Panagiotis Liakos | Medicine and Health Sciences | Best Researcher Award

Panagiotis Liakos | Medicine and Health Sciences | Best Researcher Award

Prof. Dr Panagiotis Liakos, Faculty of Medicine, University of Thessaly, Greece

Prof. Dr. Panagiotis Liakos is an esteemed biochemist and researcher specializing in cellular biochemistry and hypoxia-related cancer mechanisms. He earned his Maîtrise, Master’s, and Ph.D. in Molecular and Cellular Biology from Joseph Fourier I University, France. His postdoctoral work at Aristotle University in Greece laid the foundation for his academic career, leading him to his current role as Professor and Director of the Department of Basic and Applied Biomedical Sciences at the University of Thessaly. His research focuses on hypoxia-inducible factors (HIFs), particularly HIF-2α, exploring its role in cancer and angiogenesis. 🧬👨‍🔬📚

Publication Profile

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Education 

Prof. Dr. Panagiotis Liakos is a distinguished biochemist with a career spanning from Grenoble to Greece. He completed a Maîtrise in Biochemistry (1994) and a Master’s in Molecular and Cellular Biology (1995) at Joseph Fourier I University, France, followed by a PhD (1999) in Biochemistry and Cellular Endocrine Regulation. His postdoctoral research was conducted at Aristotle University Thessaloniki. In 2003, he became a Lecturer at the University of Thessaly, advancing to Professor in 2022. Currently, he leads the Department of Basic and Applied Biomedical Sciences. His clinical expertise includes years at Larissa University Hospital. 🌍🔬📚👨‍🔬💼

Research Project

Prof. Dr. Panagiotis Liakos has significantly contributed to pioneering health research. Highlights include leading the French Ministry of Health’s 1994 Breast Cancer Prevention program, advancing studies on ACTH receptor expression in adrenal glands (1995-1998), and collaborating on a French-Portuguese program to analyze steroidogenic enzymes in rats and adrenal carcinomas. Furthering adrenal cancer research, he partnered with the Fondation pour la Recherche Médicale (1998-1999). Dr. Liakos explored metalloproteases in skin pathophysiology in a Greek program (2001-2003) and obesity rates in Thessaly (2005-06). His work on signaling pathways under hypoxic stress enriches endocrine research. 🧬🔬

Experience

Prof. Dr. Panagiotis Liakos has been a dedicated educator and coordinator in molecular biology, genetics, and biochemistry since 2001. He taught Biochemistry I & II and Clinical Biochemistry at Democritus University of Thrace, later joining the University of Thessaly to instruct Molecular Biology, Metabolism Regulation, and various biochemistry courses. Since 2004, he has led the Clinical Biochemistry course for medical students and coordinated the Cellular Signaling course in molecular medicine. His teaching repertoire includes postgraduate courses on reproduction genetics, human genetics, and balanced nutrition. Prof. Liakos’s commitment to education spans two decades, fostering expertise in health sciences. 📘🧬👨‍🏫✨

Honors

Prof. Dr. Panagiotis Liakos has been recognized internationally for his research achievements, receiving prestigious scholarships and fellowships from the French Ministry of Research and Fondation pour la Recherche Médicale. These honors underscore his dedication and impactful contributions to his field, highlighting the global relevance of his work. Through these awards, Dr. Liakos has advanced his research, fostering significant progress and collaboration. His achievements not only emphasize his scientific expertise but also reflect his commitment to excellence in research and innovation. 🌍📚🔬

Research Focus

Prof. Dr. Panagiotis Liakos specializes in cellular and molecular biology, particularly focusing on hypoxia and its effects on cellular processes. His research explores how hypoxia-inducible factors (HIFs), especially HIF-1 and HIF-2, regulate gene expression under low-oxygen conditions and influence cancer progression, lipid metabolism, and viral replication. Dr. Liakos’s work also examines the effects of oxidative stress and signaling pathways like PI-3K and MAPK on cellular adaptation to hypoxic stress. His contributions are significant in understanding hypoxia’s role in disease states such as cancer and liver disease, and its broader implications for therapeutic development. 🧬🩺🔬🌬️📊

Publication Top Notes

Hypoxia causes triglyceride accumulation by HIF-1-mediated stimulation of lipin 1 expression

Cobalt induces hypoxia-inducible factor-1α (HIF-1α) in HeLa cells by an iron-independent, but ROS-, PI-3K-and MAPK-dependent mechanism

Bortezomib represses HIF-1α protein expression and nuclear accumulation by inhibiting both PI3K/Akt/TOR and MAPK pathways in prostate cancer cells

The role of hypoxia‐inducible factor‐2 alpha in angiogenesis

Cushing’s syndrome due to a gastric inhibitory polypeptide-dependent adrenal adenoma: insights into hormonal control of adrenocortical tumorigenesis

Cobalt stimulates HIF-1-dependent but inhibits HIF-2-dependent gene expression in liver cancer cells

 

