2 resultados para Synonymous
em Universidade Complutense de Madrid
Resumo:
Mycobacterium bovis is the etiological agent of tuberculosis in domestic and wild animals. Its involvement as a human pathogen has been highlighted again with the recent descriptions of transmission through dairy products (18), reactivation or primary infection in human immunodeficiency virus-infected patients (5), and association with meat industry workers, animal keepers, or hunters (3). Strains resistant to antituberculous drugs (M. bovis is naturally resistant to pyrazinamide) pose an additional risk (2). Several studies have demonstrated that mutations in target genes are associated with resistance to antituberculous drugs (4, 7, 10, 11, 16). However, most of them have been developed in Mycobacterium tuberculosis strains and limited data are available regarding M. bovis isolates. The aim of this study was to characterize by sequencing the main genes involved in antibiotic resistance in two multidrug-resistant (MDR) M. bovis isolates in a human outbreak detected in a hospital in Madrid that subsequently spread to several countries (5, 6, 15). The isolates were resistant to 11 drugs, but only their rpoB and katG genes have been analyzed so far (1, 14). We studied the first (93/R1) and last (95/R4) M. bovis isolates of this nosocomial outbreak, characterized by spoligotyping as SB0426 (hexacode 63-5F-5E-7F-FF-60 in the database at www.mbovis.org) (1, 13). Several genes involved in resistance to isoniazid (katG, ahpC, inhA, and the oxyR-ahpC intergenic region), rifampin (rpoB), streptomycin (rrs, rpsL), ethambutol (embB), and quinolones (gyrA) were studied. These genes, or fragments of genes, were amplified and sequenced as previously described (12). The sequence analysis revealed polymorphisms in five (ahpC, rpoB, rpsL, embB, and gyrA) out of nine analyzed genes (Table 1). Nucleotide substitutions in four genes cause a change in the encoded amino acid. Two additional synonymous mutations in ahpC and rpsL differentiated the first and last isolates from the outbreak.
Resumo:
On the basis of the knowledge that the entheses between the plantar fascia and the calcaneus may exhibit a varied pathology, we considered the need to value the pathological factors by illustrating the anatomical changes in the Plantar Fascia Syndrome (PFS) with easy-to-obtain images which allowed us to substantiate our claims. Accordingly, we analized the anatomical (Orts Llorca, 1977; Llusá, 2007; Sobotta, 2007; Domenech Mateu, 2012; Rodriguez Baeza 2012) and biomechanical (Arandes, 1956; Viladot 1979; Caturla, 2001; Safe, 2001) literature in order to better know the location of the pathology and also to assess the functional reasons that could favor this disease. A study of the affected area by Nuclear Magnetic Resonance (NMR) revealed the presence of bone affections such as bone edema, subchondral lesions and several other bone pathologies together with fascia intrinsic injuries such as myxoid degeneration, intrasubstance fissures and perifascial edematous lesions (Larroca, 2013; Conejero, 2014). Injuries not properly treated during the acute phase can evolve into chronic processes which, month after month, become ever more difficult to resolve. In addition, as seen throughout this study, there are changes in the anatomical normality of the foot usually associated with pathological conditions of the plantar fascia. Once the pathological aspects of PFS are identified and their location is established, clinical manifestations should be registered in order to define this syndrome. Pain is the main symptom in patients with PFS and is associated, in many occasions, with tightness or stiffness of the plantar area, limited mobility of the arch of the ankle and, inevitably, a progressive functional deterioration. Thus, that sharp and stabbing pain felt when one puts the foot on the floor after a period of rest located in the front lower face of the heel and irradiating and/or projecting to the middle of the sole of the foot would be synonymous with Plantar Fascia Syndrome (PFS)...