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Jane Freeman

Publications and source records attributed to Jane Freeman.

10 recordsLinked to original sources

Tigecycline does not induce proliferation or cytotoxin production by epidemic Clostridium difficile strains in a human gut model.

OBJECTIVES: Data on the risk of Clostridium difficile infection (CDI) associated with specific antibiotics are difficult to obtain because of confounding clinical factors. It is particularly important to evaluate the propensity of new antibiotics to induce CDI. We have examined the propensity of tigecycline to induce CDI using a human gut model. METHODS: We used a three-stage chemostat human gut model to study the effects of tigecycline on indigenous gut microflora and C. difficile. Two epidemic C. difficile were studied in separate experiments: PCR ribotype 001 (UK, CD001) and PCR ribotype 027 (North America, CD027). Tigecycline MICs for 39 C. difficile representing 19 distinct PCR ribotypes were also determined. RESULTS: Tigecycline MICs were 0.06 mg/L for all the C. difficile strains. Peak tigecycline concentrations in the gut model were 10.9 and 11.7 mg/L in CD027 and CD001 experiments, respectively. Tigecycline instillation invoked marked decreases in numbers of bacteroides and bifidobacteria (10(7)-10(8) cfu/mL) and lesser reductions in facultative anaerobes. Despite markedly altered gut microflora, CD001 and CD027 remained as spores for the duration of the experiment, with no evidence of proliferation or cytotoxin production. CONCLUSIONS: Tigecycline exposure did not induce C. difficile proliferation or cytotoxin production despite reduced competing microflora. The potency of tigecycline against C. difficile may contribute to the low risk of CDI induction. Factors other than gut microflora colonization resistance may be important in preventing C. difficile spore germination, proliferation and cytotoxin production.

Anti-Bacterial Agents↗

CSF shunt failure with stable normal ventricular size.

OBJECTIVE: The purpose of this study was to review the clinical features of a group of patients in whom ventricular enlargement was not a manifestation of prolonged CSF shunt obstruction. RESULTS: Twelve patients who had prolonged symptoms consistent with CSF shunt failure and stable normal ventricular size were demonstrated at the time of surgery to have obstruction of their CSF shunts. CONCLUSION: Ventricular enlargement is a common but not sine qua non indicator of CSF shunt failure, even after weeks or months of elevated intracranial pressure, and therefore cannot be relied upon for the diagnosis of CSF shunt failure. Although an increase in ventricular size is usually seen relatively early in the course of shunt malfunction, stable normal ventricular size in patients with symptoms and signs that are consistent with shunt failure can delay the diagnosis with potentially serious adverse consequences.

Adolescent↗

Comparison of the efficacy of ramoplanin and vancomycin in both in vitro and in vivo models of clindamycin-induced Clostridium difficile infection.

OBJECTIVES: Treatment of Clostridium difficile infection (CDI) is limited primarily to either metronidazole or vancomycin. We compared vancomycin and a novel glycolipodepsipeptide, ramoplanin, in both hamster and in vitro gut models of clindamycin-induced CDI. METHODS: We used an in vitro triple-stage chemostat model that simulates the human gut, and an in vivo hamster model, both primed with clindamycin. RESULTS: Clindamycin exposure elicited symptomatic disease in the hamster model, and promoted C. difficile germination and toxin production in the gut model. C. difficile germination and toxin production were not associated with depletion of gut microflora in the gut model, but were temporarily associated with subinhibitory concentrations of clindamycin. Both ramoplanin and vancomycin were associated with rapid symptom resolution in the hamster model, and rapid toxin titre decrease in the in vitro gut model. In both models of CDI, vancomycin was associated with greater persistence of C. difficile spores. C. difficile spores were recovered significantly more often from the caecal contents of vancomycin-treated (n = 19/23) compared with ramoplanin-treated (n = 6/23) hamsters (P < 0.05). CONCLUSIONS: Results from the in vitro gut and hamster models were concordant. Ramoplanin and vancomycin were similarly effective at reducing cytotoxin production in the gut CDI model and in resolving symptoms in the hamster model. Ramoplanin may be more effective than vancomycin at killing spores and preventing spore recrudescence. These findings suggest a potential therapeutic role for ramoplanin in CDI that requires further clinical investigation.

Animals↗

Effects of piperacillin/tazobactam on Clostridium difficile growth and toxin production in a human gut model.

OBJECTIVES: Clostridium difficile infection (CDI) is a major cause of morbidity in the nosocomial environment. Antimicrobial agents such as the third-generation cephalosporins, lincosamides and aminopenicillins are well known for their propensity to induce CDI, but the definitive reasons why remain to be elucidated. Despite their broad spectrum of activity against both aerobic and anaerobic bacteria, the ureidopenicillins remain a class of antimicrobials infrequently associated with the development of CDI. METHODS: We used a triple-stage chemostat model that simulates the human gut to study the effects of the ureidopenicillin/beta-lactamase inhibitor combination piperacillin/tazobactam on gut bacterial populations and C. difficile. RESULTS: Piperacillin/tazobactam rapidly reduced all enumerated gut bacterial populations (including bacteroides, bifidobacteria and lactobacilli) below the limits of detection by the end of the piperacillin/tazobactam instillation period. Despite such widespread disruption of gut bacterial populations, C. difficile populations remained principally as spores, with no sustained proliferation or high-level cytotoxin production observed. CONCLUSIONS: Factors other than reduced colonization resistance must be responsible for determining whether CDI develops following antimicrobial administration. We believe the gut model is a promising approach for the study of C. difficile pathogenesis reflecting in vivo events likely to occur in CDI.

