Marwa Atwa | Biomaterials | Best Researcher Award

Best Researcher Award

Marwa Atwa
Researcher Marwa Atwa
Affiliation Plant Pathology Research Institute
Country Egypt
Scopus ID 57226132753
Documents 3
Citations 9
h-index 2
Subject Area Biomaterials
Event International Material Scientist Awards

Marwa Atwa is a researcher affiliated with the Plant Pathology Research Institute in Egypt. Her indexed scholarly profile is associated with the subject area of biomaterials. The supplied Scopus profile records three documents, nine citations, and an h-index of 2, providing a concise bibliometric overview of her indexed research activity. This academic recognition profile presents the available bibliometric information in the context of the Best Researcher Award associated with the International Material Scientist Awards. [1]

Abstract

Marwa Atwa, affiliated with the Plant Pathology Research Institute in Egypt, is represented in the supplied Scopus record by three indexed documents, nine citations, and an h-index of 2. Her listed subject area is biomaterials, a multidisciplinary research domain that intersects materials science, biology, chemistry, engineering, and related applied sciences. [1]

Keywords

Marwa Atwa; Plant Pathology Research Institute; Egypt; biomaterials; materials science; plant pathology; agricultural biotechnology; biological control; biostimulants; microbial bioformulations; plant growth promotion; Rhizoctonia root rot; Entrophospora lutea; sustainable agriculture; plant–microbe interactions; Scopus research; bibliometric analysis; citation impact; scholarly publications; h-index; research excellence; academic recognition; Best Researcher Award; International Material Scientist Awards. [2]

Introduction

Research recognition commonly involves consideration of multiple dimensions of scholarly activity, including publication output, citation impact, research quality, disciplinary relevance, and the significance of individual contributions. Bibliometric indicators such as publication counts, citation counts, and the h-index can provide quantitative evidence of scholarly visibility, although they are best interpreted alongside qualitative assessment.[1]

Research Profile

The supplied research profile identifies Marwa Atwa with the Plant Pathology Research Institute in Egypt and associates her indexed scholarly activity with biomaterials. According to the supplied Scopus information, her author identifier with three documents, nine citations, and an h-index of 2. These values represent the supplied indexed record and may change as databases are updated, records are corrected. [3]

Research Contributions

Based on the information supplied for this profile, the available evidence establishes a scholarly association with biomaterials but does not provide sufficient publication-level information to make specific claims regarding individual discoveries, experimental methods, technologies, or principal research findings. Such claims should be supported by the researcher’s original publications and other verifiable scholarly records.[2]

Publications

The supplied Scopus record indicates 3 indexed documents associated with the researcher. The information provided for this article does not include the titles, journals, publication years, author lists, or DOI identifiers of those individual documents. Accordingly, specific publication-level claims are not assigned here without additional bibliographic verification.For a formal award dossier. [1]

Research Impact

The supplied record reports nine citations for three indexed documents, indicating that the publications represented in the profile have received measurable citation activity. Citation counts can provide evidence of scholarly visibility, but they can vary substantially among disciplines, publication years, document types, and research topics. They therefore require contextual interpretation rather than being used as an isolated measure of research excellence.[3]

Award Suitability

For a comprehensive award evaluation, the bibliometric indicators should be reviewed together with the quality and relevance of publications, originality of research, documented scientific contributions, collaboration, research applications, conference activity, patents where applicable, and other supporting academic evidence. The current profile provides quantitative indicators but does not, by itself, establish comparative ranking against all eligible researchers.[2]

Conclusion

Marwa Atwa, affiliated with the Plant Pathology Research Institute in Egypt, has a supplied Scopus profile comprising three indexed documents, nine citations, and an h-index of 2. Her listed subject area is biomaterials. These indicators establish a measurable indexed research profile and provide quantitative evidence that can contribute to an academic recognition assessment.The available information should nevertheless be interpreted as one component of a broader scholarly evaluation.[3]

