Jieyu ZHANG | Food Safety | Best Researcher Award

Prof. Jieyu ZHANG | Food Safety | Best Researcher Award

Associate Professor at Sichuan University, China

Dr. Jieyu Zhang is an Associate Professor at the National Engineering Research Center for Biomaterials, Sichuan University. Her research focuses on developing biomaterials for medical applications, including flexible conductive hydrogels for heart failure treatment, wound healing, and pathogen detection. She collaborates with industry leaders to translate scientific advancements into real-world applications, such as continuous glucose monitoring systems and antibacterial materials.

Publications Profile

Orcid

πŸŽ“ Education Details

  • Ph.D. in Integrative Sciences and Engineering, National University of Singapore (2010–2016)

  • Master’s Degree in Materials Science and Engineering, Beijing University of Chemical Technology (2007–2010)

  • Bachelor’s Degree in Polymer Science and Engineering, Beijing University of Chemical Technology (2003–2007)

πŸ‘©β€πŸ”¬ Professional Experience

  • Sichuan University, Chengdu, China

    • Associate Professor (2019–present)

    • Assistant Professor (2017–2019)

  • National University of Singapore, Singapore

    • Research Fellow, Department of Chemical and Biomolecular Engineering (2016–2017)

🌱 Research Interests

  • Biomaterials & Functional Hydrogels – Development of bioengineered materials for medical applications

  • Tissue Engineering & Regenerative Medicine – Engineering conductive hydrogels for cardiac repair and wound healing

  • Pathogen Detection & In Vitro Diagnostics – Development of nanomaterials for bacterial and viral detection

  • Flexible Bioelectronics & Electrical Stimulation – Applications of conductive biomaterials in chronic disease management

πŸ† Awards and Honors

  • Featured as a Journal of Materials Chemistry B Emerging Investigator 2024

  • Achieved NMPA approval for a novel continuous glucose monitoring system

  • Lead researcher in the clinical translation of an electrically conductive wound dressing

πŸ” Conclusion

Dr. Zhang’s contributions to biomaterials science have significantly advanced medical applications, including disease diagnostics, chronic wound healing, and cardiac tissue repair. Her industry collaborations bridge the gap between fundamental research and practical medical solutions, making her work highly impactful in both academic and commercial settings.

Publications πŸ“š

πŸ“„ Antibacterial black phosphorus nanosheets for biomedical applications
πŸ“š Journal of Materials Chemistry B, 2023 | DOI: 10.1039/d3tb00723e


πŸ“„ Biomass-derived 2D carbon materials: structure, fabrication, and application in electrochemical sensors
πŸ“š Journal of Materials Chemistry B, 2023 | DOI: 10.1039/d3tb01910a


πŸ“„ 3D Biomass‐Derived Carbon Materials for Electrochemical Biosensors
πŸ“š Advanced Materials Technologies, 2023 | DOI: 10.1002/admt.202300666


πŸ“„ Conductive hydrogels with hierarchical biofilm inhibition capability accelerate diabetic ulcer healing
πŸ“š Chemical Engineering Journal, 2023 | DOI: 10.1016/j.cej.2023.142457


πŸ“„ Injectable polyaniline nanorods/alginate hydrogel with AAV9-mediated VEGF overexpression for myocardial infarction treatment
πŸ“š Biomaterials, 2023 | DOI: 10.1016/j.biomaterials.2023.122088


πŸ“„ Mussel-inspired bioactive 3D-printable poly(styrene-butadiene-styrene) and the in vitro assessment of its potential as cranioplasty implants
πŸ“š Journal of Materials Chemistry B, 2022 | DOI: 10.1039/d2tb00419d


πŸ“„ Recent advances in implantable hydrogels for treating heart failure
πŸ“š Journal of Applied Polymer Science, 2022 | DOI: 10.1002/app.53156


πŸ“„ Phytic Acid-Promoted rapid fabrication of natural polypeptide coatings for multifunctional applications
πŸ“š Chemical Engineering Journal, 2022 | DOI: 10.1016/j.cej.2022.135917


πŸ“„ Injectable conductive and angiogenic hydrogels for chronic diabetic wound treatment
πŸ“š Journal of Controlled Release, 2022 | DOI: 10.1016/j.jconrel.2022.03.014


