Ki Hyun Yoo | Agricultural and Biological Sciences | Research Excellence Award

Dr. Ki Hyun Yoo | Agricultural and Biological Sciences | Research Excellence Award

CTO | Simple Planet Inc | South Korea

Dr. Ki Hyun Yoo, PhD, is an Adjunct Professor of Bioengineering at Hanyang University and CTO of Simple Planet Inc., specializing in cellular engineering, cultured-meat biotechnology, and regenerative medicine. He holds BS, MS, and PhD degrees in Biotechnology and Applied Biological Chemistry from Kyung Hee University, with advanced postdoctoral training in oncology, pediatrics, and neurosurgery at leading U.S. medical institutions. His professional experience spans faculty and research leadership roles, directing multidisciplinary projects in stem-cell engineering, neuroregeneration, metabolic pathways, and translational biomaterials while overseeing technology development in the biotechnology industry. Dr. Yoo’s research focuses on pluripotent stem-cell platforms, tissue differentiation, 3D bioprinting, and molecular mechanisms underlying aging and disease, contributing to federal and industry-funded grants, peer-reviewed publications, and innovative applications in food biotechnology and regenerative therapeutics. He has been recognized with competitive paper awards, prestigious fellowships, and service as a journal reviewer, and has maintained active membership in major scientific societies in cancer research, applied biological chemistry, and medical crop science.

Citation Metrics (Scopus)

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Featured Publications

Ki Young Choi | Hydroponics | Research Excellence Award

Prof. Ki Young Choi | Hydroponics | Research Excellence Award

Professor | Kangwon National University South Korea

Prof. Ki Young Choi, a professor in the Department of Smartfarm and Agricultural Industry at Kangwon National University, is a leading expert in environmental horticulture and smart-farm systems whose work integrates plant physiology, controlled-environment agriculture, and sustainable hydroponic production. He holds B.S., M.S., and Ph.D. degrees in Environmental Horticulture, specializing in plant responses to environmental factors, with doctoral research focused on physiological disorders in controlled plant-factory conditions. His professional career spans academia, national research institutes, government advisory councils, and industry, where he has served as professor, research professor, senior researcher, post-doctoral scientist, director, and committee member, contributing to strategic planning for smart-farm innovation, national science and technology policy, and horticultural research development. He has led major projects on optimizing inorganic ion composition for hydroponic systems, improving nutrient-solution recycling strategies, and advancing zero-discharge technologies for sustainable strawberry production. His research contributions include work in plant environmental physiology, bio-environmental control, nutrient management, and smart-farm engineering, supported by numerous publications and editorial roles in horticultural science and technology journals. Recognized for his leadership, he has held executive positions in multiple scientific societies, served on national expert committees, and contributed to policy development for agriculture, rural affairs, and the bio-environmental control sector. His distinctions include editorial appointments, society directorships, and service on advisory bodies, culminating in honors such as the Research Excellence Award.

Profiles: Google Scholar | Scopus

Featured Publications

1. Choi, K. Y., Chung, H., Min, K. H., Yoon, H. Y., Kim, K., Park, J. H., Kwon, I. C., & Jeong, S. Y. (2010). Self-assembled hyaluronic acid nanoparticles for active tumor targeting. Biomaterials, 31(1), 106–114.

2. Choi, K. Y., Liu, G., Lee, S., & Chen, X. (2012). Theranostic nanoplatforms for simultaneous cancer imaging and therapy: Current approaches and future perspectives. Nanoscale, 4, 330–342.

3. Han, H. S., & Choi, K. Y. (2021). Advances in nanomaterial-mediated photothermal cancer therapies: Toward clinical applications. Biomedicines, 9(3), 305.

4. Choi, K. Y., Yoon, H. Y., Kim, J. H., Bae, S. M., Park, R. W., Kang, Y. M., Kim, I. S., Kwon, I. C., et al. (2011). Smart nanocarrier based on PEGylated hyaluronic acid for cancer therapy. ACS Nano, 5(11), 8591–8599.

