Sakthivel Muthu | Biochemistry, Genetics and Molecular Biology | Best Faculty Award

Dr. Sakthivel Muthu | Biochemistry, Genetics and Molecular Biology | Best Faculty Award

Saveetha Medical College and Hospital | India

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🎓 Early Academic Pursuits

Dr. Sakthivel Muthu’s academic journey began with a Bachelor's degree in Botany from Madurai Kamaraj University in 2005. He continued his education with an M.Sc. in Botany in 2007 and an M.Phil. in Botany from the University of Madras in 2008. His deep interest in plant sciences culminated in a Ph.D. in Botany from the University of Madras in 2016, where his thesis was highly commended.

👨‍🏫 Professional Endeavors

Dr. Muthu's professional career took off as a Post-Doctoral Fellow in Biotechnology at the University of Madras, supported by the prestigious UGC fellowship (2017–2022). He later transitioned into academia as a Guest Faculty member in Biotechnology at the same institution in 2023, bringing his expertise in bioactive compounds and protein biochemistry to students and peers alike.

🔬 Contributions and Research Focus

With a strong passion for interdisciplinary collaboration, Dr. Muthu has delved into various research fields, including protein biochemistry, enzymology, and bioactive compounds from plants and marine algae. His work extends to microbiology and cancer biology, aiming to unlock new therapeutic approaches through natural compounds. His notable contributions include research on phloroglucinol encapsulation for lung cancer and the antibacterial properties of lysozymes.

🏆 Accolades and Recognition

Dr. Muthu's contributions to science have been recognized with multiple awards and fellowships, such as:

  • UGC Post-Doctoral Fellowship (2017–2022)
  • Project Fellowship under the UGC’s BSR Fellowships (2010–2015)

He has also published several high-impact research papers in internationally renowned journals, contributing to fields like nanotechnology, enzymology, and phytochemistry.

🌍 Impact and Influence

Dr. Muthu's research has had a broad influence, particularly in understanding the bioactive properties of natural compounds and their potential in areas like cancer therapy and antibacterial applications. His work with nanoparticles and natural enzyme extraction has provided significant insights into sustainable biotechnological solutions.

🏅 Legacy and Future Contributions

Looking ahead, Dr. Muthu’s dedication to innovative biotechnological research and his willingness to collaborate across disciplines ensure that his contributions to science will continue to inspire future researchers. His ongoing projects, publications, and involvement in patent applications reflect his unwavering commitment to advancing our understanding of biochemistry and biotechnology.

 

Publications


  • đź“„ Encapsulation of Phloroglucinol from Rosenvingea intricata Macroalgae with Zinc Oxide Nanoparticles against A549 Lung Cancer Cells
    • Journal: Pharmaceutics
    • Date: 2024-10-05
    • Authors: Sakthivel Muthu, Mythileeswari Lakshmikanthan, Edwin Edward-Sam, Mutheeswaran Subramanian, Lakshmanan Govindan, Afrina Begum Mithen Patcha, Kathiravan Krishnan, Nallusamy Duraisamy, Selvakumari Jeyaperumal, Al Thabiani Aziz

  • đź“„ A Comprehensive Review on Anthocyanin-rich Foods: Insights into Extraction, Medicinal Potential, and Sustainable Applications
    • Journal: Journal of Agriculture and Food Research
    • Date: 2024-06
    • Authors: Mythileeswari Lakshmikanthan, Sakthivel Muthu, Kathiravan Krishnan, Ammar B. Altemimi, Noor N. Haider, Lakshmanan Govindan, Jeyaperumal Selvakumari, Zina T. Alkanan, Francesco Cacciola, Yuvaraj Maria Francis

  • đź“„ A Bioflocculant Made from Chitosan and Modified Shrimp Waste Might Collect Fresh and Saltwater Microalgae
    • Journal: Biosciences Biotechnology Research Asia
    • Date: 2024-03-30
    • Authors: Nallusamy Duraisamy, Sakthivel Muthu, Kumaran Thangavel, Kathiravan Krishnan, Sivamalar Sathasivam

