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Dive into the research topics where Marcela Popa is active.

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Featured researches published by Marcela Popa.


Current Topics in Medicinal Chemistry | 2015

Metallic-Based Micro and Nanostructures with Antimicrobial Activity

Corina Silvia Pop; Mohamed. D. Hussien; Marcela Popa; Alina Mares; Alexandru Mihai Grumezescu; Mihai Grumezescu; Veronica Lazar; Mariana Carmen Chifiriuc; Monika Sakizlian; Eugenia Bezirtzoglou; Serban Bertesteanu

The spectacular progress of research in the nanotechnology field led to the achievement of important knowledge of materials at the atomic and molecular scale and the extent of the use of nanoparticles in the design of medical products, ecological processes, cosmetics and other biotechnological applications. One of the current focuses of the medical applications of nanotechnology is the development of new strategies to inhibit the activity of different microorganisms. The purpose of this review was to present the antimicrobial activity of metal cations in micro- and nanoparticulate forms and the dependence of this biological activity on shape, size and physico-chemical conditions.


International Journal of Molecular Sciences | 2016

Drosophotoxicology: An Emerging Research Area for Assessing Nanoparticles Interaction with Living Organisms

Mariana Carmen Chifiriuc; Attila Cristian Ratiu; Marcela Popa; Alexandru Al. Ecovoiu

The rapid development of nanotechnology allowed the fabrication of a wide range of different nanomaterials, raising many questions about their safety and potential risks for the human health and environment. Most of the current nanotoxicology research is not standardized, hampering any comparison or reproducibility of the obtained results. Drosophotoxicology encompasses the plethora of methodological approaches addressing the use of Drosophila melanogaster as a choice organism in toxicology studies. Drosophila melanogaster model offers several important advantages, such as a relatively simple genome structure, short lifespan, low maintenance cost, readiness of experimental manipulation comparative to vertebrate models from both ethical and technical points of view, relevant gene homology with higher organisms, and ease of obtaining mutant phenotypes. The molecular pathways, as well as multiple behavioral and developmental parameters, can be evaluated using this model in lower, medium or high throughput type assays, allowing a systematic classification of the toxicity levels of different nanomaterials. The purpose of this paper is to review the current research on the applications of Drosophila melanogaster model for the in vivo assessment of nanoparticles toxicity and to reveal the huge potential of this model system to provide results that could enable a proper selection of different nanostructures for a certain biomedical application.


Current Topics in Medicinal Chemistry | 2015

Insights on Metal Based Dental Implants and their Interaction with the Surrounding Tissues

Marcela Popa; Mohamed. D. Hussien; Alexandra Cirstea; Raluca Grigore; Veronica Lazar; Eugenia Bezirtzoglou; Mariana Carmen Chifiriuc; Monica Sakizlian; E. Stavropoulou; Serban Bertesteanu

At present, the use of dental implants is a very common practice as tooth loss is a frequent problem and can occur as a result of disease or trauma. An implant is usually made of biocompatible materials that do not cause rejection reactions and allow the implant union with the respective bone. To achieve this goal, the implant surface may have different structures and coatings, generally used to increase the adherence of the implant to the bone and to decrease the risk of the periimplantar inflammatory reactions. This review gives some insights of the metal based materials used for dental implants, their limits, improvement strategies as well as the pathophysiology, diagnosis, treatment and prevention of periimplantary diseases.


International Journal of Molecular Sciences | 2017

Interaction of New-Developed TiO2-Based Photocatalytic Nanoparticles with Pathogenic Microorganisms and Human Dermal and Pulmonary Fibroblasts

Ionela Nica; Miruna Stan; Marcela Popa; Mariana C. Chifiriuc; Veronica Lazar; Gratiela Pircalabioru; Iuliana Dumitrescu; Madalina Ignat; Marcel Feder; Liviu Tanase; Ionel Mercioniu; Lucian Diamandescu; Anca Dinischiotu

TiO2-based photocatalysts were obtained during previous years in order to limit pollution and to ease human daily living conditions due to their special properties. However, obtaining biocompatible photocatalysts is still a key problem, and the mechanism of their toxicity recently received increased attention. Two types of TiO2 nanoparticles co-doped with 1% of iron and nitrogen (TiO2-1% Fe–N) atoms were synthesized in hydrothermal conditions at pH of 8.5 (HT1) and 5.5 (HT2), and their antimicrobial activity and cytotoxic effects exerted on human pulmonary and dermal fibroblasts were assessed. These particles exhibited significant microbicidal and anti-biofilm activity, suggesting their potential application for microbial decontamination of different environments. In addition, our results demonstrated the biocompatibility of TiO2-1% Fe–N nanoparticles at low doses on lung and dermal cells, which may initiate oxidative stress through dose accumulation. Although no significant changes were observed between the two tested photocatalysts, the biological response was cell type specific and time- and dose-dependent; the lung cells proved to be more sensitive to nanoparticle exposure. Taken together, these experimental data provide useful information for future photocatalytic applications in the industrial, food, pharmaceutical, and medical fields.


