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1.
Exp Parasitol ; 265: 108808, 2024 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-39094996

RESUMEN

This study aimed to develop microemulsions (MEs) containing α-bisabolol for the topical treatment of cutaneous leishmaniasis (CL). Initially, pseudoternary phase diagrams were developed using α-bisabolol as the oil phase, Eumulgin® CO 40 as the surfactant, Polymol® HE as the co-surfactant, and distilled water as the aqueous phase. Two transparent liquid systems (TLS) containing 5% of α-bisabolol were selected and characterized (F5E25 and F5EP25). Next, skin permeation and retention assays were performed using Franz cells. The interaction of the formulation with the stratum corneum (SC) was evaluated using the FTIR technique. The cytotoxicity was evaluated in murine peritoneal macrophages. Finally, the antileishmanial activity of microemulsions was determined in promastigotes and amastigotes of L. amazonensis (strain MHOM/BR/77/LTB 0016). As a result, the selected formulations showed isotropy, nanometric size (below 25 nm), Newtonian behavior and pH ranging from 6.5 to 6.9. The MEs achieved a 2.5-fold increase in the flux and skin-permeated amount of α-bisabolol. ATR-FTIR results showed that microemulsions promoted fluidization and extraction of lipids and proteins of the stratum corneum, increasing the diffusion coefficient and partition coefficient of the drug in the skin. Additionally, F5E25 and F5EP25 showed higher activity against promastigotes (IC50 13.27 and 18.29, respectively) compared to unencapsulated α-bisabolol (IC50 53.8). Furthermore, F5E25 and F5EP25 also showed antileishmanial activity against intracellular amastigotes of L. amazonensis, with IC50 50 times lower than free α-bisabolol and high selectivity index (up to 15). Therefore, the systems obtained are favorable to topical administration, with significant antileishmanial activity against L. amazonensis promastigotes and amastigotes, being a promising system for future in vivo trials.


Asunto(s)
Emulsiones , Macrófagos Peritoneales , Sesquiterpenos Monocíclicos , Sesquiterpenos , Piel , Animales , Sesquiterpenos Monocíclicos/farmacología , Sesquiterpenos Monocíclicos/química , Emulsiones/química , Ratones , Sesquiterpenos/farmacología , Sesquiterpenos/química , Piel/parasitología , Macrófagos Peritoneales/efectos de los fármacos , Macrófagos Peritoneales/parasitología , Leishmaniasis Cutánea/tratamiento farmacológico , Leishmaniasis Cutánea/parasitología , Espectroscopía Infrarroja por Transformada de Fourier , Absorción Cutánea/efectos de los fármacos , Ratones Endogámicos BALB C , Femenino , Leishmania/efectos de los fármacos , Tensoactivos/farmacología , Tensoactivos/química , Antiprotozoarios/farmacología , Antiprotozoarios/química
2.
Chem Phys Lipids ; 264: 105423, 2024 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-39097132

RESUMEN

Staphylococcus aureus infections and its biofilm removal is an important concern in health care management. Methicillin-resistant S. aureus is responsible for severe morbidity and mortality worldwide. The extensive use of disinfectants against biofilms has led to negative environmental impacts. Developing new and more potent biofilm eradication agents with minimal detrimental effects on human and environmental health is currently on the agenda. The alkyl esters of L-ascorbic acid (ASCn) are antioxidant amphiphiles, which show antimicrobial capacity against methicillin-sensitive and resistant S. aureus strains. ASC12 and ASC14 formulations are able to kill the persister cells of the deepest layers of the biofilm. We tested the hypothesis that the antimicrobial and antibiofilm capacity found for the ASCn emerges from a combined effect of its amphiphilic and their redox capacity. This mechanism appears related to: I) a larger diffusion capacity of the ASC12 micelles than ASC14 and ASC16 microstructures; II) the neutralization of the ASCn acid hydroxyl when the amphiphile reaches the surface of an anionic surface, followed by a rapid insertion; III) the disruption of cell membrane by alteration of membrane tension and structure and IV) ASCn accumulation in the cell membrane or biofilm extracellular matrix surfaces, reducing functional chemical groups and affecting its biological function.


Asunto(s)
Antibacterianos , Ácido Ascórbico , Biopelículas , Staphylococcus aureus Resistente a Meticilina , Pruebas de Sensibilidad Microbiana , Biopelículas/efectos de los fármacos , Staphylococcus aureus Resistente a Meticilina/efectos de los fármacos , Ácido Ascórbico/química , Ácido Ascórbico/farmacología , Antibacterianos/farmacología , Antibacterianos/química , Membrana Celular/efectos de los fármacos , Membrana Celular/metabolismo , Membrana Celular/química , Tensoactivos/química , Tensoactivos/farmacología
3.
Microb Pathog ; 195: 106856, 2024 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-39153576

