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Biomedical subjects

M Ashton

Publications and source records attributed to M Ashton.

At least 19 recordsLinked to original sources

Characterization of human urinary metabolites of the antimalarial piperaquine.

Five metabolites of the antimalarial piperaquine (PQ) (1,3-bis-[4-(7-chloroquinolyl-4)-piperazinyl-1]-propane) have been identified and their molecular structures characterized. After a p.o. dose of dihydroartemisinin-piperaquine, urine collected over 16 h from two healthy subjects was analyzed using liquid chromatography (LC)/UV, LC/tandem mass spectrometry (MS/MS), Fourier transform ion cyclotron resonance (FTICR)/MS, and H NMR. Five different peaks were recognized as possible metabolites [M1, 320 m/z; M2, M3, and M4, 551 m/z (PQ + 16 m/z); and M5, 567 m/z (PQ + 32 m/z)] using LC/MS/MS with gradient elution. The proposed carboxylic M1 has a theoretical monoisotopic molecular mass of 320.1166 m/z, which is in accordance with the FTICR/MS (320.1168 m/z) findings. The LC/MS/MS results also showed a 551 m/z metabolite (M2) with a distinct difference both in polarity and fragmentation pattern compared with PQ, 7-hydroxypiperaquine, and the other 551 m/z metabolites. We suggest that this is caused by N-oxidation of PQ. The results showed two metabolites (M3 and M4) with a molecular ion at 551 m/z and similar fragmentation pattern as both PQ and 7-hydroxypiperaquine; therefore, they are likely to be hydroxylated PQ metabolites. The molecular structures of M1 and M2 were also confirmed using H NMR. Urinary excretion rate in one subject suggested a terminal elimination half-life of about 53 days for M1. Assuming formation rate-limiting kinetics, this would support recent findings that the terminal elimination half-life of PQ has been underestimated previously.

Antimalarials↗

A new approach to evaluate regression models during validation of bioanalytical assays.

The quality of bioanalytical data is highly dependent on using an appropriate regression model for calibration curves. Non-weighted linear regression has traditionally been used but is not necessarily the optimal model. Bioanalytical assays generally benefit from using either data transformation and/or weighting since variance normally increases with concentration. A data set with calibrators ranging from 9 to 10000 ng/mL was used to compare a new approach with the traditional approach for selecting an optimal regression model. The new approach used a combination of relative residuals at each calibration level together with precision and accuracy of independent quality control samples over 4 days to select and justify the best regression model. The results showed that log-log transformation without weighting was the simplest model to fit the calibration data and ensure good predictability for this data set.

Algorithms↗

Development and validation of an automated solid phase extraction and liquid chromatographic method for the determination of piperaquine in urine.

A sensitive and specific bioanalytical method for determination of piperaquine in urine by automated solid-phase extraction (SPE) and liquid chromatography (LC) has been developed and validated. Buffered urine samples (containing internal standard) were loaded onto mixed phase (cation-exchange and octylsilica) SPE columns using an ASPEC XL SPE robot. Chromatographic separation was achieved on a Chromolith Performance RP-18e (100 mm x 4.6 mm I.D.) LC column with phosphate buffer (pH 2.5; 0.1 mol/L)-acetonitrile (92:8, v/v). Piperaquine was analysed at a flow rate of 3 mL/min with UV detection at 347 nm. A linear regression model on log-log transformed data was used for quantification. Within-day precision for piperaquine was 1.3% at 5000 ng/mL and 6.6% at 50 ng/mL. Between-day precision for piperaquine was 3.7% at 5000 ng/mL and 7.2% at 50 ng/mL. Total-assay precision for piperaquine over 4 days using five replicates each day (n = 20) was 4.0%, 5.2% and 9.8% at 5000, 500 and 50 ng/mL, respectively. The lower limit of quantification (LLOQ) was set to 3 ng/mL using 1 mL of urine, which could be lowered to 0.33 ng/mL when using 9 mL of urine and an increased injection volume.

Animals↗

Enhanced surveillance of campylobacter infection in the North West of England 1997-1999.

