frequency in some patients with frequently occurring allograft rejection without necessitating the augmentation of either corticosteroids or cyclosporine.

Azathioprine↗

The effect of trifluoperazine on the induction of sex-linked recessive lethals by cyclophosphamide in Drosophila melanogaster.

The effects of trifluoperazine on the mutagenicity of cyclophosphamide were examined in the progenies of Drosophila melanogaster males injected with 2 microliters of 5.0 mM cyclophosphamide and/or 0.1 mM trifluoperazine. The Muller-5 method was used to study the induction of sex-linked recessive lethals in five successive broods representing the different stages of spermatogenesis. Results should that both cyclophosphamide and trifluoperazine were proportionally toxic to the injected males. While cyclophosphamide was less toxic than trifluoperazine, it increased the frequencies of induced complete and mosaic lethals significantly (5% level) in all stages of spermatogenesis contrary to trifluoperazine which was non mutagenic and had only an additive effect over the toxicity of cyclophosphamide. The sizes of the mutated gonad tissue in the F1 mosaic female progenies of the males treated with cyclophosphamide alone ranged from 14% to 17% and of those treated with cyclophosphamide in association with trifluoperazine varied between 18% and 19%. Both complete and mosaic sex-linked lethals induced by cyclophosphamide treatments alone and in association with trifluoperazine were detected in singles and clusters.

Animals↗

Controlled pilot trial of monthly intravenous cyclophosphamide in multiple sclerosis.

Monthly intravenous cyclophosphamide treatment was compared with placebo treatment for one year in a controlled trial of 14 patients with relapsing/remitting multiple sclerosis. Eight patients received placebo and six patients received cyclophosphamide. The cyclophosphamide group showed a definite trend to have less frequent and less prolonged episodes than the placebo group. When each group served as their own controls, the cyclophosphamide group had a significant decrease in episodes while the placebo group did not. When the placebo group was then given cyclophosphamide, they also had a significant decrease in episodes. When all patients who were receiving cyclophosphamide were combined for analysis, the decrease in episodes was even more evident. Complications were minimal. These results suggest that monthly intravenous doses of cyclophosphamide may influence the frequency and duration of episodes of relapsing/remitting multiple sclerosis.

Adult↗

Treatment of patients with pineoblastoma with high dose cyclophosphamide.

The outcome for patients with pineoblastoma has historically been very poor, with most patients dying of disseminated disease despite irradiation. Furthermore, the low incidence of this tumor has hindered progress toward defining better treatment strategies. Here we report the activity and toxicity of cyclophosphamide administered as a single agent at a dose schedule of 2 g/m2/day for 2 successive days at monthly intervals for a maximum of four courses. Eight patients were evaluated, six newly diagnosed and two recurrent. Amongst the six newly diagnosed patients, there were three patients demonstrating partial responses, and three had stable disease throughout the cyclophosphamide treatment period. All six patients are alive and disease free after further therapy. One patient with recurrent disease demonstrated tumor progression on cyclophosphamide, and the other had stable disease throughout the cyclophosphamide treatment period. Both patients subsequently died of progressive disease. The major toxicity of high dose cyclophosphamide was hematopoietic, with one patient requiring a dose reduction after three courses due to prolonged thrombocytopenia. One patient was also withdrawn from treatment with cyclophosphamide due to impaired pulmonary function. This study demonstrates the activity of high dose cyclophosphamide in the treatment of pineoblastoma and may serve as basis for the design of future studies of this tumor.

Adolescent↗

Solid tumor models for the assessment of different treatment modalities. XXI. Comparison of different radiation dose schedules alone or in combination with cyclophosphamide.