RESUMEN

Biofilm formation is a major health concern and studies have been pursued to find compounds able to prevent biofilm establishment and remove pre-existing biofilms. While biosurfactants (BS) have been well-known for possessing antibiofilm activities, bioemulsifiers (BE) are still scarcely explored for this purpose. The present study aimed to evaluate the bioemulsifying properties of cell-free supernatants produced by Bacillaceae and Vibrio strains isolated from marine sponges and investigate their antiadhesive and antibiofilm activities against different pathogenic Gram-positive and Gram-negative bacteria. The BE production by the marine strains was confirmed by the emulsion test, drop-collapsing, oil-displacement, cell hydrophobicity and hemolysis assays. Notably, Bacillus cereus 64BHI1101 displayed remarkable emulsifying activity and the ultrastructure analysis of its BE extract (BE64-1) revealed the presence of structures typically observed in macromolecules composed of polysaccharides and proteins. BE64-1 showed notable antiadhesive and antibiofilm activities against Staphylococcus aureus, with a reduction of adherence of up to 100 % and a dispersion of biofilm of 80 %, without affecting its growth. BE64-1 also showed inhibition of Staphylococcus epidermidis and Escherichia coli biofilm formation and adhesion. Thus, this study provides a starting point for exploring the antiadhesive and antibiofilm activities of BE from sponge-associated bacteria, which could serve as a valuable tool for future research to combat S. aureus biofilms.


Asunto(s)
Adhesión Bacteriana , Biopelículas , Emulsionantes , Poríferos , Staphylococcus aureus , Biopelículas/efectos de los fármacos , Biopelículas/crecimiento & desarrollo , Poríferos/microbiología , Animales , Adhesión Bacteriana/efectos de los fármacos , Staphylococcus aureus/efectos de los fármacos , Staphylococcus aureus/fisiología , Emulsionantes/farmacología , Emulsionantes/química , Staphylococcus epidermidis/efectos de los fármacos , Staphylococcus epidermidis/fisiología , Escherichia coli/efectos de los fármacos , Escherichia coli/fisiología , Interacciones Hidrofóbicas e Hidrofílicas , Antibacterianos/farmacología , Bacillus cereus/efectos de los fármacos , Bacillus cereus/fisiología , Hemólisis , Tensoactivos/farmacología , Tensoactivos/metabolismo , Vibrio/efectos de los fármacos , Vibrio/fisiología , Vibrio/metabolismo , Pruebas de Sensibilidad Microbiana , Bacterias Gramnegativas/efectos de los fármacos , Bacterias Gramnegativas/fisiología
4.
Food Res Int ; 192: 114744, 2024 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-39147550

RESUMEN

The use of natural and sustainable additives, that are less aggressive to the environment, is a trend in the food industry. Rhamnolipids (RL) biosurfactants have shown potential for controlling food pathogens however, due to the presence of free carboxyl groups, the pH and ionic strength may influence the properties of such surfactants. In this study, we describe the antimicrobial activity of RL under different pH values and NaCl concentrations, towards both planktonic and biofilms of Listeria monocytogenes. RL were effective at pH 5.0 and the addition of 5 % NaCl improved the bactericidal efficacy for planktonic and sessile cells. The effect of NaCl was more pronounced at pH above 6 showing a significant increase in RL antimicrobial activity. At pH 7.0 planktonic population was eradicated by RL only when salt was present whereas biofilm viability was decreased by 5 log with MBIC varying from > 2500.0 mg/L (RL) to 39.0 mg/L (RL + 5 % NaCl). Larger vesicular and lamellar RL self-assembly structures were predominant when NaCl was present, suggesting their association with the antimicrobial activity observed. The pH and ionic strength of the medium are important parameters to be considered for the development of RL-based strategies to control L. monocytogenes.


Asunto(s)
Biopelículas , Glucolípidos , Listeria monocytogenes , Cloruro de Sodio , Listeria monocytogenes/efectos de los fármacos , Listeria monocytogenes/crecimiento & desarrollo , Concentración de Iones de Hidrógeno , Glucolípidos/farmacología , Glucolípidos/química , Cloruro de Sodio/farmacología , Cloruro de Sodio/química , Concentración Osmolar , Biopelículas/efectos de los fármacos , Biopelículas/crecimiento & desarrollo , Antibacterianos/farmacología , Tensoactivos/farmacología , Tensoactivos/química , Microbiología de Alimentos , Pruebas de Sensibilidad Microbiana , Viabilidad Microbiana/efectos de los fármacos
5.
Int J Biol Macromol ; 278(Pt 1): 133672, 2024 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-38971276

RESUMEN

Bioemulsifiers are compounds produced by microorganisms that reduce the interfacial forces between hydrophobic substances and water. Due to their potential in the pharmaceutical and food industries and their efficiency in oil spill remediation, they have been the subject of study in the scientific community while being safe, biodegradable, and sustainable compared to synthetic options. These biomolecules have high molecular weight and polymeric structures, distinguishing them from traditional biosurfactants. Emulsan, a bioemulsifier exopolysaccharide, is produced by Acinetobacter strains and is highly efficient in forming stable emulsions. Its low toxicity and high potential as an emulsifying agent promote its application in pharmaceutical and food industries as a drug-delivery vehicle and emulsion stabilizer. Due to the high environmental impact of oil spills, bioemulsifiers have great potential for environmental applications, such as bioremediation. This unique feature gives them a distinct mechanism of action in forming emulsions, resulting in minimal environmental impact. A better understanding of these aspects can improve the use of bioemulsifiers and environmental remediation in various industries. This review will discuss the production and characterization of Emulsan, focusing on recent advancements in cultivation conditions, purification techniques, compound identification, and ecotoxicity.


