Synthesis, Characterization, and Antibacterial Efficacy of Borosilicate Compound against Escherichia coli

Author:

Vera Barrios Bertha Silvana1,Sacari Sacari Elisban Juani2ORCID,Mangalaraja Ramalinga Viswanathan34ORCID,Arulraj Arunachalam5ORCID,Espinoza Reynoso Isabel del Carmen6,Cano de Terrones Teresa7ORCID,Aguilar Martínez Josué Amílcar8ORCID,del Carpio Delgado Fabrizio9,Lazo Alarcón Luis Antonio10

Affiliation:

1. Facultad Ing. de Minas, Universidad Nacional de Moquegua, Moquegua 18001, Peru

2. Nanotechnology Laboratory, Facultad de Ingeniería, Universidad Nacional Jorge Basadre Grohmann, Avenida Miraflores S/N, Ciudad Universitaria, Tacna 23003, Peru

3. Faculty of Engineering and Sciences, Universidad Adolfo Ibáñez, Diagonal las Torres 2640, Peñalolén, Santiago 7941169, Chile

4. Department of Mechanical Engineering, Faculty of Engineering, Karpagam Academy of Higher Education, Coimbatore 641 021, Tamil Nadu, India

5. Departamento de Electricidad, Facultad de Ingeniería, Universidad Tecnológica Metropolitana (UTEM), Santiago 7800002, Chile

6. Department of Biology, ONG Waykay, Ilo 18601, Peru

7. Department of Chemistry, Universidad Nacional de San Agustín, Arequipa 68513, Peru

8. Facultad de Ingeniería Mecánica Eléctrica-FIME, Universidad Autónoma de Nuevo León, Monterrey 66455, Mexico

9. Laboratory of Materials, Universidad Nacional de Moquegua, Moquegua 18001, Peru

10. Laboratory of Materials, Universidad Nacional de San Agustín, Arequipa 68513, Peru

Abstract

In this study, a glassy borosilicate compound was synthesized using recycled glass and natural clays. Even though glass recycling is the generally accepted standard practice for managing glass waste, fine fractions of container soda-lime glass or cullet of other compositions are still disposed of in landfills. Thus, advanced upcycled products that offer greater economic motivation for implementation in industry may be the key to success, but these are frequently linked to alternative methods of product synthesis. Here, a simple and facile route of borosilicate compound production has been synthesized and characterized. The physicochemical characterization of the compounds was carried out to determine their properties and the antibacterial efficacy of the synthesized compound against Escherichia coli (E. coli) was investigated. The structural and spectroscopic characteristics were identified as a compound that conformed to quartz, cristobalite, and silicon hexaboride (SiB6). For the antibacterial activity, two test types were typically performed; in the first one, the dilutions of the grind were combined with chloramphenicol at a concentration of 20 µg/mL to perform a synergistic action against the bacteria and in the second one, only the amorphous borosilicate compound was tested against E. coli ATCC 25922 strains. The treatments applied considered the dilutions from 8 to 40 µg/mL. The minimum inhibitory concentration (MIC) sensitivity tests began with incubation at 37 °C in the tubes and subsequent seeding in Petri dishes for colony-forming unit (CFU) counting. The results obtained indicated that the samples possessed a productive antibacterial effect, which support their use in various biomedical applications.

Funder

Universidad Nacional de Moquegua

Publisher

MDPI AG

Subject

Process Chemistry and Technology,Chemical Engineering (miscellaneous),Bioengineering

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