Neda Fayyazi | Bioinformatics | Excellence in Innovation

Dr. Neda Fayyazi | Bioinformatics | Excellence in Innovation

ogen/ medical iincubator, Iran

 Author Profile 📚

Google Scholar

Early Academic Pursuits 🎓

Dr. Neda Fayyazi’s academic journey is marked by significant achievements, beginning with her Ph.D. in Pharmaceutical and Medicinal Chemistry from Isfahan University of Medical Sciences, which she completed between February 2015 and October 2019. Her outstanding academic performance earned her a top rank (A) with a GPA of 3.60. Dr. Fayyazi’s thesis, titled Molecular modeling, synthesis, and biological evaluation of hybrid multi-target iron chelators for anticancer and antimalarial applications, was highly regarded, securing an Excellent Rank (A). Her interdisciplinary focus on combining computational techniques and medicinal chemistry positions her as an emerging leader in the field.

Professional Endeavors 💼

Dr. Fayyazi’s professional experience spans academia and industry, with roles in pharmaceutical companies and research institutions. She has worked with leading organizations, including TPCO Holding, Pars Darou Pharmaceutical Company, and Barkat Holding. Her roles involved product development, technology transfer, and research in the areas of pharmaceutical formulations, softgel production, and drug discovery. As a board member of Ozhan Pharma Group and an active participant in various projects, Dr. Fayyazi continues to bridge the gap between scientific research and commercial application.

Contributions and Research Focus 🔬

Dr. Fayyazi’s research contributions are primarily in the field of Medicinal Chemistry, with a focus on drug design, molecular modeling, and hybrid molecule synthesis. Her work on molecular dynamics simulations and protein-ligand interactions using cutting-edge tools like Gromacs, GOLD, and Discovery Studio has been instrumental in advancing the understanding of drug interactions at the molecular level. Additionally, she is passionate about developing novel drug delivery systems, particularly in sustained-release formulations, and exploring natural products for therapeutic potential. Her research integrates AI and machine learning approaches in drug discovery, a testament to her forward-thinking methodology.

Impact and Influence 🌍

Dr. Fayyazi has had a significant impact on the pharmaceutical industry and academia through her work in drug discovery, technology transfer, and industry collaboration. Her expertise in bioassay-guided screening and cancer therapy research has led to breakthroughs in medicinal chemistry, especially in the development of multi-target anticancer agents. As a member of various prestigious associations such as the European Bioinformatics Association and the American Chemical Society, she has contributed to the global advancement of biotechnology and pharmaceutical sciences. Her work has garnered recognition, including a prize for innovative ideas in drug research at the Euro Chemistry Conference in Berlin (2019).

Academic Cites and Research Recognition 📑

Dr. Fayyazi’s academic publications and research outputs are highly cited in the fields of molecular modeling and pharmaceutical sciences. Her collaborations with research institutions and pharmaceutical companies have cemented her reputation as a thought leader in medicinal chemistry. Notably, her research on iron chelators and cancer treatment has positioned her as a pivotal figure in advancing drug discovery methodologies. Her work is frequently referenced in studies related to drug design, molecular dynamics, and natural product research.

Technical Skills and Expertise 🧑‍🔬

Dr. Fayyazi’s technical proficiency extends across a broad spectrum of advanced scientific methods and tools. She is highly skilled in QSAR (Quantitative Structure-Activity Relationship), molecular dynamics simulations, and protein-ligand interactions. Her ability to synthesize hybrid compounds, coupled with her expertise in computational chemistry and machine learning, allows her to investigate complex biochemical interactions and design novel therapeutic agents. Furthermore, her knowledge of Linux environments, scripting, and drug discovery processes in natural products underscores her broad technical competence.

Teaching Experience 📚

Dr. Fayyazi’s passion for teaching is evident in her role as an educator at Isfahan University of Medical Sciences, where she has taught undergraduate students in organic chemistry, pharmacology, and computational chemistry. She has also supervised and mentored numerous master’s and Ph.D. students in the fields of medicinal chemistry and bioassays. Her teaching methods emphasize interdisciplinary approaches, integrating cutting-edge technology and scientific research into practical applications.

Legacy and Future Contributions 🌟

Looking ahead, Dr. Fayyazi’s future contributions are poised to continue shaping the pharmaceutical and biotechnology sectors. Her ongoing projects in controlled release formulations, softgel technology transfer, and sustained-release drug delivery systems demonstrate her commitment to improving patient outcomes through innovative therapeutic solutions. As she works to bridge the gap between academic research and industry applications, Dr. Fayyazi aims to inspire the next generation of scientists and continue her impactful work in drug design and natural product research.

