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Vascular Catheters Impregnated With Antimicrobial Agents Present Knowledge and Future Direction

Published online by Cambridge University Press:  02 January 2015

Issam I. Raad*
Affiliation:
University of Texas, MD Anderson Cancer Center, Section of Infection Control, Houston, Texas
*
Section of Infection Control, University of Texas, MD Anderson Cancer Center, 1515 Holcombe Blvd, Houston, TX 77030
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Abstract

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Type
Editorial
Copyright
Copyright © The Society for Healthcare Epidemiology of America 1997

References

1. Maki, DG, Garman, JK, Shapiro, JM, Ringer, M, Helgerson, RB. An attachable silver-impregnated cuff for prevention of infection with central venous catheters: a prospective randomized multicenter trial. Am J Med 1988;85:307314.CrossRefGoogle ScholarPubMed
2. Trooskin, SZ, Donetz, AP, Harvey, RA, Greco, RS. Prevention of catheter sepsis by antibiotic bonding. Surgery 1985;97:547551.Google ScholarPubMed
3. Bach, A, Bohrer, H, Motsch, J, Martin, E, Geiss, HK, Sonntag, HG. Prevention of bacterial colonization of intravenous catheters by antiseptic impregnation of polyurethane polymers. J Antimicrob Chemother 1994;33:969978.Google ScholarPubMed
4. Sherertz, RJ, Forman, DM, Solomon, DD. Efficacy of dicloxacillin-coated polyurethane catheters in preventing subcutaneous Staphylococcus aureus infection in mice. Antimicrob Agents Chemother 1989;33:11741178.CrossRefGoogle ScholarPubMed
5. Sherertz, RJ, Carruth, A, Hampton, AA, Byron, MP, Solomon, DD. Efficacy of antibiotic-coated catheters in preventing subcutaneous Staphylococcus aureus infection in rabbits. J Infect Dis 1993;167:98106.Google Scholar
6. Greenfeld, JI, Sampath, L, Popilskis, SJ, Brunnert, SR, Stylianos, S, Modak, S. Decreased bacterial adherence and biofilm formation on chlorhexidine and silver sulfadiazine-impregnated central venous catheters implanted in swine. Crit Care Med 1995;23:894900.CrossRefGoogle ScholarPubMed
7. Maki, DG, Wheeler, SJ, Stolz, SM. Study of a novel antisepticcoated central venous catheter. Crit Care Med 1991;19(suppl):99S. Abstract.Google Scholar
8. Kamal, GD, Pfaller, MA, Rempe, LE, Jebson, PJR. Reduced intravascular catheter infection by antibiotic bonding: a prospective, randomized, controlled trial. JAMA 1991;265:23642368.Google Scholar
9. Mermel, LA, Stolz, SM, Maki, DG. Surface antimicrobial activity of heparin-bonded and antiseptic impregnated vascular catheters. J Infect Dis 1993;167:920924.CrossRefGoogle ScholarPubMed
10. Raad, I, Darouiche, R, Hachem, R, Sacilowski, M, Bodey, GP. Antibiotics and prevention of microbial colonization of catheters. Antimicrob Agents Chemother 1995;39:23972400.Google Scholar
11. Raad, I, Darouiche, R, Hachem, R, Mansouri, M, Bodey, GP. The broad spectrum activity and efficacy of catheters coated with minocycline and rifampin. J Infect Dis 1996;173:418424.CrossRefGoogle ScholarPubMed
12. Raad, I, Darouiche, R. Central venous catheters (CVC) coated with minocycline and rifampin (M/R) for the prevention of catheter-related bacteremia (CRB). In: 35th Interscience Conference on Antimicrobial Agents and Chemotherapy; San Francisco, CA; 09 1995. Abstract J7.Google Scholar
13. Ciresi, DL, Albrecht, RM, Volkers, PA, Scholten, DJ. Failure of antiseptic bonding to prevent central venous catheter-related infection and sepsis. Am Surg 1996;62:641646.Google ScholarPubMed
14. Pemberton, LB, Ross, V, Cuddy, P, Kremer, H, Fessler, T, McGurk, E. No difference in catheter sepsis between standard and antiseptic central venous catheters. Arch Surg 1996;131:986989.CrossRefGoogle ScholarPubMed
15. Sherertz, RJ, Stephens, JL, Marosok, RD, et al. The risk of peripheral vein phlebitis associated with chlorhexidine-coated catheters. A randomized, double-blind trial. Infect Control Hosp Epidemiol 1997;18:230236.Google Scholar
16. Carruth, WA, Byron, MP, Solomon, DD, White, WL, Stoddard, GJ, Sherertz, RJ. Subcutaneous catheter-related inflammation in a rabbit model is predictive of peripheral vein phlebitis in human volunteers. J Biomed Mater Res 1994;28:259267.CrossRefGoogle Scholar
17. Pittet, D, Tarara, D, Wenzel, RP. Nosocomial bloodstream infection in critically ill patients: excess length of stay, extra costs, and attributable mortality. JAMA 1994;271:15981601.CrossRefGoogle ScholarPubMed
18. Heiselman, D. Nosocomial bloodstream infection in the critically ill. JAMA 1994;272:18191820. Letter.CrossRefGoogle ScholarPubMed
19. Kirchoff, LV, Sheagren, JN. Epidemiology and clinical significance of blood cultures positive for coagulase-negative staphylococcus. Infect Control 1985;6:479486.Google Scholar
20. Fidalgo, S, Vasquez, F, Mendoza, MC, Perez, F, Mendez, FJ. Bacteremia due to Staphylococcus epidermidis: microbiologic, epidemiologic, clinical, and prognostic features. Rev Infect Dis 1990;12:520528.CrossRefGoogle ScholarPubMed
21. Ringberg, H, Thoren, A, Bredberg, A. Evaluation of coagulasenegative staphylococci in blood cultures: a prospective clinical and microbiological study. Scand J Infect Dis 1991;23:315323.CrossRefGoogle ScholarPubMed
22. Herwaldt, LA, Geiss, M, Kao, C, Pfaller, MA. The positive predictive value of isolating coagulase-negative staphylococci from blood cultures. Clin Infect Dis 1996;22:1420.CrossRefGoogle ScholarPubMed