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A low level of antimicrobial resistance (3.7%) was detected and prevalence of antimicrobial resistance did not differ among super- and low-shedder isolates (P = 0.69), although all super-shedder isolates with antimicrobial resistance (n = 3) were resistant to multiple antimicrobials.
Out of 12m TB cases in 2010, 650,000 were resistant to multiple drugs, according to the World Health Organisation.
About 7% of the isolates were resistant to multiple drugs.
A large proportion of S. enterica Typhimurium isolates were resistant to multiple antimicrobial agents, including ampicillin (90.3%), tetracycline (80.6%), trimethoprim/sulfamethoxazole (74.2%), chloramphenicol (66.1%), cefotaxime (27.4%).
One CTX-M-55-producing isolate and both CTX-M-14 and CTX-M-55-producing isolates belonged to PFGE type D. The majority of S. enterica Typhimurium isolates in our study were resistant to multiple antimicrobial agents, indicating that fewer antibiotics may be useful for treating S. enterica Typhimurium infections.
Two of the Corynebacterium species were resistant to multiple antibiotics.
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stephensi, are resistant to multiple insecticides although resistance varies dramatically between populations, apparently depending on the history of insecticide use and selection.
As both methicillin-sensitive S. aureus (MSSA) and MRSA are resistant to multiple antibiotics, full multiple antibiotic resistance (MAR) profiles are required to aid successful therapy and maintain an understanding of the ever changing dynamics of antimicrobial resistance.
However, the development of drug resistance leads to the emergence of HIV strains that are resistant to multiple anti-AIDS drugs.
Integrase sequence can insert many cassettes coding for different antibiotic resistance, therefore, making a single bacterium possessing it to be resistant to multiple antibiotics.
The versatility and ability of P. aeruginosa to combine different resistance mechanisms has led to emergence of strains that are resistant to multiple antimicrobial drugs, which severely limits therapeutic options for treating infections (8, 9 ).
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