Anti-Bacterial Agents↗

Molecular epidemiology of endemic Clostridium difficile infection and the significance of subtypes of the United Kingdom epidemic strain (PCR ribotype 1).

We previously identified two subtypes of the epidemic strain Clostridium difficile PCR ribotype 1, one clindamycin-sensitive strain (arbitrarily primed PCR [AP-PCR] type Ia) and a closely related clindamycin-resistant strain (AP-PCR type Ib) in our institution. We have now carried out prospective epidemiological surveillance for 4 years, immediately following the relocation of two acute medicine wards for elderly patients (wards A and B), to determine the clinical epidemiology of subtypes of the epidemic C. difficile PCR ribotype 1 group. To maximize the chance of strain discrimination, we used three DNA fingerprinting methods, AP-PCR, ribospacer PCR (RS-PCR), and pulsed-field gel electrophoresis (PFGE), to analyze C. difficile isolates recovered from symptomatic patients and from repeated environmental samplings. On ward B the incidence of C. difficile infection correlated significantly with the prevalence of environmental C. difficile both in ward areas closely associated with patients and health care personnel (r = 0.53; P < 0.05) and in high-reach sites (r = 0.85; P < 0.05). No such relationships were found on ward A. Seventeen distinct C. difficile genotypes were identified, 17 by AP-PCR, 12 by PFGE, and 11 by RS-PCR, but only 4 of 17 genotypes caused patient infection. Isolates recovered from the hospital ward environment were much more diverse (14 genotypes). AP-PCR type Ia represented >90% of the C. difficile isolates. In addition to this genotype, only two others were isolated from both patient feces and environmental surfaces. AP-PCR type Ib (clindamycin-resistant PCR ribotype 1 clone) was not associated with any cases of C. difficile infection and was isolated from the environment on only two occasions, after having been implicated in a cluster of six C. difficile infections 5 months before this study. The disappearance of this strain implies that differences in virulence and/or selective pressures may exist for this strain and the closely related, widespread C. difficile AP-PCR type Ia strain. Our findings emphasize the need to understand the epidemiology and virulence of clinically significant strains to determine successful control measures for C. difficile infections.

Aged↗

Long-term surveillance of cefotaxime and piperacillin-tazobactam prescribing and incidence of Clostridium difficile diarrhoea.

OBJECTIVES: We followed the effects of changes to a new antibiotic policy favouring a ureidopenicillin as opposed to a third-generation cephalosporin on the long-term incidence of Clostridium difficile diarrhoea (CDD) and antibiotic utilization in a large Elderly Medicine Unit. PATIENTS AND METHODS: In 1999, piperacillin-tazobactam was added to the formulary in Elderly Medicine and its use promoted in preference to cefotaxime. Following review and feedback to clinicians of surveillance data, cefotaxime prescribing was actively restricted during 2000-2001. An audit of prescriber adherence to antibiotic policy was carried out by reviewing the records of 159 patients during February-April 2001. In December 2001, due to manufacturer production problems, supply of piperacillin-tazobactam was stopped. We performed standardized period prevalence surveillance (February-April) allowing comparisons of antibiotic utilization and CDD incidence during the 5 year study period (1998-2002). RESULTS: CDD incidence did not change significantly (P>0.1) during 1998-1999 despite a marked increase in piperacillin-tazobactam prescribing. However, when cefotaxime prescribing was curtailed in 2001, CDD rates decreased (in four of five wards) and overall by 52% (P=0.008). When piperacillin-tazobactam became unavailable in 2002, despite advice to the contrary cefotaxime prescribing rose five-fold, and CDD rates increased in four of five wards and by 232% (P<0.01) overall. Adherence to antibiotic policy introduced in 2000 was good (81% accordance); 94%, 88% and 73% of patients with cellulitis, urinary tract and respiratory tract infection, respectively, received appropriate antibiotics. CONCLUSIONS: Long-term prescribing of piperacillin-tazobactam in Elderly Medicine in preference to cefotaxime is associated with reduced rates of CDD. However, unless cephalosporin prescribing is curtailed, the beneficial effects on CDD rates may be missed. This is one of few studies to document adverse effects due to loss of antibiotic supply.

Aged↗

Effects of cefotaxime and desacetylcefotaxime upon Clostridium difficile proliferation and toxin production in a triple-stage chemostat model of the human gut.

Clostridium difficile is recognized as an important nosocomial pathogen. C. difficile infection (CDI) is thought to arise as a result of depletion of the normal gut flora by antimicrobial agents. Cefotaxime (CTX) is well-known for its propensity to cause CDI, but the reasons behind its particular predisposition to the disease remain unclear. Previous investigations have so far relied upon the hamster model of CDI or human volunteers. We have used a triple-stage chemostat model of the human gut to investigate the behaviour of C. difficile and components of the normal gut flora, in response to exposure to CTX alone, and in combination with its active metabolite desacetylcefotaxime (dCTX). C. difficile remained in a steady state during non-antibiotic exposed periods, with no detectable cytotoxin. During both antibiotic exposure regimens, proliferation of C. difficile and elevated cytotoxin levels were observed. Cessation of antibiotic instillation produced a reduction in cytotoxin levels and viable counts. Decreases in bacterial counts were observed in response to both antibiotic exposure regimens, notably for bifidobacteria and bacteroides. Numbers of bacteroides were profoundly affected by exposure to the CTX/dCTX combination, and this may indicate a possible role for bacteroides in colonization resistance. We believe that the gut model is a promising method for studying C. difficile pathogenesis in conditions analogous to the in vivo situation.

Bacterial Toxins↗