Dr.Md. Shaheen-Sarkar-Chemistry-Excellence in Innovation
Technological University of the Shannon-Ireland
Author Profile
Early Academic Pursuits
Dr.Md. Shaheen Sarkar embarked on his academic journey with a focus on Organic Chemistry. He earned his Doctor of Philosophy degree from the Department of Pharmaceutical Organic Chemistry at Nagasaki University, Japan, in 2010. The prestigious Japanese Government Scholarship (MEXT) supported his research on "A General Approach to the Phoslactomycin Family of Antibiotics." This groundbreaking work involved synthesizing Fostriecin and related natural products, exhibiting potent antitumor, antibacterial, and antifungal activities. Notably, Shaheen established a unified synthetic pathway for the production of the Phoslactomycin family of antibiotics, a significant achievement presented at national and international meetings.
In addition to his Ph.D., Shaheen Sarkar earned his Master of Science (MSc) from the Department of Chemistry at Rajshahi University, Bangladesh, in 2005. His MSc research focused on the rapid synthesis of isocoumarins and their transformation into Angucyclines. The synthesized molecules displayed potent antibacterial activity, particularly against various bacteria cell lines. Noteworthy compounds like Chrymutasin A, Chrymutasin B, and Chrymutin, derivatives of Angucyclines, exhibited significant antitumor activities.
Professional Endeavors
Following his academic achievements, Shaheen Sarkar assumed the role of Assistant Professor in the Department of Applied Science at the Technological University of the Shannon (TUS) in Limerick, Ireland. Concurrently, he served as the Editorial Board Assistant for the Journal of Synthetic Chemistry (JSC), contributing to the advancement of synthetic chemistry knowledge.
Contributions and Research Focus On Chemistry
Dr.Md. Shaheen Sarkar's research focuses on Organic Chemistry, particularly in the synthesis of bioactive compounds. His Ph.D. research, with a major emphasis on the Phoslactomycin family of antibiotics, demonstrated his expertise in total synthesis and multi-step reactions. Notably, his work contributed to advancements in the understanding of protein phosphatase 2A (PP2A) inhibitors with potent antitumor properties.
Additionally, his MSc research showcased his skills in rapid synthesis and the biological evaluation of isocoumarins and Angucyclines. The antibacterial activities observed in his synthesized compounds highlighted the potential applications of his research in medicinal chemistry.
Accolades and Recognition
Dr.Md. Shaheen Sarkar's academic achievements have not gone unnoticed. He has received accolades for his outstanding contributions, including being honored with the Japanese Government Scholarship (MEXT) during his Ph.D. studies. His innovative work on the synthesis of bioactive compounds has been recognized at both national and international levels, further establishing his reputation as a promising researcher.
Impact and Influence
Dr.Md. Shaheen Sarkar's research has had a significant impact on the field of Organic Chemistry. His contributions to the synthesis of antibiotics and bioactive compounds have expanded the understanding of their potential applications in medicine. The groundbreaking nature of his work has influenced fellow researchers and students, contributing to the advancement of knowledge in the field.
Legacy and Future Contributions
Dr.Md. Shaheen Sarkar's legacy is built on a foundation of excellence in research and academia. His commitment to advancing the understanding of bioactive compounds, particularly in the realm of antibiotics, leaves a lasting impact. Looking ahead, he continues to contribute to the field of Organic Chemistry, inspiring future generations of researchers and making significant strides in scientific exploration and discovery.
Notable Publication
- Self-assembled poly, imidazole-palladium, : Highly active, reusable catalyst at parts per million to parts per billion levels
- Amphiphilic self-assembled polymeric copper catalyst to parts per million levels: click chemistry
- Heterogeneous metal catalysts for oxidation reactions
- Highly effective silica gel-supported N-heterocyclic carbene–Pd catalyst for Suzuki–Miyaura coupling reaction
- A Highly Active and Reusable Self‐Assembled Poly, Imidazole/Palladium, Catalyst: Allylic Arylation/Alkenylation