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Susceptibilidad antimicrobiana y enterotoxinas en S= taphylococcus aureus aislado de queso fresco expendido en mercados municipales de la ciudad de Cuenca – Ecuador

 

Antimicrobial susceptibility and enterotoxins in Staphylococcus aure= us isolated from fresh cheese sold in municipal markets in the city of Cuenca - Ecuador

3D"Interfaz
 


1

Katherine Fernanda Farfán Sari

 

https://orcid.org/0009-0006-3412-2200

 

 

Universidad Católica de Cuenca. Facultad de Bioquímica y Farmacia. Cuenca-Azuay. Ecuador.<= o:p>

katherine.farfan.81@est.ucacue.edu.ec

2

Gabriela Rosario Romero Zhagui

 

https://orcid.org/0009-0008-2033-7897

 

 

Universidad Católica de Cuenca. Facultad de Bioquímica y Farmacia. Cuenca-Azuay. Ecuador.<= o:p>

gabriela.romero.92@est.ucacue.edu.ec

3

Jonnathan Gerardo Ortiz Tejedor

 

https://orcid.org/0000-0001-6770-2144

 

 

Universidad Católica de Cuenca. Facultad de Bioquímica y Farmacia. Unidad Académica= de Salud y Bienestar. Cátedra de Microbiología y Biologí= ;a Molecular. Cuenca Azuay. Ecuador.

jonnathan.ortiz@ucacue.edu.ec

&nb= sp;

 

 

 

Art&ia= cute;culo de Investigación Científica y Tecnológica=

Enviado: 22/07/2023=

Revisado: 19/08/2023

Aceptado: 06/09/2023

Publicado:05/10/2023  &= nbsp;

DOI:       https://doi.o= rg/10.33262/anatomiadigital.v6i4.2704                                             

 =

&= nbsp;

 

C&iacu= te;tese:

&= nbsp;

 

Farfán Sari, K. F., Romero Zhagui, G. R., & Ortiz Tejedor, J. G. (2023). Susceptibilidad antimicrobiana y enterotoxinas en Staphylococcus aureus aislado de queso fresco expendido = en mercados municipales de la ciudad de Cuenca – Ecuador. Anatom&iacut= e;a Digital, 6(4), 22-40. https://doi.o= rg/10.33262/anatomiadigital.v6i4.2704

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Esta revista está protegida bajo una licencia Creative Commons Atribución-NoComercial-CompartirIgual 4.0 International. Copia de = la licencia: https://creative= commons.org/licenses/by-nc-sa/4.0/deed.es

 

Palabras claves:

Staphy= lococcus aureus, Enfermedades Transmitidas por Alimentos, nucA, femB, Factores de virulencia.

 

Resumen

Int= roducción. Las bacterias son microorganismos unicelulares causantes de múltiples enfermedades. En la actualidad constituyen un problema de salud pública debido a su alta tasa de resistencia a los antimicrobianos= por diferentes mecanismos. Staphyloco= ccus aureus es una de las especies predominantes en los seres humanos, asociada a factores de virulencia y dentro de estos, destacan enterotoxin= as A, B, C, D, E, siendo causantes de Enfermedades Transmitidas por Alimentos (ETAs). Objetivo. Determinar= la susceptibilidad antimicrobiana y enterotoxinas en Staphylococcus aureus aislado de queso fresco expendido en mercados municipales de la ciudad de Cuenca – Ecuador.&n= bsp; Metodología. La presente investigación se trata = de un estudio de tipo descriptivo, de corte transversal, mediante la aplicación de métodos fenotípicos y moleculares para= la determinación de la susceptibilidad de antimicrobianos, e identificación de enterotoxinas.  Resultados. Mediante técnicas microbiológicas y biología molecular se confirmó, por medio de los genes nucA, femB la presencia de 3 muestras positivas para S. aureus, por otro lado, en la prueba de susceptibilidad obtuvimos un alto porcentaje de resistencia a penicilina de todas las muestras, sin embargo, para clindamicina, eritromicina y cefoxitina resultó completamente sensible, por lo que mediante la amplificación del gen blaZ= se confirmó la resistencia a penicilina. Por otra parte, no se encontró la presencia de enterotoxinas, mediante métodos moleculares. Conclusión. = El 62,5% de las muestras positivas resultaron resistentes a penicilina, confirmado mediante la amplificación del gen blaZ. En contra parte, el 100% resultó sensible para clindamicina, eritromicina y cefoxitina. Área de estudio general: Bioquímica y Farmacia. Área de estudio específica: Microbiologí= a de alimentos y Biología molecular. Tipo de estudio:  Original.