Asunto(s)
Biodegradación Ambiental , Emulsionantes , Emulsionantes/química , Polisacáridos Bacterianos/química , Polisacáridos Bacterianos/biosíntesis , Polisacáridos Bacterianos/aislamiento & purificación , Emulsiones , Tensoactivos/química , Acinetobacter/metabolismo
6.
Braz J Microbiol ; 55(3): 2119-2130, 2024 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-38954220

RESUMEN

Biosurfactants, sustainable alternatives to petrochemical surfactants, are gaining attention for their potential in medical applications. This study focuses on producing, purifying, and characterizing a glycolipid biosurfactant from Candida sp. UFSJ7A, particularly for its application in biofilm prevention on siliconized latex catheter surfaces. The glycolipid was extracted and characterized, revealing a critical micellar concentration (CMC) of 0.98 mg/mL, indicating its efficiency at low concentrations. Its composition, confirmed through Fourier transform infrared spectroscopy (FT-IR) and thin layer chromatography (TLC), identified it as an anionic biosurfactant with a significant ionic charge of -14.8 mV. This anionic nature contributes to its biofilm prevention capabilities. The glycolipid showed a high emulsification index (E24) for toluene, gasoline, and soy oil and maintained stability under various pH and temperature conditions. Notably, its anti-adhesion activity against biofilms formed by Escherichia coli, Enterococcus faecalis, and Candida albicans was substantial. When siliconized latex catheter surfaces were preconditioned with 2 mg/mL of the glycolipid, biofilm formation was reduced by up to 97% for E. coli and C. albicans and 57% for E. faecalis. These results are particularly significant when compared to the efficacy of conventional surfactants like SDS, especially for E. coli and C. albicans. This study highlights glycolipids' potential as a biotechnological tool in reducing biofilm-associated infections on medical devices, demonstrating their promising applicability in healthcare settings.


Asunto(s)
Biopelículas , Candida , Catéteres , Glucolípidos , Tensoactivos , Glucolípidos/farmacología , Glucolípidos/química , Biopelículas/efectos de los fármacos , Biopelículas/crecimiento & desarrollo , Tensoactivos/farmacología , Tensoactivos/química , Candida/efectos de los fármacos , Candida/fisiología , Catéteres/microbiología , Látex/química , Látex/farmacología , Escherichia coli/efectos de los fármacos , Enterococcus faecalis/efectos de los fármacos , Enterococcus faecalis/fisiología , Candida albicans/efectos de los fármacos , Candida albicans/fisiología
7.
J Phys Chem B ; 128(28): 6940-6950, 2024 Jul 18.
Artículo en Inglés | MEDLINE | ID: mdl-38956449

RESUMEN

Two ionic liquids (ILs) with amphiphilic properties composed of 1-butyl-3-methylimidazolium dioctylsulfosuccinate (bmim-AOT) and 1-hexyl-3-methylimidazolium dioctylsulfosuccinate (hmim-AOT) form unilamellar vesicles spontaneously simply by dissolving the IL-like surfactant in water. These novel vesicles were characterized using two different and highly sensitive fluorescent probes: 6-propionyl-2-(dimethylaminonaphthalene) (PRODAN) and trans-4-[4-(dimethylamino)-styryl]-1-methylpyridinium iodide (HC). These fluorescent probes provide information about the physicochemical properties of the bilayer, such as micropolarity, microviscosity, and electron-donor capacity. In addition, the biocompatibility of these vesicles with the blood medium was evaluated, and their toxicity was determined using Dictyostelium discoideum amoebas. First, using PRODAN and HC, it was found that the bilayer composition and the chemical structure of the ions at the interface produced differences between both amphiphiles, making the vesicles different. Thus, the bilayer of hmim-AOT vesicles is less polar, more rigid, and has a lower electron-donor capacity than those made by bmim-AOT. Finally, the results obtained from the hemolysis studies and the growth behavior of unicellular amoebas, particularly utilizing the D. discoideum assay, showed that both vesicular systems do not produce toxic effects up to a concentration of 0.02 mg/mL. This elegant assay, devoid of animal usage, highlights the potential of these newly organized systems for the delivery of drugs and bioactive molecules of different polarities.


