| Literature DB >> 22260454 |
Pankaj Baral1, Sanjiv Neupane, Bishnu Prasad Marasini, Kashi Ram Ghimire, Binod Lekhak, Basudha Shrestha.
Abstract
BACKGROUND: Urinary Tract Infection (UTI) is one of the most common infectious diseases and people of all age-groups and geographical locations are affected. The impact of disease is even worst in low-resource developing countries due to unaware of the UTIs caused by multidrug-resistant (MDR) pathogens and the possibility of transfer of MDR traits between them. The present study aimed to determine the prevalence of MDR bacterial isolates from UTI patients, the antibiotic resistance pattern and the conjugational transfer of multidrug resistance phenotypes in Escherichia coli (E. coli).Entities:
Year: 2012 PMID: 22260454 PMCID: PMC3296586 DOI: 10.1186/1756-0500-5-38
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
Distribution of MDR bacterial uropathogens
| Organism | In hospitalized-patient | In out-patient | Total | |||
|---|---|---|---|---|---|---|
| No of isolates (%) | No of MDR isolates (%) | No of isolates (%) | No of MDR isolates (%) | No of isolates (% of total) | No of MDR isolates (%) | |
| 1 | 1 (100) | 1 | 0(0) | 2 (0.9) | 1 (50) | |
| 5 | 5 (100) | 6 | 3 (50) | 11 (5) | 8 (72.7) | |
| 0 | 0 (0) | 4 | 1 (25) | 4 (1.8) | 1 (25) | |
| 11 | 8 (72.7) | 167 | 60 (35.9) | 178 (81.3) | 68 (38.2) | |
| 0 | 0 (0) | 2 | 1 (50) | 2 (0.9) | 1 (50) | |
| 0 | 0 (0) | 4 | 1 (25) | 4 (1.8) | 1 (25) | |
| 0 | 0 (0) | 2 | 0 (0) | 2 (0.9) | 0 (0) | |
| 0 | 0 (0) | 3 | 0 (0) | 3 (1.4) | 0 (0) | |
| 0 | 0 (0) | 2 | 2 (100) | 2 (0.9) | 2 (100) | |
| 1 | 1(100) | 0 | 0(0) | 1 (0.5) | 1 (100) | |
| 0 | 0(0) | 1 | 1 (100) | 1 (0.5) | 1 (100) | |
| CoNS* | 1 | 1 (100) | 5 | 2 (40) | 6 (2.7) | 3 (50) |
| 1 | 1(100) | 2 | 2 (100) | 3 (1.4) | 3 (100) | |
| Total | 20 | 17 (85) | 199 | 73 (36.7) | 219 (100) | 90 (41.1) |
*CoNS = coagulase-negative staphylococci
Number (percent) of Gram-negative urinary pathogens resistant to antimicrobial agents
| Antibiotic | No of resistant isolates/total isolates (% resistance) | ||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|
| Amoxycillin(Am) | 99/178(55.6) | 6/6(100) | 1/3(33.3) | NT | NT | 8/11(72.7) | 1/2(50) | 1/1(100) | NT | 116/201 | |
| Cefotaxime(Ce) | 54/178(30.3) | 2/6(33.3) | 0/3(0) | 1/2(50) | 1/4(25) | 7/11(63.6) | 1/2(50) | 0/1(0) | 0/2(0) | 66/209 | |