Total radiation (4500 rad) and cyclophosphamide doses (450 mg/kg or 2.7 g/m2) were held constant over a 24-day period in rat hepatoma 3924A using radiation schedules in which 1500 rad were given over a 1- to 2-day period in 1-8 fractions, repeated at 11-day intervals, with or without cyclophosphamide. Reducing the rad per fraction resulted in a reduced incidence of complete tumor response and tumor cures, and a reduction in the magnitude of skin response. Cure rates were 40, 10, 0, and 0%, respectively, for the 1500, 750, 500, and 250 rad per fraction groups without cyclophosphamide. When the 1500, 750, 500, 375, 250, and 188 rad per fraction groups were given 150 mg/kg cyclophosphamide day 1 after radiation, major increases occurred in tumor cures, with the cure rates being 80, 80, 80, 70, 60, and 50%, respectively. The addition of cyclophosphamide did not significantly alter skin reaction to radiation. The higher rad per fraction schedules were more effective in controlling metastatic dissemination when radiation was used alone. The addition of cyclophosphamide markedly reduced metastatic dissemination in both high and low-dose per fraction schedules. Optimal treatment levels were estimated from analysis of fitted response surfaces, and the quantitative interrelationship between normal tissue reaction, probability of tumor cure, and associated relative hazard to the host estimated from the results of these analytical methods. Hyperfractionated radiation dose schedules with dose/fraction in the clinical range combined with cyclophosphamide can significantly increase the therapeutic ratio and prevent metastatic dissemination compared with radiation alone as a result of the increased effectiveness of combined modality therapy on the tumor, without a concomitant increase in normal tissue reaction.

Animals↗

High risk of infertility and long term gonadal damage in males treated with high dose cyclophosphamide for sarcoma during childhood.

BACKGROUND: Therapy with alkylating agents, such as cyclophosphamide, can be associated with irreversible gonadal toxicity in male survivors of adult cancer. To the authors's knowledge the effect of high dose therapy with cyclophosphamide during childhood on adult testicular reproductive and endocrine function has not been established. METHODS: Gonadal function was studied in 17 adult male survivors of childhood sarcomas treated with high dose pulse cyclophosphamide therapy as part of a VAC (vincristine, actinomycin, and cyclophosphamide) or Adria-VAC (doxorubicin, vincristine, actinomycin, and cyclophosphamide) chemotherapy regimen. Patients answered a questionnaire concerning sexual functioning and underwent a comprehensive physical examination, semen analysis, and hormonal evaluation. RESULTS: Of the 17 males who underwent semen analysis, 10 (58.8%) had azoospermia, 5 (29.4%) had oligospermia, and only 2 (11.8%) were found to have a normal sperm count. All patients treated prior to the onset of puberty had an abnormal semen analysis. The 2 patients with normal sperm counts received the lowest doses of cyclophosphamide (< 7.5 g/m(2)). The baseline follicle-stimulating hormone level was elevated in only 10 of 14 patients with abnormal sperm counts (71.4%). Testosterone levels were normal in 15 of 16 patients (93.8%); however, the baseline luteinizing hormone (LH) level was elevated in 6 of 15 patients with normal testosterone levels (40%). Gonadotropin-releasing hormone-stimulated LH levels were > 3 times that of baseline in 13 of /14 patients (92.9%), suggesting some degree of Leydig cell insufficiency. CONCLUSIONS: The results of the current study show a high risk of gonadal dysfunction in men exposed to cyclophosphamide during childhood as part of a VAC/Adria-VAC chemotherapy regimen. Exposure prior to puberty was not found to be protective, and the risk of infertility appeared to increase with higher doses of therapy. To the authors' knowledge the clinical significance of impaired Leydig cell function beginning at a young age is unknown and merits further study.

Adolescent↗

High-dose cyclophosphamide without stem cell transplantation in systemic lupus erythematosus.