Honor and Awards 🏆

Dr. Fayyazi’s career has been punctuated with numerous accolades, including the Best Score in the National Entrance Exam for Pharmaceutical Projects in 2001, the Productivity Management Prize at Soha Pharmaceutical Company (2010), and the prestigious PhD Scholarship for Medicinal Chemistry at Isfahan University. These awards reflect her unwavering dedication to excellence and innovation in both academic and industrial settings.

 

Top Noted Publications 📖

Molecular dynamics simulation and 3D-pharmacophore analysis of new quinoline-based analogues with dual potential against EGFR and VEGFR-2
    • Authors: N. Fayyazi, A. Fassihi, S. Esmaeili, S. Taheri, J.B. Ghasemi, L. Saghaie
    • Journal: International Journal of Biological Macromolecules
    • Year: 2020
Pharmacophore modeling, synthesis, scaffold hopping and biological β-Hematin inhibition interaction studies for anti-malaria compounds
    • Authors: N. Fayyazi, S. Esmaeili, S. Taheri, F.F. Ribeiro, M.T. Scotti, L. Scotti, …
    • Journal: Current Topics in Medicinal Chemistry
    • Year: 2019
Molecular dynamics simulation, 3D-pharmacophore and scaffold hopping analysis in the design of multi-target drugs to inhibit potential targets of COVID-19
    • Authors: N. Fayyazi, T. Mostashari-Rad, J.B. Ghasemi, M.M. Ardakani, F. Kobarfard
    • Journal: Journal of Biomolecular Structure and Dynamics
    • Year: 2022
Design, synthesis, in silico studies, and antiproliferative evaluations of novel indolin-2-one derivatives containing 3-hydroxy-4-pyridinone fragment
    • Authors: P. Shirvani, N. Fayyazi, S. Van Belle, Z. Debyser, F. Christ, L. Saghaie, …
    • Journal: Bioorganic & Medicinal Chemistry Letters
    • Year: 2022
Phytochemical analysis and purification of chief components of Ononis spinosa
    • Authors: N. Fayyazi, F. Naghibi, S. Taheri
    • Journal: N/A
    • Year: 2014
A new insight into the mechanism of loading of Granisetron, Naltrexone and Risperidone in poly (ortho ester) and poly (lactic-co-glycolic acid) as the controlled release drug
    • Authors: L. Karami, N. Fayyazi, M. Akbari, A. Molaei-Baghbanan, M. Maaza
    • Journal: Journal of Drug Delivery Science and Technology
    • Year: 2024

Afreen Khanam – Biotechnology – Excellence in Research 

Dr Afreen Khanam - Biotechnology - Excellence in Research 

Mangalayatan University - india

Author Profile

Early Academic Pursuits

Dr. Afreen Khanam began her academic journey by securing a Higher Secondary (10th) degree from Exon Montessori Inter College, Lucknow, with a commendable score of 66.83%. Subsequently, she completed her Senior Secondary (12th) education with a score of 73.6%. This strong academic foundation led her to pursue a Bachelor of Science (B.Sc) in Zoology and Chemistry from Lucknow University, where she secured 62.05%. Continuing her academic pursuits, she then pursued her Master of Science (M.Sc) in Biotechnology from Integral University, Lucknow, where she achieved a notable percentage of 76.54%.

Professional Endeavors

Dr. Khanam's professional journey is highlighted by her significant roles in academia and research. Since April 2022, she has been serving as an Assistant Professor in the Department of Biotechnology and Life Sciences at Mangalayatan University, Aligarh. Prior to this, she served as a Senior Research Fellow and Junior Research Fellow under the UP-CST project at Integral University. She also gained hands-on research experience through various training programs, including a three-month training project on DNA oxidation by Fenton reaction.

Contributions and Research Focus

Dr. Khanam's research primarily focuses on the immunochemical studies related to D-ribose-induced fibrinogen glycation and its role in Diabetes Mellitus. Her research contributions are evident through numerous publications in reputed journals like Analytical Biochemistry, Journal of Biomolecular Structure & Dynamics, and Chemico-Biological Interactions. She has expertise in various analytical techniques, including Gel electrophoresis, UV Spectroscopy, RT-PCR, and Enzyme-Linked Immunosorbent Assay (ELISA). Additionally, she has participated in several international and national conferences, presenting her research findings.

