Sign in to use this feature.

Years

Between: -

Subjects

remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline
remove_circle_outline

Journals

Article Types

Countries / Regions

Search Results (8)

Search Parameters:
Keywords = synergetic bactericidal

Order results
Result details
Results per page
Select all
Export citation of selected articles as:
23 pages, 13289 KB  
Article
Towards Antimicrobial Formulations of Repurposed Drugs and Cationic Surfactants: Efficacy, Cytotoxicity on Human Cell Lines, and Ecotoxicity in Aquatic Models
by Alida Monreal, Diego Ballestero, Cristina Yus, Iman Mattar, Gracia Mendoza, Elisa Langa, Mª Rosa Pino-Otín and Manuel Arruebo
Antibiotics 2026, 15(8), 721; https://doi.org/10.3390/antibiotics15080721 - 24 Jul 2026
Viewed by 381
Abstract
Background: Antimicrobial combination therapies outperform traditional monotherapies by offering additive or synergetic effects, a broader spectrum of activity, enhanced efficacy against polymicrobial infections, and a reduced risk of resistance development and infection relapse. Methods: Herein, we have combined the chemotherapeutic antibiotic alkylating agent [...] Read more.
Background: Antimicrobial combination therapies outperform traditional monotherapies by offering additive or synergetic effects, a broader spectrum of activity, enhanced efficacy against polymicrobial infections, and a reduced risk of resistance development and infection relapse. Methods: Herein, we have combined the chemotherapeutic antibiotic alkylating agent mitomycin C (MMC) with the wide-spectrum antiseptic octenidine hydrochloride (OCT). The non-specific mode of action via membrane disruption of the latter, together with the DNA-alkylating ability of the former, is here combined to produce bactericidal antibiotic-like mixtures against clinical isolates of Methicillin-resistant Staphylococcus aureus and uropathogenic Escherichia coli. The concentrations required for both antimicrobials to inhibit or eradicate bacterial biofilms as well as intracellular persisters are also determined here. The cytotoxicity of the selected combinations on eukaryotic cells was also evaluated in traditional 2D cultures and in 3D-fibroblast spheroids to mimic a physiologically relevant microenvironment present in topical infections. Finally, the ecotoxicity of the studied compounds was also evaluated through standardized bioassays using representative microorganisms commonly employed in environmental toxicity assessments such as Daphnia magna (D. magna) and Aliivibrio fischeri (A. fischeri). Results: Compared to monotherapy, these environmentally friendly antibiotic-like combinations at specific concentrations may achieve additive antimicrobial effects against planktonic, sessile, and intracellular pathogenic strains. However, the ecotoxicological response was bioindicator-dependent: the OCT–MMC combination reduced toxicity in A. fischeri, but not in D. magna, where toxicity was comparable to OCT alone, indicating OCT as the main driver. Thus, any reduction in ecotoxicity appears species-specific. Nonetheless, the use of lower doses may help minimize selective pressure for resistance. Conclusions: Collectively, these findings demonstrate that selected MMC–OCT combinations achieve antibacterial efficacy against planktonic, sessile, and intracellular pathogenic bacteria while preserving the viability of eukaryotic cells and exhibiting minimal toxicity toward standard ecotoxicological model organisms. Further studies are needed to guarantee the safe use of this combination at selected doses and to guarantee its non-systemic absorption after topical administration. Full article
Show Figures

