Filomena Napolitano | Immunology and Microbiology | Innovative Research Award

Innovative Research Award

Filomena Napolitano — University of Naples Federico II

Filomena Napolitano
Affiliation University of Naples Federico II
Country Italy
Scopus ID 57201650666
Documents 30
Citations 395
h-index 13
Subject Area Immunology and Microbiology
Event World Science Awards
ORCID 0000-0003-1925-9912

Filomena Napolitano is a researcher affiliated with the University of Naples Federico II, Italy, whose stated subject area is Immunology and Microbiology. The supplied Scopus profile reports 30 documents, 395 citations, and an h-index of 13, providing quantitative indicators of the scholarly record associated with the identified author profile. [1]

This academic recognition page presents the available research information in relation to the Innovative Research Award under the World Science Awards. The profile combines bibliographic indicators with a qualitative discussion of research contribution, publication activity, and potential award relevance while avoiding conclusions that cannot be established from the supplied data alone. [3]

Abstract

Filomena Napolitano is a researcher associated with the University of Naples Federico II in Italy and identified within the broad subject area of Immunology and Microbiology. The supplied bibliometric information records 30 documents, 395 citations, and an h-index of 13. [1] These indicators provide a quantitative description of the scholarly record represented by the identified Scopus author profile. The researcher is considered in connection with the Innovative Research Award of the World Science Awards, with the available evidence supporting an assessment of research activity and scholarly visibility while recognizing that bibliometric measures alone do not establish research quality or innovation.

Keywords

  • Innovative Research Award
  • Filomena Napolitano
  • Immunology
  • Microbiology
  • Immunology and Microbiology Research
  • Pharmaceutical and Biomedical Research
  • Research Impact
  • University of Naples Federico II
  • World Science Awards

Introduction

Immunology and Microbiology encompass interconnected areas of biomedical science concerned with immune responses, infectious organisms, host–microbe interactions, disease mechanisms, diagnostics, therapeutics, and related biological processes. Research across these fields contributes to understanding health and disease and can support the development of new scientific approaches in medicine and biotechnology.

Within this academic context, Filomena Napolitano is identified with the University of Naples Federico II in Italy. The supplied Scopus record reports 30 documents, 395 citations, and an h-index of 13. [1] These values provide a snapshot of publication and citation activity associated with the identified author profile, while the researcher’s ORCID identifier, 0000-0003-1925-9912, provides a persistent identifier for scholarly attribution. [2]

Research Profile

The available profile information places Filomena Napolitano within Immunology and Microbiology and identifies the University of Naples Federico II as the institutional affiliation. The supplied Scopus author identifier is 57201650666. [1] The ORCID identifier is 0000-0003-1925-9912, which can assist in distinguishing the researcher’s scholarly output from that of other authors with similar names. [2]

Bibliometric indicators should be interpreted alongside the disciplinary context, publication chronology, authorship structure, journal characteristics, and research objectives represented in individual studies. Accordingly, the reported metrics provide useful descriptive information but should not be considered a comprehensive assessment of scientific originality, methodological rigor, or practical significance.

Research Contributions

The supplied information identifies Immunology and Microbiology as the principal subject area associated with Filomena Napolitano. Research in this domain can address fundamental and applied questions involving immune regulation, microorganisms, host–pathogen relationships, cellular responses, molecular mechanisms, disease processes, and the development of diagnostic or therapeutic strategies. The specific contributions of an individual researcher should be established through publication-level evidence rather than inferred solely from aggregate bibliometric measures.

  • A documented scholarly record comprising 30 reported documents.
  • A reported citation count of 395 associated with the supplied Scopus profile.
  • An h-index of 13 in the supplied bibliometric record.
  • Research affiliation with the University of Naples Federico II.
  • Academic positioning within Immunology and Microbiology.
  • A persistent ORCID identifier supporting researcher identity and publication attribution.