OBJECTIVE: High-dose chemotherapy followed by hematopoietic stem cell transplantation is increasingly being studied as a treatment for severe autoimmune disorders, such as systemic lupus erythematosus (SLE). High-dose cyclophosphamide, the foundation of virtually all conditioning regimens for stem cell transplantation, is not myeloablative; therefore, when high-dose cyclophosphamide is used alone, autografting, with its potential for reinfusing autoreactive effector cells, is not required. We undertook this study to investigate the safety and efficacy of high-dose cyclophosphamide without stem cell transplantation in refractory SLE. METHODS: We treated 14 patients with moderate-to-severe SLE that had been refractory to corticosteroids and one or more additional immunosuppressive drugs. All patients received 50 mg/kg of cyclophosphamide for 4 consecutive days followed by 5 microg/kg granulocyte colony-stimulating factor until the neutrophil count was 1 x 10(9)/liter for 2 consecutive days. Patients were followed up monthly for disease activity using the physician's global assessment, SLE Disease Activity Index, and assessment of functioning of involved organs. The Responder Index for Lupus Erythematosus was used to define partial or complete response. RESULTS: The median time to achieve a neutrophil count of 0.5 x 10(9)/liter was 14 days (range 11-22 days) after the last dose of cyclophosphamide. Patients required a median of 2 units (range 2-5) of packed red blood cells, and a median of 16 days (range 0-23 days) elapsed from the last dose of cyclophosphamide to the last platelet transfusion. There were no deaths or fungal infections. Significant improvements in physician's global assessment (mean difference 1.4; P < 0.0001), SLE Disease Activity Index (mean difference 4.1; P = 0.0039), and prednisone dosage (mean difference 14.9 mg/day; P = 0.002) were observed. Responses, including 5 durable complete responses, were observed in all organ systems (renal, central nervous system, and skin) with involvement that had led to patient enrollment. CONCLUSION: High-dose cyclophosphamide without stem cell transplantation leads to rapid hematopoietic reconstitution and has significant clinical benefit in patients with refractory SLE. Therefore, this approach deserves further study.

Adult↗

Acute cyclophosphamide exposure has germ cell specific effects on the expression of stress response genes during rat spermatogenesis.

Exposure of male rats to cyclophosphamide, a commonly used anticancer and immunosuppressive drug, has been shown to alter fertility and progeny outcome in a male germ cell phase-specific manner. The effect of toxicant exposure on male germ cells depends in part on the stress response mechanisms present during the different stages of spermatogenesis. To assess how acute cyclophosphamide exposure affects the expression of stress response genes, we examined the expression of 216 genes, using gene expression arrays, in isolated rat spermatogenic cell types (pachytene spermatocytes, round spermatids, and elongating spermatids). Cyclophosphamide exposure affected gene expression in all cell types but most dramatically in round spermatids. Increased transcript levels were observed for 30 genes in round spermatids compared to seven genes in pachytene spermatocytes and two in elongating spermatids. The expression of genes involved in apoptosis, DNA-damage recognition and repair, transcriptional activation, and in the heat shock protein-chaperone response was most affected by cyclophosphamide in round spermatids. Our results demonstrate that cyclophosphamide alters the expression of stress response genes during spermatogenesis in a germ cell-specific manner. The greater response of round spermatids to cyclophosphamide suggests that this cell type may be more susceptible to the damaging effects induced by this drug, possibly due to the chromatin remodeling that is taking place at this stage of spermatogenesis. This observation is consistent with the reported higher level of abnormal progeny outcome seen when the germ cells were first exposed to cyclophosphamide as round spermatids.

Animals↗

Increased postimplantation loss and malformations among the F2 progeny of male rats chronically treated with cyclophosphamide.