Graphical abstract

18 pages, 6575 KB  
Article
Sol–Gel Synthesis of Silica–Poly (Vinylpyrrolidone) Hybrids with Prooxidant Activity and Antibacterial Properties
by Albena Bachvarova-Nedelcheva, Yoanna Kostova, Lilia Yordanova, Elena Nenova, Pavletta Shestakova, Iliana Ivanova and Elitsa Pavlova
Molecules 2024, 29(11), 2675; https://doi.org/10.3390/molecules29112675 - 5 Jun 2024
Cited by 8 | Viewed by 2939
Abstract
The present work deals with the sol–gel synthesis of silica–poly (vinylpyrrolidone) hybrid materials. The nanohybrids (Si-PVP) have been prepared using an acidic catalyst at ambient temperature. Tetramethyl ortosilane (TMOS) was used as a silica precursor. Poly (vinylpyrrolidone) (PVP) was introduced into the reaction [...] Read more.
The present work deals with the sol–gel synthesis of silica–poly (vinylpyrrolidone) hybrid materials. The nanohybrids (Si-PVP) have been prepared using an acidic catalyst at ambient temperature. Tetramethyl ortosilane (TMOS) was used as a silica precursor. Poly (vinylpyrrolidone) (PVP) was introduced into the reaction mixture as a solution in ethanol with a concentration of 20%. The XRD established that the as-prepared material is amorphous. The IR and 29Si MAS NMR spectra proved the formation of a polymerized silica network as well as the hydrogen bonding interactions between the silica matrix and OH hydrogens of the silanol groups. The TEM showed spherical particle formation along with increased agglomeration tendency. The efficacy of SiO2/PVP nanoparticles as a potential antimicrobial agent against a wide range of bacteria was evaluated as bacteriostatic, using agar diffusion and spot tests. Combined effects of hybrid nanomaterial and antibiotics could significantly reduce the bactericidal concentrations of both the antibiotic and the particles, and they could also eliminate the antibiotic resistance of the pathogen. The registered prooxidant activity of the newly synthesized material was confirmative and explicatory for the antibacterial properties of the tested substance and its synergetic combination with antibiotics. The effect of new hybrid material on Crustacea Daphnia magna was also estimated as harmless under concentration of 0.1 mg/mL. Full article
Show Figures

Figure 1

16 pages, 3456 KB  
Article
Production of Ceramics/Metal Oxide Nanofibers via Electrospinning: New Insights into the Photocatalytic and Bactericidal Mechanisms
by Jari S. Algethami, Touseef Amna, Laila S. Alqarni, Aisha A. Alshahrani, Mohsen A. M. Alhamami, Amal F. Seliem, Badria H. A. Al-Dhuwayin and M. Shamshi Hassan
Materials 2023, 16(14), 5148; https://doi.org/10.3390/ma16145148 - 21 Jul 2023
Cited by 12 | Viewed by 2509
Abstract
Environmental pollution is steadily rising and is having a negative influence on all living things, especially human beings. The advancement of nanoscience in recent decades has provided potential to address this issue. Functional metal oxide nanoparticles/nanofibers have been having a pull-on effect in [...] Read more.
Environmental pollution is steadily rising and is having a negative influence on all living things, especially human beings. The advancement of nanoscience in recent decades has provided potential to address this issue. Functional metal oxide nanoparticles/nanofibers have been having a pull-on effect in the biological and environmental domains of nanobiotechnology. Current work, for the first time, is focusing on the electrospinning production of Zr0.5Sn0.5TiO3/SnO2 ceramic nanofibers that may be utilized to battle lethal infections swiftly and inexpensively. By using characterizations like XRD, FT–IR, FESEM, TEM, PL, and UV–Vis–DRS, the composition, structure, morphology, and optical absorption of samples were determined. The minimum inhibitory concentration (MIC) approach was used to investigate the antibacterial activity. Notably, this research indicated that nanofibers exert antibacterial action against both Gram-positive and Gram-negative bacteria with a MIC of 25 µg/mL. Furthermore, negatively charged E. coli was drawn to positively charged metal ions of Zr0.5Sn0.5TiO3/SnO2, which showed a robust inhibitory effect against E. coli. It was interesting to discover that, compared to pure TiO2, Zr0.5Sn0.5TiO3/SnO2 nanofibers revealed increased photocatalytic activity and exceptional cyclability to the photodegradation of Rhodamine B. The composite completely degrades dye in 30 min with 100% efficacy and excellent (97%) reusability. The synergetic effects of Zr0.5Sn0.5TiO3 and SnO2 may be responsible for increased photocatalytic and bactericidal activity. Full article
(This article belongs to the Special Issue Functional Composite Materials for Environmental Applications)
Show Figures