OBJECTIVES: To identify sources and routes of infection for sporadic cases of campylobacter infection in the North West of England. METHODS: Standard, structured questionnaires were used to gather epidemiological information from cases of campylobacter infection in the North West Region of England between 1997 and 1999. The strains of campylobacter isolated from these cases were identified and typed using serotyping and phage typing methods. Analysis of combined serotype and epidemiological data is presented. RESULTS AND CONCLUSIONS: Human campylobacter infection in the North West is seasonal and a new observation was a peak in cases in March each year. Drinking bird-pecked milk was a highly seasonal exposure that might be an indicator of environmental contamination with campylobacter. A possible environmental basis for seasonality of infection is discussed. Frequencies of risk exposures related to serotypes of cases are described and a potential association was demonstrated between Campylobacter jejuni HS6 and consumption of bird-pecked milk. Also, Campylobacter coli infections were more commonly associated with travel abroad than C. jejuni and a decreased proportion of C. jejuni HS2 and C. jejuni HS11 reported consumption of meat and unpasteurised milk (respectively). Contact with a sick animal may be a significant risk exposure in younger age groups and in those who do not consume poultry or meat. It is clear from this and other studies that the sources and vehicles of human campylobacter infection are numerous and interventions that target a single risk factor are unlikely to impact significantly on the overall burden of disease.

Adolescent↗

Automated solid-phase extraction method for the determination of piperaquine in plasma by peak compression liquid chromatography.

A validated bioanalytical method for the determination of piperaquine (PQ) in plasma by solid-phase extraction (SPE) and liquid chromatography (LC) using peak compression is presented. Protein is precipitated from plasma with acetonitrile-1% aqueous acetic acid (85:15, v/v). An internal standard (IS) is added to the samples before they are loaded onto a strong cation exchanger (Isolute PRS) SPE column. PQ and the IS are analyzed by LC on a Zorbax SB-CN column (250 x 4.0 mm) with the mobile phase acetonitrile-phosphate buffer [I = 0.1, pH 2.5 (12:88, v/v)] and UV detection at 345 nm. Trichloroacetic acid (TCA) is added to the samples prior to injection into the chromatography system. PQ elutes in a gradient of TCA, which enables peak compression of PQ and significantly higher peak efficiency as a result. The intraassay precision for plasma is determined to be 5.4% at 3.00 microM and 5.8% at 0.050 microM. The interassay precision for plasma is 1.3% at 3.00 microM and 10.0% at 0.050 microM. The lower limit of quantitation and the limit of detection are 0.025 and 0.005 microM, respectively.

Antimalarials↗

Automated solid-phase extraction method for the determination of piperaquine in whole blood by rapid liquid chromatography.

A bioanalytic method for the determination of piperaquine in whole blood by solid-phase extraction and rapid liquid chromatography has been developed and validated. Whole blood was hemolyzed with deionized water, and an internal standard was added to the samples before they were loaded onto a PRS cation-exchange solid-phase extraction column. Piperaquine and internal standard were analyzed by liquid chromatography on a Chromolith Performance (100 x 4.6 mm) column with mobile phase acetonitrile:phosphate buffer, I = 0.1, pH 2.5 (8:92, vol/vol), flow rate 4 mL x min-1, and UV detection at 345 nm. The intraassay precision for whole blood was 3.2% at 3.00 microM and 12.3% at 0.100 microM. The interassay precision for whole blood was 1.8% at 3.00 microM and 5.2% at 0.100 microM. The lower limit of quantification and the limit of detection were 0.050 microM and 0.010 microM, respectively.

Chromatography, Liquid↗

An outbreak no longer: factors contributing to the return of syphilis in Greater Manchester.

BACKGROUND: In the past few years, increased diagnoses of syphilis have been reported in cities around Britain and Europe. Enhanced surveillance of cases began in 1999 to identify the epidemiology of this increase in Greater Manchester. METHODS: Information was collected on all cases of syphilis newly diagnosed in genitourinary medicine (GUM) clinics in Greater Manchester between January 1999 and November 2002. The data collected included demographic information and information about other sexually transmitted infections, sexual behaviour, perception of risk of infection, and awareness of syphilis transmission. RESULTS: The majority of cases identified were white homosexual men resident in Greater Manchester. Of the 414 cases diagnosed, 74% had either a primary or secondary stage of syphilis infection and 37% of cases were HIV positive. High numbers of individuals practised unprotected oral sex despite good awareness of the risk of infection with syphilis. There is evidence that the way people are meeting sexual contacts is changing, with increasing numbers meeting most of their partners through the internet. CONCLUSIONS: These findings have implications for targeting interventions. The provision of rapid diagnostic and treatment services is likely to be key for the control of syphilis and potentially of subsequent increases in HIV in the region.

