Nitroaromatic compounds (NACs) are generally used as starting materials and/or generated as byproducts during the manufacturing of dyes, fertilizers, and therapeutic agents. Though NACs are beneficial when used appropriately, inadequate management, disposal, and application methods have led to their introduction to bacterial ecosystems where NACs act as mutagenic agents and may even contribute to antimicrobial resistance. Many of these bacterial systems are known to have different pathways to adapt to the presence of NACs such as altering the lipid composition of cellular membranes and intracellular degradation of NACs. In general, these processes require sophisticated techniques and skilled human resources to detect the changes by conventional characterization techniques. Hence, alternative methods are needed to investigate the short-term effects of NACs on bacterial cells with better precision. Herein, we report that bacterial cells adapt to the presence of NACs initially by incorporation in the cellular membrane, which can be predicted by further altered electrical and electrochemical properties of the cells. It was observed that the whole cell bacteria were negatively charged entities that could generate varying levels of surface charges on being incubated with model NACs of biomedical importance viz. niclosamide and -nitrophenol. Such variations were also reflected in dye entrapment assays performed by using lipidic membranes collected from NAC-treated bacterial cells after the cells. Further studies with gel electrophoresis and differential pulse voltammetry revealed the significant alterations in electrochemical properties of NAC-incubated bacterial cells. Overall, results indicate that bacterial adaptation to NACs was found to be closely linked to variations in the electrochemical properties of the bacterial cells. These outcomes advance our understanding of influences imparted by NACs during bacterial infections and might facilitate the way for developing therapies to combat antibacterial resistance in the near future.
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http://dx.doi.org/10.1021/acs.molpharmaceut.4c01537 | DOI Listing |
Rev Med Virol
March 2025
Department of Periodontics, University of Illinois Chicago, Chicago, Illinois, USA.
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December 2024
Centre for Haematology, Department of Immunology and Inflammation, Imperial College London, London, SW7 2AZ, UK.
Radiological accidents/incidents are common with nearly 400 reported since 1944 exposing about 3000 people to substantial doses of ionizing radiations with 127 deaths. Damage to hematopoietic stem and progenitor cells with resulting bone marrow failure is a common consequence of exposure to whole body acute high-dose and -dose-rate ionizing radiations and is termed hematopoietic-acute radiation syndrome, or H-ARS. Therapy of H-ARS includes transfusions, anti-bacterial and -viral drugs, molecularly-cloned hematopoietic growth factors and hematopoietic cell transplants.
View Article and Find Full Text PDFJ Vet Med Sci
March 2025
Graduate School of Integrated Sciences for Life, Hiroshima University.
This study examined the relationship between teat canal score (TCS), somatic cell count (SCC), pathogen infection, and milk antimicrobial components in each quarter of milking cows. A total of 110 quarters of 28 healthy Holstein milking cows were used for the TCS and collection of milk samples. Milk samples were analyzed for SCC, antimicrobial components (S100A7 and lingual antimicrobial peptide (LAP)), and acute phase protein (serum amyloid A (SAA)).
View Article and Find Full Text PDFZhong Nan Da Xue Xue Bao Yi Xue Ban
October 2024
Department of Laboratory Medicine, Third Xiangya Hospital, Central South University, Changsha 410013, China.
Objectives: () adheres to the surface of medical devices, forming highly drug-resistant biofilms, which has made the development of novel antibacterial agents against and its biofilms a key research focus. By drug repurposing, this study aims to explore the combinational antimicrobial effects between pinaverium bromide (PVB), a -type calcium channel blocker, and oxacillin (OXA) against .
Methods: Clinical isolates of were collected from January to September 2022 at the Department of Clinical Laboratory of the Third Xiangya Hospital, Central South University.
Fish Shellfish Immunol
March 2025
Department of Food Life Sciences, Faculty of Fisheries, Kagoshima University, Kagoshima, 890-0056, Japan; Course of Biological Science and Technology, The United Graduate School of Agricultural Sciences, Kagoshima University, Kagoshima, 890-0065, Japan. Electronic address:
Edwardsiella piscicida is a Gram-negative intracellular pathogen causing Edwardsiellosis, leading to economic losses in aquaculture. While phagocytosis is its primary infection route, alternative entry pathways remain largely unexplored. Neu1 sialidase, a lysosomal enzyme in glycoconjugate degradation, was investigated for its role in E.
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