Sabrina Gioria | Food and Nutrition Science | Innovative Research Award

Innovative Research Award

Sabrina Gioria — Joint Research Centre – European Commission, Italy.

Sabrina Gioria
Affiliation Joint Research Centre – European Commission
Country Italy
Scopus ID 35279714700
Documents 46
Citations 1,953
h-index 23
Subject Area Food and Nutrition Science
Event Name Scientific World Research Awards
ORCID 0000-0001-7150-9523

Sabrina Gioria is a researcher, who records document scholarly works across analytical, nanomaterial, immunological and therapeutic research topics. Her documented activities include peer-reviewed journal articles addressing analytical ultracentrifugation, lipid nanoparticles, nanomaterials, toxicological assessment, and immunological responses [1]

Abstract

This academic recognition profile presents Sabrina Gioria’s documented research activity using research records and the bibliographic profile information. Her recorded publications include analytical ultracentrifugation, lipid nanoparticle therapeutics, nanomaterials and toxicological assessment. Profile presents Sabrina Gioria in relation to the Innovative Research Award.[1]

Keywords

Sabrina Gioria; Innovative Research Award; Food and Nutrition Science; nanomaterials; lipid nanoparticles; analytical ultracentrifugation; toxicological assessment; research innovation.

Introduction

The Research profile identifies Sabrina Gioria through ORCID ID 0000-0001-7150-9523 and records scholarly activities beginning with recent journal publications. The profile associates the researcher with the Joint Research Centre – European Commission and Italy. [1]

Research Profile

The documented works span biomedical and nanoscience-oriented investigations, including RNA quantification, LNP-mRNA therapeutics, cryogels, macrophage phenotype and nanosimilar complex drugs. These records demonstrate participation in multidisciplinary research collaborations involving several scientific contributors. [2]

Research Contributions

Gioria is listed as an author on studies addressing analytical methods and characterization of complex biological or nanoscale systems. Her recorded contributions include research on LNP-mRNA quality assessment, nanoplastic toxicology and immune responses to nanoparticles. [3]

Publications

The ORCID record lists 11 works, including publications from 2022 through 2026. Her documented activities include peer-reviewed journal articles addressing analytical ultracentrifugation, lipid nanoparticles, nanomaterials, toxicological assessment, and immunological responses. Recent entries include studies on RNA quantification and LNP-mRNA therapeutics, while earlier records address nanomaterials, antibodies and immunological responses. [4]

Research Impact

The Scopus profile reports 46 documents, 1,953 citations and an h-index of 23. These bibliometric figures are profile-level indicators and should be interpreted according to the database’s coverage, indexing practices and update date. [5]

Award Suitability

For the Scientific World Research Awards, the documented publication record provides verifiable evidence of research participation and multidisciplinary scholarly activity. Assessment of award suitability should consider the award’s published criteria together with independently verified research records and supporting documentation.

Conclusion

Sabrina Gioria’s available scholarly record contains multiple peer-reviewed research contributions across analytical and nanoscience-related subjects. The ORCID record and Scopus information provide complementary identifiers and bibliometric context for academic recognition. [1]

References

  1. ORCID. (n.d.). Sabrina Gioria, ORCID iD 0000-0001-7150-9523. ORCID.
    https://orcid.org/0000-0001-7150-9523
  2. Elsevier. (n.d.). Scopus author details: Sabrina Gioria, Author ID 35279714700. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=35279714700
  3. Paracchini, V., Petrillo, M., Fornara, L., Gioria, S., et al. (2026). Critical Evaluation of Key Methods for RNA Quantification. International Journal of Molecular Sciences.
    https://doi.org/10.3390/ijms27167379
  4. Gioria, S., et al. (2025). Challenges in Measuring In Vitro Activity of LNP-mRNA Therapeutics. International Journal of Molecular Sciences.
    https://doi.org/10.3390/ijms26178152
  5. Gioria, S., et al. (2024). Analytical Ultracentrifugation to Assess the Quality of LNP-mRNA Therapeutics. International Journal of Molecular Sciences.
    https://doi.org/10.3390/ijms25115718