Asunto(s)
Líquidos Iónicos , Tensoactivos , Liposomas Unilamelares , Líquidos Iónicos/química , Tensoactivos/química , Liposomas Unilamelares/química , Liposomas Unilamelares/metabolismo , Nanomedicina , Colorantes Fluorescentes/química , Compuestos de Piridinio/química , Imidazoles/química , Membrana Dobles de Lípidos/química
8.
Arch Microbiol ; 206(8): 354, 2024 Jul 17.
Artículo en Inglés | MEDLINE | ID: mdl-39017726

RESUMEN

Titanium implants are subject to bacterial adhesion and peri-implantitis induction, and biosurfactants bring a new alternative to the fight against infections. This work aimed to produce and characterize the biosurfactant from Bacillus subtilis ATCC 19,659, its anti-adhesion and antimicrobial activity, and cell viability. Anti-adhesion studies were carried out against Streptococcus sanguinis, Staphylococcus aureus, Fusobacterium nucleatum, Aggregatibacter actinomycetemcomitans, Porphyromonas gingivalis, and Proteus mirabilis as the minimum inhibitory concentration and the minimum bactericidal concentration. Cell viability was measured against osteoblast and fibroblast cells. The biosurfactant was classified as lipopeptide, with critical micelle concentration at 40 µg mL- 1, and made the titanium surface less hydrophobic. The anti-adhesion effect was observed for Staphylococcus aureus and Streptococcus sanguinis with 54% growth inhibition and presented a minimum inhibitory concentration of 15.7 µg mL- 1 for Streptococcus sanguinis and Aggregatibacter actinomycetemcomitans. The lipopeptide had no cytotoxic effect and demonstrated high potential application against bacterial biofilms.


Asunto(s)
Adhesión Bacteriana , Biopelículas , Implantes Dentales , Lipopéptidos , Pruebas de Sensibilidad Microbiana , Titanio , Titanio/farmacología , Titanio/química , Biopelículas/efectos de los fármacos , Biopelículas/crecimiento & desarrollo , Adhesión Bacteriana/efectos de los fármacos , Implantes Dentales/microbiología , Lipopéptidos/farmacología , Humanos , Antibacterianos/farmacología , Staphylococcus aureus/efectos de los fármacos , Staphylococcus aureus/fisiología , Bacillus subtilis/efectos de los fármacos , Porphyromonas gingivalis/efectos de los fármacos , Porphyromonas gingivalis/fisiología , Porphyromonas gingivalis/crecimiento & desarrollo , Aggregatibacter actinomycetemcomitans/efectos de los fármacos , Propiedades de Superficie , Fibroblastos/efectos de los fármacos , Fusobacterium nucleatum/efectos de los fármacos , Supervivencia Celular/efectos de los fármacos , Osteoblastos/efectos de los fármacos , Tensoactivos/farmacología
9.
Future Microbiol ; 19(8): 667-679, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38864708

RESUMEN

Aim: The present study investigated the antimicrobial effectiveness of a rhamnolipid complexed with arginine (RLMIX_Arg) against planktonic cells and biofilms of methicillin-resistant Staphylococcus aureus (MRSA). Methodology: Susceptibility testing was performed using the Clinical & Laboratory Standards Institute protocol: M07-A10, checkerboard test, biofilm in plates and catheters and flow cytometry were used. Result: RLMIX_Arg has bactericidal and synergistic activity with oxacillin. RLMIX_Arg inhibits the formation of MRSA biofilms on plates at sub-inhibitory concentrations and has antibiofilm action against MRSA in peripheral venous catheters. Catheters impregnated with RLMIX_Arg reduce the formation of MRSA biofilms. Conclusion: RLMIX_Arg exhibits potential for application in preventing infections related to methicillin-resistant S. aureus biofilms.


[Box: see text].


Asunto(s)
Antibacterianos , Arginina , Biopelículas , Staphylococcus aureus Resistente a Meticilina , Pruebas de Sensibilidad Microbiana , Tensoactivos , Biopelículas/efectos de los fármacos , Biopelículas/crecimiento & desarrollo , Staphylococcus aureus Resistente a Meticilina/efectos de los fármacos , Arginina/farmacología , Arginina/química , Antibacterianos/farmacología , Antibacterianos/química , Humanos , Tensoactivos/farmacología , Tensoactivos/química , Glucolípidos/farmacología , Glucolípidos/química , Infecciones Estafilocócicas/microbiología , Infecciones Estafilocócicas/prevención & control , Infecciones Estafilocócicas/tratamiento farmacológico , Oxacilina/farmacología , Sinergismo Farmacológico
10.
Nanomedicine (Lond) ; 19(15): 1407-1423, 2024 06 20.
Artículo en Inglés | MEDLINE | ID: mdl-38920352

RESUMEN

Aim: To investigate the effect of surfactant type on curcumin-loaded (CUR) PLGA nanoparticles (NPs) to modulate monocyte functions. Materials & methods: The nanoprecipitation method was used, and PLGA NPs were designed using Pluronic F127 (F127) and/or lecithin (LEC) as surfactants. Results: The Z-average of the NPs was <200 nm, they had a spherical shape, Derjaguin-Muller-Toporov modulus >0.128 MPa, they were stable during storage at 4°C, ζ-potential ∼-40 mV, polydispersity index <0.26 and % EE of CUR >94%. PLGA-LEC/F127 NPs showed favorable physicochemical and nanomechanical properties. These NPs were bound and internalized mainly by monocytes, suppressed monocyte-induced reactive oxygen species production, and decreased the ability of monocytes to modulate T-cell proliferation. Conclusion: These results demonstrate the potential of these NPs for targeted therapy.