  • đź“„ Extraction, Purification, and Investigation of the Antibacterial Potential of Lysozyme Isolated from the Latex of Calotropis procera
    • Journal: European Food Research and Technology
    • Date: 2024-02-21
    • Authors: Sakthivel Muthu, Venkateshbabu Gopal, Zena Kadhim AL-Younis, Ammar B. Altemimi, Palani Perumal, Mythileeswari Lakshmikanthan, Kathiravan Krishnan, Mazin A. A. Najm, Angelo Maria Giuffrè, Lakshmanan Govindan

  • đź“„ Viral Diseases of Ornamental Plants-III
    • Journal: Viral Diseases of Field and Horticultural Crops (Book Chapter)
    • Date: 2023
    • Authors: D. Sundararaj, S. Pushpanathan, S. Muthu, K. Krishnan

 

Cheng Li | Agricultural and Biological Sciences | Best Researcher Award

Dr. Cheng Li | Agricultural and Biological Sciences | Best Researcher Award

Massachusetts Institute of Technology | United States

Author Profile

Scopus

Early Academic Pursuits

Dr. Cheng Li began his academic journey with a Bachelor of Engineering from the South China University of Technology in Guangzhou, China. His passion for biotechnology and biochemical engineering led him to pursue advanced studies at the Massachusetts Institute of Technology (MIT) in Cambridge, US, where he completed his Ph.D. in 2018. During his doctoral studies, Dr. Li focused on metabolic engineering and synthetic biology, laying a strong foundation for his future research endeavors.

Professional Endeavors

Following his Ph.D., Dr. Li embarked on a series of postdoctoral research positions. He first served as a Postdoctoral Associate at the Singapore-MIT Alliance for Research and Technology from September 2018 to March 2021. Subsequently, he continued his postdoctoral research at MIT until March 2022. His work during these years was pivotal in advancing his expertise in microbial biotechnology and metabolic engineering. In April 2022, Dr. Li was appointed as a Research Scientist at MIT, where he continues to contribute to cutting-edge research.

Contributions and Research Focus

Dr. Li's research primarily revolves around the engineering of microorganisms for the production of valuable biochemical compounds. His notable contributions include optimizing the heterologous production of α-carotene in Corynebacterium glutamicum, developing modular engineering techniques for microbial production of carotenoids, and improving recombineering techniques in Corynebacterium glutamicum. Additionally, he has explored the recycling of selectable markers in Pichia pastoris and engineered phytase expression for potential use as a feed supplement.

Accolades and Recognition

Dr. Li's work has garnered significant recognition in the scientific community. He has published extensively in high-impact journals, showcasing his innovative research in metabolic engineering and synthetic biology. Some of his prominent publications include works in Metabolic Engineering, Bioresource Technology, Biotechnology and Bioengineering, and Scientific Reports. His research on engineering carbon source division of labor for efficient α-carotene production in Corynebacterium glutamicum is particularly noteworthy.

Impact and Influence

Dr. Li's research has made substantial contributions to the field of biotechnology, particularly in the areas of metabolic engineering and synthetic biology. His innovative approaches to microbial engineering have potential applications in the production of pharmaceuticals, biofuels, and other valuable biochemicals. By advancing the efficiency and scalability of these processes, Dr. Li's work supports the development of sustainable biotechnological solutions.

Legacy and Future Contributions

As a Research Scientist at MIT, Dr. Li continues to push the boundaries of microbial biotechnology. His ongoing research aims to further refine and optimize the production of high-value compounds through microbial engineering. By mentoring the next generation of scientists and collaborating with industry partners, Dr. Li is poised to make lasting contributions to the field. His work not only addresses current scientific challenges but also paves the way for future innovations in biotechnology and synthetic biology.

 

Notable Publications

Engineering carbon source division of labor for efficient α-carotene production in Corynebacterium glutamicum 2024

Systems metabolic engineering of Corynebacterium glutamicum to assimilate formic acid for biomass accumulation and succinic acid production 2024

Expanding the CRISPR Toolbox for Engineering Lycopene Biosynthesis in Corynebacterium glutamicum 2024

Engineering Corynebacterium glutamicum for efficient production of succinic acid from corn stover pretreated by concentrated-alkali under steam-assistant conditions 2023 (7)

Overproduction of Patchoulol in Metabolically Engineered Komagataella phaffii 2023 (7)