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Query: UMLS:C0032285 (pneumonia)
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Sixty nosocomial infections caused by Pseudomonas aeruginosa and Acinetobacter baumannii resistant to aminoglycosides, cephalosporins, quinolones, penicillins, monobactams, and imipenem were treated with colistin (one patient had two infections that are included as two different cases). The infections were pneumonia (33% of patients), urinary tract infection (20%), primary bloodstream infection (15%), central nervous system infection (8%), peritonitis (7%), catheter-related infection (7%), and otitis media (2%). A good outcome occurred for 35 patients (58%), and three patients died within the first 48 hours of treatment. The poorest results were observed in cases of pneumonia: only five (25%) of 20 had a good outcome. A good outcome occurred for four of five patients with central nervous system infections, although no intrathecal treatment was given. The main adverse effect of treatment was renal failure; 27% of patients with initially normal renal function had renal failure, and renal function worsened in 58% of patients with abnormal baseline creatinine levels. Colistin may be a good therapeutic option for the treatment of severe infections caused by multidrug-resistant P. aeruginosa and A. baumannii.
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PMID:Intravenous colistin as therapy for nosocomial infections caused by multidrug-resistant Pseudomonas aeruginosa and Acinetobacter baumannii. 1222 36

Pseudomonas aeruginosa is a non-capsulate and non-sporing gram-negative bacillus that most commonly affects the lower respiratory system in humans. Burkholderia (previously Pseudomonas) cepacia has emerged as an important respiratory pathogen in patients with cystic fibrosis (CF). The ability of P. aeruginosa to persist and multiply in moist environments and equipment, such as humidifiers in hospital wards, bathrooms, sinks and kitchens, maybe of importance in cross-infection. P. aeruginosa infections of the lower respiratory tract can range in severity from colonisation (without an immunological response) to a severe necrotising bronchopneumonia. Infection is seen in patients with CF and other chronic lung diseases such as non-CF bronchiectasis. In patients with CF, once P. aeruginosa is established in the airways it is almost impossible to eradicate, but prior to this, aggressive treatment can delay the development of chronic infection. 30 to 40% of the present paediatric population with CF will have chronic pseudomonal infection. B. cepacia has a particular predisposition to infect patients with CF and may be distinguished from P. aeruginosa by accelerated lung disease in about one- third of patients. Overwhelming septicaemia and necrotising pneumonia are well described (cepacia syndrome); events that are rare with P. aeruginosa. With the propensity for social cross-infection, segregation policies have been accepted as means of controlling outbreaks. A number of antipseudomonal agents are available. The most commonly used are the extended-spectrum penicillins, aminoglycosides, cephalosporins, fluoroquinolones, polymixins and the monobactams. An aminoglycoside with a beta-lactam penicillin is usually considered to be the first line treatment. No trial has shown any significant clinical advantage of any particular combination regimen over another. The emergence of resistance continues to be a concern. Pipericillin, piperacillin/tazobactam and meropenem have good but equivalent antibacterial activity against P. aeruginosa. However, B. cepacia is characterised by in vitro resistance to colistin (colomycin), aminoglycosides and ciprofloxacin but better susceptibility to ceftazidime. Nebulised delivery of antipseudomonal antibiotics is thought to prevent recurrent exacerbations, reduce antibiotic usage and maintain lung function, particularly in patients with CF. Colistin, tobramycin and gentamicin are currently the most commonly prescribed nebulised antibiotics. Much effort is directed at treating chronic P. aeruginosa infection but as chronic infection is seldom if ever eradicated when first established, prevention is preferable. Early intensive treatment for P. aeruginosa infection is advocated in order to maintain pulmonary function and postpone the onset of chronic P. aeruginosa infection.
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PMID:The treatment of respiratory pseudomonas infection in cystic fibrosis: what drug and which way? 1112 22

Acinetobacter spp. are predominantly nosocomial pathogens of growing importance. One of their important features is antimicrobial resistance that includes beta-lactams, aminoglycosides and quinolones. Imipenem, considered the most effective drug against Acinetobacter spp., is not universally active against clinical isolates and therapeutic options are necessary. In vitro studies demonstrate the activity of beta-lactamase inhibitors with direct antimicrobial activity, polymyxins, doxycycline and rifampin. Synergy of various combinations has been demonstrated in vitro. Experimental models of infection in mice and rabbits show the efficacy of rifampin and doxycycline. Colistin did not lead to good results in a mouse pneumonia model. There are no randomised, controlled studies on the treatment of Acinetobacter spp. infections. Retrospective comparative studies suggest that ampicillin-sulbactam may be comparable to imipenem in the treatment of pneumonia and bacteraemia. There are a few uncontrolled studies using ampicillin-sulbactam and one study with colistin with results that suggest that they may be acceptable options to treat multi-resistant infections.
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PMID:Treatment of Acinetobacter spp infections. 1287 37