This study explores how different surfactants affect curcumin-loaded PLGA nanoparticles, a biodegradable polymer. The nanoparticles were designed using Pluronic F127 and/or lecithin as surfactants. They are less than 200 nm and spherical. They are stable when stored at 4 °C, with a surface charge of about -40 mV, and can encapsulate more than 94% of curcumin.The results of this study are promising, showing that PLGA nanoparticles using a mixture of lecithin and Pluronic F127 as surfactants have favorable properties toward monocyte adhesion. They are primarily taken up by monocytes, a type of white blood cell, and demonstrate a remarkable ability to reduce the production of reactive oxygen species, which can cause cell damage, as well as the ability of monocytes to stimulate the proliferation of T cells. This underscores the potential of these nanoparticles in targeted therapy, particularly in diseases where monocytes play a pivotal role, such as chronic inflammatory conditions.


Asunto(s)
Curcumina , Lecitinas , Monocitos , Nanopartículas , Poloxámero , Humanos , Proliferación Celular/efectos de los fármacos , Curcumina/química , Curcumina/farmacología , Portadores de Fármacos/química , Lecitinas/química , Monocitos/efectos de los fármacos , Monocitos/metabolismo , Nanopartículas/química , Tamaño de la Partícula , Poloxámero/química , Copolímero de Ácido Poliláctico-Ácido Poliglicólico/química , Especies Reactivas de Oxígeno/metabolismo , Tensoactivos/química , Linfocitos T/efectos de los fármacos
11.
Bioprocess Biosyst Eng ; 47(9): 1555-1570, 2024 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-38916653

RESUMEN

Biosurfactants (BSFs) are molecules produced by microorganisms from various carbon sources, with applications in bioremediation and petroleum recovery. However, the production cost limits large-scale applications. This study optimized BSFs production by Bacillus velezensis (strain MO13) using residual glycerin as a substrate. The spherical quadratic central composite design (CCD) model was used to standardize carbon source concentration (30 g/L), temperature (34 °C), pH (7.2), stirring (239 rpm), and aeration (0.775 vvm) in a 5-L bioreactor. Maximum BSFs production reached 1527.6 mg/L of surfactins and 176.88 mg/L of iturins, a threefold increase through optimization. Microbial development, substrate consumption, concentration of BSFs, and surface tension were also evaluated on the bioprocess dynamics. Mass spectrometry Q-TOF-MS identified five surfactin and two iturin isoforms produced by B. velezensis MO13. This study demonstrates significant progress on BSF production using industrial waste as a microbial substrate, surpassing reported concentrations in the literature.


Asunto(s)
Bacillus , Glicerol , Lipopéptidos , Tensoactivos , Bacillus/metabolismo , Tensoactivos/metabolismo , Tensoactivos/química , Lipopéptidos/biosíntesis , Lipopéptidos/química , Glicerol/metabolismo , Reactores Biológicos
12.
Extremophiles ; 28(2): 30, 2024 Jun 22.
Artículo en Inglés | MEDLINE | ID: mdl-38907846

RESUMEN

This study characterized cultivable fungi present in sediments obtained from Boeckella Lake, Hope Bay, in the north-east of the Antarctic Peninsula, and evaluated their production of enzymes and biosurfactants of potential industrial interest. A total of 116 fungal isolates were obtained, which were classified into 16 genera within the phyla Ascomycota, Basidiomycota and Mortierellomycota, in rank. The most abundant genera of filamentous fungi included Pseudogymnoascus, Pseudeurotium and Antarctomyces; for yeasts, Thelebolales and Naganishia taxa were dominant. Overall, the lake sediments exhibited high fungal diversity and moderate richness and dominance. The enzymes esterase, cellulase and protease were the most abundantly produced by these fungi. Ramgea cf. ozimecii, Holtermanniella wattica, Leucosporidium creatinivorum, Leucosporidium sp., Mrakia blollopis, Naganishia sp. and Phenoliferia sp. displayed enzymatic index > 2. Fourteen isolates of filamentous fungi demonstrated an Emulsification Index 24% (EI24%) ≥ 50%; among them, three isolates of A. psychrotrophicus showed an EI24% > 80%. Boeckella Lake itself is in the process of drying out due to the impact of regional climate change, and may be lost completely in approaching decades, therefore hosts a threatened community of cultivable fungi that produce important biomolecules with potential application in biotechnological processes.


Asunto(s)
Hongos , Sedimentos Geológicos , Lagos , Regiones Antárticas , Sedimentos Geológicos/microbiología , Lagos/microbiología , Hongos/enzimología , Hongos/aislamiento & purificación , Hongos/metabolismo , Tensoactivos/metabolismo , Proteínas Fúngicas/metabolismo , Celulasa/metabolismo , Esterasas/metabolismo
13.
Mar Pollut Bull ; 203: 116491, 2024 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-38754321

RESUMEN

Endosymbionts (Symbiodiniaceae) play a vital role in the health of corals. Seawater pollution can harm these endosymbionts and dispersants used during oil spill cleanup can be extremely toxic to these organisms. Here, we examined the impact of oil and a specific dispersant, Corexit-9500, on two representative endosymbionts - Symbiodinium and Cladocopium - from the Southwestern endemic coral Mussismilia braziliensis. The survival and photosynthetic potential of the endosymbionts decreased dramatically after exposure to the dispersant and oil by ~25 % after 2 h and ~50 % after 7 days. Low concentrations of dispersant (0.005 ml/l) and dispersed oil (Polycyclic Aromatic Hydrocarbons, 1132 µg/l; Total Petroleum Hydrocarbons, 595 µg/l) proved highly toxic to both Symbiodinium and Cladocopium. These levels triggered a reduction in growth rate, cell size, and cell wall thickness. After a few hours of exposure, cellular organelles were damaged or destroyed. These acute toxic effects underline the fragile nature of coral endosymbionts.