A fuller evaluation of research contribution would consider the originality of the research questions, methodological quality, reproducibility, interdisciplinary collaboration, contribution to knowledge, and evidence of application or influence within the relevant scientific community.

Publications

The supplied Scopus information reports 30 documents associated with Filomena Napolitano’s author profile. [1] The provided input does not include individual publication titles, journal details, publication dates, article types, or verified DOI identifiers. Consequently, specific publications and DOI records are not attributed here without direct publication-level verification.

The complete publication record may be examined through the researcher’s Scopus author profile and ORCID record. Scopus provides bibliographic and citation information, while ORCID provides persistent researcher identification and can connect scholarly works with the appropriate researcher record. [1] [2]

No publication-specific DOI has been supplied in the source information for this article. Where individual publications are subsequently verified, their DOI records can be incorporated using persistent DOI links such as https://doi.org/.

Research Impact

The supplied bibliometric record contains 395 citations across 30 documents. Based on these reported values, the citation-to-document ratio is approximately 13.2 citations per document. The profile also reports an h-index of 13, indicating that the indexed record contains at least 13 publications that have each received at least 13 citations under the relevant counting conditions. [1]

Citation measures can provide evidence of scholarly visibility, but citation practices differ across fields, publication types, research communities, and publication periods. For this reason, citation count and h-index should be interpreted together with the substance of the research, the significance of individual findings, methodological quality, collaboration, and evidence of influence beyond citation activity.

Award Suitability

The Innovative Research Award associated with the World Science Awards provides a context for recognizing research activity and scientific contributions. [3] Based on the supplied information, Filomena Napolitano has a documented research profile in Immunology and Microbiology, an affiliation with the University of Naples Federico II, 30 reported documents, 395 citations, and an h-index of 13. [1]

These indicators provide relevant quantitative evidence for an academic recognition profile. The ORCID record further provides a persistent scholarly identifier for the researcher. [2] Nevertheless, final award suitability should be determined using the official award criteria together with verified publication records, research originality, scientific contribution, methodological strength, academic development, and supporting evidence.

  1. Review the verified publication record and research outputs associated with the researcher.
  2. Assess originality, scientific relevance, methodological quality, and contribution to Immunology and Microbiology.
  3. Consider citation and other bibliometric indicators as supporting evidence rather than as the sole basis for evaluation.
  4. Apply the official World Science Awards evaluation criteria to determine final award eligibility and recognition.

Conclusion

Filomena Napolitano is a researcher affiliated with the University of Naples Federico II in Italy and associated with the field of Immunology and Microbiology. The supplied Scopus profile reports 30 documents, 395 citations, and an h-index of 13, while the ORCID identifier 0000-0003-1925-9912 provides a persistent identifier for the researcher’s scholarly identity. [1] [2]

The available information establishes a substantive bibliometric profile that may be considered in connection with the Innovative Research Award. A complete recognition decision should nevertheless incorporate verified research outputs and qualitative evidence of innovation, originality, scientific contribution, and research significance, alongside the official criteria of the World Science Awards. [3]

References

    1. Elsevier. (n.d.). Scopus author details: Filomena Napolitano, Author ID 57201650666. Scopus.
      https://www.scopus.com/authid/detail.uri?authorId=57201650666

Fahimeh Alizadeh | Immunology and Microbiology | Best Researcher Award

Assoc Prof Dr. Fahimeh Alizadeh | Immunology and Microbiology | Best Researcher Award

Supervisor of Islamic Azad University, Iran.

Dr. Fahimeh Alizadeh is an accomplished researcher and educator in the field of microbial biotechnology, currently serving as an Associate Professor at the Department of Biology, Islamic Azad University, Gachsaran, Iran. With over two decades of experience in academia, she has previously held roles at the Yasooj Branch of Islamic Azad University, including positions as Head of the Department of Biology and Paramedical Sciences. Dr. Alizadeh’s research expertise encompasses microbial interactions, nanoparticle applications, and antifungal and antibacterial agents. Her significant contributions include research on the molecular mechanisms of Candida species, nanoparticle-based therapies, and biofilm formation. She has secured notable research grants and published extensively in high-impact journals. Dr. Alizadeh holds a Ph.D. from the University of Putra Malaysia and a Post-Doctoral fellowship from the same institution. Her extensive publication record and leadership in scientific research underscore her prominent role in her field.

