Biofilm Formation by Escherichia coli Isolated from Urinary Tract Infections from Aguascalientes, Mexico

Author:

Ramírez Castillo Flor Yazmín1,Guerrero Barrera Alma Lilian1ORCID,Harel Josée2,Avelar González Francisco Javier3ORCID,Vogeleer Philippe4,Arreola Guerra José Manuel5ORCID,González Gámez Mario6

Affiliation:

1. Laboratorio de Biología Celular y Tisular, Departamento de Morfología, Centro de Ciencias Básicas, Universidad Autónoma de Aguascalientes, Aguascalientes 20100, Mexico

2. Département de Pathologie et de Microbiologie, Centre de Recherche en Infectologie Porcine et Avicole, Faculté de Médecine Vétérinaire, Université de Montréal, Saint-Hyacinthe, QC J2S 7C6, Canada

3. Laboratorio de Estudios Ambientales, Departamento de Fisiología y Farmacología, Centro de Ciencias Básicas, Universidad Autónoma de Aguascalientes, Aguascalientes 20100, Mexico

4. Toulouse Biotechnology Institute, INSA, UPS, Université de Toulouse, 31077 Toulouse, France

5. Departamento de Nefrología, Hospital Centenario Miguel Hidalgo, Aguascalientes 20259, Mexico

6. Departamento de Infectología, Hospital Centenario Miguel Hidalgo, Aguascalientes 20259, Mexico

Abstract

Uropathogenic Escherichia coli (UPEC) strains are among the leading causes of urinary tract infections (UTIs) worldwide. They can colonize the urinary tract and form biofilms that allow bacteria to survive and persist, causing relapses of infections and life-threatening sequelae. Here, we analyzed biofilm production, antimicrobial susceptibility, virulence factors, and phylogenetic groups in 74 E. coli isolated from diagnosed patients with UTIs to describe their microbiological features and ascertain their relationship with biofilm capabilities. High levels of ceftazidime resistance are present in hospital-acquired UTIs. Isolates of multidrug resistance strains (p = 0.0017) and the yfcV gene (p = 0.0193) were higher in male patients. All the strains tested were able to form biofilms. Significant differences were found among higher optical densities (ODs) and antibiotic resistance to cefazolin (p = 0.0395), ceftazidime (p = 0.0302), and cefepime (p = 0.0420). Overall, the presence of fimH and papC coincided with strong biofilm formation by UPEC. Type 1 fimbriae (p = 0.0349), curli (p = 0.0477), and cellulose (p = 0.0253) production was significantly higher among strong biofilm formation. Our results indicated that high antibiotic resistance may be related to male infections as well as strong and moderate biofilm production. The ability of E. coli strains to produce biofilm is important for controlling urinary tract infections.

Funder

Universidad Autónoma de Aguascalientes

Fonds de la recherché du Québec en Nature et Technologies

CONAHCYT

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

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