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

orcid

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

nisreen kaddim | Drug Delivery Systems | Best Innovation Award

nisreen kaddim | Drug Delivery Systems | Best Innovation Award

Dr. nisreen kaddim, Ministry of Higher Education and Scientific Research, University of Babylon, Iraq

Dr. Nisreen Kaddim Radi is an Assistant Professor at the University of Babylon, specializing in molecular biology, genetics, PCR, and virology 🧬. Her research focuses on antimicrobial resistance, food safety, and innovative antibacterial films for medical applications 🏥. She has presented at international conferences and published extensively in high-impact journals 📚. Passionate about advancing science, she integrates computational and experimental approaches to explore anticancer and antibacterial agents ⚗️. With a commitment to research and education, Dr. Nisreen inspires students and contributes to scientific innovation 🌍.

Publication Profile

Google Scholar

Professional Background

Dr. Nisreen Kaddim Radi 🎓 is an Assistant Professor at the College of Science for Women, University of Babylon, specializing in molecular biology, genetics, PCR, and virology 🦠, with a focus on food safety and packaging 🍱. She is a member of the Arab Association for Science and Technology, Iraq branch, and serves on the Educational Guidance Committee at her college. Dr. Nisreen has published numerous research papers and actively participates in global conferences 🌍, including the 2022 International Conference on Sustainable Development Goals in Istanbul, ICAB 2022 at the University of Basrah, and ICAB2 2024, where she presented her studies on antimicrobial resistance, genetic variation, and immunological research

Memberships

Dr. Nisreen Kaddim Radi 🔬 is a dedicated researcher with significant contributions to molecular biology, genetics, and virology 🧬. Although she does not hold editorial positions or industry collaborations, her active engagement in scientific research strengthens her impact in the field. As a member of the Arab Association for Science and Technology 🌍, she remains connected to a network of experts, enhancing her academic and professional credibility. Through her research and participation in international conferences, Dr. Nisreen continues to contribute valuable insights to the scientific community, particularly in food safety and antimicrobial resistance 🦠.

Innovation in Methodology

Dr. Nisreen Kaddim Radi 🔬 combines computational simulations with experimental studies to develop innovative methods for enhancing the effectiveness of antibacterial and anticancer agents 🦠🎗️. Her dual-approach methodology integrates cutting-edge technology with practical applications, demonstrating a high level of scientific innovation 🚀. By bridging computational modeling with real-world experimentation, she contributes to advancing medical and pharmaceutical research, aligning perfectly with the award’s objectives 🏆. Her work not only improves therapeutic outcomes but also paves the way for more efficient and targeted treatments, reinforcing her role as a leading researcher in molecular biology and biotechnology 🧬.

Research Excellence

Dr. Nisreen Kaddim Radi 🔬 is pioneering the development of antibacterial films by integrating nanomaterials, polymers, and plant extracts 🌱🦠. Her innovative approach has profound implications for both medical and industrial applications 🏥🏭, positioning her at the forefront of antibacterial and anticancer material research 🎗️. Her groundbreaking study, Integrative Computational and Experimental Study of Propolis, Polyvinyl Alcohol, and Alhagi maurorum Complex as Anticancer and Antibacterial Agents 📜, showcases a multidisciplinary methodology, blending computational modeling with experimental validation 💻⚗️. This research enhances therapeutic potential, contributing to the advancement of novel biomedical materials and precision-targeted treatments 🚀.

Research Focus

Dr. Nisreen Kaddim Radi’s research primarily focuses on medical microbiology 🦠, immunology 🧬, and infectious diseases 🏥. Her work extensively explores viral infections such as Varicella Zoster Virus (VZV) 🏵️, Human Papillomavirus (HPV) 🎗️, and Hepatitis B Virus (HBV) 🦠, investigating genetic susceptibility and immune response. She also examines bacterial resistance 🧫, particularly in foodborne pathogens like E. coli, and studies immunological markers 🧪 in various infections. Her contributions in genetic polymorphisms 🔬, cytokine responses 🌡️, and molecular typing of pathogens highlight her expertise in understanding disease mechanisms and improving diagnostic approaches in infectious diseases and immunological disorders.