Figure 1

12 pages, 1636 KB  
Article
Microbiological Evaluation of Novel Bis-Quaternary Ammonium Compounds: Clinical Strains, Biofilms, and Resistance Study
by Nikita Frolov, Elena Detusheva, Nadezhda Fursova, Irina Ostashevskaya and Anatoly Vereshchagin
Pharmaceuticals 2022, 15(5), 514; https://doi.org/10.3390/ph15050514 - 22 Apr 2022
Cited by 34 | Viewed by 4988
Abstract
This work is devoted to the investigation of biocidal properties of quaternary ammonium compounds (QACs) based on pyridine structures with aromatic spacers, and their widely known analogs, against clinically significant microorganisms. This study is focused on investigating their antimicrobial activity (minimum inhibitory concentrations [...] Read more.
This work is devoted to the investigation of biocidal properties of quaternary ammonium compounds (QACs) based on pyridine structures with aromatic spacers, and their widely known analogs, against clinically significant microorganisms. This study is focused on investigating their antimicrobial activity (minimum inhibitory concentrations (MICs) and minimum bactericidal concentrations (MBCs)), antibiofilm properties (minimum biofilm inhibitory concentrations (MBICs) and minimum biofilm eradication concentrations (MBECs)), synergetic effect with different alcohols in antiseptic formulations, and bacterial resistance development. It was shown that all combined analogue preparations had a higher level of antibacterial activity against the tested bacterial strains, with a 16- to 32-fold reduction in MICs and MBCs compared to previously used antiseptic preparations. Moreover, hit-QACs demonstrated a stable effect against Gram-negative E. coli, K. pneumoniae, and A. baumannii within a month of incubation. Overall results indicated a high level of antibacterial activity of pyridine-based QACs. Full article
(This article belongs to the Special Issue Drug Candidates for the Treatment of Infectious Diseases)
Show Figures

Figure 1

16 pages, 2061 KB  
Article
Synergetic Inactivation Mechanism of Protocatechuic Acid and High Hydrostatic Pressure against Escherichia coli O157:H7
by Jingyi Hao, Yuqing Lei, Zhilin Gan, Wanbin Zhao, Junyan Shi, Chengli Jia and Aidong Sun
Foods 2021, 10(12), 3053; https://doi.org/10.3390/foods10123053 - 8 Dec 2021
Cited by 15 | Viewed by 4051
Abstract
With the wide application of high hydrostatic pressure (HHP) technology in the food industry, safety issues regarding food products, resulting in potential food safety hazards, have arisen. To address such problems, this study explored the synergetic bactericidal effects and mechanisms of protocatechuic acid [...] Read more.
With the wide application of high hydrostatic pressure (HHP) technology in the food industry, safety issues regarding food products, resulting in potential food safety hazards, have arisen. To address such problems, this study explored the synergetic bactericidal effects and mechanisms of protocatechuic acid (PCA) and HHP against Escherichia coli O157:H7. At greater than 200 MPa, PCA (1.25 mg/mL for 60 min) plus HHP treatments had significant synergetic bactericidal effects that positively correlated with pressure. After a combined treatment at 500 MPa for 5 min, an approximate 9.0 log CFU/mL colony decline occurred, whereas the individual HHP and PCA treatments caused 4.48 and 1.06 log CFU/mL colony decreases, respectively. Mechanistically, membrane integrity and morphology were damaged, and the permeability increased when E. coli O157: H7 was exposed to the synergetic stress of PCA plus HHP. Inside cells, the synergetic treatment additionally targeted the activities of enzymes such as superoxide dismutase, catalase and ATPase, which were inhibited significantly (p ≤ 0.05) when exposed to high pressure. Moreover, an analysis of circular dichroism spectra indicated that the synergetic treatment caused a change in DNA structure, which was expressed as the redshift of the characteristic absorption peak. Thus, the synergetic treatment of PCA plus HHP may be used as a decontamination method owing to the good bactericidal effects on multiple targets. Full article
(This article belongs to the Section Food Engineering and Technology)
Show Figures

