Ms. Oliwia Kordyl | Microneedle Systems | Best Research Article Award

Ms. Oliwia Kordyl | Microneedle Systems | Best Research Article Award

Ms. Oliwia Kordy, Poznan University of Medical Sciences, Poland

Ms. Oliwia Kordyl is a passionate biomedical researcher and Ph.D. candidate at Poznan University of Medical Sciences, Poland. Her research focuses on microneedle systems for localized drug delivery, particularly for treating skin infections and depressive disorders. With a background in biotechnology and a hands-on approach to molecular biology, Ms. Kordyl has gained practical expertise in 3D printing, drug permeability testing, and ex vivo assessments. Her work combines advanced pharmaceutical technology with molecular research, aiming to enhance transdermal therapeutic systems. Previously, she served in various roles from lab manager to molecular biologist, contributing to genetic, microbiological, and drug delivery research. Her interdisciplinary work bridges innovation in medical technology with therapeutic solutions. 🧫🧬

Professional Profile 

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🏅 Suitability for Best Researcher Award 

Ms. Oliwia Kordyl is a strong contender for the Best Researcher Award due to her innovative contributions in microneedle-based drug delivery systems and molecular biotechnology. Her cutting-edge work integrates 3D printing with pharmaceutical applications, addressing urgent needs in localized treatments and transdermal drug delivery. She has consistently demonstrated excellence in experimental design, pharmaceutical analysis, and research dissemination at international platforms. Her projects funded by the National Science Centre of Poland highlight her competence in conducting high-impact research. Oliwia’s ability to combine academic excellence with technical expertise makes her a valuable researcher whose work is already influencing future directions in medical technology and personalized drug delivery systems. 🧠💊🖨️

🎓 Education 

Ms. Kordyl began her academic journey at K.K. Baczyński Secondary School, specializing in biology, physics, and chemistry. She earned both her Bachelor’s and Master’s degrees in Biotechnology from Adam Mickiewicz University, Poznań. Her Bachelor’s thesis focused on global methylation (5mC) and hydroxymethylation (5hmC) in sperm DNA of oligozoospermic males, while her Master’s thesis investigated Fam71f1 gene expression in a mouse model of spermatogenesis. In November 2023, she commenced her Ph.D. at Poznan University of Medical Sciences, focusing on 3D-printed microneedles for targeted drug delivery. Her education reflects a rich blend of molecular biology, biotechnology, and medical technology, equipping her with a unique skill set in experimental therapeutics and epigenetics. 🧬📚🔍

🧪 Experience

Ms. Kordyl has held various technical and research roles across academia and industry. She currently works as a Lab Manager at Poznan University of Medical Sciences, overseeing a project on 3D-printed microneedles for depressive disorders. Previously, she was a Molecular Biologist at BGW Research Center, where she specialized in genome editing (CRISPR), PCR, and yeast hybridization. Her earlier experience at ALAB laboratoria involved qPCR-based SARS-CoV-2 detection. Additionally, she has contributed to epigenetic research at the Institute of Human Genetics and worked in clinical settings as a Medical Admissions Clerk. Her diverse experience showcases her hands-on proficiency in molecular biology, microbiology, and biomedical research, making her a versatile and skilled young researcher. 🧫🧑‍🔬🧪

🏆 Awards and Honors 

Ms. Kordyl has presented her research at leading international conferences, earning recognition for her work in epigenetics and reproductive biology. She delivered talks at events such as the 21st European Testis Workshop (Barcelona) and the Polish Society of Andrology conference, where she discussed chromatin integrity and methylation in oligozoospermia. Her research posters were featured at the 36th Annual ESHRE Meeting and the European Human Genetics Virtual Conference, showcasing advanced immunostaining and epigenetic localization in sperm chromatin. These honors reflect her commitment to scientific excellence and her growing impact in the biomedical field. Her communication skills and scientific rigor have helped elevate Poland’s presence in epigenetics and pharmaceutical technology. 🧬📜🎤