Asunto(s)
Antozoos , Dinoflagelados , Contaminación por Petróleo , Petróleo , Simbiosis , Contaminantes Químicos del Agua , Antozoos/efectos de los fármacos , Antozoos/fisiología , Animales , Petróleo/toxicidad , Dinoflagelados/fisiología , Dinoflagelados/efectos de los fármacos , Contaminantes Químicos del Agua/toxicidad , Lípidos , Tensoactivos/toxicidad
14.
J Mater Chem B ; 12(29): 7076-7089, 2024 Jul 24.
Artículo en Inglés | MEDLINE | ID: mdl-38817163

RESUMEN

A series of amphiphilic block copolymer (BCP) micelles based on poly(dimethylsiloxane) (PDMS) and poly(ethylene glycol) (PEG) were synthesized by a one-step reaction in the presence of tris(pentafluorophenyl)borane (BCF) as a catalyst. The structural composition of PDMS-b-PEG (PR11) and PEG-b-PDMS-b-PEG (PR12) was corroborated by FTIR, 29Si NMR, and TGA. The BCPs were assembled in an aqueous solution, obtaining micelles between 57 and 87 nm in size. PR11 exhibited a higher (2.0 g L-1) critical micelle concentration (CMC) than PR12 (1.5 g L-1) due to the short chain length. The synthesized nano micelles were used to encapsulate curcumin, which is one of three compounds of turmeric plant 'Curcuma longa' with significant biological activities, including antioxidant, chemoprotective, antibacterial, anti-inflammatory, antiviral, and anti-depressant properties. The encapsulation efficiency of curcumin was 60% for PR11 and 45% for PR12. Regarding the release study, PR11 delivered 53% curcumin after five days under acidic conditions (pH of 1.2) compared to 43% at a pH of 7.4. The degradation products of curcumin were observed under basic conditions and were more stable at acidic pH. In both situations, the release process is carried out by breaking the silyl-ether bond, allowing the release of curcumin. PR11 showed prolonged release times, so it could be used to reduce ingestion times and simultaneously work as a nanocarrier for other hydrophobic drugs.


Asunto(s)
Curcumina , Dimetilpolisiloxanos , Micelas , Polietilenglicoles , Curcumina/química , Curcumina/farmacología , Dimetilpolisiloxanos/química , Polietilenglicoles/química , Tamaño de la Partícula , Boranos/química , Liberación de Fármacos , Portadores de Fármacos/química , Portadores de Fármacos/síntesis química , Tensoactivos/química , Tensoactivos/síntesis química
15.
Food Res Int ; 187: 114430, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38763679

RESUMEN

Oleogels have been explored as fat substitutes due to their healthier composition compared to trans and saturated fats, also presenting interesting technological perspectives. The aim of this study was to investigate the compositional perspective of multicomponent oleogels. Structuring ability of lecithin (LEC) (20 or 90 wt% of phosphatidylcholine - PC) combined with glycerol monostearate (GMS), sorbitan monostearate (SMS) or sucrose monostearate (SAC) in sunflower oil was evaluated from oleogels properties. The thermal and rheological properties, microstructure and stability of the oleogels were affected by the difference in the chemical composition of LEC and the ratio between LEC and different surfactants. Interestingly, low-phosphatidylcholine LEC (L20) performed better, although systems formed with reduced amounts of LEC tended to be softer (LEC-GMS) and present high oil holding capacity (LEC-SMS). The mixtures of LEC and monostearate-based surfactants showed different behaviors, depending on the surfactant polar head. In LEC-GMS systems, LEC hindered the self-assembly of GMS in sunflower oil, compromising mechanical properties and increasing oil release. When combined with SMS, LEC acted as a crystal habit modifier of SMS, forming a more homogeneous microstructure and producing stronger oleogels with greater oil binding capacity. However, above the threshold concentration, LEC prevented SMS self-assembly, resulting in a weaker gel. A positive interaction was found in LEC-SAC formulations in specific ratios, since SAC cannot act as a single oleogelator. Results show the impact of solubility balance played by LEC and fatty-acid derivatives surfactant when combined and used as oleogelators. This knowledge can contribute to a rational perspective in the preparation and modulation of the properties of edible oleogels.