 

 

Keywords:

Staphy= lococcus aureus, Foodborne diseases, nucA, femB, virulence factors.

&= nbsp;

= Abstract

Introduction. As single-celled microorganisms, bacteria are responsible for various diseas= es and are currently a significant public health concern due to their high resistance to antimicrobials through various mechanisms. Staphylococcus aureus, one of the predominant species in huma= ns, is associated with virulence factors, notably enterotoxins A, B, C, D, an= d E, which can cause Foodborne Diseases (FBD). Objective. To determine the antimicrobial susceptibility and presence= of enterotoxins in Staphylococcus au= reus isolated from fresh cheese sold in municipal markets in Cuenca, Ecuador. Methodology. This descriptive, cross-sectional study employs phenotypic and molecular methods to determi= ne antimicrobial susceptibility and identify enterotoxins. Results. Microbiological and molecular biology techniques confirmed the presence of three positive samples for S. aureus using nucA and femB genes. On the other hand, the susceptibility test revealed a high resistance percentage to penicillin in all samples. However, clindamycin, erythromycin, and cefoxitin showed complete sensitivity, so resistance to penicillin was confirmed by amplif= ying the blaZ gene. No enterotoxins were detected using molecular methods. Conclusion. Sixty-two-point fi= ve percent of positive samples showed resistance to penicillin, as confirmed= by blaZ gene amplification. Conversely, 100% demonstrated sensitivity to clindamycin, erythromycin, and cefoxitin.

&nbs= p;

 

 

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Introducción

El Staphylococcus aureus es una bacteria Gram positiva pató= gena que puede llegar a causar infecciones y problemas alimentarios por producción de enterotoxinas (1,2).  Además, este microorganismo es uno de los principales causantes de   la contaminación en l= os alimentos debido a su alta adaptabilidad en diferentes ambientes lo que facilita su crecimiento. Los patógenos microbianos en ali= mentos se han identificado como causantes principales de ETAS, y pueden provocar intoxicación por enterotoxinas (3,4). En la ciudad de Cuenca el cons= umo de quesos frescos es relativamente común, y es consumido de forma masiva, sin embargo, este producto es susceptible a   contaminación microbi= ana: por su manipulación, almacenamiento y su proceso, o por no seguir bu= enas prácticas de manufactura, más conocidas como BPM, ya que, en = este producto, varios de los fabricantes y comerciantes no aplican dichas prácticas.

Por otro lado, la investigación se enfocó en determinar la susceptibilidad antimicrobiana de todas las muestras positivas con Staphylococcus aureus obtenidas a nivel de los centros de expen= dio de los mercados de Cuenca con antibióticos tales como penicilina, cefoxitina eritromicina, clindamicina, ya que dicho microorganismo es capaz= de generar resistencia a estos antibióticos.

Además, se identificaron genes de resistencia blaZ, mecA, vanA, mediante técnicas moleculares, así como, se realizó la búsqueda de enterotoxinas, mediante reacció= n en cadena de la polimerasa a punto final.

Esto conllevo a analizar la cali= dad microbiológica del queso fresco, mediante métodos fenotípicos y moleculares, en base a resultados positivos ya obtenid= os de varios vendedores ambulantes basado en una investigación previa.<= o:p>

Las Enfermedades Transmitidas por Alimentos (ETAs)

Es una enfermedad tóxica e infecciosa causada por el consumo de agua o alimentos contaminados con microorganismos, o sustancias tóxicas que producen estos patógenos, el cual afecta la salud de los individuos que la ingieren= de forma aguda o crónica, a nivel grupal o individual (5,6).  Los principales síntomas en= la ETA son cólicos estomacales, náuseas y diarrea, en los casos más graves se pueden presentar deshidratación, dolor de cabez= a, cambios en la presión arterial, calambres musculares (7).