YORINOBU MAEDA | Drug Delivery Systems | Pharmaceutical Advancement Award

YORINOBU MAEDA | Drug Delivery Systems | Pharmaceutical Advancement Award

Prof Dr YORINOBU MAEDA, Fukuyama university, Japan

Prof. Dr. Yorinobu Maeda, Ph.D. (Hiroshima University, 1990), is a renowned expert in drug safety, pharmacokinetics, and infection control. As a professor at Fukuyama University and Drug Safety Director, he has advanced renal function-based dosing and prescription optimization. His contributions have earned him multiple awards, including Best Paper Awards (2001, 2005) and an Academic Contribution Award (2014) from the Japanese Society of Pharmaceutical Health Care and Sciences. With a strong academic and clinical impact, Dr. Maeda is a leading figure in pharmaceutical advancements, ensuring better patient safety and treatment efficacy. 🏅🔬

Publication Profile

scopus

Educational and Professional Background

Prof. Dr. Yorinobu Maeda has a distinguished background in pharmaceutical sciences, earning his Ph.D. from Hiroshima University in 1990 🎓. His expertise spans infection control, hospital pharmacy specialization, and drug safety leadership, reflecting his dedication to pharmaceutical advancements 💊. With leadership roles in major hospitals 🏥 and an esteemed position as a professor at Fukuyama University 🎓, he has made significant academic and practical contributions to the field. His work continues to shape the future of pharmacy, ensuring patient safety and advancing healthcare practices for better medical outcomes 🌍🔬.

Contributions to Pharmaceutical Sciences

Prof. Dr. Yorinobu Maeda has made significant contributions to pharmaceutical sciences, particularly in drug safety, pharmacokinetics, and dosage optimization 💊🔬. His research focuses on infection control 🦠, renal function-based dosing 🏥, and improving prescription practices, directly enhancing patient safety and treatment efficacy 👨‍⚕️✅. As a Drug Safety Director, he plays a crucial role in advancing pharmaceutical practices, ensuring medications are used effectively and safely. His dedication to optimizing drug therapy and refining medical protocols continues to have a lasting impact on healthcare, improving outcomes for patients worldwide 🌍💉.

Awards and Recognitions

Prof. Dr. Yorinobu Maeda has made remarkable contributions to the field of pharmaceutical healthcare, earning numerous prestigious accolades from the Japanese Society of Pharmaceutical Health Care and Sciences. His achievements include the Best Paper Awards in 2001 and 2005 🏆, as well as the esteemed Academic Contribution Award in 2014 🎓. These honors highlight his dedication to advancing research and implementing pharmacokinetic principles to enhance patient safety and care 🩺. Dr. Maeda’s work stands as a testament to his unwavering commitment to improving healthcare standards and fostering innovation in pharmaceutical sciences. 🌟

Research Focus

Professor Dr. Yorinobu Maeda is an eminent researcher specializing in pharmaceutical sciences, with a primary focus on drug bioavailability, prodrug development, and therapeutic drug monitoring. His work spans areas such as drug absorption, small intestinal bacterial overgrowth diagnosis, and managing adverse drug reactions. Notable research includes the impact of metal ions on drug efficacy and innovative prodrug strategies. Through collaborative studies, he contributes to optimizing drug delivery systems and clinical pharmacotherapy, enhancing patient safety and treatment outcomes. 🧪💊

Publication Top Notes

5-Aminosalicylic Acid Distribution into the Intestinal Membrane Along the Gastrointestinal Tract After Oral Administration in Rats

Development and Evaluation of EDTA-Treated Rabbits for Bioavailability Study of Chelating Drugs Using Levofloxacin, Ciprofloxacin, Hemiacetal Ester Prodrugs, and Tetracycline

Diagnosis by Microbial Culture, Breath Tests and Urinary Excretion Tests, and Treatments of Small Intestinal Bacterial Overgrowth

Ester Prodrugs of Levofloxacin to Prevent Chelate Formation in Presence of Aluminium Ion

Study on the method to avoid infusion‑site adverse events following chemotherapeutic treatment with epirubicin and fosaprepitant using immortalized human umbilical vein endothelial cells

Effect of aluminium ion on bioavailability of levofloxacin following oral administration of cilexetil ester of levofloxacin as prodrug in rats

 

Liqun Jiang | Drug Delivery Systems | Best Researcher Award

Assist. Prof. Dr. Liqun Jiang | Drug Delivery Systems | Best Researcher Award

Xuzhou Medical University, China

Author Profile

🎓Early Academic Pursuits 

Liqun Jiang began his academic journey with a deep interest in pharmaceutical sciences and biotechnology. His foundational studies were driven by a passion for discovering innovative solutions to pressing medical challenges. During his early years, Jiang demonstrated exceptional aptitude in the fields of drug development and delivery systems, excelling in both theoretical and applied sciences. These formative experiences laid the groundwork for his future endeavors in advanced pharmaceutical research. Jiang’s dedication to academic excellence led him to pursue specialized training and advanced education, equipping him with the knowledge and skills essential for groundbreaking contributions to medical science.