5. Huang, X., Zhang, F., Zhu, L., Choi, K. Y., Guo, N., Guo, J., Tackett, K., Anilkumar, P., et al. (2013). Effect of injection routes on the biodistribution, clearance, and tumor uptake of carbon dots. ACS Nano, 7(7), 5684–5693.

Prof. Ki Young Choi’s work advances sustainable smart-farm technologies by integrating environmental horticulture, plant physiology, and controlled-environment engineering to enhance crop productivity and resource efficiency. His research and leadership contribute to resilient agricultural systems, supporting food security, eco-friendly production, and innovation across the smart-agriculture industry.

Muhammad Hussain Ghazali | Food Science and Engineering | Editorial Board Member

Dr. Muhammad Hussain Ghazali | Food Science and Engineering | Editorial Board Member

South China University of Technology | China

Dr. Muhammad Hussain Ghazali is a doctoral researcher in Food Science and Engineering at the South China University of Technology, specializing in meat science, non-thermal preservation technologies, and biobased intelligent packaging. Holding advanced training in Food Science and Engineering and an M.Phil. in Meat Science and Technology, along with a Doctor of Veterinary Medicine emphasizing food hygiene and meat inspection, he brings a strong interdisciplinary foundation to his work. He has contributed professionally as a researcher, reviewer, and editor, pioneering camel meat quality research in Pakistan and advancing innovative projects integrating cold plasma technology with sustainable biopolymer packaging. His research spans meat quality evaluation, cold plasma applications, bio-based films, and analytical characterization techniques, with growing interest in omics-based quality assessment; his peer-reviewed outputs include publications in leading SCIE journals and collaborative work with internationally recognized experts. He is an active reviewer for numerous high-impact journals, a verified Clarivate reviewer with an extensive review record, and maintains research visibility across major academic platforms. His editorial roles include serving on the Youth Editorial Board of Advanced Functional Foods and as an editor for Wildlife and Ecology, reflecting his leadership in scholarly communication. Recognized for his academic rigor, multidisciplinary expertise, and contributions to global food engineering research, Dr. Ghazali continues to advance innovation in meat safety, sustainable packaging, and intelligent food quality monitoring.

Profiles: Google Scholar

Featured Publications

1. Ghazali, M. H., Bakhsh, M., Zainab, U., Faraz, A., Munir, M. U., Channo, A., … (2023). Camel meat production, consumption and nutritive value: Present status and future prospects. International Journal of Camel Science, 5, 123–136.

2. Bakhsh, M., Ghazali, M. H., Yar, M. K., Channo, A., Kashif, M., Ijaz, M., … (2023). The role of fish in global food and nutrition security: Current aspects and future prospect. University of Sindh Journal of Animal Sciences, 7(04), 23–35.

3. Ghazali, M. H., Keener, K. M., Pan, Y., Zou, S., … (2025). Cold plasma-integrated bio-based packaging for meat quality and safety monitoring: A mini review. Food Wellness, 1(1), 100004.

4. Ghazali, M. H., & Saleem, F. (2025). Cold plasma and high-pressure processing in sustainable meat preservation: A review. Food, Nutrition, and Health, 2(22), 1–14.

5. Shah, S. H. R., Qamar, M. H., Ghazali, M. H., Ali, S., Bilal, M., Fawad, A., Khalil, H. U. R., … (2024). New insights in uterine involution and ovarian resumption in domestic animals. Acta Scientific Veterinary Sciences, 6(6).

Dr. Muhammad Hussain Ghazali’s work advances global food safety and sustainability by integrating cold plasma technology with bio-based intelligent packaging to enhance meat quality, extend shelf life, and reduce waste. His pioneering research in camel meat science and nonthermal preservation provides innovative solutions for developing resilient, resource-efficient food systems.