Ahmed Abdelkhalek | Agricultural Science | Best Researcher Award

Assoc. Prof. Dr. Ahmed Abdelkhalek | Agricultural Science | Best Researcher Award

Associate Professor | City of Scientific Research and Technological Applications | Egypt 

Assoc. Prof. Dr. Ahmed Abdelkhalek is a distinguished Egyptian scientist currently serving at the City of Scientific Research and Technological Applications, New Borg El-Arab City, Alexandria, Egypt. With a profound academic background in Microbiology, Molecular Biology, Plant Virology, Biotechnology, and Biological Control, Dr. Abdelkhalek has established himself as a leading figure in the field of plant–microbe interactions and sustainable disease management. He earned his higher education degrees specializing in plant pathology and biotechnology, focusing his research on molecular mechanisms underlying plant resistance to pathogens. Over the years, he has accumulated extensive professional experience through research collaborations, publications, and supervision of scientific projects centered on eco-friendly agricultural practices. His research interests include biological control of plant pathogens, plant immunity induction, nanobiotechnology applications in plant protection, and molecular approaches for combating viral, fungal, and bacterial diseases. Demonstrating outstanding research skills in molecular diagnostics, bio-nanotechnology, microbial biocontrol development, and gene expression analysis, he has published numerous impactful papers in reputed international journals. According to Scopus metrics, Dr. Abdelkhalek has achieved over 2,900 citations, authored more than 80 documents, and holds an impressive h-index of 31, highlighting the influence and quality of his scientific output. His studies on green-synthesized nanoparticles, Trichoderma-based biocontrol, and plant-derived antiviral compounds have significantly advanced eco-safe plant protection strategies. Throughout his career, he has received several awards and honors for his contributions to plant biotechnology and sustainable agriculture, reflecting his dedication to innovation and scientific excellence. Dr. Abdelkhalek’s work emphasizes integrating biotechnology with environmental sustainability to enhance crop productivity and global food security. In conclusion, his remarkable achievements, scholarly leadership, and continued commitment to advancing biotechnological solutions for plant health make him a highly respected and influential figure in modern agricultural research.

Profiles: Scopus | ORCID | Google Scholar 

Featured Publications

  1. Abdelkhalek, A., & Al-Askar, A. A. (2020). Green synthesized ZnO nanoparticles mediated by Mentha spicata extract induce plant systemic resistance against Tobacco mosaic virus. Applied Sciences, 10(15), 5054. Cited by: 207.

  2. Shamseldin, A., Abdelkhalek, A., & Sadowsky, M. J. (2017). Recent changes to the classification of symbiotic, nitrogen-fixing, legume-associating bacteria: A review. Symbiosis, 71(2), 91–109. Cited by: 121.

  3. Abdelkhalek, A., Salem, M. Z. M., Kordy, A. M., Salem, A. Z. M., & Behiry, S. I. (2020). Antiviral, antifungal, and insecticidal activities of Eucalyptus bark extract: HPLC analysis of polyphenolic compounds. Microbial Pathogenesis, 147, 104383. Cited by: 96.

  4. Abo-Zaid, G. A., Matar, S. M., & Abdelkhalek, A. (2020). Induction of plant resistance against Tobacco mosaic virus using the biocontrol agent Streptomyces cellulosae isolate Actino 48. Agronomy, 10(11), 1620. Cited by: 75.

  5. Kamel, S. M., Elgobashy, S. F., Omara, R. I., Derbalah, A. S., Abdelfatah, M., … & Abdelkhalek, A. (2022). Antifungal activity of copper oxide nanoparticles against root rot disease in cucumber. Journal of Fungi, 8(9), 911. Cited by: 74.