Cyclophosphamide, administered to the male rat, produces increased pre- and postimplantation loss in the progeny as well as an increase in the numbers of malformed and growth retarded fetuses. The purpose of this study was to determine whether the adverse effects of chronic paternal cyclophosphamide exposure are transmissible to the next generation, the F2 progeny. Adult male rats were treated by gavage daily with saline or with cyclophosphamide (3.4 or 5.1 mg/kg) for 4 or 18 weeks and mated. The male and female offspring in each treatment group (F1 generation) were randomly mated. The resulting pregnant females were killed on day 20 of gestation to evaluate progeny outcome in the F2 generation. There was a significant increase in postimplantation loss among the offspring of the group whose fathers had been treated with cyclophosphamide at a dose of 5.1 mg/kg/day. Exposure to a dose of 5.1 mg/kg/day of cyclophosphamide also resulted in an F2 generation with a significantly decreased mean fetal weight per litter and a significant increase in the number of malformed fetuses. The malformations observed among the F2 progeny included open eyes, omphalocele, generalized edema, syndactyly, gigantism, and dwarfism. Thus, exposure of the father to cyclophosphamide does result in a specific and heritable alteration in the fertility of the surviving "apparently normal" F1 progeny. Interestingly, the adverse consequences of exposure of male rats to cyclophosphamide are similar in the F2 generation to those previously reported for the F1 progeny.

Animals↗

Seasonal dependency of the effects of rotational stress and cyclophosphamide in mice bearing lewis lung carcinoma.

The antitumor effects of cyclophosphamide were previously shown to be markedly reduced by the application of restraint stress in mice bearing Lewis lung carcinoma. The aim of this work was to determine the effects of rotational stress on the antitumor action of cyclophosphamide in the same animal-tumor system. Since the effects of rotational stress on metastasis were found to display a circannual rhythm, with a maximum in summer and a minimum in winter, the experiments were performed in June and February. Groups of 10 young female mice were kept under low stress housing conditions, with a 12-12 h light/dark cycle, starting 2 weeks before and during each experiment. Rotational stress caused an increase of metastasis volume to 361% of nonstressed controls in June and a decrease to 32.4% in February. In both seasons, the treatment with cyclophosphamide (240 mg/kg/day for 6 days) caused the absence of detectable metastasis at sacrifice in all mice; its combination with rotational stress caused the presence of metastases in similar proportions (6/10 and 10/10 for June vs February, respectively). The survival time of control mice was approximately twice as long in February as in June and was not appreciably modified by rotational stress; cyclophosphamide was similarly active in both seasons (4/10 and 6/10 long-term survivors for June vs February, respectively), and the number of long-term survivors was reduced to 0/10 in both seasons by rotational stress. The survival of the different experimental groups inversely correlated with the number of metastases as determined at sacrifice at the end of treatment and also with the number of CD3(+) and CD4(+) splenic T-lymphocyte subsets. These results do not appear to depend on the disruption of the circadian organization of the mice by rotational stress or by seasonal differences in cyclophosphamide activity. On the other hand, they can be interpreted assuming that cyclophosphamide reduces tumor metastasis and that T-lymphocyte-mediated immune responses of the host, amenable to modulation by stress and displaying seasonal differences uncoupled from circadian rhythms, further contribute to the tumor inhibitory effects of the drug. The observed differences in tumor metastasis caused by rotational stress and survival time in two different seasons, and the marked attenuation of cyclophosphamide antitumor action by rotational stress, appear of interest for their experimental and clinical implications.

Animals↗

Histological changes in spleen and lymph nodes of mice administered cyclophosphamide and levan.

Morphological changes in spleen and lymph nodes of C57B1 mice induced by the cytotoxic agent cyclophosphamide and the polysaccharide levan, separately and in combination were studied. In the spleen, an early decrease (phase 1) and a late increase (phase 2) in weight were found to result from all drug administrations. The hypocellularity of phase 1 was due to a depletion in the white pulp affecting mainly the B-region. Splenic weight decrease was parallel to B-cell depletion and most marked in animals exposed to cyclophosphamide with levan. The splenomegaly observed during phase 2 with all treatments was due to extramedullary hematopoiesis in the red pulp. In the lymph nodes, administration of cyclophosphamide and levan produced opposite effects on the B-cell region: cyclophosphamide eliminated the germinal centers for 8 days, but levan seemed to enhance B-cell activity. In animals given both cyclophosphamide and levan, inhibition of B-cell activity began earlier than with cyclophosphamide alone. Levan does not antagonize the suppressive effect of cyclophosphamide on the B-cell component at the early phase when the drugs are given together.

