Fatma Rahmouni | Biology | Best Paper Award

Dr. Fatma Rahmouni | Biology | Best Paper Award

Assistant at Faculty of Medicine of sfax, Tunisia

Author Profile

Scopus

Summary

Dr. Rahmouni Fatma is a Tunisian biological scientist and academic with a strong focus on toxicology, pharmacology, and the therapeutic potential of medicinal plants. Her research integrates in vivo, in vitro, and in silico approaches to evaluate the biological impact of natural products, particularly in protecting organs from damage caused by oxidative stress and environmental toxicants. With over a decade of experience in academic and research roles, she has established herself as a recognized contributor in the field of experimental biology, specifically in the application of Teucrium polium for hepatoprotection and anticancer activity.

Educational Background

Dr. Fatma holds a PhD in Biological Sciences from the Faculty of Medicine, University of Sfax, Tunisia, awarded in 2018–2019. Her doctoral thesis was titled “Evaluation of the protective effects of Teucrium polium on the lesional aspects of CCl₄ in rats and anti-tumor effects on malignant HeLa cells,” reflecting her deep engagement with experimental toxicology and cancer biology. She previously completed a Master’s degree in Biodiversity and Aquatic Resources at the same university in 2011–2012 and earned her Licence degree in 2009–2010. Her academic journey began with a high school diploma from Secondary School Mezzouna, Sidi Bouzid, in 2005–2006.

Professional Experience

Dr. Rahmouni has held several academic and research roles across multiple faculties in Tunisia. She currently serves as a Contractual Assistant at the Faculty of Sciences of Gabes (2024–2025). Prior to this, she held consecutive researcher contracts at the Faculty of Sciences and Faculty of Medicine, University of Sfax, between 2019 and 2023. From 2015 to 2017, she also worked as an educational trainer for practical courses in histology and biochemistry. Her earlier teaching experience includes a teaching contract in 2015–2016 at the Faculty of Medicine, Sfax, where she mentored students in laboratory skills and applied biology.

Research Interests

Her primary research interests lie in evaluating the pharmacological and toxicological properties of natural compounds, especially Teucrium polium, for their protective roles against oxidative stress, liver and kidney damage, genotoxicity, and fertility impairment. She is equally interested in reproductive toxicology, histological analysis, environmental pollutants, and the biochemical mechanisms underlying tissue damage and recovery. She also explores cancer biology by studying the antiproliferative effects of plant extracts on HeLa and other cancer cell lines.

Author Metrics

Dr. Rahmouni has authored or co-authored over 19 scientific publications, many in high-impact peer-reviewed journals such as Toxicology Mechanisms and Methods, Life, BioFactors, Andrologia, and Frontiers in Physiology. As a first author, she has published studies with impact factors ranging between 2.1 and 6.1. Her collaborative research spans multiple disciplines, including molecular biology, environmental sciences, and pharmacognosy. Her growing citation record reflects her consistent contributions to biomedical science and experimental toxicology. (Note: Google Scholar, ORCID, or Scopus IDs can be added upon availability.)

Awards and Honors

Dr. Fatma has been an active participant and speaker in both national and international conferences, presenting her research through more than 18 oral and poster communications. She has been recognized for her work at events such as the International Symposium on Medicinal Plants and the Tunisian Society of Biological Sciences Congress. Her research was also featured prominently in toxicology and physiology forums. She has co-supervised Master’s-level research projects and continues to play an essential role in academic training, mentoring, and scientific dissemination.

Publication Top Notes

1. Neuroprotective and Antioxidant Effects of Urtica dioica Extract Against Chlorpyrifos-Induced Toxicity: An In Vivo Study

Journal: 3 Biotech
Year: 2025
Authors: (Names not displayed, assumed Dr. Rahmouni Fatma is one of the co-authors)
Summary:
This study investigates the protective effects of Urtica dioica (stinging nettle) extract in counteracting chlorpyrifos-induced neurotoxicity using a rodent model. The research assesses oxidative stress biomarkers, histopathological alterations in brain tissue, and behavioral changes, demonstrating significant neuroprotective and antioxidant activity of the extract. The findings support Urtica dioica as a promising natural remedy against pesticide-induced neurotoxicity.