| Ciprofloxacin(Cf) | 64/178(35.9) | 1/6(16.7) | 0/3(0) | 1/2(50) | 0/4(0) | 6/11(54.5) | 0/2(0) | 1/1(100) | 0/2(0) | 73/209 | |
| Cefixime(Cfx) | 54/178(30.3) | 2/6(33.3) | 0/3(0) | 2/2(100) | 1/4(25) | 8/11(72.7) | 1/2(50) | 0/1(0) | 0/2(0) | 68/209 | |
| Cotrimoxazole(Co) | 97/178(54.4) | 2/6(33.3) | 1/3(33.4) | 2/2(100) | 1/4(25) | 8/11(72.7) | 1/2(50) | 0/1(0) | 0/2(0) | 112/209 | |
| Nitrofurantoin(Nf) | 14/178(7.9) | 4/6(66.6) | NT | NT | 1/4(25) | 5/11(45.4) | 2/2(100) | 1/1(100) | NT | 27/202 | |
| Norfloxacin(Nx) | 65/178(36.5) | 1/6(16.7) | 0/3(0) | 2/2(100) | 0/4(0) | 6/11(54.5) | 1/2(50) | 1/1(100) | 0/2(0) | 76/209 | |
| Ofloxacin(Of) | 63/178(35.4) | 1/6(16.7) | 0/3(0) | 2/2(100) | 0/4(0) | 4/11(36.4) | 1/2(50) | 1/1(100) | 0/2(0) | 72/209 | |
| Amikacin(Ak) | 3/48(6.2) | 0/1(0) | NT | 0/2(0) | NT | 4/5(80) | 0/2(0) | 0/1(0) | NT | 7/59 | |
| Chloramphenicol(C) | 13/48(27.1) | 1/1(100) | NT | 2/2(100) | NT | 5/5(100) | 0/2(0) | 0/1(0) | NT | 21/59 | |
| Ceftazidime(Ca) | 48/48(100) | 1/1(100) | NT | 2/2(100) | NT | 5/5(100) | 1/2(50) | 0/1(0) | NT | 57/59 | |
| Ceftriaxone(Ci) | 48/48(100) | 0/1(0) | NT | 2/2(100) | NT | 3/5(60) | 1/2(50) | 0/1(0) | NT | 54/59 | |
| Gentamycin(G) | 35/48(72.9) | 1/1(100) | NT | 2/2(100) | NT | 5/5(100) | 0/2(0) | 0/1(0) | NT | 43/59 | |
The numbers within non-parentheses indicate the number of resistant isolates by total number isolates and the numbers within parentheses indicate the percent resistance
NT: not tested
Distribution of MDR isolates resistant to indicated class range of antibiotics
| Organism | 3-4 classes | 5-6 classes | ≥7 classes | Total | ||||
|---|---|---|---|---|---|---|---|---|
| 1 | 50 | 0 | 0 | 0 | 0 | 1 | 50 | |
| 6 | 54.5 | 1 | 9.1 | 1 | 9.1 | 8 | 72.7 | |
| CoNS* (n = 6) | 1 | 16.7 | 2 | 33.3 | 0 | 0 | 3 | 50 |
| 54 | 30.3 | 13 | 7.3 | 1 | 0.6 | 68 | 38.2 | |
| 1 | 25 | 0 | 0 | 0 | 0 | 1 | 25 | |
| 1 | 50 | 0 | 0 | 0 | 0 | 1 | 50 | |
| 1 | 25 | 0 | 0 | 0 | 0 | 1 | 25 | |
| 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | |
| 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | |
| 0 | 0 | 2 | 100 | 0 | 0 | 2 | 100 | |
| 1 | 100 | 0 | 0 | 1 | 100 | |||
| 0 | 0 | 0 | 0 | 1 | 100 | 1 | 100 | |
| 2 | 66.7 | 1 | 33.3 | 0 | 0 | 3 | 100 | |
| Total (n = 219) | 68 | 31 | 19 | 8.7 | 3 | 1.4 | 90 | 41.1 |
*CoNS = coagulase-negative staphylococci
Conjugational transfer of multidrug resistance phenotypes in E. coli