ETA por Staphylococcus aureus

La intoxicación alimentar= ia por Staphylococcus aureus se da= por diferentes tipos de toxinas entre ellas, citotoxinas, enterotoxinas, toxinas exfoliativas y toxinas del choque tóxico que, si el alimento es mantenido a temperatura ambiente, estas diferentes toxinas pueden estar en cantidades peligrosas en alimentos que están en mal estado (8,9). Los alimentos comúnmente asociados a la intoxicación son las carn= es, huevos, leche y sus derivados como el queso (8,9). Los síntomas por intoxicación por Staphylococ= cus aureus incluyen náuseas, arcadas, cólicos estomacales, vómito y diarrea, los signos aparecen de manera rápida, la gravedad de la enfermedad depende de la susceptibilidad a la toxina, el alimento contaminado consumido y la cantidad. La recuperación puede durar varios días generalmente, pero en los casos graves la mejor&ia= cute;a se extiende mucho más tiempo (8,9).

Resistencia antimicrobiana

La resistencia a los antimicrobi= anos inicia cuando las bacterias, adquieren mecanismos capaces de evadir la acción de los antibióticos dejando de responder a los medicamentos dificultando el tratamiento de infecciones e incrementando el riesgo y propagación que puede poner en riesgo la vida del paciente pudiendo llegar hasta su muerte (10). 

Las cepas de Staphylococcus aureus en la actualidad mantienen amplio rango de resistencia a los antibióticos y se pueden encontrar cepas multirresistentes. Algunos de los antibióticos que generan resistenc= ia son la penicilina, meticilina, vancomicina (10).

La resistencia a la penicilina o= curre por la producción de penicilinasas, este mecanismo es medido por blaZ, gen que codifica para la β-lactamasa de origen plasmídico, por otro lado, la resistencia= a meticilina en Staphylococcus aureus= se da por la síntesis de una proteína de unión a penic= ilina PBP codificada por el gen mecA.= La resistencia a vancomicina es una realidad mediada por la alteración = en la pared celular que atrapa al antibiótico antes de llegar al sitio = de acción el mismo, que codifica en el gen vanA (10,11). 

La OMS declaró la resiste= ncia a los antimicrobianos como una amenaza en salud pública que enfrenta= la humanidad (10,11).

Toxinas de Staphylococcus aureus

Las toxinas presentes en Staphylococcus aureus son sea que codifica= para la enterotoxina A, seb que codi= fica para enterotoxina B, sec que co= difica para la enterotoxina C, see que codifica para la enterotoxina E, se= d que codifica para la enterotoxina D (12).

Enterotoxinas estafilocócicas

Las toxinas estafilocócicas son muy resistentes, y est&aacu= te;n nombradas de manera alfabética (A-O), sin embargo, entre ellos se han establecido 5 tipos, siendo el S. a= ureus el más tolerante a la sal. Son estables y altamente resistentes al calo= r, congelación, cambios de pH e irradiación, es por ello, que al formarse en los alimentos resulta difícil lograr su eliminació= ;n (13,14).  

Las enterotoxinas son proteínas de cadena simple no ramificadas que están compuestas por grandes cantidades de lisina, tirosina, ácido aspártico y ácido glutámico, son las responsables de provocar sínt= omas como diarrea y vómitos a las dos o tres horas de haber consumido el alimento contaminado (13,14).

El objetivo del presente estudio= es determinar la susceptibilidad antimicrobiana y la presencia de enterotoxina= s en Staphylococcus aureus, as&iacut= e; como también, reconocer los genes de resistencia mediante la PCR (reacción de la cadena polimerasa).

Metodología

Se realizará una investigación de campo, de tipo descriptivo y de corte transversal. <= /p>

En el presente estudio se desarrolló un muestreo no probabilístico a partir de un estud= io previo de 60 muestras de queso fresco tomadas en diferentes mercados municipales de la ciudad de Cuenca-Ecuador, en el cual, mediante estudios microbiológicos 8 muestras resultaron positivas para Staphylococcus aureus. En el prese= nte estudio, se emplearon técnicas de biología molecular mediante= la Reacción en Cadena de la Polimerasa (PCR, por sus siglas en inglés), para la identificación de los genes nucA, femB y entero= toxinas.

