PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “CLOSTRIDIUM INFECTIONS”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 73 records · Page 4Linked to original sources

Clostridium perfringens and foodborne infections.

Clostridium perfringens type A food poisoning is one of the more common in the industrialised world. This bacterium is also responsible for the rare but severe food borne necrotic enteritis. C. perfringens enterotoxin (CPE) has been shown to be the virulence factor responsible for causing the symptoms of C. perfringens type A food poisoning. CPE is a single polypeptide chain with a molecular weight of 3.5 kDa that binds to receptors on the target epithelial cells. Through a unique four-step membrane action it finally causes a breakdown in normal plasma membrane permeability properties. Genetic studies of cpe have shown that cpe can be either chromosomal or plasmid-borne and that only a small minority of the global C. perfringens population is cpe positive. CPE expression appears to be transcriptionally regulated during sporulation, at least in part, by regulatory factors that are common to all C. perfringens isolates.

Clostridium Infections↗

[Epidemiology of Clostridium difficile nosocomial infections].

Clostridium difficile accounts for 15-25% of cases of antibiotic-associated diarrhea (AAD) and for virtually all cases of antibiotic-associated pseudo-membranous colitis (PMC). This anaerobic bacterium is also carried in the gastro-intestinal tract of less than 3% of the normal adult population and can be isolated from the feces of 50-70% asymptomatic neonates. Since recent years, C. difficile has been identified as the leading cause of nosocomial diarrhea in adults. Pathogenesis relies on a disruption of the normal bacteria flora of the colon, a colonization with C. difficile and the release of toxins that cause mucosal damage and inflammation. Incidence of C. difficile intestinal disorders varies between 1 to 30 per thousand patient admissions. Risk factors for C. difficile-associated diarrhea include antimicrobial therapy, older age (> 65 years), intensive care, nasogastric tube, anti-acid use, and length of hospital stay. Nosocomial transmission of C. difficile via orofecal route occurs in 3-30% of total patient admissions but it often remains asymptomatic. Environmental contamination and carriage of the organism on the hands of hospital staff are common. Measures that are recommended to reduce cross-infection rely on an accurate and rapid diagnosis, implementation of enteric isolation, use of disposable gloves, hand washing with a suitable disinfectant (e.g. chlorhexidine) and daily environmental disinfection. C. difficile is a common cause of infectious diarrhea and should be therefore systematically investigated in patients with nosocomial diarrhea.

Adult↗

Clostridium difficile infection--a poor prognostic sign in uremic patients?

Uremia has been reported as a risk factor for the occurrence of infection with Clostridium difficile. During the two-year period 1984-86, 110 episodes of Clostridium difficile infection were encountered in 70 patients on a nephrology ward. Sixty-two patients had chronic renal failure and eight had acute renal failure. Sixty-seven of the patients were uremic and were treated with hemodialysis (n = 35), CAPD (n = 21), intermittent peritoneal dialysis (n = 6) or conservatively with a low protein diet (n = 5). Most of the patients were female (n = 41) and elderly (64 +/- 2 years). Malnutrition was common as indicated by low serum albumin concentrations (26 +/- 1 g/l) prior to the Clostridium difficile infection. Clostridium difficile infection was confirmed by stool culture and/or cytotoxin assay. Asymptomatic infections were found in eight patients. The highest relative risks of subsequent Clostridium difficile infection were calculated for patients treated with cephalosporins and isoxazolyl penicillins. All patients were treated with vancomycin, which often resulted in a dramatic improvement. One to six relapses of Clostridium difficile infection were observed in 22 of the patients. Sixty of the original 70 patients died during the five-year follow-up period. Thirty-four patients died during the first year of follow-up. Seven patients were transplanted, two are still on CAPD treatment and one has only moderate chronic renal failure (serum creatinine 200 mumol/l). Elderly debilitated uremic patients are especially susceptible to infection with Clostridium difficile which may be a poor prognostic sign in chronic renal failure.(ABSTRACT TRUNCATED AT 250 WORDS)

Clostridioides difficile↗

Infection control and prevention of Clostridium difficile infection.

