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Intrarenal distribution of trimethoprim and sulfamethoxazole.

In the present study, rats were given trimethoprim (TMP, 10 mg/kg), sulfamethoxazole (SMZ, 50 mg/kg), or a combination of the respective doses of TMP and SMZ. Thirty-six rats received each of the drugs studied. Six recipients of a compound (or mixture) were evaluated hourly, from 1 to 6 h after intraperitoneal injection of the agent. At each timed interval, serum, urine, cortex, medulla, and papilla were analyzed for drug content. Peak serum values of 1.1 microgram of TMP and 131.1 microgram of active SMZ (nonacetylated sulfonamide) per ml were observed after injection of the combination TMP-SMZ. Although the cortical, medullary, and papillary TMP concentrations were severalfold higher than the respective serum values (P < 0.01), microbiologically active SMZ did not concentrate in the renal parenchyma and was found in lower concentration there than in the serum (P < 0.01). The levels of SMZ in all parts of the kidney of animals which received the mixture SMZ-TMP were lower than those detected in the animals which were given SMZ alone. The average ratio of active SMZ to TMP within the medulla and the papilla was less than 20 to 1 in the first 2 h. The intrarenal distribution of these drugs may have therapeutic implications.

Animals↗

Comparison of dosages, intervals, and drugs in the prevention of Pneumocystis carinii pneumonia.

The efficacies of trimethoprim (TMP)-sulfamethoxazole (SMZ), TMP-dapsone, dapsone, and pentamidine were compared for the prevention of Pneumocystis carinii pneumonia in the corticosteroid-treated-rat model. While 11 (73%) of 15 untreated control animals had P. carinii pneumonia after 10 weeks of immunosuppression, none of the animals given 125 mg of dapsone per kg daily, weekly, biweekly, or monthly had evidence of infection. Of the 10 rats given a single dose of dapsone 23 and 50 days after immunosuppression was started, 5 (50%) had P. carinii pneumonia. When three drugs were given separately to groups of 10 rats in single doses biweekly, P. carinii pneumonia occurred in 40% of those treated with TMP-SMZ and in none of those treated with TMP-dapsone; although only 2 of those treated with pentamidine survived for evaluation, both had P. carinii pneumonia. The experiments showed that dapsone is highly effective in chemoprophylaxis for P. carinii pneumonia when given at monthly intervals or more frequently and that dapsone and TMP-dapsone are more effective than is TMP-SMZ when given at biweekly intervals. It seems reasonable to expect that biweekly doses of dapsone or TMP-dapsone would provide an effective and reasonably safe chemoprophylaxis regimen for patients at high risk for P. carinii pneumonia, and studies to test such a scheme are justifiable. Biweekly doses are preferred over monthly doses to allow for occasional inadvertent omission of doses expected from patients.

Amidines↗

Comparison of single-dose treatment with norfloxacin and standard 5-day treatment with trimethoprim-sulfamethoxazole for acute shigellosis in adults.

Shigellae have been shown to be highly susceptible to new quinolone agents, with average MICs for 90% of isolates of less than 0.1 microgram/ml. Because these agents also reach high concentrations in the stool after a single dose, the effectiveness of a single 800-mg dose of norfloxacin and of 5-day treatment with trimethoprim-sulfamethoxazole (TMP-SMX) were compared in a randomized trial. Patients with clinical dysentery received one of these treatment regimens, and clinical data and follow-up culture results were analyzed for patients whose stool culture on presentation grew shigellae. When 55 patients with shigellosis (26 treated with TMP-SMX, 29 treated with norfloxacin) whose bacterial isolates were susceptible to the antibiotic given were compared by treatment group, no significant differences were seen in days of illness (mean, 2.5 +/- 0.65 days with TMP-SMX and 2.0 +/- 0.47 days with norfloxacin; P = 0.200) or number of unformed stools after starting treatment (mean, 9.7 +/- 2.37 stools with TMP-SMX and 7.6 +/- 3.19 stools with norfloxacin; P = 0.312). Resistance in vitro to TMP-SMX was seen in 15% of Shigella isolates, whereas none was resistant to norfloxacin. Bacteriologic failure was found in 1 patient among 24 receiving TMP-SMX and in none of 25 patients receiving norfloxacin. One single dose of norfloxacin was as effective as 5 days of treatment with TMP-SMX in these adults with shigellosis.

