Baofu Zhu | Pharmacology | Research Excellence Award

Mr. Baofu Zhu | Pharmacology | Research Excellence Award

Guangdong Pharmaceutical University | China 

Zhu Baofu, Ph.D., is a professor and master's supervisor specializing in cosmetic science, natural product chemistry, and supramolecular drug delivery. His research primarily focuses on the extraction, separation, structural modification, and functional application of natural active ingredients, with additional expertise in the self-assembly of supramolecular compounds driven by weak intermolecular interactions. He investigates how these self-assembled systems can be engineered for advanced drug delivery and controlled-release applications, contributing to innovation at the interface of pharmacy, cosmetics, and biomaterials. He has published more than 20 SCI-indexed research articles, secured three invention patents, and led ten scientific research projects funded at provincial and ministerial levels. His academic contributions include co-editing four textbooks related to fragrances, flavors, cosmetic efficacy evaluation, and pharmaceutical sciences, as well as participating in the compilation of a national blue book summarizing China’s achievements in cosmetic science research. His work has been recognized through major awards, including a Second-Class Science and Technology Progress Award at the provincial level. Beyond research, he provides academic leadership through editorial service and participation in professional expert committees, contributing significantly to the advancement of cosmetic science and pharmaceutical innovation in China.

Profile:  Orcid 

Featured Publications 

Li, A., Zhao, J., Zhang, C., Jiang, Q., Zhu, B., & Cao, H. (2023). Lewis acid-promoted three-component cyclization for the construction of functionalized oxazoles. The Journal of Organic Chemistry, 88(1), Article 2c01432.

Jiang, Q., Li, A., Liu, X., Yu, Y., Zhu, B., & Cao, H. (2022). Lewis acid-catalyzed synthesis of polysubstituted furans from conjugated ene-yne-ketones and 1,3,5-triazinanes. The Journal of Organic Chemistry, 87(11), Article 2c00182.

He, J., Yu, Y., Guo, P., Liu, X., Zhu, B., & Cao, H. (2020). Palladium-catalyzed C–N bond formation: A straightforward alkoxymethylation process for the synthesis of the C1 and C3-dialkoxy indoles. ChemistrySelect, 5(48), 2–7.

Liu, W., He, J., Liu, X., Yu, Y., Pei, Y., Zhu, B., & Cao, H. (2020). Controllable site-selective construction of 4- and 5-hydroxyalkyl-substituted imidazoles from amidines, ynals, and water. The Journal of Organic Chemistry, 85(23), Article 0c01715.

Wang, Y., Liu, X., Zhu, B., Guo, P., Pei, Y., He, Q., & Cao, H. (2020). Cu(I)-catalyzed three-component cyclization for the construction of functionalized thiazoles. The Journal of Organic Chemistry, 85(16), Article 0c01381.

Prof. Dr. Ikuro Suzuki – Pharmacology – Best Researcher Award

Prof. Dr. Ikuro Suzuki - Pharmacology - Best Researcher Award

Tohoku Institute of Technology - Japan

Author Profile 

ORCID 

🎓 Early academic pursuits

Ikuro Suzuki began his scholarly journey at the prestigious university of tokyo, where he earned his ph.d. in march 2008 from the department of advanced interdisciplinary studies, graduate school of arts and sciences. during his doctoral research, he was awarded the esteemed dc1 research fellowship by the japan society for the promotion of science, reflecting his strong potential in advanced scientific exploration. this early phase of his academic development laid a solid foundation in cutting-edge technologies, including power electronics, biomedical engineering, and interdisciplinary innovation.

💼 Professional endeavors

After completing his doctoral studies, suzuki embarked on a dynamic academic career across several renowned institutions. he began as an assistant professor at the institute of biomaterials and bioengineering, tokyo medical and dental university (2008–2010), followed by another assistant professorship at the faculty of applied biological sciences, tokyo university of technology Pharmacology (2010–2014). in 2014, he joined the tohoku institute of technology, where he steadily rose through the ranks—first as a lecturer, then as an associate professor, and now as a full professor in the department of electrical and electronic engineering. concurrently, he has held influential roles including visiting researcher at riken and director of the air research institute.

🔬 Contributions and research focus

Professor suzuki's research integrates the fields of electrical engineering, biomedical systems, and intelligent electronics, with a strong focus on power electronics. his work bridges theory and practical innovation in electronic circuit design, control systems, and biomedical instrumentation. his multidisciplinary approach enables advancements in devices and technologies that Pharmacology support healthcare and automation. more recently, his research has included applications of power electronics in drug discovery systems and smart diagnostics, reflecting a seamless fusion of engineering and life sciences.

🌏 Impact and influence

Suzuki's influence extends beyond academic instruction into national and international research collaborations. his role as director of the air research institute has driven innovation in artificial intelligence and robotics, while his visiting researcher position at riken places him at the forefront of regenerative medicine and drug development technologies. by founding vitrovo inc. in Pharmacology 2023, he further demonstrated his commitment to translating academic innovation into commercial solutions, particularly in the context of advanced electronics and biotechnology. his work continues to contribute to advancements in power electronics and its applications in health tech.

📚 Academic cites

As an academic, suzuki has published numerous peer-reviewed papers in respected journals spanning electronic systems, biomedical engineering, and interdisciplinary science. his citations reflect a growing recognition of his work across fields, particularly in the application of intelligent control systems and power electronics to biomedical applications. his scholarly output is often referenced by peers working on next-generation devices and adaptive systems.

🧭 Legacy and future contributions

With a career that bridges academia, industry, and interdisciplinary innovation, professor ikuro suzuki's legacy lies in his integrative vision of engineering. as he continues to lead in education, research, and entrepreneurship, his future contributions are expected to focus on enhancing the functionality and intelligence of biomedical devices through power electronics, artificial intelligence, and compact embedded systems. he aims to mentor a new generation of engineers capable of navigating the convergence of electronics and life sciences.

Notable Publications 

  • Title: Development of a Microelectrode Array System for Simultaneous Measurement of Field Potential and Glutamate Release in Brain Slices
    Author(s): Aiko Hasegawa, Naoki Matsuda, Ikuro Suzuki
    Journal: Biosensors and Bioelectronics (2025-11)

  • Title: Advanced Neural Activity Mapping in Brain Organoids via Field Potential Imaging with Ultra-High-Density CMOS Microelectrodes
    Author(s): Remi Yokoi, Naoki Matsuda, Yuto Ishibashi, Ikuro Suzuki
    Journal: Preprint (bioRxiv), 2025-05-25

  • Title: Analysis of β Rhythm Induction in Acute Brain Slices Using Field Potential Imaging with Ultra-High-Density CMOS-Based Microelectrode Array
    Author(s): Hiroto Takahashi, Naoki Matsuda, Ikuro Suzuki
    Journal: Preprint (bioRxiv), 2025-04-04

  • Title: Development of a Microelectrode Array System for Simultaneous Measurement of Field Potential and Glutamate Release in Brain Slices
    Author(s): Aiko Hasegawa, Naoki Matsuda, Ikuro Suzuki
    Journal: Preprint (bioRxiv), 2025-04-04

  • Title: Field Potential Imaging in Human iPSC-Derived Cardiomyocytes Using UHD-CMOS-MEA
    Author(s): Naoki Matsuda, Nami Nagafuku, Kazuki Matsuda, Yuto Ishibashi, Tomohiko Taniguchi, Yusaku Matsushita, Norimasa Miyamoto, Takashi Yoshinaga, Ikuro Suzuki
    Journal: Preprint (bioRxiv), 2025-04-04