Cornelia Kasper | Agricultural and Biological Sciences | Best Researcher Award

Prof. Dr. Cornelia Kasper | Agricultural and Biological Sciences | Best Researcher Award

Head of Institute at BOKU, Department für Biotechnologie, Institut für Zell- und Gewebekulturtechnologien, Austria

Cornelia Kasper is a renowned professor and researcher in the field of biotechnology, specializing in Tissue Engineering, Stem Cell Technology, and Bioprocess Engineering. She earned her Diploma in Chemistry from the University of Hannover in 1994, followed by a Dr. rer. nat. in 1998 for her dissertation on technical chemistry. Kasper later completed her Habilitation on “New approaches in cell culture techniques” at the University of Hannover in 2007, where she was awarded the Venia Legendi in Technical Chemistry. She has since held numerous leadership roles in both academia and research, including Head of the Cell Culture and Tissue Engineering Group at Leibniz University Hannover (2000-2011) and Full Professor at the University of Natural Resources and Life Sciences (BOKU) in Vienna since 2011. Her academic journey exemplifies a career built on academic rigor, innovative research, and significant contributions to her field.

Professional Profile

Education

Cornelia Kasper’s educational journey began at the University of Hannover, where she earned a Diploma in Chemistry in 1994. Her academic career then progressed through a Ph.D. in 1998, where she focused on Technical Chemistry at the Institute for Technical Chemistry. During her doctoral studies, she developed expertise in areas like bioprocessing and bioreactor design, which laid the foundation for her later work in Tissue Engineering. Kasper further pursued academic excellence by completing her Habilitation at the University of Hannover in 2007, where she specialized in cell culture technologies and received the Venia Legendi in “Technische Chemie.” This qualification allowed her to teach and supervise PhD students, and it was during this period that she began to deepen her expertise in stem cell research. Her educational background is marked by both theoretical knowledge and practical, cutting-edge research.

Professional Experience

Cornelia Kasper’s professional career spans multiple institutions and leadership roles, demonstrating her influence in the fields of biotechnology and regenerative medicine. After completing her dissertation, she was employed as an EU Liaison Officer at the University of Hannover until 2000. From 2000 to 2011, she led the Cell Culture and Tissue Engineering Group at the Institute for Technical Chemistry, Leibniz University Hannover. Her leadership extended to the “Rebirth” Cluster of Excellence, where she headed the Young Researcher Group on “Large Scale Cultivation.” Since 2011, Kasper has been a Full Professor at the University of Natural Resources and Life Sciences (BOKU), where she is also the Head of the Institute for Cell and Tissue Culture Technologies. Additionally, she has served in several important administrative positions, including Chair of the Equal Opportunity Working Party and Co-Chair of the Doc School “Biomaterials and Interfaces,” shaping both academic policy and research agendas.

Research Interests

Cornelia Kasper’s research is primarily focused on Tissue Engineering, Stem Cell Technologies, and Bioprocess Engineering. Her work explores the design and development of bioreactors for large-scale stem cell cultivation, as well as the optimization of cell culture conditions to enhance cell differentiation, expansion, and product development. A key aspect of her research includes the functionalization of biomaterials for use in regenerative therapies, as well as developing new methods for stem cell isolation and characterization. Kasper has made significant contributions to the development of efficient protocols for cell-based assays and therapies, with the ultimate goal of applying these findings in regenerative medicine. Her work aims to bridge the gap between laboratory research and clinical applications, with a focus on scalable, reproducible processes for stem cell manufacturing. Her research also explores the integration of novel technologies to improve cell-based therapy products.

Awards and Honors

Cornelia Kasper has received multiple prestigious awards and honors throughout her career, recognizing her contributions to scientific research and innovation. Her academic achievements began with her doctoral and Habilitation qualifications, which solidified her as a leader in her field. Kasper has been an active member of several influential societies in the field of biotechnology and regenerative medicine, including the Austrian Association of Molecular Life Sciences and Biotechnology (ÖGMBT). Her research has earned her high recognition, including over 180 publications in leading scientific journals and a high h-index of 43 as of 2024. She is also an editor for several respected volumes in the “Advances in Biochemical Engineering and Biotechnology” series (Springer). In addition, Kasper has been honored with roles such as Chair of the Equal Opportunity Working Party at BOKU and Co-Chair of the Doc School “Biomaterials and Interfaces,” further affirming her leadership in both research and academia.