Serious infection due to strains of Pseudomonas aeruginosa that exhibit resistance to all common antipseudomonal antimicrobials increasingly is a serious problem. Colistin was used as salvage therapy for 23 critically ill patients with multidrug-resistant P. aeruginosa infection. Twenty-two patients who had septic shock (n=14) and/or renal failure (n=21) received mechanical ventilatory support at baseline. The most common types of infection were pneumonia (n=18) and intra-abdominal infection (n=5). Colistin was administered for a median of 17 days (range, 7-36 days). Seven patients died during therapy, at a median of 17 days (range, 4-26 days) after initiation of treatment. A favorable clinical response was observed in 14 patients (61%); only 3 patients experienced relapse. Bacteremia was the only significant factor associated with treatment failure (P=.02). One patient manifested diffuse weakness that resolved after temporary cessation of colistin therapy. Colistin provides an important salvage therapeutic option for patients with otherwise untreatable serious P. aeruginosa infection.
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PMID:Use of parenteral colistin for the treatment of serious infection due to antimicrobial-resistant Pseudomonas aeruginosa. 1461 88

A retrospective case series study was performed in a 30-bed general intensive care unit (ICU) of a tertiary care hospital to assess the effectiveness and safety of colistin in 43 critically ill patients with ICU-acquired infections caused by multiresistant Gram-negative bacteria. Various ICU-acquired infections, mainly pneumonia and bacteraemia caused by multiresistant strains of Pseudomonas aeruginosa and/or Acinetobacter baumannii, were treated with colistin. Good clinical response (cure or improvement) was noted in 74.4% of patients. Deterioration of renal function occurred in 18.6% of patients during colistin therapy. Nephrotoxicity was elevated significantly in those patients with a history of renal failure (62.5%). All-cause mortality amounted to 27.9%. In this group of critically ill patients, an age of >50 years (OR, 5.4; 95% CI 1.3-24.9) and acute renal failure (OR, 8.2; 95% CI 2.9-23.8) were independent predictors of mortality. Colistin should be considered as a treatment option in critically ill patients with infection caused by multiresistant Gram-negative bacilli.
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PMID:Colistin treatment in patients with ICU-acquired infections caused by multiresistant Gram-negative bacteria: the renaissance of an old antibiotic. 1600 25

Colistin, an antibiotic almost abandoned for intravenous administration for many years due to its reported toxicity, has been recently reintroduced in clinical practice due to the emergence of multidrug-resistant gram-negative bacteria and the lack of development of new antibiotics to combat them. To assess the safety and effectiveness of intravenous colistin, in combination with other antimicrobial agents, in the treatment of serious infections in patients without cystic fibrosis, a retrospective cohort study in a 450-bed tertiary-care hospital in Athens, Greece, was performed. Patients who were hospitalized from 1 October 2000 to 31 January 2004 and received intravenous colistin for more than 72 h were further analyzed. The primary outcome measure was the in-hospital mortality; secondary end points were the clinical outcome of the infections and the occurrence of colistin toxicity. Fifty patients received intravenous colistin with a median (mean) daily dose of 3 (4.5) million IU for 16.5 (21.3) days for the management of 54 episodes of infections due to multidrug-resistant gram-negative bacteria. The predominant infections were pneumonia (33.3%), bacteremia (27.8%), urinary tract infection (11.1%), and intra-abdominal infection (11.1%). The responsible pathogens were Acinetobacter baumannii (51.9%), Pseudomonas aeruginosa (42.6%), and Klebsiella pneumoniae (3.7%) strains (no pathogen was isolated from one case). In-hospital mortality was 24% (12/50 patients). Clinical response (cure or improvement) of the infection was observed in 66.7% of episodes (36/54). In the studied group, serum creatinine levels were decreased, at the end of colistin treatment, by an average of 0.2 +/- 1.3 mg/dl compared to baseline levels. Deterioration of renal function during colistin therapy was observed in 4/50 patients (8%). Coadministration of other antimicrobial agents with spectrum against gram-negative microorganisms and the absence of a control group constitute the major limitations of this study. The use of intravenous colistin for the treatment of infections due to multidrug-resistant gram-negative bacteria appears to be safe and effective.
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PMID:Combination therapy with intravenous colistin for management of infections due to multidrug-resistant Gram-negative bacteria in patients without cystic fibrosis. 1604 15