🔍 Research Focus 

Ms. Kordyl’s research interests lie at the intersection of medical technology, biotechnology, and pharmaceutical delivery systems. She specializes in developing microneedle-based drug delivery platforms for treating localized skin infections and mental health conditions. Her doctoral project involves optimizing microneedle production and evaluating physicochemical and pharmaceutical properties both in vitro and ex vivo. She also explores epigenetic regulation in reproductive biology, including DNA methylation and histone modification. Previous work includes advanced molecular biology (PCR, CRISPR, cloning) and fermentation science using metabolic CO₂. Oliwia’s holistic approach brings together molecular biology, bioengineering, and pharmacology, contributing toward the development of targeted, non-invasive therapeutic technologies with real-world clinical applications. 💉🧬🧠

Publication Top Notes

  • Optimization of LCD-Based 3D Printing for the Development of Clotrimazole-Coated Microneedle Systems

    • Year: 2025
  • Microneedle-Based Arrays – Breakthrough Strategy for the Treatment of Bacterial and Fungal Skin Infections

    • Year: 2025
  • Microneedle System Coated with Hydrogels Containing Protoporphyrin IX for Potential Application in Pharmaceutical Technology

    • Year: 2024
  • Global 5mC and 5hmC DNA Levels in Human Sperm Subpopulations with Differentially Protaminated Chromatin in Normo- and Oligoasthenozoospermic Males

    • Year: 2022

 

 

Assist. Prof. Dr. Mila Kaleva | Medical Tech | Best Researcher Award

Assist. Prof. Dr. Mila Kaleva | Medical Tech | Best Researcher Award

Assist. Prof. Dr. Mila Kaleva, Stephan Angeloff Institute of Microbiology, Bulgaria

Assist. Prof. Dr. Mila Kaleva is a distinguished researcher in infectious microbiology, currently serving at “The Stephan Angeloff” Institute of Microbiology, Bulgarian Academy of Sciences. She earned her Ph.D. from the University of Forestry, Sofia, specializing in microbiological and epizootiological assessments of organic waste. With expertise in veterinary microbiology, infectious diseases, and food safety, Dr. Kaleva has contributed significantly to microbiology research and academia. She has extensive experience in laboratory research, teaching, and supervising students in veterinary microbiology. Her work focuses on advancing medical technology and veterinary pathology, ensuring improved disease control and food safety standards. 🦠🔬

🌍 Professional Profile:

Orcid

Google Scholar

🏆 Suitability for Award

Dr. Mila Kaleva is a highly accomplished researcher whose contributions to infectious microbiology and veterinary medicine make her an ideal candidate for the Best Researcher Award. Her work in microbial pathogen assessment, infectious disease control, and veterinary microbiology has significantly advanced scientific knowledge and public health. Through her research, she has developed innovative methodologies for handling organic waste in veterinary environments, enhancing disease prevention strategies. Her dedication to both research and teaching, coupled with her impactful publications, demonstrates her excellence in academia and applied science. This award would recognize her invaluable contributions to veterinary microbiology and infectious disease control. 🏆🔬

🎓 Education 

Dr. Mila Kaleva holds a Ph.D. in Infectious Pathology from the University of Forestry, Sofia, where she conducted research on microbiological and epizootiological assessments of organic waste in veterinary medicine. Prior to that, she obtained a Master’s degree in Veterinary Medicine from the same institution. Her academic training has provided her with deep expertise in microbiology, infectious diseases, and veterinary pathology. She has actively contributed to the field through advanced studies in disease control, medical technology, and food safety. Her education forms a strong foundation for her research in infectious microbiology, enabling her to pioneer new scientific advancements. 🎓🔬

