| Literature DB >> 18538034 |
Carla Fontana1, Marco Favaro, Silvia Minelli, Maria Cristina Bossa, Gian Piero Testore, Francesca Leonardis, Silvia Natoli, Cartesio Favalli.
Abstract
BACKGROUND: The nosocomial infections surveillance system must be strongly effective especially in highly critic areas, such as Intensive Care Units (ICU). These areas are frequently an epidemiological epicentre for transmission of multi-resistant pathogens, like Acinetobacter baumannii. As an epidemic outbreak occurs it is very important to confirm or exclude the genetic relationship among the isolates in a short time. There are several molecular typing systems used with this aim. The Repetitive sequence-based PCR (REP-PCR) has been recognized as an effective method and it was recently adapted to an automated format known as the DiversiLab system.Entities:
Mesh:
Year: 2008 PMID: 18538034 PMCID: PMC2443154 DOI: 10.1186/1471-2334-8-79
Source DB: PubMed Journal: BMC Infect Dis ISSN: 1471-2334 Impact factor: 3.090
A. baumannii: samples and first collection date by each patient.
| Patient 1 | 03-December-2005 | CVC (2), Urine (2); ASB (2) | Infection | |
| Patient 2 | 18-October-2005 | BAL (2), Urine (1), CVC (2), Blood (2) | Infection | |
| Patient 3 | 16-December-2005 | ASB (2) | Colonization | |
| Patient 4 | 21-December-2005 | ASB (1), Blood (6), | Infection | |
| Patient 5 | 11-January-2006 | Urine (1) | Colonization | |
| Patient 6 | 05-May-2006 | ASB (2) | Colonization | |
| Patient 7 | 08-May-2006 | Blood (3), ASB (1), Urine (5) | Infection | |
| Patient 8 | 18-June-2006 | ASB(1), CVC(1), Blood(5) | Infection | |
| Patient 9 | 22-June-2006 | ASB(3), Blood(2) | Infection | |
| Patient 10 | 12-July-2006 | Stool(1) | Colonization | |
| Patient 11 | 22-July-2006 | ASB(3), BAL(1), CVC(2) SW(1) | Colonization | |
| Patient 12 | 26-July-2006 | Urine(1) | Colonization | |
| Patient 13 | 28-July-2006 | ASB(1) | Colonization |
ASB: endothracheal aspirates, BAL:bronchoalveoar lavage, CVC: central venous chateter, SW: swab wound.
Figure 1Dendrogram and similarity matrix for . 1–13 = sub clones from 13 patients. 14 = an unrelated strain of A. baumannii, not from ICU patients.
Figure 2REP-PCR profiles and similarity matrix of the environmental sub clones. 1 = strain cultured from the ventilator of bed no.1; 2, 6, 11 = strain cultured from the floor near the patient beds no.1, 3,4 3, 9 = strain cultured from the desk surfaces of beds no.4 and 7; 4 = strain cultured from buttons on the ventilator of bed no.3; 5, 12 = strain cultured from ventilator keyboard of bed no.3 and 6; 7 = strain cultured from edge side of bed no.8; 8 = strain cultured from drawers of the bedside table near bed no.5; 10 = strain cultured from service desk near bed no.1; 13 = strain cultured from the floor at the entrance of ICU; 14 = strain cultured from folder of medical record of patient in the bed no.1. 15 = strain cultured from monitor keyboard of bed no.3.
Figure 3Rep-PCR profiles of the environmental – as well as patients' sub clones. 1 = patient's sub clone 9; 2 = environmental-sub clone1; 3 = environmental-sub clone 6; 4 = environmental-sub clone 5; 5 = patient's sub clone 5; 6 = patient's sub clone 6; 7 = patient's sub clone 7; 8 = patient's sub clone 8; 9 = environmental-sub clone 7; 10 = patient's sub clone 1; 11 = patient's sub clone 2; 12 = patient's sub clone 3; 13 = patient's sub clone 4; 14 = patient's sub clone 10; 15 = patient's sub clone 11; 16 = environmental-sub clone 9; 17 = environmental-sub clone 8; 18 = environmental-sub clone 10; 19 = environmental-sub clone 11; 20 = environmental-sub clone 12; 21 = environmental-sub clone 3; 22 = environmental-sub clone 4; 23 = environmental-sub clone 2; 24 = patient's sub clone 12; 25 = patient's sub clone 13; 26 = environmental-sub clone 13; 27 = environmental-sub clone 14; 28 = environmental-sub clone 15.