🌟Professional Endeavors 

Currently serving as an Associate Professor at Xuzhou Medical University, Liqun Jiang has established himself as a key figure in pharmaceutical engineering. His role extends beyond teaching, as he actively participates in high-impact research initiatives. A youth member of the Pharmaceutical Engineering Committee of the Chinese Pharmaceutical Society, Jiang is deeply involved in projects focused on novel drug delivery systems, particularly for respiratory diseases.

He has been instrumental in nearly 10 prestigious research projects, including the national 863 Program and major drug innovation programs. Jiang has successfully overseen the development of approximately 10 products, ranging from pharmaceuticals and disinfection solutions to specialized medical foods. His collaborative efforts with pharmaceutical companies have led to the development of a drug liposome inhalation agent, which has now progressed to pilot production stages.

🔬Contributions and Research Focus 

Jiang Liqun’s research is primarily centered on novel drug delivery systems for respiratory diseases, with a particular emphasis on pulmonary edema. His contributions to the field are both diverse and impactful, including: Developing pressure-sensitive multivesicular liposomes for delivering amlodipine besylate, Innovating therapies with exogenous eNOS genes to combat high-altitude pulmonary edema, Utilizing mesenchymal stem cell exosomes for advanced inhalation therapies, Designing high-efficiency powder mist inhalants for high-altitude conditions.

🏆Accolades and Recognition 

Liqun Jiang’s academic and professional achievements have garnered widespread recognition. His research contributions are evidenced by: Nearly 30 peer-reviewed publications in reputed journals, 10 authorized patents, with 8 more under processing, An impressive citation index of 312, reflecting the high impact of his work, Close collaborations with pharmaceutical companies, leading to tangible advancements in drug development and commercialization, Jiang’s dedication to his field is further highlighted by his active participation in the Chinese Pharmaceutical Society, where he contributes as a youth member in shaping the future of pharmaceutical engineering.

🌏Impact and Influence 

Jiang Liqun’s work has had a profound impact on both academia and industry. His innovative strategies for addressing respiratory diseases have paved the way for safer, more effective therapeutic interventions. By integrating cutting-edge drug delivery systems into clinical practice, Jiang has set a benchmark in the treatment of pulmonary conditions. His ability to bridge the gap between research and application has made him a valuable collaborator for pharmaceutical companies seeking to bring advanced therapies to market.

🌟Legacy and Future Contributions 

Jiang Liqun’s legacy lies in his relentless pursuit of innovation and excellence in pharmaceutical research. His groundbreaking work in drug delivery systems has already influenced the development of treatments for high-altitude pulmonary edema and other respiratory conditions. Looking ahead, Jiang aims to expand his research into broader areas of pulmonary medicine, focusing on the use of biotechnology and nanotechnology in drug development. He envisions a future where precision medicine and targeted therapies play a pivotal role in treating respiratory diseases, improving outcomes for patients worldwide. Jiang is committed to mentoring the next generation of researchers and fostering collaborations that advance the frontiers of pharmaceutical science.

🌟Final Thoughts 

With a career marked by innovation, dedication, and impactful contributions, Liqun Jiang exemplifies the qualities of a trailblazing researcher. His work continues to shape the future of respiratory medicine, leaving an indelible mark on both academia and industry. Through his ongoing efforts, Jiang inspires a new wave of scientific inquiry and collaboration, ensuring his legacy will resonate for years to come.