🔬 Experience 

Dr. Kaleva has a rich professional background in microbiology research and veterinary medicine. Since 2019, she has been an Assistant Professor at “The Stephan Angeloff” Institute of Microbiology, specializing in infectious microbiology. She has also taught microbiology at the University of Forestry’s Faculty of Veterinary Medicine, mentoring students in laboratory research and applied microbiology. Her experience extends to laboratory-based pathogen analysis, disease prevention, and organic waste treatment in veterinary environments. Dr. Kaleva’s combined expertise in research and education allows her to contribute significantly to microbiological advancements while shaping the next generation of veterinary microbiologists. 🏥🔬

🏅 Awards and Honors 

Dr. Mila Kaleva has been recognized for her outstanding contributions to infectious microbiology and veterinary medicine. She has received research grants supporting her studies on pathogen control and organic waste management. Her work in veterinary microbiology has earned accolades from academic institutions and professional organizations. Additionally, she has participated in national and international conferences, presenting groundbreaking findings in microbiology and epizootiology. Her dedication to scientific excellence and innovative approaches to disease prevention have positioned her as a leader in her field. Dr. Kaleva’s achievements highlight her impact on veterinary medicine and infectious disease research. 🏅🔬

🔬 Research Focus

Dr. Mila Kaleva’s research revolves around infectious microbiology, veterinary medicine, and disease control. Her work explores microbiological assessments of organic waste, pathogen control in veterinary environments, and food safety regulations. She specializes in medical technology, focusing on veterinary pathology and epizootiological studies. Her studies contribute to understanding disease transmission, improving veterinary health, and developing advanced microbiological techniques. She is particularly interested in innovative solutions for mitigating microbial contamination in animal-origin food products. Her research plays a vital role in safeguarding public health by preventing the spread of infectious diseases in veterinary and agricultural sectors. 🔬🦠

📖 Publication Top Notes 

  • Cytotoxicity and Microbicidal Activity of Commonly Used Organic Solvents: A Comparative Study and Application to a Standardized Extract from Vaccinium macrocarpon
    • Year: 2021
    • Citations: 37
  • Antimicrobial and Antioxidant Potential of Scenedesmus obliquus Microalgae in the Context of Integral Biorefinery Concept
    • Citations: 31
  • Antimicrobial Effect in vitro of Aqueous Extracts of Leaves and Branches of Willow (Salix babylonica L.)
    • Year: 2015
    • Citations: 25
  • Decontamination of Sewage Sludge by Treatment with Calcium Oxide
    • Year: 2014
    • Citations: 18
  • Outstanding Antibacterial Activity of Hypericum rochelii—Comparison of the Antimicrobial Effects of Extracts and Fractions from Four Hypericum Species Growing in Bulgaria
    • Year: 2023
    • Citations: 13

 

 

Prof. Foluso Oluwagbemiga Osunsanmi | Medical Technology | Best Researcher Award

Prof. Foluso Oluwagbemiga Osunsanmi | Medical Technology | Best Researcher Award

Prof. Foluso Oluwagbemiga Osunsanmi | University of Zululand | South Africa

Dr. Foluso Oluwagbemiga Osunsanmi is a dedicated researcher specializing in plant pathology and mycotoxin management 🌾🔬. Currently a Senior Lecturer at the University of South Africa, he focuses on postharvest disease control, antimicrobial agents, and sustainable agricultural practices 🌍🧪. With a Ph.D. in Microbiology from the University of KwaZulu-Natal 🎓, he has published extensively in high-impact journals 📚. His expertise spans fungal biology, food security, and biotechnology 🍄🍽️. Passionate about mentoring young scientists, he actively collaborates on global research projects 🌎🤝. Dr. Osunsanmi’s contributions advance agricultural resilience and food safety worldwide 🌱🛡️.

Professional Profile:

Google Scholar

Suitability for Best Researcher Award

Dr. Foluso Oluwagbemiga Osunsanmi is a highly suitable candidate for the Best Researcher Award due to his significant contributions to plant pathology, mycotoxin management, and sustainable agricultural practices. His research focuses on postharvest disease control, antimicrobial agents, and food security, which are critical for global agricultural sustainability.

