Laura Weinstein | Drug Delivery Systems | Best Researcher Award

Laura Weinstein | Drug Delivery Systems | Best Researcher Award

Ms. Laura Weinstein, University of Delaware, United States

Ms. Laura Weinstein is an accomplished biomedical engineering student at the University of Delaware 🎓, set to graduate in May 2025 with a stellar GPA of 3.97. With minors in nanoscale materials and chemistry 🧪, she has led impactful research in nanoparticle drug delivery, orthotic device innovation, and immunoengineering. Her work spans labs at Delaware and Vanderbilt 🏥, earning her top honors including the Eugene du Pont Memorial Scholarship and Best Poster Awards 🏆. Passionate about translational medicine, Laura’s dedication to improving healthcare through engineering solutions marks her as a rising star in biomedical research 🌟.

Publication Profile 

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Education

Ms. Laura Weinstein is currently pursuing an Honors Bachelor of Science in Biomedical Engineering at the University of Delaware, with expected graduation in May 2025 📅. She maintains an outstanding GPA of 3.97 🌟 and complements her major with minors in Nanoscale Materials and Chemistry ⚗️. Her coursework spans core sciences and advanced engineering, including Introductory Biology 🧬, General Chemistry 🧪, Physics ⚛️, and Biomedical Experimental Design 📊. She has also delved into Immunoengineering, Cell Engineering 🧫, Nanomaterials, and Nanomedicine 💉. Proficient in Python and MATLAB 💻, Laura combines technical skills with scientific curiosity, preparing her for groundbreaking biomedical research 🔬.

Awards

Ms. Laura Weinstein has received numerous prestigious honors throughout her academic journey. From 2021–2025, she was awarded the esteemed Eugene du Pont Memorial Scholarship 🎓, covering full tuition, housing, meals, and book expenses. In 2024, she earned 1st place for designing a prototype to secure thoracostomy tubes 🩺. She is also a National Cyber Scholar (2022–2024) 💻 and won the Biomedical Engineering Distinguished Sophomore Award in 2023 🧬. That same year, she was recognized by the Delaware Department of Technology and Information 📡. In 2022, she placed 1st in the Ratcliffe Eco Entrepreneurship Innovation Sprint 🌱🚀

Experience

Ms. Laura Weinstein has been actively engaged in cutting-edge research at the University of Delaware’s Day Lab since January 2022 🏛️. Under the mentorship of Dr. Emily Day and PhD candidate Eric Sterin 👩‍🏫, she developed polymeric nanoparticles for biomimetic cargo delivery via cancer cell membranes 🧫. She contributed to refining purification protocols for DiD-fluorescent nanoparticles 💡 and guided fellow undergraduates in research techniques 📘. Her dedication extended beyond semesters, participating in multiple research fellowships and programs including the 2022 CBER Summer Scholars REU, 2023 Winter Fellowship, and 2024–2025 Summer/Winter Fellowships 🧪📊—highlighting her passion for biomedical innovation.

Research Focus

Ms. Laura Weinstein focuses her research in the dynamic field of biomedical nanotechnology and targeted drug delivery 🧪. Her studies explore cell biomimicry, using cancer cell membranes to improve therapeutic delivery for hematological cancers 🧫🩸. She also investigates nanoparticle purification challenges, ensuring enhanced precision in drug transport systems 🎯. Her work integrates principles of nanomedicine, immunoengineering, and materials science to develop innovative approaches in cancer treatment and diagnostics 🧬. Through her publications and lab experience, Laura contributes to advancing next-generation polymeric nanoparticle technologies—blending engineering and biology to revolutionize patient care and medical outcomes 🚀💊.