📖Notable Publications

Pressure-sensitive multivesicular liposomes as a smart drug-delivery system for high-altitude pulmonary edema
  • Authors : Li, H., Liu, S., Dai, W., Jin, F., Jiang, L.
  • Journal: Controlled Release
  • Year: 2024
Inhalation of panaxadiol alleviates lung inflammation via inhibiting TNFA/TNFAR and IL7/IL7R signaling between macrophages and epithelial cells
  • Authors : Wang, Y., Wei, H., Song, Z., Shu, Q., Xie, Y.
  • Journal: Ginseng Research
  • Year: 2024
Dry Powder Formulations for Inhalation Require a Smaller Aerodynamic Diameter for Usage at High Altitude
A large particle size is required by a nano/micron sized-fluticasone propionate inhalable suspension for asthma treatment
A simple liposome-based bionic bacterium for tumor treatment by re-education of tumor-associated microphages in combination with chemotherapy

Prof. Lei Ren |Drug Delivery Systems| Best Researcher Award-1331

Prof. Lei Ren|Drug Delivery Systems |Best Researcher Award|

Prof. Lei Ren at mus alparslan university, Turkeys

PROFILE  

Orcid 

Early Academic Pursuits 📚

Lei Ren’s academic journey began in the vibrant city of Tianjin, where she pursued her Bachelor of Science in Material Science & Engineering at Tianjin University, graduating in 1990. This foundational period was marked by her strong dedication to understanding the principles of material science, a field that would later shape her illustrious career. Tianjin University’s rigorous curriculum provided Ren with a solid grounding in the fundamentals of material science, equipping her with the skills and knowledge to explore its applications in various domains.

Ren’s academic curiosity led her to pursue further education at Peking Union Medical College, one of China’s most prestigious institutions. In 1997, she earned her Master of Science in Biomedical Engineering, a field that bridged her interests in material science and its applications in medicine. This interdisciplinary approach was a hallmark of Ren’s early academic endeavors, reflecting her passion for integrating diverse fields of study to address complex scientific challenges.

Her pursuit of knowledge did not stop there. Ren continued her academic journey in Japan, where she completed her Ph.D. in Material Science at Okayama University in 2001. This period was crucial in shaping her research trajectory, as she delved into advanced materials and their potential biomedical applications. Her time in Japan also exposed her to a new scientific culture, broadening her perspective and fostering a global approach to research that would later define her career.

Professional Endeavors 🌟

Upon completing her doctoral studies, Ren embarked on a career that seamlessly blended research and academia. Her first professional role was as a Research Associate at the Institute of Biomedical Engineering, Chinese Academy of Medical Sciences, where she worked from 1990 to 1997. During this time, Ren honed her research skills, contributing to various projects that explored the interface between material science and biomedical engineering.

In 2001, Ren transitioned to a global stage, joining the Singapore-MIT Alliance at the National University of Singapore as a Research Fellow. This opportunity allowed her to collaborate with leading scientists from around the world, further enhancing her research capabilities and expanding her professional network. Her work during this period focused on cutting-edge biomedical engineering projects, laying the groundwork for her future contributions to the field.

In 2002, Ren returned to China to join the Research Center of Biomedical Engineering at the College of Medicine, Xiamen University, as an Associate Professor. Over the next five years, she played a pivotal role in advancing the center’s research agenda, mentoring students, and publishing influential papers. Her dedication and expertise earned her a promotion to full Professor in 2007, a position she holds to this day at the Department of Biomaterials, College of Materials, Xiamen University.

Contributions and Research Focus 🧬

Ren’s research has primarily focused on the development and application of biomaterials, particularly in the context of biomedical engineering. Her work has explored the synthesis and characterization of novel materials designed to interact with biological systems, with the goal of improving medical devices, implants, and tissue engineering applications.

One of her significant contributions to the field has been her research on biocompatible materials that can be used in medical implants. Ren’s work has helped advance the understanding of how materials interact with the human body, leading to the development of safer and more effective implants that reduce the risk of rejection and improve patient outcomes. Her research has also explored the use of biomaterials in tissue engineering, where she has contributed to the development of scaffolds that support the growth and regeneration of tissues.

In addition to her work on biomaterials, Ren has also been involved in interdisciplinary projects that integrate material science with other fields, such as nanotechnology and regenerative medicine. Her ability to bridge these diverse areas of study has positioned her as a leader in the field of biomedical engineering, with her work having a profound impact on both academic research and practical medical applications.

Accolades and Recognition 🏅

Throughout her career, Lei Ren has received numerous accolades in recognition of her contributions to the field of biomedical engineering. Her research has been widely published in leading scientific journals, earning her a reputation as a highly respected scholar in her field. Her work has also been recognized by various professional organizations, both in China and internationally, highlighting her status as a pioneering figure in the field of biomaterials.

Ren has been invited to speak at numerous international conferences, where she has shared her insights on the latest developments in biomaterials and biomedical engineering. These speaking engagements have not only showcased her research but also facilitated the exchange of ideas with other leading scientists, furthering the advancement of the field.