Profile
Education

Fahimeh Alizadeh holds a robust academic background in microbiology and microbial biotechnology. She completed her Bachelor’s and Master’s degrees in Biology-Microbiology at Islamic Azad University, Iran, where she laid the foundation for her specialization. She further advanced her expertise by earning a Ph.D. in Microbial Biotechnology from the University of Putra Malaysia, Malaysia, where she delved into advanced research techniques and microbial interactions. Dr. Alizadeh continued her scholarly journey with a post-doctoral fellowship at the same institution, focusing on cutting-edge microbial biotechnology. Her educational trajectory reflects a strong commitment to understanding microbial systems and advancing biotechnological applications, equipping her with comprehensive knowledge and research capabilities in her field.

Professional Experience

Dr. Fahimeh Alizadeh has an extensive academic and research career, currently serving as an Associate Professor in the Department of Biology at Gachsaran Branch, Islamic Azad University, Iran since 2023. Prior to this role, she was an Assistant Professor at Yasooj Branch, Islamic Azad University from 2000 to 2023, where she also held leadership positions as Head of the Department of Biology and Head of the Department of Paramedical Sciences at different intervals. Her teaching expertise spans across various subjects, including Biology, Medical Biochemistry, Immunology, and Microbiology. Dr. Alizadeh’s research experience is highlighted by her involvement in several significant projects and grants, including studies on microbial interactions, nanoparticles, and antifungal activities. Her contributions to the field are reflected in her numerous journal publications and research grants, underscoring her commitment to advancing scientific knowledge in microbial biotechnology and related disciplines.

Research Interest

Fahimeh Alizadeh’s research interests encompass a wide array of topics in microbial biotechnology and medical microbiology. Her work primarily focuses on exploring molecular mechanisms underlying microbial interactions, particularly involving fungal pathogens such as Candida albicans. She is deeply involved in studying the inhibitory effects of natural compounds and nanoparticles on pathogenic microorganisms and their biofilms. Her research aims to elucidate the molecular targets and mechanisms of antimicrobial agents, including thymol- and carvacrol-loaded nanoparticles, in combating drug-resistant strains and cancer cells. Additionally, Alizadeh investigates the role of transcription factors and signaling molecules in plant-pathogen interactions, emphasizing the defense responses in oil palm against fungal pathogens. Her extensive studies on the molecular and phenotypic characterization of microbial resistance and biofilm formation contribute significantly to the development of novel therapeutic strategies and antimicrobial agents.

Research Skills

Dr. Fahimeh Alizadeh demonstrates exceptional research skills in the field of microbiology and microbial biotechnology. Her expertise encompasses a broad range of techniques and methodologies, including the isolation and characterization of transcription factors, the development of nanoparticles for therapeutic applications, and the study of antifungal and antibacterial properties of natural compounds. Dr. Alizadeh excels in molecular profiling and transcriptomic analysis, employing massive parallel sequencing to investigate gene expression during pathogen interactions. Her research frequently involves complex in vitro and in vivo studies, such as evaluating the inhibitory effects of various compounds on pathogenic microorganisms and cancer cell lines. Her ability to synthesize and analyze data from diverse experimental approaches highlights her proficiency in translating fundamental research into practical applications. This comprehensive skill set underscores her significant contributions to advancing knowledge in microbial biotechnology and therapeutic development.