πŸ“„ Reusable electrochemical non-enzymatic glucose sensors based on Au-inlaid nanocages
πŸ“š Nano Research, 2022 | DOI: 10.1007/s12274-022-4219-4


πŸ“„ Conductive dual hydrogen bonding hydrogels for the electrical stimulation of infected chronic wounds
πŸ“š Journal of Materials Chemistry B, 2021 | DOI: 10.1039/d1tb01432c


πŸ“„ Intrinsic Antibacterial and Conductive Hydrogels Based on the Distinct Bactericidal Effect of Polyaniline for Infected Chronic Wound Healing
πŸ“š ACS Applied Materials & Interfaces, 2021 | DOI: 10.1021/acsami.1c14088


πŸ“„ Microneedle-mediated vascular endothelial growth factor delivery promotes angiogenesis and functional recovery after stroke
πŸ“š Journal of Controlled Release, 2021 | DOI: 10.1016/j.jconrel.2021.08.057


πŸ“„ Transdermal delivery of peptide and protein drugs: Strategies, advantages and disadvantages
πŸ“š Journal of Drug Delivery Science and Technology, 2020 | DOI: 10.1016/j.jddst.2020.102007


πŸ“„ Highly Stretchable and Conductive Self-Healing Hydrogels for Temperature and Strain Sensing and Chronic Wound Treatment
πŸ“š ACS Applied Materials & Interfaces, 2020 | DOI: 10.1021/acsami.0c08291


πŸ“„ Flexible and self-healing electrochemical hydrogel sensor with high efficiency toward glucose monitoring
πŸ“š Biosensors and Bioelectronics, 2020 | DOI: 10.1016/j.bios.2020.112105


πŸ“„ A synergistic antibacterial effect between terbium ions and reduced graphene oxide in a poly(vinyl alcohol)–alginate hydrogel for treating infected chronic wounds
πŸ“š Journal of Materials Chemistry B, 2019 | DOI: 10.1039/c8tb02679c


πŸ“„ Scaffold with Micro/Macro‐Architecture for Myocardial Alignment Engineering into Complex 3D Cell Patterns
πŸ“š Advanced Healthcare Materials, 2019 | DOI: 10.1002/adhm.201901015


πŸ“„ Bio-responsive smart polymers and biomedical applications
πŸ“š Journal of Physics: Materials, 2019 | DOI: 10.1088/2515-7639/ab1af5


πŸ“„ Deposition of catechol-functionalized chitosan and silver nanoparticles on biomedical titanium surfaces for antibacterial application
πŸ“š Materials Science and Engineering: C, 2019 | DOI: 10.1016/j.msec.2019.01.019


πŸ“„ In-situ doping of a conductive hydrogel with low protein absorption and bacterial adhesion for electrical stimulation of chronic wounds
πŸ“š Acta Biomaterialia, 2019 | DOI: 10.1016/j.actbio.2019.03.018


Michele Suman | Food Safety | Outstanding Scientist Award

Michele Suman | Food Safety | Outstanding Scientist Award

Prof. Michele Suman , Barilla S.P.A, Italy .

Dr. Michele Suman, Ph.D. πŸŽ“ is a distinguished Food Safety & Authenticity Research specialist with over 20 years of expertise in analytical and food chemistry. As the Food Safety & Authenticity Research Manager at Barilla Spa 🍞, he spearheads innovative projects on contaminants, authenticity markers, and advanced detection techniques. A professor at Catholic University Sacred Heart πŸ“š, he contributes to academic research and industrial advancements. His work integrates mass spectrometry, chemometrics, and AI πŸ€–, fostering global scientific collaborations. A thought leader in food safety, he serves on international committees, driving impactful research and regulatory advancements for a safer, more authentic food system 🌍.