 

 

Métodos, técnicas e instrumentos de investigación o recolección de datos

&= #9679;      =   Pruebas de Susceptibilidad Antimicrobiana 

Método de Kirby bauer: consiste en la difusión de un agente antimicrobiano contenido en un disco, que se añadirá en una placa de agar Muller hinton semb= rada previamente con las cepas identificadas como S. aureus. Posteriormente se incuba a 18 - 24 h, se mide el halo inhibición que rodea a cada disco. Se emplearon los puntos de corte según la CLSI, dónde se clasifica como: sensible, intermedio o resistente (15).

&= #9679;      =   Identificación molecular = (nuc A, fem B)

Staphylococcus aureus se puede identificar por la PCR (reacción de la cadena polimerasa, mediante ella, podemos detectar genes: nucA, coaA, femA o femB= , etc (15).

       Identificación molecular (enterotoxinas blaZ)

Extracción de ADN bacteri= ano: Se utilizará el método de lisis alcalina para cepas de S. aureus, que se realizará= la extracción de ADN, en base a una investigación realizada por Andrade Carlos y Orellana Paola (16).

Identificación genot&iacu= te;pica para la determinación de los genes de resistencia de S. aureus: La técnica de PCR punto final determina mediante biología molecular los genes blaZ, mecA y vanA que recopila la resistencia a penicilina, meticilina y vancomicina, respectivamente (16).

       Programación en el equipo (termociclador)

Es una técnica usada en biología molecular que ayuda en la síntesis in vitro de copia= s, mediante segmentos de amplificaciones de diversas hebras de ADN, adem&aacut= e;s, esta ingeniosa metodología es una herramienta que evoluciona el análisis y la manipulación genética, este consiste en = un bloqueo de resistencia eléctrica que, por medio de, una temperatura = que oscilan entre 4 °C= a 96°C, distribuye homogéneamente en tiempos programados ju= nto a una placa, que como resultado se obtiene la desnaturalización, hibridación y extensión de una molécula de ADN (17), en este caso se aplicó  para nucA, femB, mecA, blaZ, mecA, vanA.

En la siguiente tabla 1 se muest= ra el protocolo para la amplificación de los genes nucA, femB, blaZ, va= nA, mecA y los genes que codifican para enterotoxinas.

 

 

 

Tabla 1. Protocolo para= la amplificación de los genes nucA y femB

Protocolo de amplificación de los genes nucA y femB

Secuencia del iniciador 5’ – 3’

Condición de amplificación

Amplicón resultante

 

 

nucA=

Forward: GCGGATGGTGBTAGGGTT

 Reverse: AGCCAAGCCTTGACGAACTAAAGC=

94ºC 5 min

10 ciclos:

94ºC 40 seg

68ºC 40 seg

72ºC 60 seg

25 ciclos

94ºC 60 seg

58ºC 60 seg

72ºC 2 min

Elongación final: 72ºC 10 min

 

 

 

 

270 pb

 

femB

Forward: TTACAGAGTTAACTGTTACC =

Reverse: ATACAAATCCAGCACGCTCT<= o:p>

94ºC 5 min

35 ciclos:

94ºC 45 seg

50ºC 45 seg

72ºC 60 seg

Elongación final: 72ºC 5 min

 

 

 

651 pb

 

 Protocolo de amplificaci&oacut= e;n de los genes blaZ, mecA, vanA.

