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Antimicrobial and antitumor activities of an alginate-based membrane loaded with bismuth nanoparticles and cetylpyridinium chloride

  • Claudio Cabral-Romero
    ,
  • Rene Hernández-Delgadillo
    ,
  • Sergio Eduardo Nakagoshi-Cepeda
    ,
  • Rosa Isela Sánchez-Najéra
    ,
  • Erandi Escamilla-García
    ,
  • Juan Manuel Solís-Soto
  • Universidad Autonoma de Nuevo Leon
    ,
  • Instituto Nacional de Cancerologia - Mexico
    ,
  • Advanced Materials Research Center
    ,
  • Centro de Investigacion Cientifica de Yucatan
    ,
  • ,
  • Texas A&M University
Research Output:
Contribution to journal
Article
Peer-review

Open access

Sustainable Development Goals

  • SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well

Publication metrics

Metrics

SciVal
FWCI
0.35
SciVal
Author count
13
SciVal
Paper percentile
44
SciVal
Citations
3
Scopus
Citations

Abstract

Objective: To evaluate the antitumor and antimicrobial properties of an alginate-based membrane (ABM) loaded with bismuth lipophilic nanoparticles (BisBAL NPs) and cetylpyridinium chloride (CPC) on clinically isolated bacteria and a pancreatic cancer cell line. Material and methods: The BisBAL NP-CPC ABM was characterized using optical and scanning electron microscopy (SEM). The antimicrobial potential was measured using the disk-diffusion assay, and antibiofilm activity was determined through the live/dead assay and fluorescence microscopy. The antitumor activity was analyzed on the pancreatic cell line (Panc 03.27) using the MTT assay and live/dead assay with fluorescence microscopy. Results: After a 24-h exposure (37°C, aerobic conditions), 5 µM BisBAL NP reduced the growth of K. pneumoniae by 77.9%, while 2.5 µM BisBAL NP inhibited the growth of Salmonella, E. faecalis and E. faecium by 82.9%, 82.6%, and 78%, respectively (p < 0.0001). The BisBAL NPs-CPC ABM (at a ratio of 10:1; 500 and 50 µM, respectively) inhibited the growth of all isolated bacteria, producing inhibition halos of 9.5, 11.2, 7, and 10.3 mm for K. pneumoniae, Salmonella, E. faecalis, and E. faecium, respectively, in contrast to the 6.5, 9.5, 8.5, and 9.8 mm obtained with 100 µM ceftriaxone (p < 0.0001). The BisBAL NPs-CPC ABM also reduced bacterial biofilms, with 81.4%, 74.5%, 97.1%, and 79.5% inhibition for K. pneumoniae, E. faecium, E. faecalis, and Salmonella, respectively. Furthermore, the BisBAL NPs-CPC ABM decreased Panc 03.27 cell growth by 76%, compared to 18% for drug-free ABM. GEM-ABM reduced tumoral growth by 73%. The live/dead assay confirmed that BisBAL NPs-CPC-ABM and GEM-ABM were cytotoxic for the turmoral Panc 03.27 cells. Conclusion: An alginate-based membrane loaded with BisBAL NP and CPC exhibits dual antimicrobial and antitumoral efficacy. Therefore, it could be applied in cancer treatment and to diminish the occurrence of surgical site infections.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Pages from-to (Number of pages)

Pages 22808000241236590

Journal (Volume, Issue Number)

Journal of Applied Biomaterials and Functional Materials (Volume 22)

Publication milestones

  • Published - 01/01/2024

Publication status

Published - 01/01/2024

Publication IDs

  • Scopus: 85187162539
  • PubMed: 38444166

Funding Details

The author(s) disclosed receipt of the following financial support for the research, authorship, and/or publication of this article: The authors want to thank the Consejo Nacional de Humanidades, Ciencias y Tecnologías (CONAHCYT) for the grant provided.
FundersFunding numbers
CONAHCYT
-
Consejo Nacional de Humanidades, Ciencias y Tecnologías
-