Adult↗

Combined activity of sulfamethoxazole, trimethoprim, and polymyxin B against gram-negative bacilli.

The activity of the three two-drug combinations of sulfamethoxazole (SMX), trimethoprim (TMP), and polymyxin B (PB) against 52 clinical isolates of gram-negative bacilli was studied by a "checkerboard" agar dilution method. The organisms studied included strains of Enterobacter spp., Klebsiella pneumoniae, Serratia marcescens, Providence, Proteus, and Pseudomonas aeruginosa. The majority of these isolates were resistant to at least two of the three agents used in the combined studies and to the most commonly used antimicrobials. The TMP-PB combination demonstrated enhanced activity more frequently than the other two-drug combinations, showing synergism or addition in 85% of the combined studies; indifference or antagonism was also observed least frequently with TMP-PB. The great majority (83%) of Enterobacter-Klebsiella-Serratia isolates were susceptible to enhanced activity of all combinations. Proteus-Providence isolates were frequently susceptible (63%), but combined activity was indifferent or antagonistic against 60% of P. aeruginosa. Twelve isolates were selected for "killing-curve" assays in which an inoculum was incubated with SMX, TMP, and PB individually and in various two- and three-drug combinations. Surviving bacteria were counted at timed intervals over 24 h of incubation. The triple combination (SMX-TMP-PB) was synergistic against 9 of 12 isolates, whereas TMP-PB and SMX-PB showed synergism against 5 and 3 isolates, respectively. These data suggest that, although TMP-PB will often show enhanced activity against the gram-negative bacilli studied here, optimal antibacterial activity will be demonstrated when the three-drug combination is used.

Drug Synergism↗

Lack of activity of sulfamethoxazole and trimethoprim against anaerobic bacteria.

The activity of sulfamethoxazole (SMX), trimethoprim (TMP), and the combination of the two was determined against a variety of anaerobic bacteria. Brucella agar was somewhat inhibitory for SMX and TMP but activity was good and equivalent in Diagnostic Sensitivity Test Agar (Oxoid) and Mueller-Hinton agar and the latter was selected for use in these studies. Agar dilution susceptibility tests showed that 95 of 98 anaerobic isolates were resistant to >/=100 mug of SMX per ml and 85 were resistant to >/=6.25 mug of TMP per ml. "Checkerboard" agar dilution studies of combined activity showed that 66 of 72 isolates were resistant to >/= (100 mug of SMX per ml + 6.25 mug of TMP per ml) and only six isolates were susceptible to the synergistic activity of the combination. The majority of 32 isolates tested by the disk diffusion method were also resistant to SMX and TMP individually and to the combination 25-mug disk. Correlation between agar dilution minimal inhibitory concentration and disk zone size results was in general good for individual agents. Four Bacteroides fragilis isolates were inhibited by the combination 25-mug disk but were resistant to SMX + TMP by agar dilution "checkerboard." This discrepancy may have been due to different incubation periods since disk results also showed resistance when read after 48 h (as is done with agar dilution) rather than the standard 24 h for disk tests. These studies suggest that SMX and TMP, either individually or in combination, are not active against the great majority of anaerobic bacteria.

Bacteria, Anaerobic↗

Trimethoprim activity in media selective for Campylobacter jejuni.

The activity of trimethoprim (TMP) in two selective media used for isolation of Campylobacter jejuni was evaluated. The two selective media, Campy-BAP and Skirrow medium, contain TMP in addition to other antimicrobial agents. The minimal inhibitory concentrations of TMP in blood agar base (basal agar for Skirrow medium) or brucella agar (basal agar for Campy-BAP) for three sensitive control organisms were compared with those in Mueller-Hinton agar, which contains low levels of thymidine. TMP was inactive in both blood agar base and brucella agar, even when lysed horse blood or thymidine phosphorylase was added. TMP had activity when used in combination with the other antimicrobial agents normally included in Skirrow medium and Campy-BAP, probably indicating synergism between TMP and one or more of the other antimicrobial agents. Sheep blood could be substituted for lysed horse blood in Skirrow medium without compromising the activity of TMP.

Campylobacter↗

Kinetics and mechanisms of action of 'folate synthesis inhibitors', alone or in combination, on Escherichia coli. III. Pyrimethamine, trimethoprim and sulfamethoxazole.