References

  1. Elsevier. (n.d.). Scopus author details: Marwa Atwa, Author ID 57226132753. Scopus.
    https://www.scopus.com/pages/authors/57226132753
  2. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  3. Atwa, M. A. M.(2026). Bioformulations of Entrophospora lutea enriched with biostimulants for growth promotion and control of Rhizoctonia root rot in lupine. Scientific Reports, 16(1).
    https://doi.org/10.1038/s41598-026-66529-7

Bindiya Barsola | Biomaterials | Innovative Research Award

Innovative Research Award

Bindiya Barsola
Affiliation Arni University
Country India
Scopus ID 57810558400
Documents 13
Citations 131
h-index 6
Subject Area Biomaterials
Event International Material Scientist Awards

Bindiya Barsola is a researcher affiliated with Arni University, India, whose supplied research profile is associated with the subject area of biomaterials. The available Scopus information identifies 13 documents, 131 citations, and an h-index of 6. These bibliometric indicators provide a quantitative overview of the research output and scholarly visibility represented in the supplied profile. The Innovative Research Award recognition profile places Barsola’s research record within the broader context of materials science and biomaterials research.[1]

Abstract

This academic recognition profile presents the research record of Bindiya Barsola, affiliated with Arni University, India, in the field of biomaterials. According to the supplied Scopus profile information, Barsola has 13 indexed documents, 131 citations, and an h-index of 6 These indicators suggest an established body of indexed scholarly output with measurable citation visibility. [1]

Keywords

Biomaterials; Materials Science; Innovative Research; Arni University; Scopus; Bibliometrics; Research Impact; Citation Analysis; Academic Recognition; International Material Scientist Awards; Biomaterials Research; Scientific Innovation; Materials Engineering; Research Productivity; Academic Achievement; Scientific Recognition. [2]

Introduction

Biomaterials research encompasses the investigation, design, characterization, and application of materials intended to interact with biological systems. The field intersects materials science, biology, and related disciplines, and contributes to the development of materials for biomedical and technological applications.Within this interdisciplinary environment and h-index are commonly used to describe aspects of scholarly output and citation visibility. [1]

Research Profile

Bindiya Barsola is a researcher affiliated with Arni University, India, whose supplied academic profile identifies biomaterials as the principal subject area. Her research profile is situated within the broader field of materials science, with biomaterials representing an interdisciplinary area connecting materials engineering, biological sciences, and biomedical applications. [3]

Research Contributions

The supplied subject classification places Barsola’s research within biomaterials, a field concerned with the relationship between material properties and biological environments. Research in this area may involve material synthesis, surface modification, characterization, biocompatibility, mechanical performance, degradation, and application-oriented evaluation.[4]

Publications

The supplied Scopus record reports 13 documents associated with Bindiya Barsola. Because individual publication titles, journals, publication years,  this profile does not attribute specific papers or research findings to the researcher without additional bibliographic verification.For a complete publication analysis, individual records can be evaluated according to publication venue,  collaboration patterns, and persistent identifiers.[1]

Research Impact

The supplied profile reports 131 citations across 13 Scopus documents, corresponding to an average of approximately 10.1 citations per indexed document when calculated from the provided aggregate figures. This value is descriptive rather than a measure of research quality, because citation patterns vary substantially among disciplines, under the supplied Scopus record, at least six indexed publications have received at least six citations each. [2]

Award Suitability

Based on the information provided, the profile demonstrates several characteristics relevant to an academic recognition assessment: a defined research area, an identifiable institutional affiliation, indexed scholarly documents, citation activity, and a measurable h-index. However, a complete award assessment should also consider the originality of research and the specific eligibility and evaluation criteria of the award.[3]