A 57-year-old man requiring ventilation after gastric-tube reconstruction (due to oesophageal carcinoma) and a 16-year-old boy with thoracic trauma developed pneumonia caused by Pseudomonas aeruginosa and other pathogens. Their infections persisted during treatment with antibiotics. The antibiotic colistin was added and the clinical condition improved in both patients after 3-4 weeks. Eventually, they both were transferred to a rehabilitation clinic. The use of colistin was abandoned in the 1970s due to alleged nephro- and neurotoxicity. In recent observational studies, the drug appeared to cause fewer toxic side-effects than previously thought. Colistin is only registered for inhaled use for lung infections and for resistant pulmonary infections in patients with cystic fibrosis, but it may also be effective in the treatment of other patients with multidrug-resistant, Gram-negative bacteria.
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PMID:[Colistin as last resort in 2 patients with pulmonary infection with multiresistant nosocomial bacteria]. 1671 67

The spectrum of available therapeutic options has become drastically narrowed in recent years, particularly for nosocomial multidrug-resistant gram-negative pathogens. This therapeutic void has created a resurgence of interest in colistin. In 5 published series since 1999, clinical response rates for pneumonia due to Pseudomonas aeruginosa or Acinetobacter baumannii treated with intravenous colistin have ranged from 25% to 62%, despite high severity of illness at baseline. De novo nephrotoxicity was observed in 8%-36% of patients, despite close attention to both appropriate dosing and duration of treatment. Neurotoxicity, which was commonly described in the old colistin era, has been exceedingly rare in recent experience. Aerosolized therapy as an adjunct to systemic treatment appears promising, but the current published data are much too limited to allow determination of the incremental benefit of the addition of aerosolized treatment to systemic treatment. Colistin is a reasonably safe last-line therapeutic alternative for pneumonia due to multi- or panresistant P. aeruginosa or A. baumannii.
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PMID:Parenteral and inhaled colistin for treatment of ventilator-associated pneumonia. 1689 21

The prospective case series study presented here was conducted to assess the outcome of patients with infections caused by polymyxin-only-susceptible (POS) gram-negative bacteria managed with intravenous colistin. Between July 2003 and April 2005 a total of 27 patients were infected with a POS gram-negative bacterium and received intravenous colistin at a dose of 2 million international units (MIU) (160 mg or 66.7 mg colistin base) every 8 h for a mean (+/-SD) duration of 13.9 (+/-7.5) days. Nine patients had ventilator-associated pneumonia and received, in addition to the intravenous colistin therapy, 1 MIU (80 mg or 33.3 mg colistin base) aerosolized colistin every 12 h for a mean (+/-SD) duration of 13 (+/-6.5) days. The predominant pathogens were Pseudomonas aeruginosa (n = 17) and Acinetobacter baumannii (n = 12); in two patients both pathogens were isolated from one clinical specimen. In-hospital mortality and clinical response were 15% and 85%, respectively. Colistin-associated nephrotoxicity was observed in two of the 27 patients. POS gram-negative pathogens represent a major threat for hospitalized patients. Colistin appears to be an effective and safe treatment, even in patients with severe underlying diseases.
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PMID:Effectiveness and nephrotoxicity of intravenous colistin for treatment of patients with infections due to polymyxin-only-susceptible (POS) gram-negative bacteria. 1695 49

Acinetobacter spp. and Pseudomonas aeruginosa are common pathogens of ventilator-associated pneumonia (VAP). The presentation and outcome of VAP due to Acinetobacter spp. and P. aeruginosa susceptible to carbapenems (Carb-S; imipenem and/or meropenem) and to colistin only (Col-S) were compared in the present retrospective study in three intensive care units. A total of 61 episodes of VAP caused by Acinetobacter spp. or P. aeruginosa were studied, of which 30 isolates were Carb-S and 31 were Col-S. Demographics, worsening of renal function and mortality were not different. The univariate analysis showed that a later onset and a previous episode of VAP, prior antimicrobial therapy for >10 days and previous therapy with carbapenems during the present admission were more frequent in patients with Col-S strains. On multivariate analysis, prior antimicrobial therapy for >10 days and a previous episode of VAP remained significantly associated with Col-S VAP. Approximately 41% of the infections caused by Col-S isolates, but none of those due to Carb-S isolates, had received prior carbapenem therapy. Colistin-susceptible ventilator-associated pneumonia episodes can be effectively treated using colistin without significant renal dysfunction. This susceptibility pattern could be suspected in patients with a previous ventilator-associated pneumonia episode or prior antibiotic therapy for >10 days preceding the present ventilator-associated pneumonia episode.
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PMID:Ventilator-associated pneumonia due to colistin susceptible-only microorganisms. 1805 10


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