Education & Experience 🎓💼

  • Ph.D. in Microbiology – University of KwaZulu-Natal, South Africa (2018) 🏅🔬
  • M.Sc. in Microbiology – University of Ilorin, Nigeria (2014) 🎓🧫
  • B.Sc. in Microbiology – University of Ilorin, Nigeria (2009) 🎓🦠
  • Senior Lecturer – University of South Africa (Current) 📚🎤
  • Postdoctoral Researcher – University of KwaZulu-Natal (2018-2020) 🧪🔬
  • Lecturer – University of Ilorin, Nigeria (2014-2015) 👨‍🏫📖

Professional Development 🚀

Dr. Osunsanmi actively participates in professional training and workshops to stay at the forefront of microbiology and agricultural research 🌾🔬. He has attended international conferences and presented groundbreaking research on fungal pathogens, food contamination, and sustainable agriculture 🌎📢. As a mentor, he supervises postgraduate students, guiding them in innovative research methodologies 🎓🤝. He is a member of esteemed scientific societies, including the American Society for Microbiology and the South African Society of Microbiology 🏅🔬. His commitment to continuous learning and collaboration fosters advancements in food safety, crop protection, and antimicrobial resistance 🌱🛡️.

Research Focus 🔬🌾

Dr. Osunsanmi’s research primarily focuses on plant pathology, mycotoxin contamination, and fungal disease management in crops 🌽🦠. He investigates the role of antimicrobial agents in controlling postharvest spoilage and enhancing food security 🍎🛡️. His studies also explore biocontrol strategies to reduce chemical pesticide dependence, promoting eco-friendly agricultural practices 🌍🚜. With expertise in microbiology and biotechnology, he develops novel solutions for sustainable farming, addressing global challenges in food safety and climate resilience 🌿🔬. His research significantly contributes to reducing crop losses and ensuring healthier food production for future generations 🍽️🌱.

Awards & Honors 🏆🎖️

  • Postdoctoral Research Fellowship – University of KwaZulu-Natal (2018-2020) 🏅📚
  • Outstanding Researcher Award – Recognized for contributions in plant pathology 🌾🔬
  • Best Paper Presentation – International Conference on Agricultural Biotechnology 🗣️🏆
  • Research Excellence Award – University of South Africa (2022) 🏅🎓
  • Member, National Research Foundation (NRF) South Africa – Recognized for academic impact 🌍📖

Publication Top Notes:

📖 Comparative study on proximate, functional, mineral, and antinutrient composition of fermented, defatted, and protein isolate of Parkia biglobosa seedBI Ogunyinka, BE Oyinloye, FO Osunsanmi, AP Kappo, AR Opoku | 🏛 Food Science & Nutrition 5 (1), 139-147 | 🔍 Cited by: 59
📖 Aqueous extract of Monodora myristica ameliorates cadmium-induced hepatotoxicity in male ratsBE Oyinloye, AF Adenowo, FO Osunsanmi, BI Ogunyinka, SO Nwozo, … | 🏛 SpringerPlus 5, 1-7| 🔍 Cited by: 52
📖 Effects of drying methods on quality attributes of shrimpsOM Ajifolokun, AK Basson, FO Osunsanmi, GE Zharare | 🏛 Journal of Food Processing and Technology 10 (772), 2  | 🔍 Cited by: 22
📖 Protective Effects of Parkia biglobosa Protein Isolate on Streptozotocin-Induced Hepatic Damage and Oxidative Stress in Diabetic Male RatsBI Ogunyinka, BE Oyinloye, FO Osunsanmi, AR Opoku, AP Kappo | 🏛 Molecules 22 (10), 1654 |  🔍 Cited by: 21
📖 A Lanosteryl Triterpene from Protorhus longifolia Improves Glucose Tolerance and Pancreatic Beta Cell Ultrastructure in Type 2 Diabetic RatsSE Mabhida, RA Mosa, D Penduka, FO Osunsanmi, PV Dludla, … | 🏛 Molecules 22 (8), 1252 |  🔍 Cited by: 21