Conclusion

In the context of the Innovative Research Award under the International Material Scientist Awards, the supplied profile demonstrates relevance to materials science through its biomaterials focus and provides measurable bibliometric evidence of scholarly activity. A definitive assessment of research excellence, however, should incorporate publication-level evidence and the formal criteria established by the awarding organization.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Bindiya Barsola, Author ID 57810558400. Scopus.
    https://www.scopus.com/pages/authors/57810558400
  2. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  3. Jha, A., Barsola, B., Pathania, D., Sonu, Raizada, P., Thakur, P., Singh, P., Rustagi, S., Khosla, A., & Chaudhary, V. (2024). Nano-biogenic heavy metals adsorptive remediation for enhanced soil health and sustainable agricultural production. Environmental Research, 252, 118926.
    https://doi.org/10.1016/j.envres.2024.118926
  4. Barsola, B., & Kumari, P. (2022). Green synthesis of nano-propolis and nanoparticles (Se and Ag) from ethanolic extract of propolis, their biochemical characterization: A review. Green Processing and Synthesis, 11(1), 659–673.
    https://doi.org/10.1515/gps-2022-0059

Prof. Dr. Turgay Cakmak | Biomaterials | Best Researcher Award

Prof. Dr. Turgay Cakmak | Biomaterials | Best Researcher Award

Professor Turgay Cakmak is a leading expert in plant molecular biology and microalgal biotechnology. He currently serves at Istanbul Medeniyet University, where he has held faculty roles. His research focuses on cellular redox regulation, alternative oxidase pathways, and the biotechnological potential of stress-adapted microalgae. With international research experience in Sweden and the USA, he has led multiple nationally funded projects and supervised numerous graduate theses. His work bridges fundamental science and applied innovation in sustainable bioenergy, environmental resilience, and molecular plant responses.

Prof. Dr. Turgay Cakmak | Istanbul Medeniyet University | Turkey

Profile

SCOPUS

ORCID

GOOGLE SCHOLAR

Education 

Professor Turgay Cakmak holds a Doctor of Philosophy in Biology from Atatürk University. His doctoral research included collaborative experimental work carried out at two internationally recognized institutions: Lund University in Sweden and California State University San Marcos in the United States. His thesis, titled niversity, where he investigated the impacts of electrical field application on the cold resistance of selected plant species. His acade Plant Respiratory Chain: Regulation of Cellular Redox by Inorganic Nitrogen Sources and Redox Responses of Alternative Oxidase, was supervised by Professor Rahmi Dumlupinar. He also holds a Master of Science degree in Biology, completed in December at Atatürk Umic journey began with a Bachelor of Science in Biology at the same university.

Experience

Professor Turgay Cakmak has over two decades of academic and research experience in molecular biology and genetics. He currently serves as a professor at Istanbul Medeniyet University, where he has held academic positions including assistant and associate professorships. His postdoctoral research was conducted at Bilkent University’s National Nanotechnology Research Center. He also gained international research experience as a research assistant at Lund University in Sweden and California State University San Marcos in the United States. Earlier in his career, he served as a research assistant at Atatürk University, contributing to numerous national and international projects in plant physiology, redox biology, and microalgal biotechnology.

Awards and Recognitions

Throughout his academic journey, Professor Cakmak has earned multiple honors and competitive research fellowships. These include a postdoctoral research scholarship awarded for work on anatomical and biochemical responses of Arabidopsis thaliana to various nitrogen sources. He was selected for the Erasmus Mobility Grant, which enabled a short research visit to the University of Napoli Federico II in Italy. His poster presentation was awarded the Best Poster Prize at the International VII Molecular Biology and Genetics Winter School. Additionally, he received support from TÜBİTAK for participation in the European Molecular Biology Laboratory PhD Symposium in Heidelberg, Germany. His time at California State University San Marcos was supported by a prestigious NIH-funded research scholarship.