The inhibitory activity of pyrimethamine (PMA) is 1/290 of the activity of trimethoprim (TMP) against E. coli as evaluated from a plot of C.ko/ko-kapp VS. C. Even at high concentrations the effect of PMA in contrast to TMP seems to be cateriostatic. Combinations of TMP and PMA reveal an additive effect. In PMA-treated cultures, the slope of the logarithmic growth curve decreases after an initial inhibited growth, and a second steady state is established. This second steady state has a different reason than the one observed in TMP-treated cultures; whereas the second phase in TMP-inhibited cultures depends on the number of germs, in the case of PMA it depends on the number of generations. Using prewashed cell cultures, it was shown that there is no influence on the two steady states in PMA-inhibited cultures; for TMP, however, it was shown that the presence of the first phase is due to an antagonist excreted into the culture medium. These observations hint at differences in the mode of action of TMP and PMA in addition to differences in the affinity to the target enzyme dihydrofolate reductase. Combination of PMA with sulfamethoxazole (SMZ) at concentrations where both drugs are acting only bacteriostatically leads to effects considerably greater than would be expected from simple additivity. The kill rate observed is the same as observed for TMP/SMZ combinations despite of the considerable lower activity of PMA and SMZ. The results support the assumption that it might be possible to select drug combinations considering the best pharmacokinetical fit and not necessarily the most effective drugs in the series studied.

Cell Count↗

In vitro additive effect of nitrofurantoin combined with trimethoprim-sulfamethoxazole against Serratia marcescens.

The combination of nitrofurantoin (NF) plus trimethoprim-sulfamethoxazole (TMP-SMZ) was found to be additively effective against all of 12 clinical isolates of Serratia marcescens that represented 7 nosocomially significant strains, some of which were mulitple-drug-resistant. All isolates were resistant against NF; minimal inhibitory concentrations (MICs) ranged from 320 to 1,280 microgram NF/ml. The isolates were inhibited by TMP-SMZ concentrations ranging from 0.03 microgram TMP + 0.57 microgram SMZ/ml to 8 microgram TMP + 152 microgram SMZ/ml. Significantly, NF combined with TMP-SMZ proved effective against isolates with decreased susceptibility to TMP-SMZ as well. The observed in vitro additive effect of NF + TMP-SMZ might prove of clinical relevance with respect to the chemotherapy of hospital-acquired urinary tract infections due to multiple-drug-resistant strains of S. marcescens.

Drug Combinations↗

Elevations in arterial pressure induce the formation of spontaneous action potentials and alter neurotransmission in canine ileum arteries.

Arterial segments (less than 250 micron o.d.) excised from canine ileum were mounted in a chamber that permitted arterial transmural pressure (TMP) to be altered and measured. Subsequently, the periarterial nerves were field stimulated with single pulses (0.1 msec, 70 V), and the resting membrane potential (Em) as well as the nerve-mediated alterations in smooth muscle Em were measured using intracellular microelectrodes at TMPs between 0 and 160 mm Hg. The resting Em was greatest at TMPs of 40 mm Hg (-54.7 +/- 2.6 mV) and depolarized as the TMP was increased, reaching a value of -44.8 +/- 3.1 mV at 160 mm Hg. At TMP greater than or equal to 60 mm Hg, a proportion of the preparations exhibited spontaneous electrical activity (SA) consisting of constant rhythmic oscillations in Em or action potentials (APs) or of trains of rhythmic APs that progressively decreased in amplitude, interrupted by periods of hyperpolarization. SA stopped when the TMP was lowered to 40 mm Hg and was reestablished when the TMP was reelevated to TMPs above 60 mm Hg. Nerve stimulation evoked excitatory junction potentials (ejps) or APs. At constant stimulus parameters, ejps of maximum amplitude having the greatest rate of potential rise and fall were produced at TMP of 100 mm Hg. At TMPs greater than 100 mm Hg or less than 100 mm Hg, the amplitude and the rate of rise and fall of the ejps decreased. Ejps formed in response to a constant single pulse stimulus (0.1 msec, 70 V) elicited APs only at TMPs greater than or equal to 60 mm Hg. Neither ejps nor APs were inhibited by alpha-receptor-blocking agents. These studies indicate that the TMP at which an artery is maintained plays an important role in determining the resting Em, the occurrence of spontaneous action potentials, and the alterations in Em associated with nerve stimulation.

Action Potentials↗

Validating literature-based models with direct clinical trial results: the cost-effectiveness of secondary prophylaxis for PCP in AIDS patients.

OBJECTIVE: To compare literature-based estimates of the cost-effectiveness ratios of strategies for secondary prophylaxis of Pneumocystis carinii pneumonia (PCP) in AIDS patients with estimates obtained using data from a recent comparative clinical trial. DESIGN: A decision-analytic Markov model with data on drug efficacy and toxicity from both the medical literature and a national randomized clinical trial. Drug costs were from average wholesale prices. Discounted life expectancy, total direct medical costs, and cost-effectiveness were projected in dollars per year of life saved (YLS). SETTING: Hypothetical for the literature-based model, then the clinical trial results from the multicenter AIDS Clinical Trials Group (ACTG Protocol 021). PATIENT POPULATION: Patients with AIDS and a prior episode of PCP. INTERVENTIONS: Strategies included no prophylaxis, TMP-SMX (160/800 mg) daily, or aerosolized pentamidine (300 mg) monthly. Patients experiencing major toxic reactions to either medication would cross over to the other agent. MAIN RESULTS: In the literature-based model no prophylaxis was associated with a projected life expectancy of 1.430 years, and total direct cost of $42,080. TMP-SMX increased life expectancy to 2.051 years and cost to $42,300; for aerosolized pentamidine life expectancy was 2.066 years and cost $43,960. TMP-SMX had an incremental cost-effectiveness ratio of $350 per YLS compared with no prophylaxis; the incremental ratio for aerosolized pentamidine was $2,950 per YLS when compared with no prophylaxis, but rose to $110,880 per YLS compared with TMP-SMX. When data from ACTG clinical trial 021 were utilized in the model, the incremental cost-effectiveness ratio for TMP-SMX compared with no prophylaxis was $720 per YLS; aerosolized pentamidine was not cost-effective, and was "dominated" by TMP-SMX because it was associated with higher costs and shorter life expectancy. CONCLUSIONS: Literature-based cost-effectiveness models are useful in developing health policy before clinical trials are completed. Clinical trial results, when available, can be used to validate and revise these models. For secondary PCP prophylaxis in AIDS patients, TMP-SMX is substantially more cost-effective than aerosolized pentamidine.

AIDS-Related Opportunistic Infections↗

The prediction of plasma and brain levels of 2,3,5,6-tetramethylpyrazine following transdermal application.

The purpose of this study was to construct a pharmacokinetic (PK) model and to determine PK parameters of 2,3,5,6-tetramethylpyrazine (TMP) after application of TMP transdermal delivery system. Data were obtained in Sprague-Dawley (SD) rats following a single dose of TMP transdermal delivery system. Blood samples were obtained at 0, 0.25, 0.5, 1, 2, 4, 6, 16, and 24 hours after the transdermal application. In the brain level study, 18 SD rats were divided into 6 groups. Three SD rats before and after transdermal application were culled and sacrificed at each of the following time intervals: 2, 4, 6, 16, and 24 hours after the TMP-TTS application. TMP concentrations in plasma and brain tissues were determined using high performance liquid chromatography and data were fitted using a zero-order absorption and a first-order-elimination 3-compartment PK model. Fitted parameters included 2 volumes of distribution (V1, V2) and 2 elimination rate constants (k10, k20). The elimination half-life for TMP in plasma and brain was 26.5 and 31.2 minutes, respectively. The proposed PK model fit observed concentrations of TMP very well. This model is useful for predicting drug concentrations in plasma and brain and for assisting in the development of transdermal systems.

Administration, Cutaneous↗

Effect of distal protection device on the microvascular integrity in acute myocardial infarction during primary percutaneous coronary intervention.

BACKGROUND: The use of a distal protection device during primary percutaneous coronary intervention (PCI) in acute myocardial infarction (AMI) may preserve the microvascular integrity of the myocardium. METHODS AND RESULTS: A total of 58 consecutive patients with AMI, who had undergone primary PCI within 24 h after onset, were enrolled (30 patients with the PercuSurge GuardWire System, 28 without). The coronary flow velocity reserve was not different between the 2 groups. In patients with a distal protection device, the post-PCI Thrombolysis In Myocardial Infarction myocardial perfusion grades (TMP) were more favorable (TMP 0/1: 13.3%, TMP 2: 23.3%, TMP 3: 63.4% vs TMP 0/1: 35.7%, TMP 2: 35.7%, TMP 3: 28.6%, p=0.023). These patients also exhibited lower basal and hyperemic microvascular resistance index levels (4.33+/-2.22 vs 5.55+/-2.36 mmHg . cm(-1) . s, p=0.047; 2.39+/-1.40 vs 3.14+/-1.36 mmHg . cm(-1) . s, p=0.045, respectively), and longer basal diastolic deceleration time (679+/-273 vs 519+/-289 ms, p=0.035) after PCI. CONCLUSION: Distal protection with the PercuSurge GuardWire system may effectively preserve the microvascular integrity of the myocardium during primary PCI in AMI patients.

