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Stuart Johnson

Publications and source records attributed to Stuart Johnson.

At least 19 recordsLinked to original sources

Binary toxin-producing, large clostridial toxin-negative Clostridium difficile strains are enterotoxic but do not cause disease in hamsters.

Binary toxin CDT or its genes have been identified in some strains of Clostridium difficile that also produce the large clostridial toxins, toxins A and B (A+B+CDT+), including a newly recognized epidemic strain in the United States and Canada. To study the effects of binary toxin alone, we characterized 4 binary toxin CDT-positive only (A-B-CDT+) C. difficile strains. Unlike other clostridial binary toxins, binary toxin CDT required exogenous trypsin for activation. Supernatants from all A-B-CDT+ strains caused marked fluid accumulation in the rabbit ileal loop assay after concentration and trypsinization. In addition, the ileal loop response was neutralized by antisera raised against other binary toxin-producing clostridia. Challenge of clindamycin-treated hamsters with these strains resulted in colonization but not diarrhea or death. Binary toxin CDT may play an adjunctive role to toxins A and B in the pathogenesis of C. difficile-associated disease but by itself may not be sufficient to cause disease.

Animals↗

Genotypic and phenotypic analysis of Clostridium difficile correlated with previous antibiotic exposure.

To analyze Clostridium difficile susceptibility results and genotypes in relation to antibiotic exposures that precipitated C. difficile-associated diarrhea (CDAD), we examined 83 nosocomial C. difficile isolates recovered at a tertiary care center in Boston, Massachusetts. MICs were determined by E-test methodology using modified Brucella agar. Isolates were genotyped by pulsed-field gel electrophoresis and restriction enzyme analysis. Antibiotic susceptibilities were: ciprofloxacin (0%), clindamycin (59%), trovafloxacin (63%), ceftriaxone (73%), piperacillin/tazobactam (100%), metronidazole (100%), and vancomycin (100%). The two most common strain groups, isolated from a total of 33 patients, were much more likely to be resistant to clindamycin, erythromycin, and trovafloxacin than other strain groups [79% (26 of 33) versus 2% (1 of 50), respectively]. Clindamycin exposure was strongly associated with CDAD caused by isolates that exhibited multiple resistance to clindamycin, erythromycin, and trovafloxacin (prevalence odds ratio, 4.2; 95% confidence interval, 1.1-16.8), whereas other antimicrobials did not yield significant associations. Resistance of specific C. difficile strains to clindamycin and other antimicrobial agents may contribute to their hospital dissemination and explain, in part, the propensity of clindamycin to trigger nosocomial outbreaks.

Adult↗

Multilocus variable-number tandem-repeat analysis for investigation of Clostridium difficile transmission in Hospitals.

Clostridium difficile is a major cause of antibiotic-associated gastrointestinal illness. Recently, an increased incidence of hospital-acquired infections with severe outcomes has been reported in North America and Europe. Current molecular-typing methods for detection of outbreaks and nosocomial transmission are labor-intensive, subjective, or insufficiently discriminatory to differentiate between closely related strains. This report describes the development of multilocus variable-number tandem-repeat (VNTR) analysis (MLVA) for molecular subtyping of C. difficile. Seven VNTR loci were identified from the C. difficile 630 genome by screening an isolate collection of various restriction endonuclease analysis (REA) types. The stability of the loci for short-term epidemiologic investigations was determined by performing MLVA on consecutive isolates of the same REA type from individual patients collected over as many as 90 days. Validation of MLVA for molecular genotyping was performed by direct comparison with REA results obtained from Hines Veterans Affairs Hospital on a combined collection of 40 C. difficile isolates from two different sources. The ability of MLVA to detect outbreaks was demonstrated on a collection of tertiary-care hospital isolates from a defined C. difficile outbreak in 2001. MLVA successfully clustered C. difficile isolates of the same REA type and discriminated isolates of unique REA type. Thus, MLVA is an objective, portable genotyping method that permits reliable detection of C. difficile outbreaks and can aid epidemiologic investigations of nosocomial transmission.

Bacterial Typing Techniques↗

An epidemic, toxin gene-variant strain of Clostridium difficile.