Publication Top Notes

Hiding in Plain Sight: Cell Biomimicry for Improving Hematological Cancer Outcomes

Standard purification methods are not sufficient to remove micellular lipophilic dye from polymer nanoparticle solution

SILVIA MARIA DÍAZ PRADO | Drug Delivery Systems | Lifetime achievement Award

SILVIA MARIA DÍAZ PRADO | Drug Delivery Systems | Lifetime achievement Award

Prof. Dr. SILVIA MARIA DÍAZ PRADO, University of A Coruña, Spain

Prof. Dr. Silvia María Díaz Prado is a Professor of Anatomy at the University of A Coruña and leads the Cellular Therapy and Regenerative Medicine Group at INIBIC. With a PhD in Biology (2004), her research spans tissue engineering, stem cells 🧬 (including iPSCs), novel biomaterials, 3D bioprinting 🖨️, and nanoparticle drug delivery 💊. She has published 68 articles (H-index: 24), 32 book chapters, and presented at 215 conferences. Dr. Díaz Prado has led 33 research projects, supervised over 50 theses, and received 7 research awards 🏅. She coordinates the Master’s in Health Care and Research program.

Publication Profile

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Education

Prof. Dr. Silvia María Díaz Prado 🎓 holds a Ph.D. in Biology (2004) from the University of A Coruña, where she serves as a Professor of Anatomy 🧠 and coordinates the Master’s Degree in Health Care and Research 💉📚. With a distinguished academic career, she has played a pivotal role in shaping advanced medical education and fostering scientific inquiry 🔬. Her dedication to teaching and mentorship has inspired countless students and researchers, reinforcing her status as a respected leader in the biomedical field 🌟. Prof. Dr. Díaz Prado continues to advance excellence in health sciences through education and innovation.

Awards

Prof. Dr. Silvia María Díaz Prado 🏅 has been honored with seven prestigious research awards 🧪, reflecting the high regard in which her scientific contributions are held by the academic community 🌍. These accolades underscore her exceptional merit, dedication to innovation, and impactful work in the field of biomedical research 🧬. Each award stands as a testament to her relentless pursuit of knowledge, excellence, and advancement in science 🔍✨. Prof. Díaz Prado’s achievements not only bring recognition to her individual efforts but also elevate the institutions and research teams she represents, inspiring future generations of scientists 🎓🌟.

Research Focus

Prof. Dr. Silvia María Díaz-Prado is a distinguished researcher in the field of Regenerative Medicine 🧬🦴, with a strong focus on stem cells, cartilage repair, and molecular signaling in musculoskeletal disorders. Her groundbreaking work explores microRNA profiling🧪, mesenchymal stem cells🧫, and the human amniotic membrane as a novel source for cell therapy. She also investigates oncogenic pathways like Wnt, Notch, and Hedgehog 🔬, linking them to cancer stem cells. Prof. Díaz-Prado’s contributions bridge molecular biology with clinical applications, making her a key figure in orthopedic tissue engineering, biomarkers, and cell-based therapeutic strategies.

Publication Top Notes

Characterization of microRNA expression profiles in normal and osteoarthritic human chondrocytes

Cloning genes from a library using a clustering strategy and PCR

Multilineage differentiation potential of cells isolated from the human amniotic membrane

Human amniotic membrane as an alternative source of stem cells for regenerative medicine

Wnt signalling and cancer stem cells

Notch signalling in cancer stem cells

Potential use of the human amniotic membrane as a scaffold in human articular cartilage repair

Quantification of cells expressing mesenchymal stem cell markers in healthy and osteoarthritic synovial membranes

Effects of severe hypoxia on bone marrow mesenchymal stem cells differentiation potential

Cyclooxygenase-2 (COX-2): a molecular target in prostate cancer

Isolation and characterization of mesenchymal stem cells from human amniotic membrane

Induced pluripotent stem cells for cartilage repair: current status and future perspectives

Biology of BMP signalling and cancer

Jameel Al-Tamimi | Biopharmaceutics | Best Researcher Award

Jameel Al-Tamimi | Biopharmaceutics | Best Researcher Award

Dr. Jameel Al-Tamimi, King Saud University, Saudi Arabia

Dr. Jameel Al-Tamimi is a distinguished researcher with a Ph.D. in Immunogenetics from King Saud University, Riyadh, Saudi Arabia. His research focuses on immunology, particularly the role of Killer Immunoglobulin-like Receptors (KIRs) in leukemia. He has expertise in molecular techniques, immunology, and forensic entomology. Dr. Al-Tamimi has published numerous research articles and has contributed to various academic committees. His teaching experience spans courses in molecular biology, human physiology, and medical entomology.

