| Literature DB >> 29387344 |
Anna Różańska1, Agnieszka Chmielarczyk1, Dorota Romaniszyn1, Grzegorz Majka2, Małgorzata Bulanda1.
Abstract
Background: An increased proportion of Gram-negative bacteria have recently been reported among etiologic agents of infection. In Poland, Acinetobacter baumannii is a big problem for hospitals, especially intensive care units. Touch surfaces made from materials with antimicrobial properties, especially copper alloys, are recommended as a supplementary method of increasing biological safety in the hospital environment. Aim of the study: The objective of this study is to determine the susceptibility to selected copper alloys of three clinical Acinetobacter baumannii strains, one Acinetobacter lwoffi and an A. pittii strain isolated from the hospital environment. Material and method: The modification of the Japanese Standard, which the ISO 22196:2011 norm was used for testing antimicrobial properties of CuZn37, CuSn6 and CuNi18Zn20 and Cu-ETP and stainless steel as positive and negative control, respectively.Entities:
Keywords: Acinetobacter; Antimicrobial copper; Hospital environment
Mesh:
Substances:
Year: 2018 PMID: 29387344 PMCID: PMC5778618 DOI: 10.1186/s13756-018-0300-x
Source DB: PubMed Journal: Antimicrob Resist Infect Control ISSN: 2047-2994 Impact factor: 4.887
Compositions (%) of the tested commercial copper alloys
| Common name | UNS* code | Cu | As | Bi | Cd | Fe | Mn | Al | Ni | P | Pb | Sb | Si | Sn | Zn |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Copper Cu-ETP | C11000 | 99.9 | 0.0 | 0.001 | 0.001 | 0.002 | 0.001 | 0.0 | 0.0 | 0.030 | 0.002 | 0.000 | 0.008 | 0.0 | 0.0 |
| Yellow Brass CuZn37 | C27400 | 63.2 | 0.001 | 0.001 | 0.001 | 0.001 | 0.001 | 0.001 | 0.06 | 0.001 | 0.004 | 0.001 | 0.008 | 0.0 | 36.7 |
| Phosphor Bronze CuSn6 | C51900 | 94.1 | 0.006 | 0.002 | 0.0 | 0.001 | 0.001 | 0.016 | 0.01 | 0.222 | 0.038 | 0.001 | 0.002 | 5.5. | 0.1 |
| Nickel silver CuNi18Zn20 | C75200 | 63.1 | 0.001 | 0.001 | 0.001 | 0.027 | 0.12 | 0.001 | 17.9. | 0.001 | 0.001 | 0.008 | 0.001 | 0.001 | 18.9. |
| Stainless Steel | S30400 | Fe 68.8, C 0.07, Cr 19, Mn 2, N 0.1, Ni 10, P 0.045, S 0.015, Si 1 | |||||||||||||
UNS (Unified Numbering System), ETP Electrolytic Tough Pitch
Tested bacteria inoculum density (CFU/mL) reduction on Cu-ETP, CuSn6, CuZn37, CuNi18Zn20, stainless steel (S. steel), in chosen time periods (T, in minutes)
| CuZn37 | |||||
| Time | AB1605 | AB366 | AB835 | AB70 | ABLW |
| T0 | 6.67E + 05 | 4.17E + 06 | 3.58E + 06 | 4.92E + 06 | 2.22E + 07 |
| T60 | 4.67E + 03 | 2.47E + 06 | 2.78E + 06 | 1.40E + 06 | 1.80E + 06 |
| T120 | 4.17E + 03 | 2.90E + 05 | 1.67E + 06 | 1.67E + 04 | 1.32E + 05 |
| T180 | 2.17E + 03 | 9.17E + 04 | 2.33E + 05 | 2.27E + 04 | 1.95E + 05 |
| T240 | 1.33E + 03 | 1.83E + 04 | 3.50E + 05 | 2.42E + 04 | 1.63E + 05 |
| T300 | 8.33E + 02 | 5.33E + 04 | 3.50E + 06 | 3.57E + 04 | 1.80E + 05 |
| CuSn6 | |||||
| T0 | 6.83E + 08 | 7.50E + 06 | 7.17E + 06 | 9.00E + 06 | 2.93E + 08 |
| T60 | 2.92E + 06 | 3.83E + 03 | 2.23E + 04 | 2.00E + 04 | 7.50E + 04 |
| T120 | 3.33E + 05 | 1.50E + 03 | 4.67E + 03 | 1.13E + 04 | 1.43E + 04 |
| T180 | 4.67E + 05 | 1.33E + 03 | 4.33E + 03 | 5.33E + 03 | 1.73E + 04 |
| T240 | 4.33E + 05 | 3.67E + 03 | 5.00E + 02 | 5.33E + 03 | 1.02E + 04 |
| T300 | 4,33E + 05 | 1.00E + 03 | 2.50E + 03 | 4.00E + 03 | 0.00E + 00 |
| CuNi18Zn20 | |||||
| T0 | 1.13E + 06 | 6.05E + 06 | 4.90E + 06 | 8.67E + 06 | 2.68E+07 |
| T60 | 3.17E + 05 | 8.33E + 04 | 3.13E + 06 | 5.80E + 05 | 2.48E+06 |
| T120 | 3.28E + 04 | 1.58E + 04 | 1.15E + 06 | 4.50E + 05 | 2.43E+05 |
| T180 | 1.02E + 04 | 1.20E + 04 | 4.80E + 04 | 6.17E + 04 | 2.72E+05 |
| T240 | 1.33E + 03 | 7.50E + 03 | 1.62E + 04 | 4.00E + 04 | 1.37E+05 |
| T300 | 8.33E + 02 | 7.33E + 03 | 4.83E + 03 | 6.67E + 04 | 1.22E+05 |
| Cu | |||||
| T0 | 7.67E + 06 | 5.17E + 06 | 2.37E + 06 | 5.80E + 06 | 5.45E+07 |
| T60 | 1.17E + 04 | 7.33E+03 | 6.67E+02 | 1.01E + 07 | 8.83E+04 |
| T120 | 3.50E + 03 | 6.67E + 02 | 3.33E + 02 | 5.62E+05 | 1.67E+04 |
| T180 | 3.33E + 02 | 0.00E + 00 | 1.50E + 03 | 3.85E + 05 | 5.00E+02 |
| T240 | 1.00E + 00 | 0.00E + 00 | 0.00E + 00 | 3.00E + 04 | 0.00E+00 |
| T300 | 1.00E + 00 | 0.00E + 00 | 0.00E + 00 | 1.00E + 03 | 0.00E+00 |
| Stainless steel | |||||
| T0 | 4.83E + 06 | 2.33E + 06 | 3.65E + 06 | 6.00E + 06 | 4.27E + 07 |
| T60 | 3.17E + 06 | 2.00E + 06 | 3.32E + 06 | 4.50E + 06 | 2.15E + 07 |
| T120 | 7.33E + 06 | 1.83E + 06 | 3.52E + 05 | 8.00E + 06 | 8.00E + 05 |
| T180 | 8.50E + 06 | 2.33E + 06 | 3.73E + 05 | 2.00E + 07 | 1.30E + 07 |
| T240 | 1.13E + 07 | 5.83E + 06 | 8.98E + 05 | 3.30E + 07 | 1.45E + 07 |
| T300 | 9.83E + 06 | 3.67E + 06 | 5.10E + 05 | 4.62E + 07 | 2.82E + 07 |
Fig. 1Tested bacteria inoculum density (CFU/mL) reduction on metallic materials in chosen time periods, average from of three repetitions for each time point. *** - p < 0.001, ** - p < 0.01, ns – not statistically significant