Nanomaterials | 2016

Innovative Self-Cleaning and Biocompatible Polyester Textiles Nano-Decorated with Fe–N-Doped Titanium Dioxide

Ionela Nica; Miruna Stan; Anca Dinischiotu; Marcela Popa; Mariana Carmen Chifiriuc; Veronica Lazar; Gratiela Pircalabioru; Eugenia Bezirtzoglou; Ovidiu Iordache; Elena Varzaru; Iuliana Dumitrescu; Marcel Feder; Florin Vasiliu; Ionel Mercioniu; Lucian Diamandescu

The development of innovative technologies to modify natural textiles holds an important impact for medical applications, including the prevention of contamination with microorganisms, particularly in the hospital environment. In our study, Fe and N co-doped TiO2 nanoparticles have been obtained via the hydrothermal route, at moderate temperature, followed by short thermal annealing at 400 °C. These particles were used to impregnate polyester (PES) materials which have been evaluated for their morphology, photocatalytic performance, antimicrobial activity against bacterial reference strains, and in vitro biocompatibility on human skin fibroblasts. Microscopic examination and quantitative assays have been used to evaluate the cellular morphology and viability, cell membrane integrity, and inflammatory response. All treated PES materials specifically inhibited the growth of Gram-negative bacilli strains after 15 min of contact, being particularly active against Pseudomonas aeruginosa. PES fabrics treated with photocatalysts did not affect cell membrane integrity nor induce inflammatory processes, proving good biocompatibility. These results demonstrate that the treatment of PES materials with TiO2-1% Fe–N particles could provide novel biocompatible fabrics with short term protection against microbial colonization, demonstrating their potential for the development of innovative textiles that could be used in biomedical applications for preventing patients’ accidental contamination with microorganisms from the hospital environment.


Journal of Nanomaterials | 2016

Green Synthesis Methods of CoFe2O4 and Ag-CoFe2O4 Nanoparticles Using Hibiscus Extracts and Their Antimicrobial Potential

Dana Gingasu; Ioana Mindru; Luminita Patron; Jose Maria Calderon-Moreno; Oana Catalina Mocioiu; Silviu Preda; Nicolae Stanica; Sultana Nita; Nicoleta Dobre; Marcela Popa; Gratiela Gradisteanu; Mariana Carmen Chifiriuc

The cobalt ferrite CoFe2O4 and silver-cobalt ferrite Ag-CoFe2O4 nanoparticles were obtained through self-combustion and wet ferritization methods using aqueous extracts of Hibiscus rosa-sinensis flower and leaf. X-ray diffraction, scanning electron microscopy, Fourier transform infrared spectroscopy, and magnetic measurements were used for the characterization of the obtained oxide powders. The antimicrobial activity of the cobalt ferrite and silver-cobalt ferrite nanoparticles against Gram-positive and Gram-negative bacteria, as well as fungal strains, was investigated by qualitative and quantitative assays. The most active proved to be the Ag-CoFe2O4 nanoparticles, particularly those obtained through self-combustion using hibiscus leaf extract, which exhibited very low minimal inhibitory concentration values 0.031–0.062 mg/mL against all tested microbial strains, suggesting their potential for the development of novel antimicrobial agents.


International Journal of Molecular Sciences | 2017

Development and Sequential Analysis of a New Multi-Agent, Anti-Acne Formulation Based on Plant-Derived Antimicrobial and Anti-Inflammatory Compounds.

Crina Saviuc; Bianca Ciubucă; Gabriela Dincă; Coralia Bleotu; Veronica Drumea; Mariana Carmen Chifiriuc; Marcela Popa; Gratiela Pircalabioru; Luminita Marutescu; Veronica Lazăr

The antibacterial and anti-inflammatory potential of natural, plant-derived compounds has been reported in many studies. Emerging evidence indicates that plant-derived essential oils and/or their major compounds may represent a plausible alternative treatment for acne, a prevalent skin disorder in both adolescent and adult populations. Therefore, the purpose of this study was to develop and subsequently analyze the antimicrobial activity of a new multi-agent, synergic formulation based on plant-derived antimicrobial compounds (i.e., eugenol, β-pinene, eucalyptol, and limonene) and anti-inflammatory agents for potential use in the topical treatment of acne and other skin infections. The optimal antimicrobial combinations selected in this study were eugenol/β-pinene/salicylic acid and eugenol/β-pinene/2-phenoxyethanol/potassium sorbate. The possible mechanisms of action revealed by flow cytometry were cellular permeabilization and inhibition of efflux pumps activity induced by concentrations corresponding to sub-minimal inhibitory (sub-MIC) values. The most active antimicrobial combination represented by salycilic acid/eugenol/β-pinene/2-phenoxyethanol/potassium sorbate was included in a cream base, which demonstrated thermodynamic stability and optimum microbiological characteristics.