Adult↗

Secular trends in the occurrence of tuberculosis in an urban community in north west England, 1918-2001: implications for a local tuberculosis control programme.

In recent years enhanced surveillance of tuberculosis has been undertaken for England and Wales to monitor national epidemiological trends. The Chief Medical Officer's strategy for communicable diseases has identified the development of a national strategy for the control of tuberculosis as a priority. Regional and sub-regional variations in the occurrence of tuberculosis require further exploration to inform local implementation of the national strategy. Secular epidemiological trends in tuberculosis for the period 1918-2001 are described for a deprived urban area in the north west of England, and implications for local enhanced surveillance and control measures are discussed. A substantial decline in mortality and morbidity from tuberculosis is shown due to interruption of transmission following improvements to the housing stock and the introduction of chemotherapy and BCG vaccination. The proportion of incident cases of tuberculosis in non-white groups has markedly increased over the period observed. The local tuberculosis control programme now specifically targets recent non-white immigrants. Other urban areas may need to adopt similar measures to improve local control of tuberculosis.

Adolescent↗

Surveillance of influenza in the North-West Region of England 2001-02.

A local sentinel network of general practitioners has been established in the north west of England for the surveillance of influenza. In the 2001-02 winter, consultation rates for influenza-like-illness (ILI) were low but the surveillance network was able to demonstrate sub-regional variations in the timing of peak influenza activity, and the infection of different age groups. This suggests the network can contribute to better planning to winter pressures on the North West health service.

Adolescent↗

Multiple dose study of interactions between artesunate and artemisinin in healthy volunteers.

AIMS: To investigate whether coadministration of the antimalarials artesunate and artemisinin alters the clearance of either drug. METHODS: Ten healthy Vietnamese males (Group AS) were randomized to receive a single dose of 100 mg oral artesunate (pro-drug of dihydroartemisinin) on day -5 and then once daily for 5 consecutive days (days 1-5). Oral artemisinin (500 mg) was coadministered on days 1 and 5. Another 10 subjects (Group AM) were given 500 mg oral artemisinin on day -5 and then further doses on days 1-5. Artesunate 100 mg was given on days 1 and 5. Artemisinin and dihydroartemisinin plasma concentrations on days -5, 1 and 5 were quantified by h.p.l.c. with on-line postcolumn derivatization and u.v. detection. RESULTS: In Group AS, dihydroartemisinin oral clearance values (mean (95% CI)) were similar on day 1 (32 (22, 47)) l h(-1) and day 5 (38 (28, 51)) l h(-1) of daily artesunate administration but these mean values were approximately three fold higher compared with day -5 after a single dose (95 (56, 159)). In this group, artemisinin oral clearance increased from 196 (165, 232) l h(-1) on day 1-315 (241, 410) l h(-1) on day 5. In Group AM, dihydroartemisinin oral clearance on day 1 was 39 (34, 46) l h(-1) and increased 1.6 fold to 64 (48, 85) l h(-1) on day 5. In this group, artemisinin oral clearance increased sequentially (1.5 and 4.7 fold, respectively) from 207 (151, 285) l h(-1) on day -5-308 (257, 368) l h(-1) on day 1 and to 981 (678, 1420) l h(-1) on day 5. The increase in artemisinin oral clearance between days -5 and 1 (in the absence of artesunate) was similar to that between days 1 and 5 in Group AS subjects who took daily artesunate. Dihydroartemisinin was not a significant metabolite of artemisinin. CONCLUSIONS: Artesunate (dihydroartemisinin) did not alter the elimination of artemisinin. However, dihydroartemisinin elimination was inhibited by artemisinin. Artemisinin induced its own elimination even 5 days after a single oral dose. There was no evidence for the formation of dihydroartemisinin from artemisinin.

Administration, Oral↗

Flow-mediated dilatation following wrist and upper arm occlusion in humans: the contribution of nitric oxide.