Accolades and Recognition

Throughout her academic and professional journey, Dr. Khanam has received several accolades and recognitions. Notably, she won the Best Poster Presentation Award at the National Conference on "Recent developments in Biomedical, Unani, and Ayurvedic Translational Research." Her contributions have also been acknowledged through her citations, with an h-index of 6 and an i10-index of 3, reflecting the impact and influence of her research in the scientific community.

Legacy and Future Contributions

Dr. Khanam's legacy is marked by her significant contributions to the field of biotechnology, particularly in understanding the mechanisms underlying Diabetes Mellitus. Her research has paved the way for potential diagnostic and therapeutic advancements in the management of diabetic complications. Looking ahead, Dr. Khanam aims to continue her research endeavors, exploring innovative approaches to address the challenges associated with diabetes and other related metabolic disorders. Through her dedication to academia and research, she aspires to inspire and mentor future scientists, fostering a legacy of excellence in biotechnology research and education.

Notable publication

 

Zarrin Haris – Microbiology – Best Researcher Award 

Mrs Zarrin Haris - Microbiology - Best Researcher Award 

Aligarh Muslim University - India

Author Profile

Early Academic Pursuits

Zarrin Haris began her academic journey by completing her secondary education from the Aligarh Muslim University with First Division scores in both the AISSE (Class-X) and SSSC Examination (Class-XII). She then pursued a Bachelor of Science in Chemistry from the same university, where she covered core subjects such as Botany, Zoology, and Chemistry. Moving forward, she achieved a Master of Science in Biotechnology and later an M.Phil in Agricultural Microbiology, both from Aligarh Muslim University. Her early academic accomplishments laid a robust foundation for her specialized studies in microbiology, biotechnology, and nanotechnology.

Professional Endeavors

Zarrin Haris possesses extensive research experience in the field of microbiology, particularly in antimicrobial resistance. Throughout her academic and professional journey, she has developed expertise in various organic, inorganic, and physical chemistry laboratory techniques. Her proficiency extends to a wide range of biotechnological tools and techniques, as well as nanotechnological applications. Currently, she is pursuing her Ph.D. in Agricultural Microbiology from Aligarh Muslim University, focusing on the intersection of nanoparticles, beneficial soil microorganisms, and secondary metabolism.

Contributions and Research Focus

Zarrin's research contributions are evident through her numerous paper publications, which delve into areas such as the effects of nanoparticles on beneficial soil microorganisms, photodynamic therapy against bacterial biofilms, and antimicrobial resistance. Her research in green synthesis of nanoparticles and their efficacy against gram-negative bacteria showcases her innovative approach in leveraging natural resources for scientific advancements. Zarrin's work consistently emphasizes the practical applications of her research findings in addressing critical issues like bacterial quorum sensing, biofilm formation, and antimicrobial resistance.

Accolades and Recognition

Zarrin Haris has actively participated in various conferences, workshops, and webinars, showcasing her commitment to continuous learning and collaboration within the scientific community. Notably, she has received recognition for her presentations, including the 1st winner award at the International Conference on Recent Trends in Biological and Chemical Sciences. Additionally, her paper publications in esteemed journals such as Phytomedicine Plus and the International Journal of LifeSciences Scientific Research reflect her growing influence and contribution to the scientific community.

Impact and Influence

Zarrin's research and academic pursuits have made a significant impact on the fields of microbiology, biotechnology, and nanotechnology. Her work on antimicrobial resistance, nanoparticle synthesis, and biofilm inhibition provides valuable insights that contribute to the development of sustainable solutions for combating microbial threats. Furthermore, her active participation in conferences and workshops signifies her role as a thought leader, inspiring fellow researchers and fostering interdisciplinary collaboration.

Legacy and Future Contributions

As Zarrin Haris continues her doctoral research and academic endeavors, her legacy in microbiology, biotechnology, and nanotechnology is poised to grow further. With a strong foundation in research and a commitment to addressing pressing challenges in antimicrobial resistance and biofilm formation, she is likely to contribute significantly to scientific advancements and innovative solutions. Moving forward, Zarrin's expertise, determination, and goal-oriented approach will continue to shape her legacy, inspiring future generations of researchers and contributing to the broader scientific community's progress.

Notable Publication