Adult↗

A prospective study of the effect of I.V. pentamidine therapy on ventricular arrhythmias and QTc prolongation in HIV-infected patients.

STUDY OBJECTIVES: I.V. pentamidine therapy in HIV-infected patients has been associated in case reports and one uncontrolled prospective series with frequent prolongation of the rate-corrected QT interval (QTc) and a high risk for potentially lethal ventricular arrhythmias, especially torsade de pointes. The aim of this study was to prospectively examine in a controlled manner the effect of I.V. pentamidine therapy on the QT interval and the incidence of ventricular arrhythmias. DESIGN: Open, nonrandomized, prospective evaluation of ventricular arrhythmia incidence in HIV-infected patients receiving pentamidine or trimethoprim-sulfamethoxazole (TMP-SMX) utilizing Holter monitoring prior to and during therapy with these agents. SETTING: Staten Island University Hospital, Staten Island, NY. PATIENTS: Twenty-seven HIV-infected patients, of whom 16 received I.V. pentamidine and 11 received I.V. TMP-SMX. MEASUREMENTS AND RESULTS: Study patients underwent Holter monitoring prior to therapy and during the first 3 days and last 2 days of therapy with pentamidine or TMP-SMX, 12-lead ECG prior to and every 24 to 48 h, serum electrolytes prior to and on days 3, 6, 9, and 12 of therapy, and baseline transthoracic two-dimensional and Doppler echocardiography. In the pentamidine group, the results for each monitoring period were as follows (means are presented +/- SEM): pretherapy, 1.66+/-1.03 (median=0) premature ventricular complexes (PVCs) per hour, zero nonsustained ventricular tachycardia (NSVT), zero sustained ventricular tachycardia (VT); early therapy, 1.55+/-0.91 (median=0.04) PVCs per hour, two NSVT (both < or = 5 complexes), zero sustained VT; late therapy, 1.69+/-1.17 (median=0.08) PVCs per hour, zero NSVT, zero sustained VT (p value not significant for early or late therapy as compared to pretherapy for PVCs per hour, NSVT, or sustained VT). In the TMP-SMX group, the Holter monitoring results were as follows: pretherapy, 1.36+/-1.27 (median=0) PVCs per hour, zero NSVT, zero sustained VT; early therapy, 0.71+/-0.53 (median=0.03) PVCs per hour, two NSVT, zero sustained VT; late therapy, 0.56+/-0.51 (median=0) PVCs per hour, zero NSVT, zero sustained VT (p value not significant for pretherapy, early therapy, or late therapy with TMP-SMX as compared to pentamidine for PVCs per hour, NSVT, or VT). The QTc also did not significantly differ during therapy with pentamidine as compared to TMP-SMX. The mean QTc in the pentamidine group decreased during therapy as compared to pretherapy with the difference approaching significance for days 2, 4, and 6 with pentamidine (p<0.06). CONCLUSIONS: QTc prolongation during therapy with pentamidine in HIV-infected patients is not as frequent an occurrence as has been reported previously. In the absence of QTc prolongation, pentamidine therapy was not associated with a significant increase in PVCs, NSVT, or sustained VT as compared to pretherapy recordings or as compared to therapy with TMP-SMX.

Adult↗

Comparison of ceftriaxone and trimethoprim-sulfamethoxazole for acute otitis media. Greater Boston Otitis Media Study Group.