Graphical abstract

13 pages, 2501 KB  
Article
Emergent Technologies for the Extraction of Antioxidants from Prickly Pear Peel and Their Antimicrobial Activity
by Elisabete M. C. Alexandre, Marta C. Coelho, Kardelen Ozcan, Carlos A. Pinto, José A. Teixeira, Jorge A. Saraiva and Manuela Pintado
Foods 2021, 10(3), 570; https://doi.org/10.3390/foods10030570 - 9 Mar 2021
Cited by 35 | Viewed by 4136
Abstract
Phenolic compounds are important bioactive compounds identified in prickly pear peel that have important antioxidant and antimicrobial properties. However, conventional thermal extraction methods may reduce their bioactivity, and technologies such as high pressure (HP) and ohmic heating (OH) may help preserve them. In [...] Read more.
Phenolic compounds are important bioactive compounds identified in prickly pear peel that have important antioxidant and antimicrobial properties. However, conventional thermal extraction methods may reduce their bioactivity, and technologies such as high pressure (HP) and ohmic heating (OH) may help preserve them. In this study, both technologies were analyzed, individually and combined (250/500 MPa; 40/70 °C; ethanol concentration 30/70%), and compared with Soxhlet with regard to total phenolics, flavonoids, and carotenoids as well as antioxidant (ABTS, DPPH, ORAC), DNA pro-oxidant, and antimicrobial (inhibition halos, minimum inhibitory concentration (MIC), minimum bactericidal concentration (MBC), growth curves, and viable cells) activities of prickly pear peel extracts. Total phenolics extracted by each technology increased 103% (OH) and 98% (HP) with regard to Soxhlet, but the contents of total flavonoids and carotenoids were similar. Antioxidant activity increased with HP and OH (between 35% and 63%), and OH (70 °C) did not induce DNA degradation. The phenolic compound present in higher amounts was piscidic acid, followed by eucomic acid and citrate. In general, their extraction was significantly favored by HP and OH. Antimicrobial activity against 7 types of bacteria showed effective results only against S. aureus, S. enteritidis, and B. cereus. No synergetic or additive effect was observed for HP/OH. Full article
Show Figures

Graphical abstract

15 pages, 4460 KB  
Article
Ecofriendly Synthesis of Silver Nanoparticles Using Aqueous Extracts of Zingiber officinale (Ginger) and Nigella sativa L. Seeds (Black Cumin) and Comparison of Their Antibacterial Potential
by Alaa H. Alkhathlan, Hessah A. AL-Abdulkarim, Mujeeb Khan, Merajuddin Khan, Abdullah AlDobiy, Musaed Alkholief, Aws Alshamsan, Hamad Z. Alkhathlan and M. Rafiq H. Siddiqui
Sustainability 2020, 12(24), 10523; https://doi.org/10.3390/su122410523 - 16 Dec 2020
Cited by 23 | Viewed by 4694
Abstract
Applications of chemical synthetic methods for the preparation of metal nanoparticles involve toxic reagents, which are hazardous to both humans and the environment. On the other hand, ecofriendly plant-based techniques offer rapid, non-toxic, and suitable alternatives to the traditional methods. Herein, we report [...] Read more.
Applications of chemical synthetic methods for the preparation of metal nanoparticles involve toxic reagents, which are hazardous to both humans and the environment. On the other hand, ecofriendly plant-based techniques offer rapid, non-toxic, and suitable alternatives to the traditional methods. Herein, we report an eco-friendly method for the preparation of silver nanoparticles (Ag NPs) using two different aqueous extracts of Zingiber officinale (ginger) and Nigella sativa L. seeds (black cumin). Successful preparation of Ag NPs was confirmed by X-ray diffraction, ultraviolet–visible (UV-Vis) spectroscopy, and energy dispersive spectroscopy (EDX). Transmission electron microscopy (TEM) analysis revealed that Nigella sativa L. seed extract (NSE) produced a smaller size of NPs (~8 nm), whereas the ginger extract (GE) led to the formation of slightly larger Ag NPs (~12 nm). In addition, to study the effect of concentration of the extract on the quality of resulting NPs, two different samples were prepared from each extract by increasing the concentrations of the extracts while using a fixed amount of precursor (AgNO3). In both cases, a high concentration of extract delivered less agglomerated and smaller-sized Ag NPs. Furthermore, the antibacterial properties of as-prepared Ag NPs were tested against different bacterial strains. Notably, despite the slightly better quality of Ag NPs obtained from NSE (NSE-Ag), NPs prepared by using GE (GE-Ag) demonstrated superior antibacterial properties. In case of the plant-extract-based synthesis of nanoparticles, it is widely reported that during the preparation, the residual phytomolecules remain on the surface of resulting NPs as stabilizing agents. Therefore, in this case, the high antibacterial properties of GE-Ag can be attributed to the contributing or synergetic effect of residual phytomolecules of GE extract on the surface of Ag NPs, since the aqueous extract of GE has been known to possess higher intrinsic bactericidal properties when compared to the aqueous NSE extract. Full article
Show Figures