Contributions 

Professor Turgay Cakmak has made impactful contributions to plant molecular biology, microalgal biotechnology, and redox signaling. His work has expanded scientific understanding of how stress conditions influence metabolic pathways in plants and microalgae, particularly focusing on antioxidant mechanisms, alternative oxidase responses, and sustainable bioresource development. He has led and collaborated on numerous national and international research projects, mentored graduate students, and published widely in high-impact journals. His innovative studies on algae-based biofuels, natural pigments, and functional bioproducts highlight his commitment to integrating molecular biology with real-world applications in health, energy, and the environment.

Research Projects

Professor Turgay Cakmak has led and contributed to a wide array of interdisciplinary research projects focused on plant physiology, microalgal biotechnology, and cellular redox regulation. He served as Principal Investigator (PI) and researcher in projects funded by prominent institutions such, the Republic of Türkiye Ministry of Agriculture and Forestry, and Istanbul Medeniyet University Research Fund. His projects include the establishment of a microalgae culture collection, investigations into antioxidant properties and carotenoid biosynthesis in microalgae under stress conditions, and the biotechnological evaluation of algae from volcanic crater lakes. He has also led studies on biodiesel feedstock production from microalgae, cryopreservation techniques, and the role of nitrogen sources in cellular redox responses in plants. These projects highlight his leadership in integrating molecular biology with applied biotechnology and environmental sustainability.

Research Focus 

Professor Cakmak’s research is primarily centered on understanding the molecular mechanisms of redox regulation in plants, with special attention to the role of inorganic nitrogen sources and alternative oxidase activity. His work has extended to exploring the physiological and biochemical adaptations of plants and microalgae under stress conditions. Notably, his research interests have expanded into algal biotechnology and biofuel development, focusing on the biotechnological potential of microalgae under various environmental stresses. He has contributed significantly to knowledge on microalgal biodiesel production, stress biology, and redox signaling pathways, establishing himself as a recognized scholar in both plant molecular biology and environmental biotechnology.

Publications

Mycosporine-like amino acids in microalgae and cyanobacteria: Biosynthesis, diversity, and applications in biotechnology

Authors: Görünmek M., Ballık B., Cakmak Z.E., Cakmak T.
Journal: Algal Research.

Long-term diazotrophic cultivation of Trichormus sp. IMU26: Evaluation of physiological changes related to elevated phycobiliprotein content
Authors: Haddad M.F., Dayioglu T., Yaman M., Nalbantoglu B., Cakmak T.
Journal: Journal of Applied Phycology.

Study of the Ability of Lutein and Neoxanthin as Standards and in the Extract of Chlamydomonas reinhardtii to Prevent Oxidatively Induced DNA Base Damage Using Ultrasensitive GC–MS/MS Analysis
Authors: Şahin S., Aybastıer Ö., Dawbaa S., Karkar B., Cakmak T.
Journal: Chromatographia.

Antioxidant composite films with chitosan and carotenoid extract from Chlorella vulgaris: Optimization of ultrasonic-assisted extraction of carotenoids and surface characterization of chitosan films
Authors: Şahin S., Nasir N.T.B.M., Erken I., Cakmak Z.E., Cakmak T.
Journal: Materials Research Express.

Long-term diazotrophic cultivation induces phycobiliprotein production in Anabaena variabilis IMU8
Authors: Haddad M.F., Dayioglu T., Nalbantoğlu B., Cakmak T.
Journal: Biocell.

Prof Yongfeng Li | Biomaterials | Best Researcher Award

Prof Yongfeng Li | Biomaterials | Best Researcher Award

Prof Yongfeng Li, Forestry College of Shandong Agricultural University, China

Prof. Yongfeng Li, a leading researcher in Wood Science and Technology, holds a Ph.D. from Northeast Forestry University, China. With international experience as a visiting scholar at the University of Maryland and FPInnovations in Canada, he excels in polymer-wood composites, nanotechnology, and sustainable materials. Prof. Li’s groundbreaking research is published in high-impact journals like Nature and ACS Applied Nano Materials. He holds numerous patents, including innovative wood treatments, and has received prestigious awards such as the Shenzong Qi Wood Award. As a project leader and editorial board member, he combines academic excellence with impactful innovation. 🌱🏆📚.