BACKGROUND: Recent reports suggest that the rate and severity of Clostridium difficile-associated disease in the United States are increasing and that the increase may be associated with the emergence of a new strain of C. difficile with increased virulence, resistance, or both. METHODS: A total of 187 C. difficile isolates were collected from eight health care facilities in six states (Georgia, Illinois, Maine, New Jersey, Oregon, and Pennsylvania) in which outbreaks of C. difficile-associated disease had occurred between 2000 and 2003. The isolates were characterized by restriction-endonuclease analysis (REA), pulsed-field gel electrophoresis (PFGE), and toxinotyping, and the results were compared with those from a database of more than 6000 isolates obtained before 2001. The polymerase chain reaction was used to detect the recently described binary toxin CDT and a deletion in the pathogenicity locus gene, tcdC, that might result in increased production of toxins A and B. RESULTS: Isolates that belonged to one REA group (BI) and had the same PFGE type (NAP1) were identified in specimens collected from patients at all eight facilities and accounted for at least half of the isolates from five facilities. REA group BI, which was first identified in 1984, was uncommon among isolates from the historic database (14 cases). Both historic and current (obtained since 2001) BI/NAP1 isolates were of toxinotype III, were positive for the binary toxin CDT, and contained an 18-bp tcdC deletion. Resistance to gatifloxacin and moxifloxacin was more common in current BI/NAP1 isolates than in non-BI/NAP1 isolates (100 percent vs. 42 percent, P<0.001), whereas the rate of resistance to clindamycin was the same in the two groups (79 percent). All of the current but none of the historic BI/NAP1 isolates were resistant to gatifloxacin and moxifloxacin (P<0.001). CONCLUSIONS: A previously uncommon strain of C. difficile with variations in toxin genes has become more resistant to fluoroquinolones and has emerged as a cause of geographically dispersed outbreaks of C. difficile-associated disease.

ADP Ribose Transferases↗

Revised nomenclature of Clostridium difficile toxins and associated genes.

Several different nomenclatures have been applied to the Clostridium difficile toxins and their associated genes. This paper summarizes the new nomenclature that has been agreed to by the research groups currently active in the field. The revised nomenclature includes C. difficile toxins and other related large clostridial toxins produced by Clostridium sordellii and Clostridium novyi, and corresponding toxin genes, as well as toxin production types of C. difficile strains.

Bacterial Proteins↗

Staphylococcus aureus and Clostridium difficile cause distinct pseudomembranous intestinal diseases.

We report simultaneous infections with Clostridium difficile and methicillin-resistant Staphylococcus aureus (MRSA) in a patient with discrete colonic pseudomembranes typical of C. difficile infection, as well as confluent, loosely adherent pseudomembranes in the small bowel. Identification of MRSA in the small bowel pseudomembrane by polymerase chain reaction supports S. aureus as an enteric pathogen.

Clostridioides difficile↗

Serious adverse cutaneous and hepatic toxicities associated with nevirapine use by non-HIV-infected individuals.

BACKGROUND: Nevirapine is a nonnucleoside reverse transcriptase antiretroviral agent. Among HIV-infected individuals, rare instances (<1%) of serious cutaneous and hepatic toxicity have been reported. Because of its favorable pharmacokinetic profile, non-HIV-infected individuals have received nevirapine-containing postexposure prophylaxis (PEP). OBJECTIVE: To describe the clinical features of cutaneous and hepatic toxicity that occurred when nevirapine was administered to non-HIV-infected individuals. METHODS: Reports of nevirapine-associated cutaneous or hepatic toxicity occurring among non-HIV-infected individuals were obtained from the US Food and Drug Administration's adverse event reporting system, the pharmaceutic manufacturer, occupational health programs in Chicago, physicians, and case reports. The Eastern Cooperative Oncology Group (ECOG) scoring system was used to grade toxicity. RESULTS: Twelve non-HIV-infected individuals developed severe cutaneous toxicity, including 3 with Stevens-Johnson syndrome, after 7 to 12 days of nevirapine-containing PEP regimens. Thirty non-HIV-infected individuals developed hepatotoxicity after 8 to 35 days of single-agent nevirapine (n = 8) or a nevirapine-containing PEP regimen (n = 22). Findings included ECOG grade 3 or 4 hepatotoxicity (n = 14), fevers (n = 11), skin rashes (n = 8), eosinophilia (n = 6), and fulminant hepatic necrosis requiring an orthotopic liver transplant (n = 1). Rates of severe hepatotoxicity (grade 3 or 4) in non-HIV-infected individuals ranged from 10% (4/41) to 62% (5/8). Liver biopsy material from 2 individuals was consistent with a hypersensitivity syndrome. CONCLUSIONS: Serious hepatic and cutaneous toxicities can occur in non-HIV-infected individuals who receive short-term nevirapine therapy. The rate of severe hepatotoxicity appears to be greater in non-HIV-infected individuals than in HIV-infected persons and may be associated with higher CD4 counts. The use of PEP regimens containing nevirapine should be discouraged.

Adult↗

Tuberculous tenosynovitis.