Secuencia del iniciador 5̵= 7; – 3’

Condición de amplificación

Amplicón resultante

 

blaZ=

Forward: GTTGCGAACTCTTGAATAGG =

Reverse: GGAGAATAAGCAACTATATCA= TC

94&ord= m;C 5 min

34 cic= los:

94&ord= m;C 1 min

54&ord= m;C 1 min

72&ord= m;C 1 min

Elonga= ción final:

72&ord= m;C 10 min

 

 

 

674 pb=

 

Tabla 1. Protocolo para= la amplificación de los genes nucA y femB (continuación)

 

mecA=

Forward:GTAGAAATGACTGAACGTCCGA= TGA

Reverse: CCAATTCCACATTGTTTCGGT= CTAA

94 ºC2. 5 min

34 cic= los:

94&ord= m;C 1 min

54&ord= m;C 1 min

72&ord= m;C 1 min

72&ord= m;C 10 min

 

 

310 pb=

 

vanA=

Forward: GGGAAAACGACAATTGC

Reverse: GTACAATGCGGCCGTTA

94 &or= dm; C 2min

30 cic= los de:

94&ord= m;C 1min

54&ord= m;C 1 min

72&ord= m;C 1 min

72&ord= m;C 10 min

Elonga= ción final:

72&ord= m;C 10 min

 

 

 

732 pb=

 

Genes que codifican para enterotoxinas

Sea (PCR)

560 pb=

F: GAAAAAAGTCTGAATTGCAGGGAACA

R: CAAATAAATCGTAATTAACCGAAGGTTC

 

Seb (PCR)

404 pb=

F: ATTCTATTAAGGACACTAAGTTAGGGA

R: ATCCCGTTTCATAAGGCGAGT

Sed (PCR)

492 pb=

F: GAATTAAGTAGTACCGCGTAAATAATATG

R: GCT= GTATTTTTCCTCCTCCGAGAGT

Sec (PCR)

297 pb=

F: GTAAAGTTACAGGTGGCAAAACTTG

R: CATATCATACCAAAAAGTATTGCCGT

See (PCR)

482 pb=

F: CAAAGAAATGCTTTAAGCAATCTTAGGC

R: CACCTTACCGCCAAAGCTG

Resultados

En base a un estudio previo realizado en la ciudad de Cuenca de 60 muestras tomadas de queso fresco, se realizó la caracterización mediante técnicas microbiológicas, en la cual se obtuvo 8 muestras positivas procedentes de tres diferentes mercados de la ciudad, como se describe en la siguiente figura 1.  

3D"Points

Figura 1.  Total, de muestras tomadas en los diferentes mercados de la ciudad de Cuenca Ecuador y las muestras positivas= de S. aureus.

Por consiguiente, en= el presente análisis se realizó estudios de confirmación = de los genes nucA, femB mediante la reacción en cadena de la polimerasa, con lo que se evidenció = la presencia de 2 muestras positivas para nucA y 3 mu= estras positivas para femB, como se obse= rva en la figura 2 y figura 3, respectivamente.

Figura 2. Corrida electroforética para la detección del gen nucA amplificado por PCR, visualizado por electroforesis en gel de agarosa. Nota: El fenotipo = nucA (amplicón resultante 270 pb) en c= epas de S. aureus aisladas de quesos frescos de distintos mercados, realizados mediante la PCR.

Carril de corrida: primero: escalera, segundo: control positivo, tercero: control negativo, cuarto: muestras 1,3,4,5,6-7 negativas para el gen nucA, quinto: muestras 2-8 positivas para gen nucA y finalmente, termina con una escalera.

Figura 3. Corrida electroforética para la detección del gen femB amplificado por PCR, visualizado por electroforesis en gel= de agarosa. Nota: El fenotipo = femB (amplicón resultante 651 pb) en c= epas de S. aureus aisladas de quesos frescos de distintos mercados, realizados mediante la PCR.

Carril de corrida: primero: esca= lera de longitud molecular, segundo: control positivo, tercero: control negativo, cuarto: muestras 1,3,4,5-7 negativas para el gen femB, quinto: muestras 2,6-8 positivas para gen femB y finalmente, termina con una escalera de longitud molecular.

Una vez identificados los genes nucA y femB, se procedió a realizar la prueba de susceptibilidad donde se utiliz&oac= ute; el método de difusión de disco o Kirby-Bauer. El ensayo de resistencia/sensibilidad se realizó con los discos de Cefoxitina, Penicilina, Clindamicina, Eritromicina, la interpretación de los resultados se realizó según especificaciones de CLSI (2021). Según el perfil de susceptibilidad frente a los antimicrobianos testados se puede reportar la siguiente tabla 2. 