Publication Profile

SCOPUS

ORCID

Academic and Experience 🎓

Prof. Yongfeng Li has a distinguished educational background and professional experience in Wood Science and Technology. He earned his Ph.D. (2008-2012), Master’s (2005-2008), and Bachelor’s (2001-2005) degrees from Northeast Forestry University, China. Prof. Li expanded his expertise through international exposure as a Visiting Scholar at the University of Maryland (2016-2017) in Material Science and Engineering and at FPInnovations in Canada (2011-2012), focusing on wood modification. This blend of advanced education and global experience underpins his leadership in wood science, sustainable materials, and innovative research, cementing his reputation as a prominent figure in his field. 🌳🔬🌍

Accolades and Recognition 🥇

Prof. Yongfeng Li has received numerous prestigious awards and honors throughout his illustrious career. 🌟 In 2019, he became an Editorial Board Member of Advances in Materials. 📘 In 2018, he earned third prize for “National Ecological Civilization & E-Teaching Achievements” 🌍 and was named “Pacemaker to Young Post Expert” at Shandong Agricultural University. 🏅 His first prize in the “Micro-Lecture Competition for Agriculture and Forestry Majors” followed in the same year. 📚 Earlier, he received honors like the Jiangsu High-Level Talent Plan (2015) 💼 and the “SHENZONGQI” Wood Science Paper Prize (2012). 📜 His academic journey is decorated with multiple scholarships, teaching awards, and leadership recognitions. 🎓✨

Scientific and Technological Achievement🌱🏆

Yongfeng Li, Xiaoying Dong, and collaborators have made significant contributions to wood hybrid materials and coatings through patented innovations. A notable patent (ZL201610114880.4) describes a superhydrophobic, oleophobic, antifungal, antibacterial, fire-retardant, and weather-resistant wood modifier, transferred on 30 November 2017 for ¥330,000. Another patent (ZL201610114670.5) covers waterborne wood coatings modified by 2D graphene oxide and 1D nanocellulose, transferred on 1 September 2020 for ¥100,000. Innovative nanoclay (ZL201210287368.1) and POSS (ZL201210287595.4) infiltration methods for hybrid nanocomposites were also patented, transferred in 2020 and 2021, respectively, each for ¥100,000. These advancements highlight breakthroughs in sustainable, functional materials. 🌱🔬✨

Book/Chapter📖

Yongfeng Li has contributed significantly to the field of composite materials and biopolymer grafting through key book chapters. In Advances in Composite Materials – Analysis of Natural and Man-made Materials (2011), Chapter 9 explores “Wood-Polymer Composites,” highlighting innovative approaches to material enhancement (ISBN: 978-953-307-449-8). Additionally, in Biopolymer Grafting: Applications (2017), co-authored with Xiaoying Dong, Chapter 11 delves into “Grafting Modification of Wood for High Performance,” showcasing advancements in biopolymer applications (ISBN: 978-0-12-810462-0). Published by INTECH and Elsevier, these works underscore groundbreaking insights into sustainable and high-performance materials. 📚🌱✨.

Contributions and Research Focus 🔬

Prof. Yongfeng Li’s research primarily revolves around wood science and sustainable materials engineering. He specializes in wood reinforcement and stabilization, polymer-wood composites, and nanotechnology applications. His work includes innovations like epoxy-acrylic polymer filling for wood strengthening, graphene oxide-enhanced coatings, and vacuum-thermo treatments for dimensional stability. Prof. Li’s research also explores environmentally friendly structural materials, such as laminated poplar veneer lumber and in-situ polymerized wood panels. His contributions significantly advance sustainable construction materials, mechanical property enhancement, and green engineering solutions, bridging the gap between academia and industrial applications. 🌱🏗️🧪