Tuberculous tenosynovitis is rare and may be overlooked as a cause of chronic tenosynovitis. This report presents a case of a young woman with tuberculosis tenosynovitis of the wrist, and highlights the clinical, imaging, histological, and laboratory features most commonly seen in this disease.

Adult↗

Distribution of Clostridium difficile variant toxinotypes and strains with binary toxin genes among clinical isolates in an American hospital.

Genetic variants of Clostridium difficile have been reported with increasing frequency, but their true incidence is unknown. C. difficile strains have been classified into variant toxinotypes according to variations in the pathogenicity locus encoding the major virulence factors, toxins A and B. Some strains produce an additional toxin, binary toxin CDT. This survey of clinical isolates (153) from patients in a single hospital set out to ascertain the distribution of variant toxinotypes and strains possessing binary toxin genes. A PCR-RFLP-based method of toxinotyping identified 123 (80.4 %) isolates as toxinotype 0, 13 (8.5 %) strains as non-toxigenic and 17 (11.1 %) as belonging to variant toxinotypes. Binary toxin genes were amplified by PCR in nine strains (5.8 %), all of which were variant toxinotypes. Toxin variants of C. difficile are pathogenic and commonly isolated and need to be considered when evaluating new diagnostic testing strategies for C. difficile disease.

ADP Ribose Transferases↗

Prevention of fatal Clostridium difficile-associated disease during continuous administration of clindamycin in hamsters.

Clostridium difficile-associated disease (CDAD) due to toxigenic strains is prevented in hamsters by colonization by nontoxigenic C. difficile after administration of clindamycin (Cm). To prevent CDAD during treatment with antibiotics, we gave a Cm-resistant nontoxigenic C. difficile strain, M13 (minimal inhibitory concentration [MIC], >256 microg/mL), and a Cm-susceptible strain, M3 (MIC, 0.5 microg/mL), to hamsters receiving Cm daily for days 1-5. Either M13 or M3 was given orogastrically (1 x 10(6) spores/day) to each hamster in 3 groups of 5 each, on either day 3, days 3-5, or days 3-7. M13 colonized at a higher rate and faster than did M3 (P<.001). When hamsters were challenged by toxigenic strain B1 on days 5, 7, or 9, M13 prevented CDAD in 100% of the hamsters. M3 protected no hamsters challenged by B1 on day 5, 20% on day 7, and 100% on day 9. M13 contains the erm(B) resistance gene but not the mobilizable element Tn5398. The benefits of use of Cm-resistant nontoxigenic C. difficile to prevent CDAD must be balanced against the risk that resistance might be transferred to other enteric bacteria.

Adhesins, Bacterial↗

Pseudo-SARS.

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Adult↗

Eosinophilic Meningitis.

Eosinophilic meningitis (EM) is a distinct clinical entity that may have infectious and noninfectious causes. Worldwide, infection with the helminthic parasite, Angiostrongylus cantonensis, is the most common infectious etiology. Historically, this infection has been acquired through ingestion of competent intermediate and paratenic (carrier) hosts or contaminated food in Southeast Asia and the Pacific Islands. A recent outbreak of A. cantonensis-associated EM among US travelers to Jamaica and subsequent parasitologic surveys of local snails and rats confirm earlier case reports and engender a wider appreciation of the Caribbean islands as a new region for endemic A. cantonensis infections. Clinically, eosinophilia is not always present in the cerebrospinal fluid or in the peripheral blood during the initial manifestions of A. cantonensis-associated EM, which include headache and cutaneous sensory alterations. Effective management of patients involves careful attention to the control of intracranial pressure. Steroid therapy without specific anthelmintic treatment is safe and effective in control of headache of adult patients with A. cantonensis-associated EM.

Journal Article↗

Susceptibility of hamsters to human pathogenic Clostridium difficile strain B1 following clindamycin, ampicillin or ceftriaxone administration.

Clindamycin-treated hamsters are predictably susceptible to infection with pathogenic strains of Clostridium difficile. This animal model parallels most of the important aspects of human C. difficile associated disease (CDAD). In humans, almost any antibiotic may precipitate CDAD, but clindamycin, ampicillin and second-and third-generation cephalosporins are implicated most often. We studied the effect of ampicillin and ceftriaxone compared to clindamycin on the susceptibility of hamsters to challenge with C. difficile strain designated B1 by restriction endonuclease typing, an epidemic strain from one hospital. Hamsters were highly susceptible to CDAD following a single dose of clindamycin (30 mg/kg orogastrically) from 1 to 4 days when challenged with 100 colony-forming units (CFU) of spores of epidemic CD strain B1. Ampicillin was given orogastrically at 60 mg/kg to groups of three hamsters that were challenged with 10000 CFU of CD strain B1 spores on days 1-4 following ampicillin. Hundred percent CDAD mortality occurred in all groups on each challenge day. Ceftriaxone, given intraperitoneally at 60 mg/kg, induced susceptibility to CDAD for a more limited time course and at a higher CD inoculum, producing 100% mortality when hamsters were challenged with 10000 CFU of CD strain B1 on day 1 following ceftriaxone, 33% mortality at day 2, and no CDAD when challenged on days 3 and 4 following ceftriaxone. Hamsters are susceptible to CD infection for at least 4 days following ampicillin and clindamycin, but ceftriaxone has a shorter duration of susceptibility.