Conclusion

Cornelia Kasper is highly deserving of the Best Researcher Award due to her substantial contributions to Tissue Engineering, Stem Cell Technology, and Bioprocessing. Her leadership, impactful research, and dedication to mentoring the next generation of scientists place her among the leaders in her field. While there are areas for further development, particularly in the realm of translational research and cross-disciplinary collaboration, her impressive body of work and ongoing efforts to improve regenerative medicine make her an outstanding candidate for this award.

Publications Top Noted

  • Development of a novel high-throughput culture system for hypoxic 3D hydrogel cell culture
    • Authors: Egger, D., Baier, L., Moldaschl, J., … Lorber, V., Kasper, C.
    • Year: 2024
    • Journal: Scientific Reports
    • Citations: 1
    • 📄🔬
  • The fluorochrome-to-protein ratio is crucial for the flow cytometric detection of tissue factor on extracellular vesicles
    • Authors: Weiss, R., Mostageer, M., Eichhorn, T., … Kasper, C., Weber, V.
    • Year: 2024
    • Journal: Scientific Reports
    • Citations: 2
    • 📄🧬
  • Characterization of MSC Growth, Differentiation, and EV Production in CNF Hydrogels Under Static and Dynamic Cultures in Hypoxic and Normoxic Conditions
    • Authors: Nikolits, I., Chariyev-Prinz, F., Egger, D., … Mytzka, N., Kasper, C.
    • Year: 2024
    • Journal: Bioengineering
    • Citations: 0
    • 📄🧫
  • Dynamic cultivation of human mesenchymal stem/stromal cells for the production of extracellular vesicles in a 3D bioreactor system
    • Authors: Almeria, C., Weiss, R., Keck, M., … Kasper, C., Egger, D.
    • Year: 2024
    • Journal: Biotechnology Letters
    • Citations: 1
    • 📄⚙️
  • Spheroid trilineage differentiation model of primary mesenchymal stem/stromal cells under hypoxia and serum-free culture conditions
    • Authors: Moldaschl, J., Chariyev-Prinz, F., Toegel, S., … Egger, D., Kasper, C.
    • Year: 2024
    • Journal: Frontiers in Bioengineering and Biotechnology
    • Citations: 2
    • 📄🧬💉
  • Kinetics of NK-92 growth and functionality in pseudo-static cultures
    • Authors: García Aponte, O.F., Kozma, B., Egger, D., Kasper, C., Herwig, C.
    • Year: 2023
    • Journal: Biochemical Engineering Journal
    • Citations: 1
    • 📄🧬⚙️
  • Hydrogels from TEMPO-Oxidized Nanofibrillated Cellulose Support In Vitro Cultivation of Encapsulated Human Mesenchymal Stem Cells
    • Authors: Nikolits, I., Radwan, S., Liebner, F., … Chariyev-Prinz, F., Kasper, C.
    • Year: 2023
    • Journal: ACS Applied Bio Materials
    • Citations: 7
    • 📄🧫🔬
  • Heterogeneity of mesenchymal stem cell-derived extracellular vesicles is highly impacted by the tissue/cell source and culture conditions
    • Authors: Almeria, C., Kreß, S., Weber, V., Egger, D., Kasper, C.
    • Year: 2022
    • Journal: Cell and Bioscience
    • Citations: 41
    • 📄💡🔬
  • Decoding Distinct Ganglioside Patterns of Native and Differentiated Mesenchymal Stem Cells by a Novel Glycolipidomics Profiling Strategy
    • Authors: Hohenwallner, K., Troppmair, N., Panzenboeck, L., … Egger, D., Rampler, E.
    • Year: 2022
    • Journal: JACS Au
    • Citations: 8
    • 📄🧬🔬
  • Editorial: Advanced cell culture technologies to boost cell-based therapies, volume II
    • Authors: Egger, D., Hansmann, J., Kasper, C., Kouroupis, D.
    • Year: 2022
    • Journal: Frontiers in Bioengineering and Biotechnology
    • Citations: 0
    • 📄🧬🩺