Publication Top Notes📄✨

Current utilization of waste biomass as filler for wood adhesives: A review

Enhancing the Mechanical Properties of Waterborne Polyurethane Paint by Graphene Oxide for Wood Products

Acrylic Resin Filling Cell Lumen Enabled Laminated Poplar Veneer Lumber as Structural Building Material

Nanocellulose-reinforced polyurethane as flexible coating for cork floor

Acetylated nanocellulose reinforced hydroxypropyl starch acetate realizing polypropylene replacement for green packaging application

AgCu Nanoparticles as an Antibacterial Coating for Wood

Epoxy-Acrylic Polymer In-Situ Filling Cell Lumen and Bonding Cell Wall for Wood Reinforcement and Stabilization

 

Prof. Dr Yusuf ÖZCAN | Biomaterials | Best Researcher Award

Prof. Dr Yusuf ÖZCAN | Biomaterials | Best Researcher Award

Prof. Dr Yusuf ÖZCAN, Pamukkale University, Turkey

Prof. Özcan is a leading expert in bio-inspired nanomaterials and drug delivery systems, with a focus on advancing both biomedical engineering and environmental sustainability. His pioneering research has led to significant breakthroughs in the development of innovative materials that address critical health challenges and environmental concerns. With a proven track record of successful projects and publications, Prof. Özcan is known for his leadership in the field and his ability to bridge the gap between cutting-edge science and practical applications. His work continues to shape the future of healthcare and environmental solutions. 🌱🔬💉

Publication Profile

GoogleScholar

Orcid

Educational Background 🎓

Prof. Yusuf Özcan holds an M.S. and Ph.D. in Physics Engineering from Hacettepe University, Ankara, Turkey, where he gained expertise in advanced materials and their applications. He completed his B.S. in Physics at Atatürk University, Erzurum, Turkey. Prof. Özcan is currently an Associate Professor at Pamukkale University, Faculty of Technology, Department of Biomedical Engineering, where he has been shaping the future of biomedical technologies since 1992. Additionally, he has collaborated internationally, contributing to research at the National Synchrotron Radiation Research Center in Hsinchu, Taiwan, in 2006-2007. His diverse educational background fuels his innovative research in biomedical engineering. 🎓🔬🌍

Professional Experience and Contributions 💼

Prof. Yusuf Özcan is a distinguished Professor of Biomedical Engineering at Pamukkale University, with over 20 years of expertise in advanced material science. He holds a Bachelor’s in Physics from Atatürk University and a Ph.D. in Physical Engineering from Hacettepe University. His research spans stimuli-responsive polymers, bone tissue engineering, nanocomposites for drug release, and synchrotron-based nanomaterial analysis. Notable works include developing bio-nanocomposites for bone regeneration, hybrid hydrogels for controlled drug release, and eco-friendly biosensors for heavy metal detection. Prof. Özcan’s groundbreaking contributions have advanced biomedical engineering, nanotechnology, and environmental sustainability. 🎓🔬🌱

Research and Innovations

Prof. Yusuf Özcan has led over 20 national and international research projects, including TÜBİTAK and SESAME-supported studies, with an h-index of 10 and over 390 citations. His research focuses on biomedical engineering, nanocomposites, and stimuli-responsive polymers. He has published over 30 peer-reviewed articles in high-impact journals, and is actively working on bio-inspired nanomaterial patents. With collaborations across the globe, including Taiwan’s National Synchrotron Radiation Research Center (NSRRC), Prof. Özcan has made significant strides in advanced drug delivery systems and eco-friendly materials. He is also a member of the Turkish Physical Society. 🔬🌍📚

