lingcong KONG | Drug Discovery and Development | Best Researcher Award

lingcong KONG | Drug Discovery and Development | Best Researcher Award

Prof. lingcong KONG at Jilin Agriculture University, China.

Prof. Lingcong Kong is a dedicated veterinary scientist with a Ph.D. in Preventive Veterinary Medicine from Jilin Agricultural University 🎓. He teaches courses like Veterinary Pharmacology and Animal Toxicology 🐄 and actively mentors students in national competitions 🏆. His research focuses on antimicrobial resistance, drug resistance mechanisms, and the development of resistance inhibitors in animal pathogens 🧫🦠. He has led numerous national and provincial projects, holds multiple patents for veterinary vaccines 💉, and has published extensively in high-impact journals 📚. His work significantly enhances diagnostic tools and contributes to sustainable animal healthcare.

Publication Profile 

Scopus

Education

Prof. Lingcong Kong began his academic journey at the Inner Mongolia University for Nationalities, where he earned his Bachelor of Veterinary Medicine from September 2006 to July 2010 🐾. He then pursued advanced studies at Jilin Agricultural University, completing a Master’s degree in Basic Veterinary Medicine between 2010 and 2013 🧪. Driven by a deep passion for animal health, he continued at the same institution to earn his Ph.D. in Preventive Veterinary Medicine from September 2013 to July 2016 🔬. His education laid a strong foundation for his impactful contributions to veterinary science and research.

Experience

Prof. Lingcong Kong is a dedicated educator who teaches undergraduate courses such as “Veterinary Pharmacology”, “Veterinary Pharmacology Experiment”, and “Animal Toxicology” 🐾. At the graduate level, he lectures on “Veterinary Drug Research and Creation”, “Advanced Pharmacology”, and “Veterinary Pharmacology and Toxicology” 💊. He actively mentors students in scientific competitions, leading them to prestigious honors like the 2022 Internet+ National Award (2nd Prize) 🏅, Provincial Award (1st Prize) 🥇, and innovation contests. His guidance also earned him the Outstanding Paper Award 📝 and the Dazenong Innovation Guidance Award in 2018 🎖️, highlighting his commitment to academic excellence and innovation.

Awards

Prof. Lingcong Kong has pioneered breakthroughs in detecting and combating drug-resistant animal pathogens 🐄🧫. His innovations include PCR-ELISA rapid detection, immunomagnetic bead enrichment, and high-throughput methods for resistance gene testing 🧪. He established a pathogenic bacteria resource library 📚 and developed functional probiotics to prevent animal diarrhea 💊. By identifying 8 key resistance inhibitor targets and 6 promising lead compounds, his work has revolutionized lab diagnostics, minimized economic losses in livestock, and enhanced ecological health 🌱💼. His efforts significantly advance animal healthcare and veterinary pharmacology across Jilin Province and beyond.

Research Focus 

Prof. Lingcong Kong focuses on veterinary pharmacology, particularly targeting antimicrobial resistance and infectious diseases in animals 🐄🦠. His cutting-edge research includes discovering novel natural inhibitors like coniferaldehyde and protocatechuic aldehyde to combat Staphylococcus aureus 🧪🔬. He also explores gene transfer mechanisms, antibiotic degradation pathways, and repurposing small molecules to inhibit bacterial enzymes like KPC-2 💊. By studying agents such as C15-bacillomycin D and antibacterial proteins from Bacillus velezensis, he contributes significantly to combatting multidrug-resistant pathogens in animal and environmental health.

Publication Top Notes

  • Discovery of coniferaldehyde as an inhibitor of caseinolytic protease to combat Staphylococcus aureus infections
  • Anti-infective therapy of inhibiting Staphylococcus aureus ClpP by protocatechuic aldehyde
  • Acidifiers promoted antibiotic resistance gene transfer via plasmid conjugation
  • Efficient degradation of tylosin by Kurthia gibsonii TYL-A1: performance, pathway, and genomics study
  • Repurposing tavaborole to combat resistant bacterial infections through competitive inhibition of KPC-2 and metabolic disruption
  • A Novel Protein Demonstrating Antibacterial Activity Against Multidrug-Resistant Escherichia coli Purified from Bacillus velezensis CB6
  • C15-bacillomycin D produced by Bacillus amyloliquefaciens 4-9-2 suppress Fusarium graminearum infection and mycotoxin biosynthesis