Tabla 2. Suscepti= bilidad antibacteriana mediante disco de difusi&oacut= e;n en cepas de Staphylococcus aureus, aisladas de muestras de queso fresco, en los principales mercados de Cuenca-Ecuador en el periodo de 2023

Muestra

FOX

P

DA

E

D test

1

S

R

S

S

(-)

2

S

R

S

S

(-)

3

S

R

S

S

(-)

4

S

S

S

S

(-)

5

S

S

S

S

(-)

6

S

R

S

S

(-)

7

S

S

S

S

(-)

8

S

R

S

S

(-)

Leyenda: S: sensible= ; R: resistente; I: intermedia; FOX: cefoxitina; P: penicilina; DA: clindamicina= ; E: eritromicina.  

Sin embargo, se puede observar una resistencia a penicilina en un 62,5% de las muestras tomadas y= un 100% de sensibilidad a clindamicina, eritromicina y cefoxitina siendo subro= gante para meticilina y oxacilina, de igual forma para clindamicina y eritromicina conllevando al D test negativo. 

Por otro lado, se amplifica el gen blaZ mediante = la PCR (reacción de la cadena polimerasa), que nos conlleva a confirmar la resistencia a la penicilina.

  &nb= sp;     blaZ

Figura 4. Corrida electroforética para la detección = del gen blaZ amplificado por PCR, visualizado por electroforesis en gel de agarosa.

Nota= : El gen blaZ (amplicón resultante 674 pb) en cepas de S. aureu= s aisladas de quesos frescos de distintos mercados, realizados mediante la PC= R.

Carril de corrida: primero: escalera, segundo: control positivo, tercero: control negativo, cuarto: muestras 1,3,4,5-7 negativas para el gen blaZ, quinto: muestras 2,6-8 positivas para gen blaZ y finalmente, termina con una escalera.

Tabla 3.<= span style=3D'font-size:12.0pt;mso-bidi-font-size:10.0pt;line-height:115%;font-f= amily: "Times New Roman",serif;mso-fareast-font-family:"Times New Roman";color:bla= ck'> Resultados de los genes de resistencia = mecA y vanA codificados negativo, mediante= la corrida electroforética dada por la= taq polimerasa

Gen

Resultados

mecA

Negativo

vanA

Negativo

= Leyenda: mecA: negativo; vanA: negativo

Tabla 4. = Resultados de Enterotoxinas codificadas por = PCR negativos, realizados por corr= idas electroforéticas

GEN

Resultados

sea

Negativo

seb

Negativo

Tabla 4. = Resultados de Enterotoxinas codificadas por = PCR negativos, realizados por corr= idas electroforéticas (continuación)

GEN

Resultados

Sec

Negativo

sed

Negativo

see

Negativo

 

Discusión

En el presente estudio se realizó un análisis de quesos frescos expendidos en la ciudad= de Cuenca- Ecuador, con el fin de determinar la existencia de Staphylococcus aureus, mediante los métodos moleculares = se analizó y confirmó mediante la amplificación de los ge= nes de nucA, femB.

Por consiguiente, las pruebas de susceptibilidad antimicrobiana son uno de los métodos mayormente utilizados en el ámbito microbiológico que tiene como fin la determinación de la resistencia de varios microorganismos a los diferentes antibióticos. En este caso Staphylococcus aureus, dando como resultado que el 62.5% de las muestras presentaron resistencia a penicilina y un 100% de susceptibilidad = en clindamicina, eritromicina y cefoxitina.