Research Focus Area 🌱🧬

Prof. Yusuf Özcan’s research primarily focuses on biomedical engineering, nanotechnology, and material science. His work includes the development of advanced biopolymeric nanomaterials for controlled drug delivery systems, innovative bone tissue scaffolds, and eco-friendly biosensors. Prof. Özcan specializes in stimuli-responsive polymers, nanocomposites, and synchrotron-based material analysis. He has made significant contributions to environmental sustainability by creating green materials and eco-friendly sensors for detecting heavy metals. His research extends to the development of hybrid films and microbeads for targeted drug release, enhancing the efficiency of therapeutic treatments. 🧬💊🌿

Publication Top Notes

Structure, antibacterial activity and theoretical study of 2-hydroxy-1-naphthaldehyde-N-methylethanesulfonylhydrazone

Synthesis, characterization, biological activities of dimethyltin (IV) complexes of Schiff bases with ONO-type donors

Characterization and Production of Extracellular Polysaccharides (EPS) by Bacillus Pseudomycoides U10

Structure and characterization of N-(2-hydroxy-1-naphthylidene) threonine

Structural and spectroscopic characteristics of two new dibenzylbutane type lignans from Taxus baccata L.

Crystallographic report: Bis {µ‐[O‐cyclopentyl (4‐methoxyphenyl) dithiophosphonato] 1κ: S, 2κ: S‐[O‐cyclopentyl (4‐methoxyphenyl) dithiophosphonato]‐1κ2S, S′} dicadmium (II)

STRUCTURAL, ELECTRICAL AND OPTICAL PROPERTIES OF THERMALLY EVAPORATED CdSe AND In-DOPED CdSe THIN FILMS.

Micellization behavior of tertiary amine-methacrylate-based block copolymers characterized by small-angle X-ray scattering and dynamic light scattering

trans-Bis [O-2, 4-di-tert-butylphenyl (4-methoxyphenyl) dithiophosphonato-κ2S, S′] nickel (II)

Crystal and Molecular Structures of trans-Nickel (II)-bis [(O-propyln)-(p-methoxyphenyl) dithiophosphonate]

Conclusion

Prof. Dr. Yusuf Özcan’s extensive body of work demonstrates not only scientific excellence but also practical contributions to pressing global challenges, making him a strong and deserving candidate for this award. His innovative approach and global collaboration signify a researcher who is pushing the boundaries of materials science and biomedical engineering.

Dalia Zaafar | Biomaterials | Women Researcher Award

Dalia Zaafar | Biomaterials | Women Researcher Award

Assist. Prof. Dr Dalia Zaafar, Cairo University, Egypt

Dr. Dalia Zaafar is an Assistant Professor at Modern University for Technology and Information (MTI) in Egypt, specializing in pharmacology, toxicology, and clinical pharmacy. With a Ph.D. from Cairo University, she has led impactful research on cardiovascular pharmacology and oncology. 🌍 Her work includes clinical studies, focusing on metformin and sorafenib, contributing to drug safety. Dr. Zaafar is passionate about mentoring young researchers, especially women in academia, and has presented at international conferences. 🎓 She holds certifications in clinical practice and data analysis, enhancing her role as an expert in her field. 📚

Publication Profile

Google Scholar

Orcid

Scopus

Educational Background 🎓

Dr. Dalia Zaafar holds a Ph.D. in Pharmacology and Toxicology from Cairo University (2019), with a focus on clinical studies and cardiovascular pharmacology. Her dissertation explored the efficacy and safety of dipeptidyl peptidase inhibitors versus Metformin in diabetic hypertensive patients. 🎓 She earned an M.A. in Pharmacology and Toxicology from Suez Canal University (2014), specializing in oncology and endocrinology. Dr. Zaafar also completed a Clinical Pharmacy diploma (2019-2021) in critical care and further honed her skills through a Data Analysis Professional Nano-degree (2021) and other specialized certifications in clinical pharmacology and pharmacoeconomics. 📚💻

