Bacterial bots are potent vehicles in cancer theranostics where bacteria are used typically as cargos for drug delivery. However, living bacteria themselves may aid in their efficiency in killing the tissues. For example, living bacteria may be functionalized with magnetic and luminescent nanoparticles along with drugs in order to achieve the targeted delivery and release of payloads that would include the bacteria. In this study, we elucidate the synergistic impact of human-friendly living bacteria decorated with gold nanoclusters and quercetin-loaded magnetic nanoparticles against the HeLa-cervical cancer cells. The cytotoxicity of the fabricated magnetic bacterial bots within the low dose (5 × 10 CFU/mL) against the HeLa monolayer and 3D spheroid model was found around 84%, which had remarkably enhanced up to more than 91% in the presence of an external magnet. The antiproliferative action of magnetic bacterial bots was demonstrated by the escalation of generated reactive oxygen species from 1.8- to 2.3-fold. Cells treated with magnetic bacterial bots showed a decrease in lipid droplet content, along with altered cell cycle patterns, which led to 74% (average population) of cells being exposed to necroptosis. The study highlights the cytotoxic potential of magnetic bacterial bots against cervical cancer cells outweighing that of the quercetin or the bacteria only, ensuring an external-magnetic-field-responsive targeted drug delivery system.
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http://dx.doi.org/10.1021/acsami.4c17079 | DOI Listing |
ACS Appl Mater Interfaces
January 2025
Centre for Nanotechnology, Indian Institute of Technology Guwahati, Guwahati, Assam 781039, India.
Bacterial bots are potent vehicles in cancer theranostics where bacteria are used typically as cargos for drug delivery. However, living bacteria themselves may aid in their efficiency in killing the tissues. For example, living bacteria may be functionalized with magnetic and luminescent nanoparticles along with drugs in order to achieve the targeted delivery and release of payloads that would include the bacteria.
View Article and Find Full Text PDFMolecules
May 2021
Department of Biological Science, Luiz de Queiroz" College of Agriculture, University of São Paulo, Piracicaba, 13418-900 São Paulo, Brazil.
Essential oils (EOs) from are the main by-product of -processing industries. In addition to food/beverage and cosmetic applications, citrus EOs could also potentially be used as an alternative to antibiotics in food-producing animals. A commercial citrus EO-Brazilian Orange Terpenes (BOT)-was fractionated by vacuum fractional distillation to separate BOT into various fractions: F1, F2, F3, and F4.
View Article and Find Full Text PDFFEMS Microbiol Lett
April 2019
Vicerrectorado de Investigación y Transferencia, Universidad de Granada, Gran Vía 48, 18071, Granada, Spain.
This paper aims to map and identify topics of interest within the field of Microbiology and identify the main sources driving such attention. We combine data from Web of Science and Altmetric.com, a platform which retrieves mentions to scientific literature from social media and other non-academic communication outlets.
View Article and Find Full Text PDFSci Rep
July 2016
Department of Neurology, Center of Infection and Immunity Amsterdam (CINIMA), Academic Medical Center, Amsterdam, the Netherlands.
Host genetic variability may contribute to susceptibility of bacterial meningitis, but which genes contribute to the susceptibility to this complex disease remains undefined. We performed a genetic association study in 469 community-acquired pneumococcal meningitis cases and 2072 population-based controls from the Utrecht Health Project in order to find genetic variants associated with pneumococcal meningitis susceptibility. A HumanExome BeadChip was used to genotype 102,097 SNPs in the collected DNA samples.
View Article and Find Full Text PDFPLoS One
May 2016
Department of Internal Medicine, Maasstad Hospital, Rotterdam, The Netherlands.
Background: Hemodialysis (HD) patients have a high risk of infections. The uremic milieu has a negative impact on several immune responses. Online hemodiafiltration (HDF) may reduce the risk of infections by ameliorating the uremic milieu through enhanced clearance of middle molecules.
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