Impact and Influence 🌍

Ren’s influence extends beyond her research and academic roles. As a professor at Xiamen University, she has mentored numerous students who have gone on to make their own contributions to the field of biomedical engineering. Her commitment to teaching and mentorship has helped shape the next generation of scientists, ensuring that her impact will be felt for years to come.

Moreover, Ren’s work has had a tangible impact on the medical field. The biomaterials she has developed have been used in various medical devices and implants, improving the quality of life for patients around the world. Her interdisciplinary approach to research has also inspired new collaborations between scientists from different fields, leading to innovative solutions to some of the most pressing challenges in medicine.

Legacy and Future Contributions 🔮

As Lei Ren continues her work at Xiamen University, her legacy as a pioneer in the field of biomaterials is already well established. Her contributions to the development of biocompatible materials and her interdisciplinary approach to research have left an indelible mark on the field of biomedical engineering. Moving forward, Ren is likely to continue pushing the boundaries of what is possible in her field, exploring new frontiers in material science and its applications in medicine.

🎓Publication 

Oral biomimetic virus vaccine hydrogel for robust abscopal antitumour efficacy

  • Authors   :Chufan Wang; Haobo Tang; yufei Duan; Qiang Zhang; Wenjun Shan; Xiumin Wang; Lei Ren
  • Journal    :Colloid and Interface Science
  • Year         :2024

Tumor‐Associated Myeloid Cells Selective Delivery of a Therapeutic Tumor Nano‐Vaccine for Overcoming Immune Barriers for Effective and Long‐Term Cancer Immunotherapy

  • Authors   :Chufan Wang; Jinglian Zhao; Yufei Duan; Liping Lin; Qiang Zhang; Haiping Zheng; Wenjun Shan; Xiumin Wang; Lei Ren
  • Journal    :Healthcare Materials
  • Year         :2024

Seamless Integration of Rapid Separation and Ultrasensitive Detection for Complex Biological Samples Using Multistage Annular Functionalized Carbon Nanotube Arrays

  • Authors   :Lihuang Li; Jialing Zhang; Zhengqi Jiao; Xi Zhou; Lei Ren; Miao Wang.
  • Journal    :Materials
  • Year         :2024

Generalized Multifunctional Coating Strategies Based on Polyphenol-Amine-Inspired Chemistry and Layer-by-Layer Deposition for Blood Contact Catheters

  • Authors   :Jiahao Du; Xiaoting Zhang; Wenlong Li; Miao Wang; Xi Zhou; Lei Ren
  • Journal    :Biomaterials Science & Engineering
  • Year         :2024

Driving modes and characteristics of biomedical micro-robots

  • Authors   :Engineered Regeneration
    .

  • Journal    :Libing Huang; Yueyuan Pan; Miao Wang; Lei Ren
  • Year         :2023

Prof.Aleksandr Urakov|Drug Repurposing | Best Researcher Award

Prof.Aleksandr Urakov, Drug Repurposing ,Best Researcher Award

Prof.Aleksandr Urakov atIzhevsk State Medical Academy,Russia

PROFILE  

scopus

Orcid

Academic Leadership 🏫

Professor Aleksandr Urakov serves as the head of the Department of General and Clinical Pharmacology at Izhevsk State Medical Academy. His leadership has been instrumental in shaping the department into a center of excellence in pharmacological research and education.

Innovative Contributions 🧠

As an inventor, Professor Urakov holds over 270 patents and has published more than 200 scientific articles . His research in temperature pharmacology and drug repurposing  has led to significant advancements, including the development of the floating tablet and warm alkaline hydrogen peroxide solutions .

Recognition and Honors 🎖️

For his remarkable contributions, Professor Urakov has been awarded the Order of the Badge of Honor and holds the prestigious title of Honored Inventor of the Russian Federation . His work continues to influence and inspire the medical community globally.

Research and Innovations🔬 :

Professor Urakov invented the floating tablet and discovered warm alkaline hydrogen peroxide solutions (WAHPSs), which include new drug subgroups like bruise bleaches, pus-dissolving drugs (pyolytics), and oxygen-producing antihypoxants. These innovations offer alternatives to ECMO for hypoxemia in COVID-19 asphyxia.