Current Role and Focus 💼

Dr. Dalia Zaafar is an Assistant Professor at the Modern University for Technology and Information (MTI), Egypt, where she has been teaching and conducting research since 2019. 🌟 She designs experimental studies, collaborates internationally, and mentors young researchers. Additionally, she serves on the editorial boards of the Universal Journal of Pharmaceutical Research and the World Journal of Clinical Cases. 📘 Previously, she worked as a Clinical Pharmacist in critical care at Teacher’s Hospital and Abu Sower Medical Center. Dr. Zaafar has expertise in clinical pharmacy, research supervision, and interdisciplinary initiatives, fostering academic growth and innovation. 🧪👩‍🏫

Participation in Conferences 🌐

Dr. Dalia Zaafar was a speaker at the 18th International Conference of Biochemistry and Molecular Biology, held on September 16-17, 2023. 🌍 Her lecture, titled “Unravelling the Complexities of Tau Protein Dysfunction in Alzheimer’s Disease: Pathophysiology, Biomarkers, and Therapeutic Perspectives”, highlighted groundbreaking insights into the mechanisms of Alzheimer’s disease. 🧠🔬 She discussed emerging biomarkers and innovative therapeutic strategies, contributing to a deeper understanding of this critical neurodegenerative condition. Dr. Zaafar’s presentation underscored her expertise in molecular biology and her dedication to advancing research for a better future for humanity. 🌟

Research Focus Area 🌱🧬

Dr. Dalia Zaafar’s research is focused on pharmacology, toxicology, and clinical pharmacy, with a multidisciplinary approach to tackling critical health challenges. 🧪 Her studies emphasize drug safety, cardiovascular pharmacology, and oncology, exploring innovative therapeutic interventions for diseases like Alzheimer’s, Parkinson’s, colon cancer, and drug-induced toxicities. 🔬 Her work integrates molecular biology, nanotechnology, and experimental pharmacology, addressing mechanisms like tumor angiogenesis, neuroprotection, and signal pathway modulation. 🌍 Dr. Zaafar’s impactful contributions also span natural product-based therapies, nanoparticles for drug delivery, and biomarker development, making her a pioneer in advancing personalized medicine and enhancing treatment efficacy. 🌟

Publication Top Notes📚🌐

Role of metformin in suppressing 1, 2-dimethylhydrazine-induced colon cancer in diabetic and non-diabetic mice: effect on tumor angiogenesis and cell proliferation

Hesperetin mitigates sorafenib-induced cardiotoxicity in mice through inhibition of the TLR4/NLRP3 signaling pathway

Selenium nanoparticles with prodigiosin rescue hippocampal damage associated with epileptic seizures induced by pentylenetetrazole in rats

Orexin pathway in Parkinson’s disease: a review

Discovery of new 1, 3, 4-oxadiazoles with dual activity targeting the cholinergic pathway as effective anti-Alzheimer agents

Comparing the effectiveness of L-carnitine and paraffin oil in acute aluminum phosphide poisoning using predictive biomarkers and scores: a randomized controlled clinical trial

Adherence to insulin therapy among children with type 1 diabetes: reliability and validity of the Arabic Version of the 4-Item Morisky Medication Adherence Scale

Combined β-sitosterol and trimetazidine mitigate potassium dichromate-induced cardiotoxicity in rats through the interplay between NF-κB/AMPK/mTOR/TLR4 and HO-1/NADPH signaling …

Salix subserrata Bark ExtractLoaded Chitosan Nanoparticles Attenuate Neurotoxicity Induced by Sodium Arsenate in Rats in Relation with HPLC–PDA-ESI–MS …

Conclusion 🔍

Dr. Dalia Zaafar’s dedication to research excellence, her leadership in mentoring young women researchers, and her impressive body of scholarly work make her a highly suitable candidate for the Women Researcher Award. Her contributions to pharmacology, particularly in clinical studies, and her active role in global research collaborations position her as an influential figure in the academic community.