Publication Profile

Googlescholar

Education & Experience πŸ“šπŸ’Ό

Education:

  • Ph.D. in Science and Technology of Innovative Materials – University of Parma πŸŽ“
  • Master’s in Science, Technology, and Management – University of Ferrara πŸ“–
  • Analytical Chemistry Degree – University of Ferrara πŸ§ͺ

Experience:

  • Barilla Spa 🍞 (2003–Present) – Food Safety & Authenticity Research Manager
  • Catholic University Sacred Heart πŸ“š (2020–Present) – Professor of AgriFood Authenticity
  • Visiting Professor ✈️ – University of Chemistry & Technology of Prague
  • Industrial & Academic Research πŸ”¬ – Various universities and research institutions across Europe
  • Scientific Committees & Advisory Roles πŸ› – EU-funded projects, international regulatory bodies, and scientific journals

Summary Suitability For Outstanding Scientist Award

Dr. Michele Suman, Ph.D., is an accomplished scientist specializing inΒ  food safety, authenticity, and analytical chemistry, with over 20 years of pioneering research. As Food Safety & Authenticity Research Manager at Barilla Spa, he has significantly advanced contaminants detection, food authenticity, and sustainable processing methods. His leadership in European-funded projects and collaborations has driven innovation in mass spectrometry and rapid screening technologies. A dedicated professor and mentor, he bridges academia and industry to enhance global food integrity. His outstanding scientific contributions, strategic impact, and commitment to excellence make him a deserving recipient of the Outstanding Scientist Award.

Professional Development

Dr. Michele Suman is a leading innovator in food safety research, specializing in contaminants detection, authenticity markers, and analytical advancements πŸ”¬. With extensive expertise in mass spectrometry, chemometrics, and AI-driven methodologies πŸ€–, he pioneers cutting-edge solutions in food science. A passionate mentor and educator πŸ“š, he trains the next generation of scientists while fostering academia-industry partnerships 🀝. He actively leads and participates in global food safety initiatives 🌍, serving on high-impact scientific committees and regulatory boards. His dedication to open innovation and strategic partnerships ensures continuous advancements in food authenticity, sustainability, and consumer protection πŸ†.

Research FocusΒ 

Dr. Michele Suman’s research focuses on food safety, authenticity, and sustainability πŸ”¬πŸŒ±. His expertise spans contaminants detection, food fraud prevention, and the development of advanced analytical techniques, including mass spectrometry and rapid screening technologies πŸ§ͺ. He investigates food contact materials, packaging safety, and the impact of processing on food authenticity 🏭. A leader in European food safety projects πŸ‡ͺπŸ‡Ί, he collaborates with public and private stakeholders to drive regulatory improvements and innovative detection methods. His work integrates artificial intelligence πŸ€– and chemometrics to enhance food traceability, ensuring a safer, transparent, and high-quality food supply chain 🍽️.

Awards & Honors πŸ†πŸŽ–

  • First Prize for Young Researchers πŸ₯‡ – National Prize for Chemistry, Federchimica Italia (1998)
  • Best Research Presentation Award 🎀 – VII Sensors & Microsystems National Congress (2002)
  • Best Research Award πŸ… – 3rd Parma NanoDay Conference (2017)
  • Best Research Presentation Award πŸ“’ – Food Integrity International Conference (2018)
  • Young Researchers Award πŸ† – Italian Chemical Society – Mass Spectrometry Division (2020)
  • Co-recipient of Best Research Work Award πŸ”¬ – Italian Chemical Society (2020)

Publication top Noted

  • “Impact of food processing and detoxification treatments on mycotoxin contamination” – Cited by 770 (2016) πŸ§ͺπŸ“–
  • “Ion mobility spectrometry coupled to gas chromatography: A rapid tool to assess eggs freshness” – Cited by 176 (2019) πŸ₯šβš‘
  • “The scientific challenges in moving from targeted to non-targeted mass spectrometric methods for food fraud analysis: A proposed validation workflow to bring about a harmonized …” – Cited by 136 (2018) πŸ”πŸ’‘
  • “Mitigation strategies of furan and 5-hydroxymethylfurfural in food” – Cited by 134 (2013) 🍞πŸ”₯
  • “Application of a liquid chromatography tandem mass spectrometry method to the analysis of water-soluble vitamins in Italian pasta” – Cited by 127 (2005) 🍝πŸ§ͺ
  • “Acrylamide removal from heated foods” – Cited by 103 (2010) 🚫πŸ”₯
  • “Fate of Fusarium mycotoxins in the cereal product supply chain: the deoxynivalenol (DON) case within industrial bread-making technology” – Cited by 101 (2010) 🌾πŸ₯–