🎓Publication 

Comment: Balanced Salt Solutions for Critically Ill Patients: Nonplused and Back to Basics

Thermal imaging of local skin temperature as part of quality and safety assessment of injectable drugs

    • Authors :Urakov, A., Urakova, N., Samorodov, A., Suntsova, D., Muhutdinov, N..
    • Journal   :Heliyon
    • Year       : 2024

Understanding burn injuries in children – A step toward prevention and prompt first aid

  • Authors  :Urakov, A.L., Suntsova, D.O., Yagudin, I.I.
  • Journal    :Burns
  • Year         :  2023

ASSESSMENT OF FETAL RESISTANCE TO HYPOXIA USING THE STANGE TEST AS AN ADJUNCT TO APGAR SCALE ASSESSMENT OF NEONATAL HEALTH STATUS

  • Authors  :Shabanov, P.D., Urakov, A.L., Urakova, N.A.
  • Journal   :Medicinskij Akademiceskij Zurnal,
  • Year        :   2023

Prospects for the pharmacological validation of the use of platelets as a “peripheral model” of neurons

Assoc Prof Dr.Guanyu Chen|Drug Delivery Systems | Best Researcher Award

Assoc Prof Dr.Guanyu Chen, Drug Delivery Systems,Best Researcher Award

Assoc Prof Dr.Guanyu Chen, at Sun Yat-Sen University School of Pharmaceutical Sciences Shenzhen,China

PROFILE  

scopus

🧪 Research Focus :

Associate Prof. Guanyu Chen is an expert in Drug Delivery and Immunochemotherapy at the School of Pharmaceutical Sciences, Sun Yat-sen University.

🎓 Education and Professional Experience :

He earned his Bachelor’s (2005-2008), Master’s (2009-2012), and PhD (2012-2016) degrees from the University of Auckland, New Zealand. Following his PhD, he worked as a Postdoctoral Fellow at the same university from 2017 to 2019. During this time, he also served as a Research Assistant at Ancare Scientific Ltd, Douglas Ltd, Alleva Animal Health Ltd, and Kimberly Clack Ltd. In 2019, he joined Sun Yat-sen University, China, as an Associate Professor.

💰 Research Funding :

Prof. Chen has received significant funding for his research, including the National Natural Science Foundation of China in 2022 (82273871), the Guangdong Basic and Applied Basic Research Foundation in 2021 (2021A1515110006), the Shenzhen Science and Technology Program in 2020 (GXWD20201231165807008), the 67th Batch Postdoc Research Foundation of China in 2019 (2020M673030), and the Kimberly Clarks Pharmaceutics Research Fund, USA in 2016 (32715.001).

🏅 Patents and Awards :

His achievements include two national invention patents and several prestigious awards: Overseas Senior Talent of Shenzhen, Recruiting Outstanding Overseas Talent of Guangdong, Maurice and Phyllis Paykel Research Award, Academic Career Exploration Scholarship, Edna and Denis Moloney Scholarship, FMHS-PGSA Award from the University of Auckland, Elite Editing Thesis Write-up Scholarship from Australia, and The University of Auckland Partnership Appeal Award.

📚 Editorial Roles :

Prof. Chen contributes to the academic community as a Youth Editorial Board Member for Acta Materia Medica and the Journal of Drug Delivery and Translational Research. He also serves as a Guest Editor for the Journal of Current Drug Delivery and Pharmaceutics.

🔍 Conclusion

Associate Prof. Guanyu Chen stands out as a leading researcher in drug delivery and immunochemotherapy, with a robust academic background and extensive experience. His significant contributions to the field are supported by notable research funding and a series of prestigious awards. As a dedicated academic and editorial contributor, Prof. Chen continues to advance pharmaceutical sciences through his research, mentorship, and publication efforts.

🎓Publication 

The scaffold protein AXIN1: gene ontology, signal network, and physiological function

Minocycline prevents photoreceptor degeneration in Retinitis pigmentosa through modulating mitochondrial homeostasis

Cryo-Milled β-Glucan Nanoparticles for Oral Drug Delivery

  • Authors  :Chen, G., Liu, Y., Svirskis, D., Lu, W., Wen, J.
  • Journal    :Pharmaceutics
  • Year         :  2024

Fish oil-based microemulsion can efficiently deliver oral peptide blocking PD-1/PD-L1 and simultaneously induce ferroptosis for cancer immunotherapy

Development of a novel peptide targeting GPR81 to suppress adipocyte-mediated tumor progression

  • Authors  :Chen, S., Zhou, X., Li, W., Liu, J., Gao, Y.
  • Journal   :Biochemical Pharmacology
  • Year        :  2023