Amedea B. Seabra | Pharmaceutical Chemistry | Excellence in Research

Amedea B. Seabra | Pharmaceutical Chemistry | Excellence in Research

Assoc. Prof. Dr Amedea B. Seabra, Universidade Federal do ABC, Brazil

Assoc. Prof. Dr. Amedea B. Seabra is a renowned researcher in Chemistry at Universidade Federal do ABC (UFABC), Brazil. With a Ph.D. from UNICAMP, she specializes in biomaterials, nitric oxide release, and drug delivery systems. Her research includes developing novel materials for medical applications, such as nitric oxide-releasing hydrogels and vascular prostheses. Dr. Seabra has contributed significantly to projects related to wound healing and cardiovascular health. She has received numerous accolades, including recognition in global scientific databases and awards for her work on antimicrobial silver nanoparticles. 🌟🔬💉📚🌍

Publication Profile

Google Scholar

Academic Excellence 

Assoc. Prof. Dr. Amedea B. Seabra holds a PhD in Chemistry from Universidade Estadual de Campinas (UNICAMP) and completed postdoctoral research at Concordia University and UNICAMP. Specializing in the controlled release of drugs, biomaterials, and nitric oxide chemistry, she has made significant contributions to both basic and applied sciences. Dr. Seabra’s work bridges the gap between research and practical applications, particularly in advancing drug delivery systems and exploring innovative biomaterials. Her research continues to have a profound impact on the development of therapeutic strategies for various medical challenges. 🧪💊🔬🌍

Professional Engagement 

Assoc. Prof. Dr. Amedea B. Seabra is a distinguished academic with a wealth of experience in the field of biotechnology. Currently, she serves as the Vice Coordinator at the UFABC Graduate Program in Biotechnology and works as a collaborative researcher at the University of Edinburgh. Dr. Seabra has actively contributed to various international projects, including the prestigious Newton Advanced Fellowship. Her dedication to advancing research and fostering global collaborations highlights her commitment to scientific progress. 🌍🔬👩‍🔬💡

Awards and Recognition 

Assoc. Prof. Dr. Amedea has made remarkable contributions to the scientific community, earning widespread recognition for her work. She was included in the prestigious Top 100,000 Scientists by C-Score and named among the most influential scientists globally in 2023 by Elsevier and Stanford University. Her exceptional achievements reflect her dedication and impact in her field. 🌍🔬📚🌟 Her ongoing research continues to inspire and drive advancements, solidifying her place as a leading figure in the scientific world. 👩‍🔬✨

Research Focus

Assoc. Prof. Dr. Amedea B. Seabra’s research focuses on nanotechnology, particularly the toxicology and antimicrobial properties of nanoparticles. Her studies investigate the synthesis, characterization, and biological effects of metal nanoparticles, such as silver and copper, including their cytotoxicity, genotoxicity, and environmental hazards. She has explored the potential of biogenically synthesized nanoparticles and their application in medicine, such as antimicrobial activity and toxicity in model organisms. Her work extends to the use of cellulose nanocrystals in medicine and addresses the risks posed by metal oxide nanoparticles. Overall, her research contributes to the safe application of nanomaterials. 🧬🧪⚛️

Publication Top Notes

Silver nanoparticles: A new view on mechanistic aspects on antimicrobial activity

Nanotoxicity of graphene and graphene oxide

Silver nanoparticles: a brief review of cytotoxicity and genotoxicity of chemically and biogenically synthesized nanoparticles

Green tea extract mediated biogenic synthesis of silver nanoparticles: Characterization, cytotoxicity evaluation and antibacterial activity

In vitro antifungal efficacy of copper nanoparticles against selected crop pathogenic fungi

Silver nanoparticles: Toxicity in model organisms as an overview of its hazard for human health and the environment

S-nitrosation of the insulin receptor, insulin receptor substrate 1, and protein kinase B/Akt: a novel mechanism of insulin resistance

Antimicrobial activity of biogenic silver nanoparticles, and silver chloride nanoparticles: an overview and comments

Biogenic nanoparticles: copper, copper oxides, copper sulphides, complex copper nanostructures and their applications

Thermal and photochemical nitric oxide release from S-nitrosothiols incorporated in Pluronic F127 gel: potential uses for local and controlled nitric oxide release

Prof Dr.Christophe LEN| Pharmaceutical Chemistry|Excellence in Research

Prof Dr.Christophe LEN,Pharmaceutical Chemistry ,Excellence in Research

Prof Dr.Christophe LEN, at Chimie ParisTech, France

 Profiles

Scopus

Orcid

🎓Early Academic Pursuits

Professor Dr. Christophe Len’s academic journey began at Université de Picardie Jules Verne in Amiens, France, where he completed his Master of Science (MsC) in Chemistry in 1992. His pursuit of advanced knowledge continued as he earned his PhD in Chemistry from the same institution in 1995. Following his doctoral studies, Dr. Len undertook a post-doctoral fellowship at the University of Hull in England from 1996 to 1997. This period was crucial in shaping his research trajectory and establishing a solid foundation in organic chemistry and catalysis.