OBJECTIVE: The purpose of this prospective, randomized, single-blind trial was to assess the clinical efficacy of a single intramuscular dose of ceftriaxone compared with 10 days of oral trimethoprim-sulfamethoxazole (TMP-SMZ) in treating acute otitis media (AOM). METHODS: Children aged 3 months through 3 years diagnosed with AOM (signs of acute illness plus evidence of middle-ear effusion) were randomized to treatment with either a single intramuscular dose of ceftriaxone (maximum dose of 50 mg/kg) or 10 days of oral trimethoprim-sulfamethoxazole (8 mg of TMP and 40 mg of SMZ/kg/day in two divided doses). Children were evaluated at scheduled visits on days 3, 14, and 28, and the parents were telephoned on day 5. Children were assessed as cured, improved, or failed on day 3, and as cured or failed on days 14 and 28. Children ill at other times during the study period were, if possible, seen and assessed by the study team. RESULTS: Of 596 children enrolled during the study period, 484 were evaluable. Characteristics of evaluable subjects did not differ significantly by drug. On day 3, 223/241 children in the ceftriaxone group (92.5%) and 231/243 (95.1%) in the TMP-SMZ group were cured or improved. On day 14, 158/197 (80.2%) in the ceftriaxone group and 174/212 (82.1%) in the TMP-SMZ group were cured. On day 28, 108/136 (79.4%) in the ceftriaxone group and 124/155 (80%) in the TMP-SMZ group were cured. Persistence of middle-ear fluid did not differ between groups at day 14 (55% in the ceftriaxone group vs 47% in the TMP-SMZ group; P = .16) or at day 28 (39% vs 43%; P = .48). Pain at the injection site persisting at day 3 occurred in 8.4% of children receiving ceftriaxone. New diarrhea was more common in the ceftriaxone group (23.6% vs 9.2%; P < .001). CONCLUSION: A single intramuscular dose of ceftriaxone is comparable in clinical efficacy to 10 days of oral TMP-SMZ for treatment of AOM.

Anti-Bacterial Agents↗

The underlying cellular mechanism in the effect of tetramethylpyrazine on the anion secretion of colonic mucosa.

The present study investigated the underlying cellular mechanism in the effect of ligustrazine (tetramethylpyrazine, TMP) on the anion secretion of colonic mucosa in rats using a short-circuit current (I(sc)) technique in conjunction with "tool drugs." (i) After a pretreatment of the tissues by bathing the bilateral surface with Cl(-)-free Krebs-Henseleit (K-H) solution for over an hour, a basolateral application of 1 mmol/l TMP produced an increase in I(sc), and the total charges transported for 30 min were about 8.7 +/- 1.4 mC/cm(2); an apical pretreatment of DPC and a basolateral addition of acetazolamide decreased the TMP-induced I(sc) by about 60% (P < 0.01) and 45% (P < 0.05), respectively; a basolateral application of 4,4'-diisothiocyanatostilbene-2,2'-disulfonic acid (DIDS), the inhibitor of Na(+)-HCO(3)(-) cotransporter (NBC), did not alter the TMP-induced I(sc). (ii) After the bilateral surface of mucosa was bathed with HCO(3)(-)-free K-H solution for over an hour, a basolateral application of 1 mmol/l TMP produced an increase in I(sc), and the total charges transported in 30 min were about 8.3 +/- 1.9 mC/cm(2); an apical pretreatment of DPC (1 mmol/l), the inhibitor of Cl(-) channels, decreased the TMP-induced Isc by about 84% (P < 0.01). The basolateral presence of bumetanide (0.1 mmol/l), the inhibitor of Na(+)-K(+)-Cl(-) cotransporter (NKCC), significantly reduced the TMP-evoked I(sc) by about 86% (P < 0.01). In conclusion, (i) ligustrazine could promote colonic mucosa secretion Cl(-) via apical Cl(-) channels and basolateral NKCC; (ii) ligustrazine could promote colonic mucosa secretion HCO(3)(-) via apical Cl(-) channels and the basolateral diffusion of CO(2).

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Disposition kinetics of trimethoprim in rainbow trout (Oncorhynchus mykiss).

1. The pharmacokinetics of trimethoprim (TMP) following intra-aortic administration were investigated in rainbow trout. 2. The disposition kinetics for TMP were best described by a three-compartment open model. The disappearance of TMP from fish blood was characterized by rapid and pronounced distribution phases and a slow terminal elimination phase. 3. In contrast with pharmacokinetic data of TMP in mammals, the present study documented a long terminal elimination t1/2(36.1 h), large Vdss(5980 ml/kg) and small Clb(2.4 ml/min/kg) for TMP in rainbow trout, thus illustrating the slow biotransformation and elimination capacity, particularly the strong 'holding' capacity (storage) for the drug in trout. 4. The pharmacokinetic profiles in the present study indicated no dose dependency of TMP following three different bolus doses (5, 10 and 50 mg/kg). Hence, the first-order kinetic assumption was verified. 5. Urinary excretion of TMP was a minor elimination route in trout (14.4% dose).