Awards and Recognition

Dr. Fahimeh Alizadeh has garnered notable recognition for her impactful contributions to microbial biotechnology and her extensive research in the field. She has been acknowledged for her groundbreaking work on the molecular mechanisms of antifungal agents and nanoparticles in combating resistant pathogens. Her research projects, such as the study on thymol- and carvacrol-loaded nanoparticles and Candida species, have significantly advanced the understanding of antifungal resistance mechanisms. Dr. Alizadeh’s publications in prominent journals, including Pharmaceutical Sciences and Applied Biochemistry and Biotechnology, highlight her expertise and commitment to advancing medical and environmental microbiology. Her leadership roles as Head of the Department of Biology at Yasooj Branch and her active involvement in international research projects further demonstrate her excellence in academia. These achievements underscore her significant contributions to science and her esteemed position in the research community.

Conclusion

Fahimeh Alizadeh is a highly qualified candidate for the Research for Best Researcher Award, with extensive experience in academia, significant research contributions, and a strong publication record. Her leadership roles and research projects highlight her expertise and commitment to advancing microbial biotechnology.

Publications Top Notes

  • Anti-cancer activity of secreted aspartyl proteinase protein from Candida tropicalis on human cervical cancer HeLa cells
    • Authors: E.P. Kokhdan, P. Khodavandi, M.H. Ataeyan, A. Khodavandi, A. Zaheri
    • Year: 2024
  • Possible Molecular Targeting of Biofilm-Associated Genes by Nano-Ag in Candida albicans
    • Authors: M.B. Esfahani, A. Khodavandi, F. Alizadeh, N. Bahador
    • Year: 2024
  • Possibility of intrauterine transmission from mother to fetus/newborn: Systematic review and meta-analysis of diagnostic methods to detect SARS-CoV-2 infection
    • Authors: P. Khodavandi, A. Khodavandi, F. Alizadeh, L. Gholizadeh
    • Year: 2024
    • Citations: 1
  • Hyphae-specific genes: Possible molecular targets for magnetic iron oxide nanoparticles alone and combined with visible light in Candida albicans
    • Authors: P. Khodavandi, A. Hosseini, A. Khodavandi, A. Azizi, M. Gerami
    • Year: 2023
    • Citations: 1
  • Antibacterial and Anti-Biofilm Activities of Microbial Synthesized Silver and Magnetic Iron Oxide Nanoparticles Against Pseudomonas aeruginosa
    • Authors: M.B. Esfahani, A. Khodavandi, F. Alizadeh, N. Bahador
    • Year: 2023
    • Citations: 3
  • Biofilm-associated genes as potential molecular targets of nano-Fe3O4 in Candida albicans
    • Authors: M. Baghiat Esfahani, A. Khodavandi, F. Alizadeh, N. Bahador
    • Year: 2023
    • Citations: 1
  • Synergistic interaction of fluconazole/ sodium bicarbonate on the inhibition of Candida glabrata phospholipase gene
    • Authors: S.M.K. Hosseini, F. Alizadeh, S. Nouripour-Sisakht, A. Khodavandi
    • Year: 2022
  • Resistance profiling of metallo-betalactamase genes in clinical isolates of Enterobacteriaceae: Emergence of multidrug resistance
    • Authors: H. Alizadeh, A. Khodavandi, F. Alizadeh, N. Bahador
    • Year: 2021
    • Citations: 2
  • Antifungal activity of menthol alone and in combination on growth inhibition and biofilm formation of Candida albicans
    • Authors: N. Norouzi, F. Alizadeh, A. Khodavandi, M. Jahangiri
    • Year: 2021
    • Citations: 15
  • Association between dietary intake and risk of ovarian cancer: a systematic review and meta-analysis
    • Authors: A. Khodavandi, F. Alizadeh, A.F.A. Razis
    • Year: 2021
    • Citations: 28

 

Svetlana Pleskova | Immunology and Microbiology | Best Researcher Award

Prof. Svetlana Pleskova | Immunology and Microbiology | Best Researcher Award

Head of the laboratory of Nizhny Novgorod State University named after N.I. Lobachevsky, Russia.