Clostridium difficile has become a major problem as a nosocomial pathogen that is associated with the use of antibiotics. In the prevention and control of C. difficile disease it is important that programmes are directed at primary and secondary prevention. The three main elements of prevention are: (i) restricted use of antibiotics; (ii) strict enteric precautions when looking after patients with diarrhoea; and (iii) meticulous cleaning of clinical areas. Although poor handwashing is known to play a key role in the spread of infection, there is evidence that compliance with handwashing protocols is low in many hospitals. Infection control teams need to continue to develop creative education programmes to improve compliance with simple infection control procedures. Consideration needs to be given to ensure that patients have access to handwashing and are well informed about infection prevention. Further work needs to be carried out to establish the efficacy of disinfectants in the environment and the identification of a user-friendly, effective sporicide. The importance of both thorough cleaning with detergents to reduce the number of spores in the environment, and clean equipment for each patient should continue to be emphasized.

Clostridioides difficile↗

Epidemiology of Clostridium difficile-associated infections.

Clostridium difficile is responsible for 15-25% of cases of antibiotic-associated diarrhea (AAD) and for virtually all cases of antibiotic-associated pseudomembranous colitis (PMC). This anaerobic bacterium has been identified as the leading cause of nosocomial infectious diarrhea in adults and can be responsible for large outbreaks. Nosocomial C. difficile infection results in an increased length of stay in hospital ranging from 8 to 21 days. Risk factors for C. difficile-associated diarrhea include antimicrobial therapy, older age (>65 years), antineoplastic chemotherapy and length of hospital stay. Other interventions with high risk associations are enemas, nasogastric tubes, gastrointestinal surgery and antiperistaltic drugs. Prospective studies have shown that nosocomial transmission of C. difficile is frequent but often remains asymptomatic. Patients can be contaminated from environmental surfaces, shared instrumentation, hospital personnel hands and infected roommates. Once an outbreak starts, C. difficile may be spread rapidly throughout the hospital environment where spores may persist for months. Measures that are effective in reducing incidence of C. difficile infections and cross-infection include: (i) an accurate and rapid diagnosis, (ii) appropriate treatment, (iii) implementation of enteric precautions for symptomatic patients, (iv) reinforcement of hand-washing, (v) daily environmental disinfection, and (vi) a restrictive antibiotic policy. C. difficile is a common cause of infectious diarrhea and should be therefore systematically investigated in patients with nosocomial diarrhea.

Anti-Bacterial Agents↗

Clostridium difficile infection in allogeneic stem cell transplant recipients is associated with severe graft-versus-host disease and non-relapse mortality.

We retrospectively evaluated 75 allogeneic stem cell transplant recipients to ascertain the incidence, risk factors and outcome of infection with Clostridium difficile. Ten patients (13%) had Clostridium difficile infection at a median of 38 days (range day -6 to day +72) following the transplant. There was no difference in the duration or severity of diarrhoea in patients with Clostridium difficile infection compared to the uninfected patients and no relationship to the prior antibiotic or chemotherapy usage, age, gender, underlying disease, donor type, CMV serostatus, total body irradiation or time to engraftment. The incidence of viral infections was increased in patients infected with Clostridium difficile (7/10 vs 15/65, P = 0.005, odds ratio 7.7), but the strongest association was with GVHD >grade 2 (5/10 vs 6/65 uninfected patients, P = 0.004, odds ratio 9.8). Patients infected with Clostridium difficile also suffered a higher non-relapse mortality with 7/10 patients succumbing to either GVHD or infections, compared to 19/65 patients in the uninfected group (P = 0.02, odds ratio 5.6). Thus Clostridium difficile infections in our study had a strong association with GVHD and increased non-relapse mortality. It is possible that Clostridium difficile toxin might predispose to increased severity of GVHD leading to an adverse outcome.