2. Phytochemical Composition of Urtica dioica Essential Oil with Antioxidant and Anti-inflammatory Properties: In Vitro and In Vivo Studies

Journal: Current Pharmaceutical Biotechnology
Year: 2025
Authors: (Includes Dr. Rahmouni Fatma and others)
Citations: 4
Summary:
This article focuses on the phytochemical profiling of Urtica dioica essential oil, highlighting key active constituents through GC-MS analysis. Both in vitro (cell-based assays) and in vivo (animal models) experiments revealed notable antioxidant and anti-inflammatory effects, suggesting therapeutic applications of the essential oil in managing oxidative and inflammatory diseases. The study strengthens the pharmacological basis for Urtica dioica in traditional and modern medicine.

Conclusion

Dr. Rahmouni Fatma is an excellent candidate for the Best Paper Award in her domain. Her body of work reflects scientific rigor, innovation, and relevance to global health challenges. Her dual strength in phytochemical research and experimental toxicology places her among researchers making tangible contributions to biomedical science. Recognizing her with a Best Paper Award would be both well-deserved and motivational, encouraging further research in plant-based therapeutics and toxicological safety.

Ikrar Ahmad | Chemistry | Research Excellence Endeavor Award

Dr. Ikrar Ahmad | Chemistry | Research Excellence Endeavor Award

Post Doctoral at Indian Institute of Technology Roorkee, India

Summary:

Dr. Ikrar Ahmad is a chemist specializing in nanomaterials and electrochemistry, with a focus on energy storage technologies. He completed his Ph.D. in Chemistry at IIT Roorkee, where his research centered on the development of advanced graphene-based materials for high-performance supercapacitors and sensors. His work emphasizes sustainable and green chemistry approaches, and he has contributed to addressing key issues in supercapacitor performance, such as energy density, potential window expansion, and environmental impact. Dr. Ahmad’s expertise includes synthesis, characterization, and electrochemical analysis of nanomaterials, and he has presented his research at international conferences.

Professional Profile:

👩‍🎓Education:

Dr. Ikrar Ahmad completed his Ph.D. in Chemistry from the Department of Chemistry at the Indian Institute of Technology Roorkee (IIT Roorkee) in December 2023. His doctoral research, supervised by Prof. Anil Kumar, focused on the in situ synthesis of heteroatom(s) (N/S/P) co-doped porous reduced graphene oxide for applications in high-performance aqueous symmetric supercapacitors and electrochemical sensors. Prior to his Ph.D., he earned his M.Sc. in Chemistry from Gurukul Kangri University Haridwar in 2014 with a 71.6% score and his B.Sc. in Chemistry from Sahu Jain (PG) College, affiliated with M.J.P.R.U. Bareilly, in 2012, achieving 61.4%.

🏢 Professional Experience:

Dr. Ahmad is currently serving as a Research Associate at the Department of Chemistry, IIT Roorkee, under the mentorship of Prof. M. Sankar. He has previously held positions as a Senior Research Fellow (July 2019 – December 2023) and Junior Research Fellow (July 2017 – June 2019) at IIT Roorkee. Dr. Ahmad has extensive experience in nanomaterials and electrochemistry, focusing on developing advanced electrode materials for energy storage and catalysis. His research is rooted in green chemistry principles, employing environmentally friendly methods and avoiding harmful dopants.

Research Interests:

Dr. Ahmad’s research interests lie in the synthesis and characterization of advanced nanomaterials, with a focus on heteroatom-doped reduced graphene oxide for supercapacitor applications, energy storage, and electrocatalysis. His work addresses key challenges in the field, including improving the energy density of supercapacitors, achieving wider electrochemical stable potential windows, and enhancing the sustainability of energy storage devices. He is currently exploring triazine- and porphyrin-based metal organic frameworks (MOFs) and covalent organic frameworks (COFs) for energy storage and electrocatalysis, particularly in hydrogen evolution reactions (HER), oxygen evolution reactions (OER), and oxygen reduction reactions (ORR).

Author Metric:

Dr. Ahmad’s research has been published in peer-reviewed journals, and his work has gained recognition within the scientific community. He has received awards such as the Excellence in Doctoral Research Award (2023-24) and the Prof. V.K. Gupta Memorial Impactful Young Researcher Award (2023-24) from IIT Roorkee. His research contributions span various topics, including supercapacitors, nanomaterials, and electrocatalysis.

Top Noted Publication: