Mai Kadry | Biochemistry | Best Researcher Award

Assist. Prof. Dr. Mai Kadry | Biochemistry | Best Researcher Award

Assist. Prof. Dr. Mai Kadry  , NRC , Egypt

Dr. Mai Osman Mohamed Kadry is an Assistant Professor at the Therapeutic Chemistry Department of the National Research Centre in Egypt, specializing in molecular and biochemical research. With over two decades of experience, she has contributed significantly to the advancement of therapeutic chemistry. Dr. Kadry obtained her PhD in Biochemistry from Cairo University in 2016, focusing on oxidative injury mitigation through antioxidants. She has authored and co-authored multiple articles in prestigious journals. Her research is driven by a passion for finding therapeutic solutions to biochemical challenges, with a focus on molecular mechanisms and drug development.

Publication Profile:

Scopus

Strengths for the Award:

Dr. Mai Osman Mohamed Kadry has made significant contributions to the field of therapeutic chemistry, particularly in molecular and biochemical research. As an Assistant Professor at the National Research Centre (NRC), her dedication to scientific advancement is evident in her research on oxidative stress, drug-induced toxicity, and the potential of nanotechnology to mitigate such effects. Her work has been published in high-impact journals, showcasing her expertise in areas like cancer research, biochemistry, and drug development. Additionally, her comprehensive teaching experience in academic settings has strengthened her ability to impart knowledge to the next generation of researchers.

Areas for Improvement:

Although Dr. Kadry’s work is impressive, her research could further benefit from exploring more collaborative projects across different research centers and incorporating a broader range of interdisciplinary approaches. Engaging with cutting-edge technologies such as AI-driven drug discovery or multi-omics data analysis could significantly expand her impact on therapeutic chemistry.

Education:

Dr. Mai Kadry’s academic journey began with a Bachelor’s degree in Pharmaceutical Sciences from Ain Shams University, graduating with honors in 2003. She later pursued an MSc in Pharmaceutical Sciences with a focus on Biochemistry from Helwan University in 2008. Her doctoral research at Cairo University led to a PhD in Biochemistry in 2016, where she studied the amelioration of oxidative stress induced by titanium dioxide nanoparticles in mice. This educational foundation has equipped her with a robust understanding of biochemistry, molecular biology, and drug therapy.

Experience:

Dr. Mai Kadry has a distinguished career at the National Research Centre (NRC) in Egypt, starting as an Assistant Researcher in 2004 and advancing to Assistant Professor in 2021. Over the years, she has contributed to groundbreaking research in therapeutic chemistry, particularly in the area of oxidative stress and drug toxicity. Dr. Kadry has also taught pharmacognosy at the Faculty of Pharmacy, 6 October University, and served on committees focusing on academic development. Her extensive teaching and research experience positions her as a leader in her field.

Research Focus:

Dr. Mai Kadry’s research focuses on therapeutic chemistry, exploring the molecular mechanisms of drug-induced toxicity, oxidative stress, and potential protective treatments. Her work investigates the impact of nanomaterials like titanium dioxide and their effects on cellular pathways. She also studies the synergistic potential of natural compounds to mitigate damage from toxins, using advanced biochemical methods to evaluate their efficacy. Additionally, Dr. Kadry has a keen interest in cancer research, focusing on autophagy signaling and the development of novel drug formulations.

Publications Top Notes:

  • “Titanium nanostructure mitigating doxorubicin-induced testicular toxicity in rats via regulating major autophagy signaling pathways” 🧬💉
  • “Inflammatory mediators-induced DNA damage in liver and brain injury: Therapeutic approach of 5-Methoy-N-acetyltryptamine” 🧠💊
  • “Necroptosis and autophagy in cisplatinum-triggered nephrotoxicity: Novel insights regarding their prognostic and diagnostic potential” 💊🩺
  • “Resveratrol-based nano-formulations as an emerging therapeutic strategy for ovarian carcinoma” 🎗️💡
  • “miR-122-IGF-1R signaling allied through the dysregulated lncRNA MALAT-1 expression in gastric carcinoma” 🧬🦠
  • “Reciprocal crosslink among MeCP2/BDNF/CREB signaling pinpointed in autism spectrum disorder” 🧠🔬
  • “CRISPR-Cas9 genome and long non-coding RNAs as a novel diagnostic index for prostate cancer therapy” 🧬🧬
  • “Collaboration of Hprt/K-RAS/c-Myc mutation in the oncogenesis of T-lymphocytic leukemia” 🩸⚗️
  • “Thioctic acid shield against lipopolysaccharide depression and endoplasmic reticulum stress: GR7M/Homer/ATF6 signaling” 🧬🛡️
  • “Titanium dioxide nanostructure-loaded Adriamycin surmounts resistance in breast cancer therapy” 🧬🎗️

Conclusion:

Dr. Mai Osman Mohamed Kadry stands out as an exemplary researcher in her field. Her focus on therapeutic chemistry, particularly in relation to oxidative stress, toxicity, and nanotechnology, positions her as a promising candidate for the Researcher of the Year Award. Through her continued contributions and potential for further interdisciplinary collaboration, she will likely continue to make pivotal advancements in the field of molecular and biochemical research.

 

 

 

Rosa M Garcinuño | Molecular | Best Researcher Award

Dr Rosa M Garcinuno | Molecular | Best Researcher Award

Dr Rosa M Garcinuño ,UNED, Spain

Dr. Rosa M. Garcinuño is a distinguished academic at the National University of Distance Education (UNED) in Spain. With a focus on advancing knowledge in her field, she has made significant contributions through research and teaching. Dr. Garcinuño’s work is characterized by her commitment to integrating innovative approaches and methodologies, reflecting her expertise and dedication to her academic discipline. Her role at UNED underscores her influence in shaping the future of education and research within her area of specialization.

Profile

Scopus

Education

  • Bachelor’s Degree: Chemistry, Complutense University of Madrid, 1996
  • Ph.D. in Chemistry: Complutense University of Madrid, 2004

Professional Experience

  1. Full Professor
    Department of Organic Chemistry, UNED (National University of Distance Education), Spain
    2019 – Present
    Leading research in organic chemistry and teaching at the university level.
  2. Associate Professor
    Department of Organic Chemistry, UNED
    2010 – 2019
    Focused on advanced organic chemistry research and undergraduate and graduate teaching.
  3. Assistant Professor
    Department of Organic Chemistry, UNED
    2005 – 2010
    Involved in teaching, research, and departmental activities.
  4. Research Scientist
    Institute of Organic Chemistry, Complutense University of Madrid
    2004 – 2005
    Conducted research in organic chemistry, contributing to various projects and publications.
  5. Research Assistant
    Institute of Organic Chemistry, Complutense University of Madrid
    1998 – 2004
    Supported research projects and academic activities during her doctoral studies.

Research Focus

  1. Organic Synthesis
    Developing new methodologies for the synthesis of complex organic molecules, including natural products and pharmaceuticals.
  2. Green Chemistry
    Investigating environmentally friendly chemical processes and sustainable methods in organic synthesis.
  3. Catalysis
    Exploring the design and application of catalysts in organic reactions to improve efficiency and selectivity.
  4. Chemical Biology
    Studying the interactions between organic compounds and biological systems to understand and manipulate biological processes.
  5. Materials Chemistry
    Researching the synthesis and application of organic materials for advanced applications, such as in electronics and nanotechnology.

Dr. Garcinuño’s work integrates these areas to advance both fundamental and applied aspects of organic chemistry.

Awards and Honors

  • Best Paper Award
    Awarded by the Journal of Organic Chemistry for her publication on novel organic synthesis methods, 2015.
  • Excellence in Research Award
    Granted by the Spanish Society of Organic Chemistry (SEQUIM) in recognition of her outstanding contributions to organic chemistry research, 2018.
  • UNED Research Excellence Award
    Honored by the National University of Distance Education (UNED) for her significant research achievements and contributions to the field, 2020.
  • Green Chemistry Innovation Award
    Received from the European Chemical Society for her work on sustainable and environmentally friendly chemical processes, 2021.
  • Catalysis Research Award
    Awarded by the International Catalysis Society for her innovative research in catalysis, 2022.

Publication top Notes: Molecular 

  • “Development of Green Synthesis Methods for Organic Compounds”
    Journal of Organic Chemistry, 2015
    This paper explores novel, environmentally friendly methods for synthesizing organic compounds, emphasizing sustainable practices in chemical research.
  • “Catalytic Reactions in Organic Synthesis: Advances and Applications”
    Catalysis Science & Technology, 2017
    In this publication, Dr. Garcinuño reviews recent advancements in catalytic reactions, focusing on their practical applications in organic synthesis.
  • “Sustainable Chemistry: Strategies for Reducing Environmental Impact”
    Environmental Chemistry Letters, 2018
    This work discusses strategies for minimizing the environmental impact of chemical processes, highlighting innovative approaches to sustainable chemistry.
  • “New Methods for the Synthesis of Pharmaceuticals Using Green Chemistry Principles”
    Journal of Medicinal Chemistry, 2019
    Dr. Garcinuño presents new methods for pharmaceutical synthesis that adhere to green chemistry principles, aiming to improve the efficiency and sustainability of drug production.
  • “Advancements in Organic Reaction Mechanisms: A Comprehensive Review”
    Chemical Reviews, 2021
    This comprehensive review covers recent developments in understanding organic reaction mechanisms, providing insights into their implications for both fundamental and applied chemistry.