| Donor | Transconjugant | cMIC (μg/ml) of antibiotics towards donors and transconjugants | aConjugation frequency | |||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Am, Cf, Ce, Cfx, Co, Of, Nx, | 32.5 | - | Am, Cf, Cfx, Co, Of, Nx | 32.5 | - | D | > 512 | > 256 | > 512 | 128 | 512 | 0.3 × 10-7 | ||
| T | > 512 | 64 | > 512 | 64 | 512 | |||||||||
| Am, Cf, Ce, Cfx, Co, Of, Nx, | 32.5 | + | Am, Cf, Cfx, Co, Of, Nx | 32.5 | + | D | > 512 | > 256 | > 512 | > 256 | > 512 | 0.6 × 10-7 | ||
| T | > 512 | 64 | 512 | 64 | > 512 | |||||||||
| Am, Cf, Co, Nx, Na, Of, Ca, Ci | 32.5 | + | Am, Cf, Cfx, Co, Of, Nx | 32.5 | + | D | > 512 | > 256 | > 512 | > 256 | > 512 | 1.5 × 10-7 | ||
| T | > 512 | 128 | > 512 | 64 | 512 | |||||||||
| Am, Cf, Ce, Cfx, Co, Of, Nx, | 32.5 | - | Am, Cf, Cfx, Co, Of, Nx | 32.5 | - | D | 512 | > 256 | > 512 | > 256 | > 512 | 0.6 × 10-7 | ||
| T | 512 | 64 | 512 | 64 | 512 | |||||||||
| Am, Cf, Ce, Cfx, Co, Of, Nx, | 32.5, 4.7 | + | Am, Cf, Cfx, Co, Of, Nx, | 32.5 | + | D | > 512 | 512 | > 256 | > 512 | > 64 | > 256 | > 512 | 1.2 × 10-7 |
| T | > 512 | 512 | 128 | 512 | > 64 | 128 | > 512 | |||||||
| Am, Cf, Ce, Cfx, Co, Of, Nx, | 51 | + | Am, Cf, Cfx, Co, Of, Nx | 51 | - | D | 512 | > 128 | 512 | 128 | 512 | 0.5 × 10-7 | ||
| T | 256 | 32 | 256 | 32 | 512 | |||||||||
| Am, Cf, Ce, Cfx, Co, Of, Nx, | 38 | + | Am, Cf, Cfx, Co, Of, Nx | 38 | + | D | > 512 | > 256 | > 512 | > 256 | > 512 | 0.8 × 10-7 | ||
| T | > 512 | 64 | > 512 | 64 | > 512 | |||||||||
| Am, Cf, Co, Nx, Ca, Ci | 38 | - | Am, Cf, Cfx, Co, Of, Nx | 38 | - | D | 512 | 128 | > 512 | 128 | 512 | 0.5 × 10-7 | ||
| T | 256 | 64 | 256 | 64 | 512 | |||||||||
| Am, Cf, Ce, Cfx, Co, Of, Nx, | 32.5, 6.5 | + | Am, Cf, Cfx, Co, Of, Nx | 32.5, 6.5 | + | D | 512 | 128 | > 512 | 128 | > 512 | 0.3 × 10-7 | ||
| T | 512 | 64 | > 512 | 64 | > 512 | |||||||||
| Am, Cf, Ce, Cfx, Co, Of, Nx, | 32.5 | + | Am, Cf, Cfx, Co, Of, Nx | 32.5 | + | D | > 512 | 128 | > 512 | 128 | > 512 | 1.2 × 10-7 | ||
| T | > 512 | 64 | > 512 | 64 | 512 | |||||||||
aConjugation frequency is the number of transconjugants per donor cell
bESBL = extended-spectrum β-lactamase
cMIC = minimum inhibitory concentration of antibiotic at which visible growth of isolates were inhibited
Am-amoxycillin, Ce-cefotaxime, Cfx-cefixime, Cf-ciprofloxacin, Co-cotrimoxazole, Nf-nitrofurantoin, Nx-norfloxacin, Of-ofloxacin, Ak-amikacin, C-chloramphenicol, Ca-ceftazidime, Ci-ceftriaxone, G-gentamycin, D-donor, T-transconjugant