Animals↗

Effect of cyclophosphamide pretreatment on the short-term disposition and biliary excretion of adriamycin metabolites in rat.

The effect of pretreatment with cyclophosphamide 180 mg/kg upon the short-term disposition of adriamycin in anesthetized rat 4 days later was studied. There was a significant decrease in plasma adriamycin clearance, from 125 to 48 ml/min/kg, and a significant decrease in the apparent volume of the peripheral compartment of adriamycin distribution, from 51.7 to 25.6 l/kg, in cyclophosphamide-pretreated as against control rats. Biliary excretion of adriamycin over 2.5 h was increased significantly by 114% in cyclophosphamide-pretreated rats and there was a small but nonsignificant increase in biliary adriamycinol excretion and a decrease in excretion of adriamycin aglycones. Cyclophosphamide pretreatment was associated with an 83% increase in bile flow. Cyclophosphamide pretreatment had no significant effect upon the utilization of adriamycin or upon the formation of adriamycin metabolites by rat isolated hepatocytes. The results suggest that NADPH-cytochrome P-450 reductase, which is decreased 40% by cyclophosphamide pretreatment, is not rate-limiting in elimination of adriamycin. Biliary excretion of adriamycin is increased when plasma adriamycin clearance is decreased, suggesting that cyclophosphamide pretreatment affects a pathway besides biliary excretion that is responsible for the short-term removal of adriamycin from plasma.

Anesthesia↗

Biliary elimination of cyclophosphamide in man.

A 72-year-old male with a lymphoma and obstructive jaundice received 900 mg cyclophosphamide IV as a part of a chemotherapeutic regimen whilst external biliary drainage was in progress. Plasma, urinary, and biliary pharmacokinetics of cyclophosphamide and nitrobenzylpyridine (NBP)-alkylating metabolites were studied. In 32 h 891 ml bile was collected, and this contained unchanged cyclophosphamide and NBP-alkylating material. Despite fluctuations in biliary flow, estimates of the half-life of cyclophosphamide from plasma, urine, and bile were similar. Good correlation existed between plasma and biliary cyclophosphamide concentrations after the initial plasma had been completed. The ratio of bile to plasma concentrations was 0.7 and showed no time dependence, as evidenced by a lack of hysteresis in the correlation curve. Of the administered dose, 3.5% was excreted as unchanged cyclophosphamide in the bile over 32 h. NBP-alkylating activity was found in bile up to 25 h but not after this time, despite the presence of unchanged cyclophosphamide in plasma. NBP-alkylating material was not found in the bile when it could not be detected in plasma, and vice versa.

Aged↗

Comparative study on human pharmacokinetics of activated ifosfamide and cyclophosphamide by a modified fluorometric test.

The activated metabolites of ifosfamide and cyclophosphamide (4-hydroxy-ifosfamide and 4-hydroxy-cyclophosphamide) were analysed fluorometrically by condensation of liberated acrolein with m-aminophenol yielding 7-hydroxyguinoline. Interfering fluorescence of blood and urine was eliminated by extraction with dichlormethane and determination of blanks in which the liberated acrolein reacted with hydrazine to non-fluorescent pyrazoline. The modified test proved effective in identifying low levels of activated metabolites in man. After i.v. injection of 20 mg/kg cyclophosphamide or ifosfamide peak levels of activated cyclophosphamide (4.7 nmol/ml) and the area under the curve (c.t = 16.7 nmol.ml/h) showed mean values three times higher than those found for activated ifosfamide. One per cent of the applied dosis of cyclophosphamide vs. 0.3% of ifosfamide was excreted as activated metabolites. Due to the high stability of activated cyclophosphamide and ifosfamide in urine a low liberation rate of acrolein was found, the concentration of which in urine was below 0.5 nmol/ml. Acrolein, which was directly liberated from activated cyclophosphamide or ifosfamide, does not seem to play an important role in the urotoxicity of these cytostatics.

Acrolein↗