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Full-Text Articles in Life Sciences

An Active Biodegradable Layer-By-Layer Film Based On Chitosan-Alginate-Tio2 For The Enhanced Shelf Life Of Tomatoes, Kalpani Y. Perera, Shubham Sharma, Brendan Duffy, Shiviani Pathania, Amit K. Jaiswal, Swarma Jaiswal Oct 2022

An Active Biodegradable Layer-By-Layer Film Based On Chitosan-Alginate-Tio2 For The Enhanced Shelf Life Of Tomatoes, Kalpani Y. Perera, Shubham Sharma, Brendan Duffy, Shiviani Pathania, Amit K. Jaiswal, Swarma Jaiswal

Articles

This work aims at developing biodegradable active chitosan-alginate layer-by-layer bio-nanocomposite film with TiO2NPs using the solvent casting method followed by CaCl2 crosslinking for food packaging applications. The developed films enhanced the tensile strength and elongation at break by 14.76 and 2 folds (p < 0.05) respectively. The UV barrier properties of CH-SA-0.3%TiO2 film increased by 88.6%, while the film transparency decreased by 87.23%. All films showed antimicrobial activity against foodborne pathogens E. coli, S. aureus, S. typhi, and L. monocytogene. The film with 0.1%TiO2 showed the complete killing of gram-positive bacteria. The CH-SA-0.1%TiO2 film was completely biodegraded during the …


Listeria Monocytogenes Is A Solvent Tolerant Organism Secreting A Solvent Stable Lipase: Potential Biotechnological Applications, Priyanka Priyanka Dr, Gemma K. Kinsella, Gary T. Henehan Prof, Barry J. Ryan Dr Aug 2022

Listeria Monocytogenes Is A Solvent Tolerant Organism Secreting A Solvent Stable Lipase: Potential Biotechnological Applications, Priyanka Priyanka Dr, Gemma K. Kinsella, Gary T. Henehan Prof, Barry J. Ryan Dr

Articles

Purpose The emerging biobased economy will require robust, adaptable, organisms for the production and processing of biomaterials as well as for bioremediation. Recently, the search for solvent tolerant organisms and solvent tolerant enzymes has intensifed. Resilient organisms secreting solvent stable lipases are of particular interest for biotechnological applications.

Methods Screening of soil samples for lipase-producing organisms was carried out on Rhodamine B plates. The most productive lipase-producing organisms were further screened for their resistance to solvents commonly used in biotechnological applications.

Results In the course of screening, one of the isolated organisms that exhibited extracellular lipaseactivity, was identifed as the …


Copper(Ii) And Silver(I)‑1,10‑Phenanthroline‑5,6‑Dione Complexes Interact With Double‑Stranded Dna: Further Evidence Of Their Apparent Multi‑Modal Activity Towards Pseudomonas Aeruginosa, Anna Clara Milesi Galdino, Lívia Viganor, Matheus Mendonça Pereira, Michael Devereux, Malachy Mccann, Marta Helena Branquinha, Zara Molphy, Sinéad O'Carroll, Conor Bain, Georgia Menounou, Andrew Kellett, André Luis Souza Dos Santos Jan 2022

Copper(Ii) And Silver(I)‑1,10‑Phenanthroline‑5,6‑Dione Complexes Interact With Double‑Stranded Dna: Further Evidence Of Their Apparent Multi‑Modal Activity Towards Pseudomonas Aeruginosa, Anna Clara Milesi Galdino, Lívia Viganor, Matheus Mendonça Pereira, Michael Devereux, Malachy Mccann, Marta Helena Branquinha, Zara Molphy, Sinéad O'Carroll, Conor Bain, Georgia Menounou, Andrew Kellett, André Luis Souza Dos Santos

Articles

Tackling microbial resistance requires continuous efforts for the development of new molecules with novel mechanisms of action and potent antimicrobial activity. Our group has previously identified metal-based compounds, [Ag(1,10-phenanthroline-5,6-dione)2]ClO4 (Ag-phendione) and [Cu(1,10-phenanthroline-5,6-dione)3](ClO4)2.4H2O (Cu-phendione), with efficient antimicrobial action against multidrug-resistant species. Herein, we investigated the ability of Ag-phendione and Cu-phendione to bind with double-stranded DNA using a combination of in silico and in vitro approaches. Molecular docking revealed that both phendione derivatives can interact with the DNA by hydrogen bonding, hydrophobic and electrostatic interactions. Cu-phendione exhibited the highest binding affinity to either major (− 7.9 kcal/mol) or minor (− 7.2 kcal/mol) …


Protein With Negative Surface Charge Distribution, Bnr1, Shows Characteristics Of Adna‐Mimic Protein Andmay Be Involved In The Adaptation Of Burkholderia Cenocepacia, Ruth Dennehy, Niamh Duggan, Simon Dignam, Sarah Mccormack, Eugene Dillon, Jessica Molony, Maria Romano, Yueran Hou, Laura Ardill, Matthew Whelan, Zuzanna Drulis‐Kawa, Tadhg Ó'Cróinín, Miguel Valvano, Rita Berisio, Siobhán Mcclean Jan 2022

Protein With Negative Surface Charge Distribution, Bnr1, Shows Characteristics Of Adna‐Mimic Protein Andmay Be Involved In The Adaptation Of Burkholderia Cenocepacia, Ruth Dennehy, Niamh Duggan, Simon Dignam, Sarah Mccormack, Eugene Dillon, Jessica Molony, Maria Romano, Yueran Hou, Laura Ardill, Matthew Whelan, Zuzanna Drulis‐Kawa, Tadhg Ó'Cróinín, Miguel Valvano, Rita Berisio, Siobhán Mcclean

Articles

Adaptation of opportunistic pathogens to their host environment requires reprogramming of a vast array of genes to facilitate survival in the host. Burkholderia cenocepacia, a Gram-negative bacterium with a large genome of ∼8 Mb that colonizes environmental niches, is exquisitely adaptable to the hypoxic environment of the cystic fibrosis lung and survives in macrophages. We previously identified an immunoreactive acidic protein encoded on replicon 3, BCAS0292. Deletion of the BCAS0292 gene significantly altered the abundance of 979 proteins by 1.5-fold or more; 19 proteins became undetectable while 545 proteins showed ≥1.5-fold reduced abundance, suggesting the BCAS0292 protein is a …