 

AUSTIN IKECHUKWU GBASOUZOR | AGRICULTURAL | Best Paper Award

Assoc Prof Dr. AUSTIN IKECHUKWU GBASOUZOR | AGRICULTURAL | Best Paper Award

ASSOCIATE PROFESSOR OF MECHANICAL ENGINEERING, CHUKWUEMEKA ODUMEGWU OJUKWU UNIVERSITY,ULI ANAMBRA STATE, Nigeria

Austin I. Gbasouzor is an esteemed academic in the field of Mechanical Engineering, currently serving as an Associate Professor at Chukwuemeka Odumegwu Ojukwu University, Nigeria. With extensive teaching experience, he has held various positions including Senior Lecturer and Lecturer II. His academic journey includes a Post-Doctoral Fellowship at Purdue University and remote lecturing at institutions such as Cyprus Science University and Catholic University Cameroon. Passionate about research, Dr. Gbasouzor focuses on drying processes and sustainable engineering solutions. 🌍📚

Publication Profile

Google Scholar

Education

Dr. Gbasouzor earned his Doctorate in Mechanical Engineering from Nnamdi Azikiwe University, Nigeria (2017-2021). He also holds a Master’s degree in Electromechanical Technology (2002-2005) and a Bachelor’s degree in Technical Education (1998-2001) from the same institution. His educational background is complemented by a National Certificate of Education in Mechanical/Metal Work Technology (1992-1995) from the Federal College of Education, Technical, Asaba. 🎓🔧

Experience

Dr. Gbasouzor has accumulated significant academic experience, serving as a Senior Technologist and several lecturer roles at Chukwuemeka Odumegwu Ojukwu University since 2009. His leadership roles include Acting Head of Department and Senator at the university. He is also an active member of various editorial boards and has been involved in significant academic and research collaborations globally. 🏫👨‍🏫

Research Interests

His research interests primarily revolve around drying technology, sustainable engineering solutions, and the application of mechanical systems in agricultural practices. Dr. Gbasouzor is particularly focused on the thermodynamics of food preservation and mechanical design innovations that promote sustainable development. 🔍⚙️

Awards

Dr. Gbasouzor has received multiple accolades for his contributions to engineering education and research, including the Best Paper Award at the World Congress on Engineering and Computer Science (WCECS) and several Certificates of Merit for his student papers at international conferences. He was also awarded the Tertiary Education Trust Fund Postdoctoral Fellowship in 2022. 🏆🎖️

Publications

Gbasouzor, A.I., Omenyi, S., Mallik, S. and Njoku, J. (2024). Determination of Natural Logarithm of Diffusion Coefficient and Activation Energy of Thin Layer Drying Process of Ginger Rhizome Slices. World Journal of Engineering and Technology, 12, 213-228. Link

Gbasouzor, A.I. Ileleji, K. (2023). Thermal Analysis of Sclerotium of Pleurotus tuber-regium (ọsụ) for Effective Drying. World Journal of Engineering and Technology, 11, 153-163. Link

Gbasouzor, A.I., Chukwu, L. C. (2023). Nutraceutical and Phytomedicinal Survey of Sclerotium of Pleurotus Tuber-regium (ọsụ). International Journal of Food Engineering and Technology, 7(1), 12-19. Link

Gbasouzor, A.I., Mallik, S., Njoku, J. E. E., & Depriver, J. (Year not provided). Experimental analysis of thin layer drying of ginger rhizome in convective environment. Publication details not provided.