Asunto(s)
Lecitinas , Compuestos Orgánicos , Reología , Aceite de Girasol , Tensoactivos , Lecitinas/química , Compuestos Orgánicos/química , Aceite de Girasol/química , Tensoactivos/química , Hexosas/química , Sustitutos de Grasa/química , Glicéridos/química , Sacarosa/química
16.
Biopolymers ; 115(4): e23582, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38680100

RESUMEN

This study focused on synthesizing and characterizing PEGylated amphiphilic block copolymers with pendant linoleic acid (Lin) moieties as an alternative to enhance their potential in drug delivery applications. The synthesis involved a two-step process, starting with ring-opening polymerization of ε-caprolactone (CL) and propargylated cyclic carbonate (MCP) to obtain PEG-b-P(CL-co-MCP) copolymers, which were subsequently modified via click chemistry. Various reaction conditions were explored to improve the yield and efficiency of the click chemistry step. The use of anisole as a solvent, N-(3-azidopropyl)linoleamide as a substrate, and a reaction temperature of 60°C proved to be highly efficient, achieving nearly 100% conversion at a low catalyst concentration. The resulting copolymers exhibited controlled molecular weights and low polydispersity, confirming the successful synthesis. Furthermore, click chemistry allows for the attachment of Lin moieties to the copolymer, enhancing its hydrophobic character, as deduced from their significantly lower critical micelle concentration than that of traditional PEG-b-PCL systems, which is indicative of enhanced stability against dilution. The modified copolymers exhibited improved thermal stability, making them suitable for applications that require high processing temperatures. Dynamic light scattering and transmission electron microscopy confirmed the formation of micellar structures with sizes below 100 nm and minimal aggregate formation. Additionally, 1H NMR spectroscopy in deuterated water revealed the presence of core-shell micelles, which provided higher kinetic stability against dilution.


Asunto(s)
Química Clic , Polietilenglicoles , Polimerizacion , Química Clic/métodos , Polietilenglicoles/química , Ácido Linoleico/química , Micelas , Interacciones Hidrofóbicas e Hidrofílicas , Tensoactivos/química , Tensoactivos/síntesis química , Peso Molecular
17.
Sci Rep ; 14(1): 4629, 2024 03 12.
Artículo en Inglés | MEDLINE | ID: mdl-38472312

RESUMEN

Biosurfactants encompass structurally and chemically diverse molecules with surface active properties, and a broad industrial deployment, including pharmaceuticals. The interest is growing mainly for the low toxicity, biodegradability, and production from renewable sources. In this work, the optimized biosurfactant production by Pseudomonas aeruginosa BM02, isolated from the soil of a mining area in the Brazilian Amazon region was assessed, in addition to its antiviral, antitumor, and antimicrobial activities. The optimal conditions for biosurfactant production were determined using a factorial design, which showed the best yield (2.28 mg/mL) at 25 °C, pH 5, and 1% glycerol. The biosurfactant obtained was characterized as a mixture of rhamnolipids with virucidal properties against Herpes Simplex Virus, Coronavirus, and Respiratory Syncytial Virus, in addition to antimicrobial properties against Gram-positive bacteria (Staphylococcus aureus and Enterococcus faecium), at 50 µg/mL. The antitumor activity of BS (12.5 µg/mL) was also demonstrated, with potential selectivity in reducing the proliferation of breast tumor cells, after 1 min of exposure. These results demonstrate the importance of studying the interconnection between cultivation conditions and properties of industrially important compounds, such as rhamnolipid-type biosurfactant from P. aeruginosa BM02, a promising and sustainable alternative in the development of new antiviral, antitumor, and antimicrobial prototypes.


Asunto(s)
Pseudomonas aeruginosa , Tensoactivos , Tensoactivos/química , Glucolípidos/química , Antivirales
18.
Chemosphere ; 355: 141807, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38552803

RESUMEN

The present study investigates the potential for biosurfactant production of 19 marine yeast species obtained from zoanthids. Using the emulsification index test to screen the samples produced by the marine yeasts, we verified that five isolates exhibited an emulsification index ≥50%. Additional tests were performed on such isolates, including oil displacement, drop collapse, Parafilm M assay, and surface tension measurement. The tolerance of produced biosurfactants for environmental conditions was also analyzed, especially considering the media's temperature, pH, and salinity. Moreover, the surfactant's ability to emulsify different hydrocarbon sources and to metabolize kerosene as the sole carbon source was evaluated in vitro. Our results demonstrate that yeast biosurfactants can emulsify hydrocarbon sources under different physicochemical conditions and metabolize kerosene as a carbon source. Considering the Yarrowia lipolytica LMS 24B as the yeast model for biosurfactant production from the cell's wall biomass, emulsification indexes of 61.2% were obtained, even at a high temperature of 120 °C. Furthermore, the Fourier-transform middle infrared spectroscopy (FTIR) analysis of the biosurfactant's chemical composition revealed the presence of distinct functional groups assigned to a glycoprotein complex. Considering the status of developing new bioproducts and bioprocesses nowadays, our findings bring a new perspective to biosurfactant production by marine yeasts, especially Y. lipolytica LMS 24B. In particular, the presented results validate the relevance of marine environments as valuable sources of genetic resources, i.e., yeast strains capable of metabolizing and emulsifying petroleum derivatives.