Flow-mediated dilatation (FMD) of the brachial artery assessed by high-resolution ultrasound is widely used to measure endothelial function. However, the technique is not standardized, with different groups using occlusion of either the wrist or the upper arm to induce increased blood flow. The validity of the test as a marker of endothelial function rests on the assumption that the dilatation observed is endothelium-dependent and mediated by nitric oxide (NO). We sought to compare the NO component of brachial artery dilatation observed following wrist or upper arm occlusion. Dilatation was assessed before and during intra-arterial infusion of the NO synthase inhibitor N(G)-monomethyl-L-arginine (L-NMMA) following occlusion of (i) the wrist (distal to ultrasound probe) and (ii) the upper arm (proximal to ultrasound probe) for 5 min in ten healthy males. Dilatation was significantly greater after upper arm occlusion (upper arm, 11.62+/-3.17%; wrist, 7.25+/-2.49%; P=0.003). During L-NMMA infusion, dilatation after wrist occlusion was abolished (from 7.25+/-2.49% to 0.16+/-2.24%; P<0.001), whereas dilatation after upper arm occlusion was only partially attenuated (from 11.62+/-3.17% to 7.51+/-2.34%; P=0.006). The peak flow stimulus was similar after wrist and upper arm occlusion. We conclude that dilatation following upper arm occlusion is greater than that observed after wrist occlusion, despite a similar peak flow stimulus. L-NMMA infusion revealed that FMD following wrist occlusion is mediated exclusively by NO, while dilatation following upper arm occlusion comprises a substantial component not mediated by NO, most probably related to tissue ischaemia around the brachial artery. FMD following wrist occlusion may be a more valid marker of endothelial function than dilatation following upper arm occlusion.

Adult↗

Direct analysis of artemisinin in plasma and saliva using coupled-column high-performance liquid chromatography with a restricted-access material pre-column.

A previously established HPLC system with post-column derivatization for the analysis of artemisinin was coupled to an ADS (alkyl-diol silica) pre-column, allowing direct and repetitive injection of protein-rich fluids such as plasma. The limit of quantitation for 100 microl of plasma was 10 ng/ml (CV=10.5%) while concentrations down to 2 ng/ml could be quantified for 1.00 ml saliva samples (CV=11.1%). The system was linear in the tested range of 10-2000 ng/ml for plasma and 2-240 ng/ml for saliva samples, respectively. This paper introduces coupled column HPLC as a simplified method for the routine analysis of artemisinin in biological fluids.

Antimalarials↗

Use of saliva and capillary blood samples as substitutes for venous blood sampling in pharmacokinetic investigations of artemisinin.

OBJECTIVES: Artemisinin concentrations in venous plasma, capillary plasma and saliva were compared. METHODS: Eighteen Vietnamese adults with uncomplicated falciparum malaria were treated with artemisinin. Saliva, capillary and venous plasma were sampled and analysed for artemisinin using high-performance liquid chromatography with an ultraviolet detector (HPLC-UV). RESULTS: Artemisinin capillary plasma concentrations were highly correlated to its venous plasma levels (correlation coefficient r = 0.92). Capillary/venous concentration ratios were significantly higher than unity at 30 min and 60 min after drug intake, indicating an arterial-venous concentration difference. Artemisinin unbound fraction in plasma averaged 0.14 (SD = 0.03) and was independent of drug concentration (114-1001 ng/ml). Artemisinin concentrations in saliva were comparable to its unbound levels in plasma. Saliva levels were more highly correlated to unbound capillary plasma (r = 0.85) than to unbound venous plasma concentrations (r = 0.77). No statistically significant differences were found between the saliva, unbound venous and unbound capillary area under the curve (AUC) values. CONCLUSIONS: Capillary plasma or saliva may replace venous plasma in pharmacokinetic investigations of artemisinin. Due to the ease of collection and handling, saliva sampling can be a simple approach in field studies of artemisinin, although the lower saliva concentrations require more sensitive analytical methods.

Adolescent↗

Identification of the human cytochrome P450 enzymes involved in the in vitro metabolism of artemisinin.