En contraste con otro estudio de Perú, quienes demuestran que el 64.29% de cepas aisladas de 45 muest= ras de quesos fueron positivas para S. = aureus, con una resistencia a penicilina en 6 cepas (33.3%) (18). Por consiguiente, este estudio, contrasta con el nuestro ya que, en Cuenca-Ecuador se encontró una resistencia también a penicilina con el 62.5%. S= in embargo (19), reportan que, 12 muestras analizadas identificaron positivas = para S. aureus, con un porcentaje al= to (76%) de cepas sensibles a casi todos los antibióticos probados como Clindamicina, Oxacilina, Ciprofloxacina, Gentamicina, Vancomicina, Rifampic= ina y mientras que con un 20% resistente a Tetraciclina y Cloramfenicol y con u= n 4% de resistencia a Penicilina, Tetraciclina y Eritromicina.=

Por otro lado según (20) = nos indican que, 95 muestras aisladas de S. aureus el 51% no mostraron resistencia a ningún antibióti= co y que sólo 49% mostraron resistencia a penicilina, siendo este el mayor porcentaje de resistencia, mientras que, oxacilina 21,1%, clindamicina 11,6= %, eritromicina 6,3%, cefoxitina 4,3% y gentamicina 2,1% siendo esta en menor porcentaje de resistencia al antibiótico. Además, no demuestra que el gen de resistencia a antibióticos es blaZ con un 25,3%, lo que apoya a nuestro estudio, donde demues= tra la resistencia fenotípica para S. aureus, con el resultado del 62.5% resistente a penicilina, así = como se identificó el gen de resistencia blaZ.

Según (21), quienes detectaron una frecuencia significativa de este microorganismo como lo es Staphylococcus aureus, obteniendo = una resistencia a 2 antibióticos, siendo penicilina y ampicilina con una resistencia del 76,2% de las muestras, y una sensibilidad a gentamicina, amoxicilina, estreptomicina y ácido nalidíxico con un 14%, es= to apoya a nuestro estudio realizado, porque también obtenemos una resistencia a penicilina, lo que conlleva a detectar que este microorganism= o es más resistente a betalactámicos.

Por otro lado según (22),= en un estudio realizado observaron la existencia alta contaminación de = la elaboración de diferentes quesos, donde encontraron la presencia del= gen mecA, que demuestra que se trata de Staphylococcus aureus resistentes a met= icilina (SARM). Sin embargo (23), nos dice que, en su estudio realizado, se obtiene= una resistencia muy baja a meticilina, con un 18.1% es decir, 8/44 muestras analizadas fueron resistentes.

Conclusiones

= = ●      = El perfil de resistencia de las cepas de S. aureus frente a penicilina P fue alto con un 62,5%, mientras que para cefoxitina FOX, clindamicina DA, eritromicina E, fueron 100% sensible, por ende, el D test también fue negativo, con esto confirmamos que las cepas de S. aureus presentes en los quesos frescos de los mercados municipales de Cuenca-Ecuador no presentan mecanismos de resistencia relevantes. =

= ●      = Por otro lado, con lo antes mencionado podemos decir que la resistencia a penicilina en todas las muest= ras analizadas es mediada por el gen bl= aZ ya que este es el determinante principal de la resistencia al antibióti= co.

       En cuanto a enterotoxinas la evidencia presentada nos lleva a concluir que en = este análisis no hubo la presencia de estas.

Conflicto de intereses

Los autores declaran que no exis= te conflicto de interés.

Declaración de contribución = de los autores

Autor 1 y 2: Procesamiento de muestras, aplicación de técnicas microbiológicas y moleculares, análisis microbiológico.

 Autor 3: Revisión de los pro= cesos de microbiología y biología molecular, análisis de resultados. 

 

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  23. 3Deditorial1.pngAdame-Gómez R, Torib= io-Jimenez J, Vences-Velazquez A, Rodríguez-Bataz E, Santiago Dionisio MC, Ramirez-Peralta A. Methicillin-Resistant Staphylococcus aureus (MRSA) = in Artisanal Cheeses in México. Int J Microbiol [Internet]. 2018 [citado el 2 de agosto de 2023]; 2018:8760357. Disponible en: <= span style=3D'font-size:12.0pt;line-height:115%'>https://www= .hindawi.com/journals/ijmicro/2018/8760357/

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

El artículo que se publica es de exclusiva responsabilidad de los autores y no necesariamente reflejan el pensamiento = de la Revista Anatomía Digital= .

 

3Deditorial1.png

 

 

 

 

El artículo qu= eda en propiedad de la revista y, por tanto, su publicación parcial y/o total en otro medio tiene que ser autorizado por el director de la Revis= ta Anatomía Digital.

 

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