Animals↗

[Study on the therapeutic effects of interferon and gamma-globulin in experimental Pneumocystis carinii pneumonia].

This study was performed to observe the therapeutic effects of interferon-gamma(IFN-gamma) and gamma-globulin(gamma-globulin) in experimental Pneumocystis carinii pneumonia of immune suppressed mice. After 9 weeks, trimethoprim-sulfamethoxazole(TMP-SMZ; 10-50 mg/mouse/day), mouse IFN-gamma(5 x 10(4) units/mouse/day) and mouse gamma-globulin(20 mg/mouse/day) were administered to the mice for 3 weeks by the experimental group. The therapeutic efficacy was evaluated by body weights, histopathologic and electron microscopic findings of the lungs, and number of P. carinii cysts by Gomori's methenamine silver stain. Body weights of the mice were significantly increased in the group of combination therapy of TMP-SMZ with IFN-gamma or gamma-globulin, and in the group of TMP-SMZ treatment (p < 0.05), however, little effect was found in the group of gamma-globulin alone. Histopathologic findings of P. carinii pneumonia were much improved in the group of combination therapy of TMP-SMZ with IFN-gamma. Treatment with either TMP-SMZ or IFN-gamma significantly reduced the number of cysts in the P. carinii pneumonia, but gamma-globulin alone was ineffective. In electron microscopic findings of P. carinii pneumonia, the number of trophozoites and cysts were reduced by treatment with either TMP-SMZ or IFN-gamma, and most of the cysts were empty or containing one or two intracystic bodies. The present results suggested, that combination therapy of TMP-SMZ with IFN-gamma had synergistic effects in treatment of P. carinii pneumonia in experimental mice.

Animals↗

Beneficial effects of combined terlipressin and tetramethylpyrazine administration on portal hypertensive rats.

The purpose of this study was to investigate the therapeutic effects of terlipressin (TP) alone or in combination with tetramethylpyrazine (TMP) on anesthetized portal hypertensive rats. Portal hypertension was induced by either partial portal vein ligation (PVL, without cirrhosis) or bile duct ligation (BDL, with cirrhosis) in Sprague-Dawley rats. Each PVL or BDL rat received only one of the two regimens: vehicle for 3 min followed by TP (0.017 mg x kg(-1) x min(-1) for 3 min) or TMP (10 mg x kg(-1) x min(-1) for 3 min) followed by TP. In PVL rats, infusion of vehicle followed by TP induced significant reduction of portal venous pressure (PVP, -15.0+/-1.0%) and prominent elevation of mean arterial pressure (MAP, 57.3+/-8.1%) as well as total peripheral resistance (TPR, 113+/-11%) from baseline, and there was a cardiodepressant response (cardiac index, CI, -26.3+/-1.1%). Infusion of TMP followed by TP induced significant reduction of PVP (-20.3+/-0.4%) and CI (-9.9+/-1.2%) and significant elevation of MAP (31.3+/-2.5%) and TPR (46.0+/-4.1%) from baseline. In BDL rats, infusion of vehicle followed by TP also induced significant reduction of PVP (-13.8+/-1.7%) but an increase in MAP (57.1+/-2.2%) and TPR (101+/-6%) from baseline, and there also was a cardiodepressant response (CI, -21.4+/-2.3%). Infusion of TMP followed by TP induced significant reduction of PVP (-18.9+/-1.4%) and CI (-11.9+/-2.1%), but an increase in MAP (36.2+/-2.5%) and TPR (55.0+/-5.2%). Compared with vehicle followed by TP, TMP not only significantly enhanced portal hypotensive (PVP reduction) effects of TP but also attenuated the systemic pressor (MAP and TPR elevation) and cardiodepressant (CI reduction) effects of TP in both PVL and BDL rats. Our results suggest that TP, alone or in combination with TMP, induced portal hypotensive effects in two models of portal hypertensive rats. Combination of TP and TMP was beneficial in enhancing portal hypotensive effects of TP and ameliorating the systemic pressor and cardiodepressant effects of TP.

Animals↗