AIMS: The study aimed to identify the specific human cytochrome P450 (CYP450) enzymes involved in the metabolism of artemisinin. METHODS: Microsomes from human B-lymphoblastoid cell lines transformed with individual CYP450 cDNAs were investigated for their capacity to metabolize artemisinin. The effect on artemisinin metabolism in human liver microsomes by chemical inhibitors selective for individual forms of CYP450 was investigated. The relative contribution of individual CYP450 isoenzymes to artemisinin metabolism in human liver microsomes was evaluated with a tree-based regression model of artemisinin disappearance rate and specific CYP450 activities. RESULTS: The involvement of CYP2B6 in artemisinin metabolism was demonstrated by metabolism of artemisinin by recombinant CYP2B6, inhibition of artemisinin disappearance in human liver microsomes by orphenadrine (76%) and primary inclusion of CYP2B6 in the tree-based regression model. Recombinant CYP3A4 was catalytically competent in metabolizing artemisinin, although the rate was 10% of that for recombinant CYP2B6. The tree-based regression model suggested CYP3A4 to be of importance in individuals with low CYP2B6 expression. Even though ketoconazole inhibited artemisinin metabolism in human liver microsomes by 46%, incubation with ketoconazole together with orphenadrine did not increase the inhibition of artemisinin metabolism compared to orphenadrine alone. Troleandomycin failed to inhibit artemisinin metabolism. The rate of artemisinin metabolism in recombinant CYP2A6 was 15% of that for recombinant CYP2B6. The inhibition of artemisinin metabolism in human liver microsomes by 8-methoxypsoralen (a CYP2A6 inhibitor) was 82% but CYP2A6 activity was not included in the regression tree. CONCLUSIONS: Artemisinin metabolism in human liver microsomes is mediated primarily by CYP2B6 with probable secondary contribution of CYP3A4 in individuals with low CYP2B6 expression. The contribution of CYP2A6 to artemisinin metabolism is likely of minor importance.

Antimalarials↗

Quantitative in vivo and in vitro sex differences in artemisinin metabolism in rat.

1. The pharmacokinetics of the antimalarial compound artemisinin were compared in the male and female Sprague-Dawley rat after single dose i.v. (20 mg x kg(-1)) or i.p. (50 mg x kg(-1)) administration of an emulsion formulation. 2. Plasma clearance of artemisinin was 12.0 (95% confidence interval: 10.4, 13.0) 1 x h(-1) x kg(-1) in the male rat and 10.6 (95% CI: 7.5, 15.0) 1 x h(-1) x kg(-1) in the female rat suggesting high hepatic extraction in combination with erythrocyte uptake or clearance. Artemisinin half-life was approximately 0.5 h after both routes of administration in both sexes. Values for plasma clearance and half-lives did not statistically differ between the sexes. 3. After i.p. administration artemisinin AUCs were 2-fold higher in the female compared with male rat (p < 0.001). Artemisinin disappearance was 3.9-fold greater in microsomes from male compared with female livers and it was inhibited in male microsomes by goat or rabbit serum containing antibodies against CYP2C11 and CYP3A2 but not CYP2B1 or CYP2E1. 4. The unbound fraction of artemisinin in plasma was lower (p < 0.001) in plasma obtained from the male (8.8 +/- 2.0%) compared with the female rat (11.7 +/- 2.2%). 5. The possibility of a marked sex difference, dependent on the route of administration, has to be taken into account in the design and interpretation of toxicological studies of artemisinin in this species.

Animals↗

Stereospecific analysis of omeprazole supports artemisinin as a potent inducer of CYP2C19.

The purpose of the study was to determine the enantiomer pharmacokinetics of omeprazole and 5-hydroxy-omeprazole before and after administration of the antimalarial artemisinin to confirm artemisinin's ability to induce CYP2C19. Nine healthy male Vietnamese subjects were given a single 20 mg dose of omeprazole orally 1 week before (day - 7) artemisinin administration. Artemisinin was then given orally (500 mg) for 7 days (days 1-7). On days 1 and 7, a single 20 mg dose of omeprazole was coadministered with artemisinin. After a washout period of 6 days, a single 20 mg dose of omeprazole was again administered together with a single 500 mg of artemisinin (day 14). Stereoselective pharmacokinetics of omeprazole and 5-hydroxyomeprazole was determined on days of omeprazole administration. Seven days of artemisinin administration significantly decreased the AUC of both omeprazole enantiomers (day 7), compared with day 1 (P < 0.001). All values were normalized after the washout period. Artemisinin increased the AUC ratio of R-5-hydroxyomeprazole/R-omeprazole significantly (P < 0.01) on day 7. The AUC ratio of omeprazole sulphone/S-omeprazole did not differ between study days. Artemisinin decreased the AUC of S-omeprazole to the same extent as that of R-omeprazole in extensive CYP2C19 metabolizers. suggesting that artemisinin induces a different enzyme in addition to CYP2C19. These results support and strengthen earlier findings that artemisinin induces CYP2C19 as well as at least one enzyme other than CYP3A4.

2-Pyridinylmethylsulfinylbenzimidazoles↗