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Gracilaria salicornia as potential substratum for green synthesis of Cerium Oxide Nanoparticles coupled hydrogel: An effective antimicrobial thin film.
- Source :
-
Microbial Pathogenesis . Nov2023, Vol. 184, pN.PAG-N.PAG. 1p. - Publication Year :
- 2023
-
Abstract
- Sodium alginate based (SA) hydrogel supplemented Cerium Oxide nanoparticles (CeO 2 NPs) was produced to fabricate an antimicrobial thin film using an aqueous extract of G. salicornia (Gs). The Gs-CeO 2 NPs were characterized via SEM, FT-IR, EDX, XRD and DLS, the particle size was 200 nm, agreed with XRD. Gs - SA powder was extracted and incorporated with CeO 2 NPs. The Gs-SA and its composite thin film (Gs-CeO 2 NPs-SATF) were characterized including viscosity, FT-IR, TGA, and SEM. The adhesion of Gs-SA coating around Gs-CeO 2 NPs confirmed via FTIR. The antimicrobial properties of Gs-CeO 2 NPs and CeO 2 NPs-SATF were proved in MICs for E. coli and Candida albicans at 62.5 and 250.0 μg/mL. The biofilm inhibition efficiency of CeO 2 NPs-SATF was 74.67 ± 0.98% and 65.45 ± 0.40% for E. coli and Candida albicans. The CeO 2 NPs-SATF was polydisperse in nature and film structure gets fluctuated with NPs concentration. Increased NPs into SATF enhances pore size of gel and corroborated with viscous behaviour. The cytotoxicity of Gs-CeO 2 NP-SA in Artemia salina at higher concentration 100 μg/mL provides less lethal effect into the adult. The antioxidant activity of Gs-CeO 2 NP-SA in DPPH assay was noticed at 0.6 mg ml−1 with radical scavenging activity at 65.85 ± 0.81%. Thus the Gs-CeO 2 NP-SATF would be suitable in antimicrobial applications. • Maiden successful attempt of Cerium Oxide Nanoparticles (CeO 2 NPs) fabrication from Gracilaria salicornia aqueous extracts. • CeO 2 NPs impregnated/loaded Alginate thin films were developed. • CeO 2 NPs exhibits excellent antioxidant and antimicrobial action. [ABSTRACT FROM AUTHOR]
- Subjects :
- *SODIUM alginate
*CERIUM oxides
*THIN films
*ESCHERICHIA coli
*GRACILARIA
*HYDROGELS
Subjects
Details
- Language :
- English
- ISSN :
- 08824010
- Volume :
- 184
- Database :
- Academic Search Index
- Journal :
- Microbial Pathogenesis
- Publication Type :
- Academic Journal
- Accession number :
- 173235487
- Full Text :
- https://doi.org/10.1016/j.micpath.2023.106360