Figure 1

16 pages, 1916 KB  
Article
Isolation, Purification, and Antimicrobial Characterization of Cannabidiolic Acid and Cannabidiol from Cannabis sativa L.
by Laura Daniela Martinenghi, Rie Jønsson, Torben Lund and Håvard Jenssen
Biomolecules 2020, 10(6), 900; https://doi.org/10.3390/biom10060900 - 12 Jun 2020
Cited by 109 | Viewed by 16584
Abstract
The emergence of multi-drug resistant bacteria such as methicillin-resistant Staphylococcus aureus (MRSA) causes a major threat to public health due to its limited therapeutic options. There is an urgent need for the development of new effective antimicrobial agents and alternative strategies that are [...] Read more.
The emergence of multi-drug resistant bacteria such as methicillin-resistant Staphylococcus aureus (MRSA) causes a major threat to public health due to its limited therapeutic options. There is an urgent need for the development of new effective antimicrobial agents and alternative strategies that are effective against resistant bacteria. The parallel legalization of cannabis and its products has fueled research into its many therapeutic avenues in many countries around the world. This study aimed at the development of a reliable method for the extraction, purification, characterization, and quantification of cannabidiolic acid (CBDA) and its decarboxylated form cannabidiol (CBD) present in the fiber type Cannabis sativa L. The two compounds were extracted by ethanol, purified on a C18 sep-pack column, and the extracts were analyzed by high performance liquid chromatography coupled with ultraviolet (UV)–vis and ESI-MS (electrospray ionization mass spectrometry) detection. The antimicrobial effect of CBDA and CBD was also evaluated. CBD displayed a substantial inhibitory effect on Gram-positive bacteria with minimal inhibitory concentrations ranging from 1 to 2 µg/mL. Time kill analysis and minimal bactericidal concentration revealed potential bactericidal activity of CBDA and CBD. While cannabinoids showed a significant antimicrobial effect on the Gram-positive S. aureus and Staphylococcus epidermidis, no activity was noticed on Gram-negative Escherichia coli and Pseudomonas aeruginosa. CBDA presented a two-fold lower antimicrobial activity than its decarboxylated form, suggesting that the antimicrobial pharmacophore of the analyzed cannabinoids falls in the ability for permeabilizing the bacterial cell membrane and acting as a detergent-like agent. A synergy test performed on MRSA with CBD and a range of antibiotics did not indicate a synergetic effect, but noteworthy no antagonist influence either. CBD and CBDA manifested low hemolytic activity on human red blood cells. Likewise, the safety of CBD toward human keratinocyte cells presents no toxicity at a concentration of up to seven-fold higher than the antibacterial minimal inhibitory concentration. Similarly, both CBD and CBDA are well tolerated by mammals, including humans, and conserve a safe value limits for blood-contacting drug development. Overall, CBD exhibited a strong antimicrobial effect against Gram-positive strains and could serve as an alternative drug for tackling MRSA. Full article
(This article belongs to the Section Natural and Bio-derived Molecules)
Show Figures

Graphical abstract

Back to TopTop