Asunto(s)
Petróleo , Yarrowia , Yarrowia/metabolismo , Tensoactivos/química , Queroseno , Petróleo/análisis , Hidrocarburos/metabolismo , Carbono/metabolismo , Biodegradación Ambiental
19.
Environ Sci Pollut Res Int ; 31(19): 27817-27828, 2024 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-38517631

RESUMEN

Water and several chemicals, including dyestuffs, surfactants, acids, and salts, are required during textile dyeing processes. Surfactants are harmful to the aquatic environment and induce several negative biological effects in exposed biota. In this context, the present study aimed to assess acute effects of five surfactants, comprising anionic and nonionic classes, and other auxiliary products used in fiber dyeing processes to aquatic organisms Vibrio fischeri (bacteria) and Daphnia similis (cladocerans). The toxicities of binary surfactant mixtures containing the anionic surfactant dodecylbenzene sulfonate + nonionic fatty alcohol ethoxylate and dodecylbenzene sulfonate + nonionic alkylene oxide were also evaluated. Nonionic surfactants were more toxic than anionic compounds for both organisms. Acute nonionic toxicity ranged from 1.3 mg/L (fatty alcohol ethoxylate surfactant) to 2.6 mg/L (ethoxylate surfactant) for V. fischeri and from 1.9 mg/L (alkylene oxide surfactant) to 12.5 mg/L (alkyl aryl ethoxylated and aromatic sulfonate surfactant) for D. similis, while the anionic dodecylbenzene sulfonate EC50s were determined as 66.2 mg/L and 19.7 mg/L, respectively. Both mixtures were very toxic for the exposed organisms: the EC50 average in the anionic + fatty alcohol ethoxylate mixture was of 1.0 mg/L ± 0.11 for V. fischeri and 4.09 mg/L ± 0.69 for D. similis. While the anionic + alkylene oxide mixture, EC50 of 3.34 mg/L for D. similis and 3.60 mg/L for V. fischeri. These toxicity data suggested that the concentration addition was the best model to explain the action that is more likely to occur for mixture for the dodecylbenzene sulfonate and alkylene oxide mixtures in both organisms. Our findings also suggest that textile wastewater surfactants may interact and produce different responses in aquatic organisms, such as synergism and antagonism. Ecotoxicological assays provide relevant information concerning hazardous pollutants, which may then be adequately treated and suitably managed to reduce toxic loads, associated to suitable management plans.


Asunto(s)
Aliivibrio fischeri , Bencenosulfonatos , Daphnia , Tensoactivos , Aguas Residuales , Contaminantes Químicos del Agua , Tensoactivos/toxicidad , Contaminantes Químicos del Agua/toxicidad , Aguas Residuales/química , Aliivibrio fischeri/efectos de los fármacos , Animales , Daphnia/efectos de los fármacos , Ecotoxicología , Textiles
20.
Braz J Microbiol ; 55(2): 1507-1519, 2024 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-38468117

RESUMEN

Bioremediation of surfactants in water bodies holds significant ecological importance as they are contaminants of emerging concern posing substantial threats to the aquatic environment. Microbes exhibiting special ability in terms of bioremediation of contaminants have always been reported to thrive in extraordinary environmental conditions that can be extreme in terms of temperature, lack of nutrients, and salinity. Therefore, in the present investigation, a total of 46 bacterial isolates were isolated from the Indian sector of the Southern Ocean and screened for degradation of sodium dodecyl sulphate (SDS). Further, two Gram-positive psychrotolerant bacterial strains, ASOI-01 and ASOI-02 were identified with significant SDS degradation potential. These isolates were further studied for growth optimization under different environmental conditions. The strains were characterized as Staphylococcus saprophyticus and Bacillus pumilus based on morphological, biochemical, and molecular (16S RNA gene) characteristics. The study reports 88.9% and 93.4% degradation of SDS at a concentration of 100 mgL-1, at 20 °C, and pH 7 by S. saprophyticus ASOI-01 and B. pumilus ASOI-02, respectively. The experiments were also conducted in wastewater samples where a slight reduction in degradation efficiency was observed with strains ASOI-01 and ASOI-02 exhibiting 76.83 and 64.93% degradation of SDS respectively. This study infers that these bacteria can be used for the bioremediation of anionic surfactants from water bodies and establishes the potential of extremophilic microbes for the utilization of sustainable wastewater management.


Asunto(s)
Bacillus pumilus , Biodegradación Ambiental , Agua de Mar , Dodecil Sulfato de Sodio , Staphylococcus saprophyticus , Dodecil Sulfato de Sodio/metabolismo , Bacillus pumilus/genética , Bacillus pumilus/metabolismo , Bacillus pumilus/aislamiento & purificación , Bacillus pumilus/clasificación , Staphylococcus saprophyticus/genética , Staphylococcus saprophyticus/aislamiento & purificación , Staphylococcus saprophyticus/metabolismo , Staphylococcus saprophyticus/clasificación , Agua de Mar/microbiología , Tensoactivos/metabolismo , Filogenia , ARN Ribosómico 16S/genética , Contaminantes Químicos del Agua/metabolismo , Aguas Residuales/microbiología
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