Rajendra Rohokale | Medicine and Health Sciences | Best Researcher Award

Rajendra Rohokale | Medicine and Health Sciences | Best Researcher Award

Dr Rajendra Rohokale, University of Florida, United States

Dr. Rajendra Rohokale is a Research Scientist at the University of Florida, specializing in Synthetic Organic Chemistry, Carbohydrate Chemistry, and Glycochemistry. With a Ph.D. from Savitribai Phule Pune University, his notable projects include synthesizing complex carbohydrates for therapeutic applications and developing fully synthetic cancer vaccines. Dr. Rohokale’s work has led to significant advancements in glycoimmunology and drug delivery. An experienced researcher and reviewer for prestigious journals, he has over 360 citations on Google Scholar and holds an Orchid ID: orcid.org/0000-0001-8083-0466. 🌟🧪🔬📚

Publication profile

Orcid

Education

🎓 From 2010 to 2017, Rajendra Rohokale pursued a Ph.D. in Organic Chemistry at the Department of Chemistry, Savitribai Phule Pune University, Pune, India, under the guidance of Prof. Dilip D. Dhavale (F.A.Sc, F.N.A.Sc.). Their thesis was titled “Chiron Approach Towards the Syntheses of Amino Acids, Piperidine, Azepane, Polyhydroxylated Pyrrolizidine Alkaloids and Activation of Diazo-Ketones Using Visible Light Photoredox Catalysis and Dye.” [Name] earned their Master of Science (Organic Chemistry) (First Class) from the same university in 2009 and completed their Bachelor of Science (Chemistry) (First Class with Distinction) from New Arts, Science, and Commerce College, Ahmednagar in 2007. 📚🔬

Experience

🧪 Since August 2023, I’ve been a Research Scientist at the University of Florida, Gainesville. From January 2019 to August 2023, I was a Post-doctoral Research Associate at the same institution. My work focuses on synthesizing complex carbohydrates and their conjugates for therapeutic applications, including the development of glycosphingolipids (GSLs) and monophosphoryl lipid-A derivatives as cancer vaccine carriers. I specialize in synthetic organic and carbohydrate chemistry, creating efficient methods for synthesizing oligosaccharides and glycoconjugates. My research aims to advance cancer immunotherapy and glycoimmunology, with significant contributions to medical science. 💊🧫🔬

Presentations

He have actively participated in numerous esteemed conferences, including the Florida Heterocyclic Conference 2022 (FloHet 2022) at the University of Florida in March 2022 and the ChemPhotoChem-EJOC joint virtual symposium on Photoreact Catalysis in December 2021. He also attended FloHet 2020 at the University of Florida in March 2020. He presented a talk at the National Conference on “Bioinspired Materials in Science” at New Arts College, Pune, India, in January 2018. Additionally, He participated in the Satellite Meeting on Frontiers in the Chemistry & Biology of Oligosaccharides in January 2014 and attended various other international conferences from 2009 to 2013. 🌟🔬🌍📚

Research focus

Dr. Rajendra Rohokale’s research focuses on the synthesis and functional analysis of glycosphingolipids (GSLs) and their interactions in cell membranes. His work spans developing bifunctional GSL probes for studying GSL-interacting proteins, creating novel vaccine adjuvants, and exploring bacterial polysaccharide-based antibacterial conjugate vaccines. He also delves into advanced chemical synthesis techniques for GSLs and their derivatives, utilizing methods like diastereoselective cycloaddition and chemoenzymatic synthesis. Dr. Rohokale’s contributions significantly impact medicinal chemistry, organic chemistry, and infectious disease research. 🧪🔬💉

Publication top notes

Bifunctional glycosphingolipid (GSL) probes to investigate GSL-interacting proteins in cell membranes

Diastereoselective 1,3-Dipolar Intramolecular Nitrone Olefin Cycloaddition (INOC) Reaction of a Sugar-derived Allyl Alcohol: Synthesis of Functionalized Aminocyclopentitols.

Monophosphoryl Lipid A-Rhamnose Conjugates as a New Class of Vaccine Adjuvants

Development in the Concept of Bacterial Polysaccharide Repeating Unit-Based Antibacterial Conjugate Vaccines

Structural characterization and analysis of different epimers of neutral glycosphingolipid LcGg4 by ion mobility spectrometry-mass spectrometry

A Diversity-Oriented Strategy for Chemical Synthesis of Glycosphingolipids: Synthesis of Glycosphingolipid LcGg4 and Its Analogues and Derivatives

Iridium(III)-Catalyzed Alkynylation of 2-(Hetero)arylquinazolin-4-one Scaffolds via C–H Bond Activation

Eosin y photoredox catalyzed net redox neutral reaction for regiospecific annulation to 3-sulfonylindoles: Via anion oxidation of sodium sulfinate salts

Metal-Free Synthesis of 3-Thiocyanatobenzothiophenes by Eosin Y Photoredox-Catalyzed Cascade Radical Annulation of 2-Alkynylthioanisoles

Visible-Light-Mediated Eosin Y Photoredox-Catalyzed Vicinal Thioamination of Alkynes: Radical Cascade Annulation Strategy for 2-Substituted-3-sulfenylindoles