Adolescent↗

Fulminant liver failure following infection by Clostridium perfringens.

BACKGROUND: Since the first description of gas gangrene of an internal organ by Fraenkel in 1889, few cases of acute organ failure following Clostridium perfringens infection have been described in the medical literature. Isolated Clostridium perfringens infection with subsequent sepsis syndrome is an extremely rare clinical syndrome. A consecutive pattern of multiple organ failure generally has a very high mortality rate. METHODS: Individual case report and literature review. RESULTS: A 58-year-old male patient developed fulminant necrotic liver failure following a Clostridium perfringens infection. Despite all intensive care measures, including computed tomography-guided drainage, the condition of the patient deteriorated rapidly and the patient died. In this case report, we characterize the symptoms of gas gangrene isolated to the liver and compare the treatment measures instituted with the medical literature. CONCLUSIONS: In our presented case, primary malignant disease of the papilla of Vater and resection by a Whipple procedure with a hepatico-jejunostomy were a decisive cause of the gas gangrene in the liver. The origin is probably ascension up the common hepatic duct of gut-derived bacteria.

Biopsy, Needle↗

Epidemiology and outcome of Clostridium difficile infection and diarrhea in HIV infected inpatients.

Clostridium difficile causes diarrhea in HIV infected patients but reports of prevalence, risk factors, and outcome vary. We studied the impact of C. difficile in 161 HIV infected inpatients admitted to Cook County Hospital. Patients with C. difficile had more hospital admissions in the previous 6 months (p =.04), spent more days in the hospital in the previous 3 months (p =.02), more often had previously received H2 blockers or treatment for Pneumocystis carinii (p <.05), and had a more frequent history of herpesvirus (p =.03) or opportunistic infections (p =.04). C. difficile associated diarrhea (CDAD) was the etiology in 32% of all study patients with diarrhea. Patients with CDAD were hospitalized for longer periods (p =.02) and received more antibiotics (p =.002). C. difficile was frequently present in our HIV infected patients, especially those with advanced HIV disease, but appeared to have little impact on morbidity or mortality.

AIDS-Related Opportunistic Infections↗

[Nosocomial epidemiology and transmission of Clostridium difficile infection].

BACKGROUND: Clostridium difficile is of growing importance as a hospital-acquired pathogen. Pseudomembraneous colitis is the main clinical disease. Transmission and epidemiological features are not yet fully understood. PATIENTS AND METHODS: Stool samples from 1164 individuals (571 women and 593 men) attending were examined for the presence of C. difficile. Follow-up examinations and molecular typing methods were used for the detection nosocomial transmissions. Additionally, hospital-borne environmental samples as well as staff samples were tested. RESULTS: Incidence of C. difficile infection was 8.4%. Nearly all patients (92.9%) had antibiotics given. Using molecular typing nosocomial transmission was evident. Though, environmental samples in general had a low positivity, toilet chairs were contaminated in 15.4% and may be a potential source of transmission. Staff was positive in only one case. CONCLUSIONS: Prevention of infections with C. difficile becomes to be a major threat for the clinical and hygienic management.

Adolescent↗

Chronic Clostridium septicum infection of a tibial fracture: a case report.

An open transverse fracture of the mid-shaft of the tibia of a professional footballer became infected by Clostridium septicum and, after early compression plating, required surgical intervention on three further occasions and extensive antibiotic treatment before healing occurred. Clostridial infection is a recognized complication of open fractures contaminated with soil, and the necrotizing toxins produced by the C. septicum were probably responsible for the persistence of this infection. Infection occurred in less than 1 per cent of our series of 215 operations of compression plating of fresh fractures of the tibial shaft. Infection by clostridium species is a serious complication of open fractures. This patient did not show the spreading inflammation and necrosis, or the marked systemic upset, characteristic of acute clostridial infection, but persistent local infection necessitated prolonged surgical and antibiotic treatment.

Adult↗