Interdisciplinary Undergraduate Laboratory for an Integrated Chemistry/Biology Program: Synthesis of Silver Nanoparticles (AgNPs)-Cellulose Composite Materials with Antimicrobial Activity.
Cassandra ScottNick-Hugh WisdomKevin CoulterSylvie BardinJanice L StrapLiliana N TrevaniPublished in: Journal of chemical education (2023)
This laboratory exercise integrates chemistry and biology concepts to give third/fourth-year undergraduate students an opportunity to apply knowledge from different subject areas to address a real-world biomedical issue such as pathogen inhibition using composite materials. It involves the preparation of a bacteria-derived cellulosic biopolymer through microbial cultivation, impregnation of the bacterial cellulose (BC) with silver nanoparticles (AgNPs), followed by the analysis of the materials and the antimicrobial properties of the biomaterial-AgNPs composites. The methods are relatively simple and use inexpensive chemicals. A Tollens type approach is adopted to produce silver nanoparticles-bacterial cellulose (AgNPs-BC) composites by the reduction of [Ag(NH 3 ) 2 ] + complex embedded in the cellulose matrix. The samples were dried by two different methods: freeze-drying or vacuum-drying. The dried AgNPs-BC films were evaluated for antimicrobial properties against a test organism, in this example, Pseudomonas aeruginosa , a Gram-negative biosafety containment level 2 (BSL 2) bacterium, using an agar diffusion test. For additional flexibility and customization, options for dividing the chemistry/biology content of this laboratory into smaller units with an emphasis on characterization techniques of nanomaterials for chemistry majors are also discussed.
Keyphrases
- silver nanoparticles
- gram negative
- drug discovery
- pseudomonas aeruginosa
- multidrug resistant
- staphylococcus aureus
- healthcare
- room temperature
- nursing students
- microbial community
- reduced graphene oxide
- aqueous solution
- cystic fibrosis
- physical activity
- medical students
- quantum dots
- escherichia coli
- high intensity
- ionic liquid
- medical education
- biofilm formation
- candida albicans
- carbon nanotubes