Publication Profile

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Education

Dr. Jameel Al-Tamimi 🎓 is a distinguished researcher with a Ph.D. in Immunogenetics (Excellent 4.9/5) from King Saud University, where his thesis explored the Role of Killer Immunoglobulin-like Receptors (KIRs) with HLA Ligands in Saudi Leukemia Patients 🧬. He also holds an M.Sc. in Entomology and Parasitology (Excellent 4.9/5), investigating the anti-inflammatory effects of Pachycondyla sennaarensis (Samsum Ant) venom in male albino rats 🐜🧪. Dr. Al-Tamimi earned his B.Sc. in Biology (Very Good 89.9/100) from Thamar University, Yemen, with research focused on physiological changes in viral hepatitis (HbsAg and HCV) patients at Thamar Hospital 🧫🦠.

Experience

Dr. Jameel Al-Tamimi 🧑‍🔬 brings a wealth of academic and research experience. Since 2023, he has served on the Scientific Committee for the Researcher Support Program (RSPD) and Research Groups Program (RGP) at the Deanship of Scientific Research 📚. At King Saud University, he contributed to key committees, including labs, academic accreditation, exams, and graduate studies 🏛️. He supervised both the endocrinology and immunology laboratories 🧪 and mentored undergraduate and master’s students 🎓. Skilled in handling rats, mice, and insects 🐭🦗, Dr. Al-Tamimi is also proficient in advanced molecular biology, immunology, and physiology techniques 🧬🔬.

Awards

Dr. Jameel Al-Tamimi 🎓 has been recognized for his academic excellence with several prestigious awards. In 2015, he received an acknowledgment certificate from the Chairman of the Center of Excellence in the Development of Science and Mathematics Education at King Saud University 🏅, highlighting his contribution to scientific advancement. Earlier, in 2013, he was honored with a Certificate of Appreciation (General Prize) during the first Graduate Student Annual Scientific Meeting at KSU 📜🎉. These achievements reflect his dedication to academic excellence, innovation in research, and commitment to the scientific community 🌟📚.

Research Focus

Dr. Jameel Al-Tamimi is a multidisciplinary biomedical researcher whose primary focus lies in oxidative stress, wound healing, diabetes, and nanoparticle therapeutics. His work spans nanomedicine, immunomodulation, and natural product pharmacology, particularly in evaluating the biological activities of camel milk peptides, selenium and zinc oxide nanoparticles, and bioactive plant extracts. Dr. Al-Tamimi’s studies contribute significantly to redox biology, diabetic complications, and biofabrication of therapeutic agents, offering innovative strategies for combating chronic diseases and enhancing healing processes. 🧫💊🐫 His collaborative work reflects a strong emphasis on toxicology, regenerative medicine, and bio-nanotechnology.

Publication Top Notes

Camel milk peptide improves wound healing in diabetic rats by orchestrating the redox status and immune response

Wound healing of different molecular weight of hyaluronan; in-vivo study

Folic acid and melatonin mitigate diabetic nephropathy in rats via inhibition of oxidative stress

Synthesis, structural characterization of silver (I)-NHC complexes and their antimicrobial, antioxidant and antitumor activities

Potential effects of the combination of nicotinamide, vitamin B2 and vitamin C on oxidative-mediated hepatotoxicity induced by thioacetamide

Efficacy of a Methanolic Extract of Adansonia digitata Leaf in Alleviating Hyperglycemia, Hyperlipidemia, and Oxidative Stress of Diabetic Rats