Professor Svetlana Pleskova, a prominent figure in nanotechnology and biotechnology, currently holds key academic positions at Alekseev Nizhny Novgorod Technical State University and Lobachevsky Nizhny Novgorod State University. She has a robust educational foundation, with a Doctorate from the Alekseev Technical State University and a PhD from the Department of Microbiology and Immunology of the Medical State Academy, both in Nizhni Novgorod. Her professional journey includes leading laboratories, conducting cutting-edge research in atomic force microscopy, and studying the interactions between nanoparticles and blood cells. Svetlana’s research interests encompass septicemia, antibiotic resistance diagnostics, and biocompatibility of advanced nanoparticles. With over 150 publications, numerous awards, and active participation in scientific conferences, she is a distinguished member of the Federation of the Societies of Biochemistry and Molecular Biology and the Federation of Biotechnology. Her contributions to the field are significant and widely recognized.

Professional Profiles:

Education

Svetlana Pleskova holds a Doctorate in Biotechnology, Physical, and Analytical Chemistry (Physiology, Allergology, and Immunology) from Alekseev Technical State University, Nizhni Novgorod, completed between 2007 and 2009. She earned her PhD in Physiology, Allergology, and Immunology from the Department of Microbiology and Immunology at the Medical State Academy in Nizhni Novgorod from 1998 to 2001. Svetlana also holds a Bachelor’s degree in Molecular Biology and Immunology from Lobachevsky Nizhni Novgorod State University, graduating with honors (cum laude) in 1998. Her educational journey began at Medical School in Nizhni Novgorod, where she graduated with honors (cum laude) in 1992.

Professional Experience

Professor Svetlana Pleskova is a distinguished researcher in nanotechnology and biotechnology. Since 2016, she has been a Professor at Alekseev Nizhny Novgorod Technical State University and leads the scanning probe microscopy laboratory at Lobachevsky Nizhny Novgorod State University. Her research focuses on septicemia, septicopiemia, and antibiotic resistance diagnostics. Svetlana previously led the Nanobiotechnology and Atomic Force Microscopy group, focusing on nanoparticle biocompatibility. From 2009 to 2013, she was a Professor and Leading Research Fellow at Nizhny Novgorod Technical State University, researching nanoparticle-blood cell interactions and TiO2-nanofilms. She has also worked under Prof. Solioz in Switzerland and Prof. Lesniewska in France, creating nanopumps and studying cell interactions. Her earlier roles include Associate Professor, Assistant, and Researcher in microbiology, immunology, and biotechnology.

Research Interest

Professor Svetlana Pleskova’s research interests lie at the intersection of nanotechnology, biotechnology, and medical sciences. She focuses on studying septicemia and septicopiemia through advanced microscopy techniques such as atomic force microscopy, scanning ion-conducting microscopy, and scanning electron microscopy. Her work explores the adhesion contacts between endothelial cell receptors and blood cells modified by bacteria and nanoparticles. Additionally, she is dedicated to the development of nanotips for real-time antibiotic resistance diagnostics. Svetlana is also interested in the biocompatibility of nanoparticles, including quantum dots, nanoscale luminophores, and magnetic nanoparticles, as well as the bactericidal properties of TiO2-nanofilms. Her diverse research aims to advance diagnostic and therapeutic approaches in healthcare.

 Award and Honors

Professor Svetlana Pleskova has received numerous awards and honors throughout her distinguished career. She has been recognized with 14 awards and grants, including 6 where she served as the head. Her accolades reflect her significant contributions to the fields of nanotechnology and biotechnology. Svetlana is an esteemed member of the Federation of Societies of Biochemistry and Molecular Biology and the Federation of Biotechnology. Additionally, she serves as a reviewer for the Russian Science Foundation and the Research Institute of FGBNU Rinkc, further highlighting her expertise and influence in her field.