Journal Article↗

Frequency of binary toxin genes among Clostridium difficile strains that do not produce large clostridial toxins.

Pathogenic strains of Clostridium difficile commonly produce two large clostridial toxins (LCTs), A and B, virulence factors responsible for C. difficile disease. Some strains have been reported to produce an additional toxin, a binary toxin designated CDT. Binary toxin has cytotoxic effects on cells in culture, but its role in human disease is not yet defined. In this study we examined the frequency of binary toxin genes (cdtB and cdtA) among C. difficile isolates that do not produce LCTs (A(-) B(-)) from a large United States-based collection organized by restriction endonuclease analysis (REA) typing. Of 58 strains tested, 9 (15.5%) were cdtB and cdtA positive, including 4 of 46 (8.7%) non-LCT-producing REA groups, with an estimated prevalence of at least 2% of all non-LCT-producing isolates within the collection. Five of the binary toxin-positive strains belonged to toxinotype XI, which does not produce LCTs but has minor parts of the LCT coding region or pathogenicity locus (PaLoc). We describe two new binary toxin-positive variants, one without any remnant of the LCT genes. This previously unknown variation was found in three isolates that were unrelated by REA typing. LCT-negative, binary toxin-positive strains were isolated from symptomatic and asymptomatic patients and from the hospital environment.

ADP Ribose Transferases↗

International typing study of toxin A-negative, toxin B-positive Clostridium difficile variants.

Clinically important strains of Clostridium difficile that do not produce toxin A but produce toxin B and are cytotoxic (A(-)/B(+)) have been reported from multiple countries. In order to compare the relatedness of these strains, we typed 23 A(-)/B(+) C. difficile isolates from the United Kingdom (6 isolates), Belgium (11 isolates), and the United States (6 isolates) by three well-described typing methods. Restriction endonuclease analysis (REA), PCR ribotyping, and serogrouping differentiated 11, 4, and 3 different strain types, respectively. Twenty-one of the 23 A(-)/B(+) variants had a 1.8-kb truncation of the toxin A gene characteristic of toxinotype VIII strains; 20 of the 21 toxinotype VIII-like strains were PCR type 17. PCR type 17 isolates could be differentiated into two separate strain groups by serogrouping and by REA. REA further discriminated these isolates into eight subgroups (REA types). PCR type 17-serogroup F-REA group CF isolates were recovered from all three countries, and one specific REA type, CF4, was recovered from patients with C. difficile disease in the United Kingdom and the United States. C. difficile A(-)/B(+) variants of apparent clonal origin are widely distributed in Europe and North America.

Adult↗

Fatal case of endocarditis due to Weissella confusa.

This is the first reported case of endocarditis due to the Lactobacillus-like vancomycin-resistant gram-positive bacillus Weissella confusa. Full identification and susceptibility testing of Lactobacillus-like organisms recovered in blood culture should be performed for patients with clinical presentations that suggest endocarditis.

Base Sequence↗

Colonization for the prevention of Clostridium difficile disease in hamsters.

Studies suggest that asymptomatic colonization with Clostridium difficile (CD) decreases the risk of CD-associated disease (CDAD) in humans. A hamster model was used to test the efficacy of colonization with 3 nontoxigenic CD strains for preventing CDAD after exposure to toxigenic CD. Groups of 10 hamsters were given 10(6) nontoxigenic CD spores 2 days after receiving a single dose of clindamycin. Five days later, the hamsters were given 100 spores of 1 of 3 toxigenic CD strains previously shown to cause mortality within 48 h. Each nontoxigenic strain prevented disease in 87%-97% of hamsters that were challenged with toxigenic strains. Failure to prevent CDAD was associated with failure of colonization with nontoxigenic CD. Colonization with nontoxigenic CD strains is highly effective in preventing CDAD in hamsters challenged with toxigenic CD strains, which suggests that use of a probiotic strategy for CDAD prevention in humans receiving antibiotics might be beneficial.

Animals↗