Antioxidant Bioactivity of Samsum Ant (Pachycondyla sennaarensis) Venom Protects against CCL4‐Induced Nephrotoxicity in Mice

Biofabrication of Zinc Oxide Nanoparticle from Ochradenus baccatus Leaves: Broad‐Spectrum Antibiofilm Activity, Protein Binding Studies, and In Vivo Toxicity …

Oliwia Kordyl | Drug Delivery Systems | Best Research Article Award

Oliwia Kordyl | Drug Delivery Systems | Best Research Article Award

Ms. Oliwia Kordyl, Poznan Univeristy of Medical Sciences, Poland

Ms. Oliwia Kordyl (b. June 9, 1997) is a dedicated PhD student at Poznan University of Medical Sciences, specializing in 3D printed microneedles for targeted drug delivery. With a background in biotechnology from Adam Mickiewicz University, her work spans molecular biology, pharmaceutical technology, and reproductive genetics. Oliwia has held roles as a lab manager, molecular biologist, and biotechnologist, contributing to innovative projects and scientific conferences. She is skilled in advanced lab techniques and passionate about travel, fitness, and continuous learning.

Publication Profile

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Education

Ms. Oliwia Kordyl is currently pursuing her Ph.D. (Nov 2023–Present) at the Poznan University of Medical Sciences in Poland, focusing on 3D printed microneedles for voriconazole delivery in treating local skin infections. Her research involves optimizing microneedle manufacturing, assessing physicochemical and pharmaceutical properties in vitro, and evaluating drug permeation ex vivo and microbiological effectiveness 🧪🧬. She earned her M.Sc. and B.Sc. in biotechnology from Adam Mickiewicz University (2016–2021), where she explored DNA methylation in oligozoospermia and gene expression in spermatogenesis 🧫. Her academic journey began at K.K. Baczyński Secondary School, specializing in biology, physics, and chemistry 🔬📚.

Experience

Ms. Oliwia Kordyl completed a valuable internship at Novazym Polska in Poznań from July to August 2019. During her time at this renowned biotechnology company, she gained hands-on experience in laboratory techniques and deepened her understanding of industrial biotechnology practices 🔬💼. The internship provided her with practical insights into the daily operations of a biotech firm and allowed her to apply her academic knowledge in a real-world setting 🧪📊. This experience not only enhanced her technical skills but also strengthened her passion for research and innovation in the field of biotechnology, laying a strong foundation for her future scientific endeavors 🚀.

Awards

🏆 Ms. Oliwia Kordyl has actively contributed to the scientific community through speeches and posters at esteemed conferences. She presented on sperm DNA methylation at the 21st Andrology Day (2019) 🧬 and the 21st European Testis Workshop (2021) in Barcelona. Her posters featured at ESHRE 2020, the European Human Genetics Conference (2021), and the 6th Polish Congress of Genetics (2022) showcased her expertise in epigenetics and sperm chromatin structure 🧫📊. In 2023, she co-authored a poster on microneedles for transdermal drug delivery at PolGerSym10 💉. Oliwia also co-authored a publication in the International Journal of Molecular Sciences (2022) 📄📚.

Research Focus

Ms. Oliwia Kordyl’s research focuses on the development of innovative drug delivery systems, particularly microneedle-based technologies for transdermal applications. Her work combines 3D printing, pharmaceutical coatings, and hydrogel systems to enhance the treatment of bacterial and fungal skin infections. She also explores photodynamic therapy and nanotechnology for targeted drug release. Her interdisciplinary approach bridges materials science, biomedical engineering, and pharmaceutics. Additionally, her research extends to epigenetic analysis in human sperm, highlighting her interest in reproductive biology. Her work is at the frontier of personalized medicine, non-invasive therapies, and advanced pharmaceutical technologies.

Publication Top Notes

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

Microneedle-based arrays – Breakthrough strategy for the treatment of bacterial and fungal skin infections

Microneedle System Coated with Hydrogels Containing Protoporphyrin IX for Potential Application in Pharmaceutical Technology

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