 Research Skills

Professor Svetlana Pleskova possesses extensive research skills in nanotechnology, biotechnology, and molecular biology. She is proficient in atomic force microscopy, scanning ion-conducting microscopy, and scanning electron microscopy, which she utilizes to study septicemia, septicopiemia, and adhesion contacts between endotheliocytes and blood cells. Svetlana has expertise in creating nanotips for real-time diagnostics of antibiotic resistance and developing nanopumps for heavy metals. Her work includes the study of biocompatibility of nanoparticles, quantum dots, nanoscale luminophores, and magnetic nanoparticles. Additionally, she has experience in using ELISA for diagnostics and in the physiological modification of the complement system.

Publications

  1. “Nanomotion of bacteria to determine metabolic profile”
    • Authors: Pleskova, S.N., Lazarenko, E.V., Bezrukov, N.A., Dokukin, M.E., Surodin, S.I.
    • Journal: Nanotechnology and Precision Engineering
    • Year: 2024
    • Citations: 0
  2. “A Study of EA.hy926 Endothelial Cells Using Atomic Force and Scanning Ion Conductance Microscopy”
    • Authors: Pleskova, S.N., Bezrukov, N.A., Gorshkova, E.N., Bobyk, S.Z., Lazarenko, E.V.
    • Journal: Cell and Tissue Biology
    • Year: 2024
    • Citations: 0
  3. “Exploring the Process of Neutrophil Transendothelial Migration Using Scanning Ion-Conductance Microscopy”
    • Authors: Pleskova, S.N., Bezrukov, N.A., Gorshkova, E.N., Bobyk, S.Z., Lazarenko, E.V.
    • Journal: Cells
    • Year: 2023
    • Citations: 1
  4. “ROS Production by a Single Neutrophil Cell and Neutrophil Population upon Bacterial Stimulation”
    • Authors: Pleskova, S.N., Erofeev, A.S., Vaneev, A.N., Bezrukov, N.A., Lazarenko, E.V.
    • Journal: Biomedicines
    • Year: 2023
    • Citations: 0
  5. “A New Method for Express Detection of Antibiotic Resistance”
    • Authors: Pleskova, S.N., Lazarenko, E.V., Sudakova, I.S., Kriukov, R.N., Bezrukov, N.A.
    • Journal: Applied Biochemistry and Microbiology
    • Year: 2023
    • Citations: 2
  6. “Study of EA.hy926 Endothelial Cells by Atomic Force and Scanning Ion-Conductance Microscopy”
    • Authors: Pleskovaa, S.N., Bezrukov, N.A., Gorshkova, E.N., Bobyk, S.Z., Lazarenkoa, E.V.
    • Journal: Tsitologiya
    • Year: 2023
    • Citations: 0
  7. “Differences in bacteria nanomotion profiles and neutrophil nanomotion during phagocytosis”
    • Authors: Pleskova, S.N., Lazarenko, E.V., Bezrukov, N.A., Boryakov, A.V., Kriukov, R.N.
    • Journal: Frontiers in Microbiology
    • Year: 2023
    • Citations: 4
  8. “Staphylococcus aureus Causes the Arrest of Neutrophils in the Bloodstream in a Septicemia Model”
    • Authors: Pleskova, S.N., Bobyk, S.Z., Kriukov, R.N., Gorshkova, E.N., Bezrukov, N.A.
    • Journal: Microorganisms
    • Year: 2022
    • Citations: 1
  9. “High-Resolution Scanning Ion-Conductance Microscopy for the Study of Blood Cell Morphology and Rigidity”
    • Authors: Bezrukov, N.A., Pleskova, S.N., Bobyk, S.Z., Boryakov, A.V.
    • Journal: Opera Medica et Physiologica
    • Year: 2022
    • Citations: 0
  10. “Nanovibrations of Atomic Force Microscope Cantilevers as a System for Real Time Detection of Antibiotic Resistance in Bacteria”
    • Authors: Pleskova, S.N., Fomichev, O.I., Kriukov, R.N., Sudakova, I.S.
    • Journal: Biophysics (Russian Federation)
    • Year: 2021
    • Citations: 2