Journal of Sol-Gel Science and Technology | 2015

Poly(lactic-co-glycolic) acid/chitosan microsphere thin films functionalized with Cinnamomi aetheroleum and magnetite nanoparticles for preventing the microbial colonization of medical surfaces

Florin Iordache; Alexandra Elena Oprea; Valentina Grumezescu; Ecaterina Andronescu; G. Socol; Alexandru Mihai Grumezescu; Marcela Popa; George Dan Mogoşanu; Alina Maria Holban; Horia Maniu

Poly(lactic-co-glycolic) acid/chitosan microsphere coatings containing Cinnamomi aetheroleum-functionalized magnetite nanoparticles (Fe3O4@CA) were deposited by matrix-assisted pulsed laser evaporation in order to improve the surface resistance to microbial colonization. The obtained surface proved a very good biocompatibility and demonstrates that bacterial colonization is impaired on the nanomodified bioactive surfaces and also Staphylococcus aureus biofilm formation is significantly altered.Graphical Abstract


Nanomaterials | 2017

Lipoic Acid Gold Nanoparticles Functionalized with Organic Compounds as Bioactive Materials

Ioana Turcu; Irina Zarafu; Marcela Popa; Mariana C. Chifiriuc; Coralia Bleotu; Daniela C. Culita; Corneliu Ghica; Petre Ionita

Water soluble gold nanoparticles protected by lipoic acid were obtained and further functionalized by standard coupling reaction with 1-naphtylamine, 4-aminoantipyrine, and 4′-aminobenzo-15-crown-5 ether. Derivatives of lipoic acid with 1-naphtylamine, 4-aminoantipyrine, and 4′-aminobenzo-15-crown-5 ether were also obtained and characterized. All these were tested for their antimicrobial activity, as well as for their influence on mammalian cell viability and cellular cycle. In all cases a decreased antimicrobial activity of the obtained bioactive nanoparticles was observed as compared with the organic compounds, proving that a possible inactivation of the bioactive groups could occur during functionalization. However, both the gold nanoparticles as well as the functionalized bioactive nanosystems proved to be biocompatible at concentrations lower than 50 µg/mL, as revealed by the cellular viability and cell cycle assay, demonstrating their potential for the development of novel antimicrobial agents.


Nanomaterials | 2017

Development and Biocompatibility Evaluation of Photocatalytic TiO2/Reduced Graphene Oxide-Based Nanoparticles Designed for Self-Cleaning Purposes

Ionela Nica; Miruna Stan; Marcela Popa; Mariana C. Chifiriuc; Gratiela Pircalabioru; Veronica Lazar; Iuliana Dumitrescu; Lucian Diamandescu; Marcel Feder; Mihaela Baibarac; Marin Cernea; Valentin Maraloiu; Traian Popescu; Anca Dinischiotu

Graphene is widely used in nanotechnologies to amplify the photocatalytic activity of TiO2, but the development of TiO2/graphene composites imposes the assessment of their risk to human and environmental health. Therefore, reduced graphene oxide was decorated with two types of TiO2 particles co-doped with 1% iron and nitrogen, one of them being obtained by a simultaneous precipitation of Ti3+ and Fe3+ ions to achieve their uniform distribution, and the other one after a sequential precipitation of these two cations for a higher concentration of iron on the surface. Physico-chemical characterization, photocatalytic efficiency evaluation, antimicrobial analysis and biocompatibility assessment were performed for these TiO2-based composites. The best photocatalytic efficiency was found for the sample with iron atoms localized at the sample surface. A very good anti-inhibitory activity was obtained for both samples against biofilms of Gram-positive and Gram-negative strains. Exposure of human skin and lung fibroblasts to photocatalysts did not significantly affect cell viability, but analysis of oxidative stress showed increased levels of carbonyl groups and advanced oxidation protein products for both cell lines after 48 h of incubation. Our findings are of major importance by providing useful knowledge for future photocatalytic self-cleaning and biomedical applications of graphene-based materials.

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Crina Saviuc

University of Bucharest

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Alexandru Mihai Grumezescu

Politehnica University of Bucharest

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Miruna Stan

University of Bucharest

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