🏢Professional Endeavors

Dr. Len’s career is marked by a series of esteemed positions across prominent institutions. He began his academic career as an Assistant Professor at Université de Picardie Jules Verne in 1997. His exceptional contributions led to his rapid ascension in the academic hierarchy, securing a Full Professor position at Université de Poitiers in 2004. Subsequently, he moved to Université de Technologie de Compiègne, where he has served in various capacities, including Full Professor (second class) in 2008 and Full Professor (first class) in 2011. His current role as a Full Professor (Exceptional class) at Chimie ParisTech and Université de Technologie de Compiègne reflects his significant impact and leadership in the field.

🔬Contributions and Research Focus

Dr. Len’s research primarily revolves around innovative approaches in organic chemistry and catalysis. He is renowned for his work in continuous flow chemistry, which enhances the efficiency and sustainability of chemical processes. His expertise extends to applying cutting-edge technologies such as microwave, ultrasound, and ball milling to catalysis, both homogeneous and heterogeneous. His pioneering research on micellar catalysis has further advanced the field, demonstrating his commitment to exploring and developing new methodologies in chemistry.

🏆Accolades and Recognition

Professor Len’s outstanding contributions have earned him numerous accolades and recognition. In 2017, he was honored with the Glycerine Innovation Research Award by the American Oils Chemists’ Society (AOCS). His scholarly excellence has been recognized through various honorary appointments, including Honorary Professor at the University of Hull (2012-2018) and Honorary Professor at Xi’an Jiaotong University, China (2022-2025). He is also a Fellow of the Royal Society of Chemistry (FRSC) and holds honorary life fellowships with the Association of Carbohydrate Chemists and Technologists India (ACCTI) and the Indian Society of Chemists and Biologists (ISCB).

Dr. Len’s editorial roles reflect his influence in the field: he is a member of the editorial boards for several prestigious journals, including Sustainability (Sust. Chem. Eng. Technol.), Material Chemistry (Materials), Biomass Catalysis (Catalysts), and Green Chemistry (Molecules). His service on the management committee for the COST Action FP1306 and the CNRS GDR2053 Synth-Flux further underscores his leadership in advancing green chemistry and flow synthesis technologies.

🌟Impact and Influence

With an impressive h-index of 49 (Scopus) and 51 (Google Scholar), Dr. Len’s work has had a profound impact on the field of chemistry. His research, which includes over 250 peer-reviewed journal articles, 11 patents, and 13 book chapters, has garnered significant attention and citation, reflecting the relevance and quality of his contributions. His extensive participation in conferences and oral communications, as well as his prolific output in posters, showcases his active engagement with the scientific community and his role in disseminating knowledge.

🌍Legacy and Future Contributions

Dr. Len’s legacy is marked by his transformative contributions to organic chemistry and catalysis. His innovative approaches and dedication to advancing chemical processes have set new standards in the field. Looking ahead, his ongoing work in continuous flow chemistry and green chemistry continues to shape the future of sustainable chemical practices. His involvement in global research clusters and editorial boards highlights his commitment to fostering collaboration and driving progress in chemistry.

Professor Dr. Christophe Len’s career exemplifies excellence and innovation in the scientific community. His contributions not only advance fundamental chemistry but also pave the way for future research and applications, solidifying his position as a leading figure in his field.

🎓Publication 

Photocatalytic oxidative desulfurization with Anderson-type polyoxometalates nanoclusters doped carbon nitride

  • Authors   :Zhao, D., Liu, Q., Lü, H., Zhao, J., Len, C.
  • Journal    :Colloids and Surfaces A: Physicochemical and Engineering Aspects
  • Year         : 2024

Glycerol: A green solvent for synthetic chemistry

    • Authors : de Nazaré de Oliveira, A., Melchiorre, M., Farias da Costa, A.A., Santos do Nascimento, L.A., Len, C.
    • Journal   :Sustainable Chemistry and Pharmacy
    • Year       : 2024
Robust synergistic effect between Zn1Mo1 bifunctional TiO2 for efficient ethyl levulinate production from furfural alcohol
  • Authors  :Si, Q., Zhao, D., Yang, Z., Zhao, J., Zhang, H.
  • Journal    :Materials Today Chemistry
  • Year         :  2024
Anderson-type polyoxometalates support on orange peel activated carbon for efficient ethyl levulinate production
  • Authors  : Zhao, D., Zhang, S., Si, Q., Xu, Y., Zhang, H.
  • Journal   :Fuel
  • Year        :   2024

Green and efficient deep eutectic solvent mediated one-step synthesis of Suxamethonium Chloride as Active Pharmaceutical Ingredient

  • Authors  : Sagandira, C.R., Nguyen, R., Liu, Q., Len, C.
  • Journal   :Sustainable Chemistry and Pharmacy
  • Year        : 2024