Hiranmoy Das | Biology and Life Sciences | Lifetime achievement Award

Hiranmoy Das | Biology and Life Sciences | Lifetime achievement Award

Prof Hiranmoy Das, Texas Tech University Health Sciences Center, United States

Prof. Hiranmoy Das, MSc, PhD, FAHA, is a renowned biochemist and pharmacologist with a distinguished career. He holds a Ph.D. from the University of Calcutta and has postdoctoral training from prestigious institutions like Harvard Medical School and the Hyogo Institute of Clinical Research. Currently a Professor at Texas Tech University, his research focuses on cardiovascular stem cell therapies, regenerative medicine, and immunology. He has received numerous awards, including induction into the National Academy of Inventors and the American Heart Association. Prof. Das has authored several publications and holds multiple patents. 🌟📚💉🔬🧬

Publication Profile

Google Scholar

Education

Prof. Hiranmoy Das holds a Ph.D. in Biochemistry from the University of Calcutta (1995) and has extensive academic training in zoology, advanced cytogenetics, immunology, and biology. He completed postdoctoral fellowships at prestigious institutions, including Harvard Medical School (1999-2002) and Hyogo Institute of Clinical Research, Japan (1996-1999). Prof. Das has held prominent roles, such as Professor at Texas Tech University (2016-present) and Associate Professor at The Ohio State University (2008-2016). He also directed cardiovascular stem cell research laboratories. His remarkable career spans over decades, focusing on innovative research in the fields of biochemistry and immunology. 📚💉🔬

Honors and Awards

Prof. Hiranmoy Das, a distinguished researcher and educator, has received numerous accolades for his groundbreaking contributions. In 2024, he was elected as a Fellow of the National Academy of Inventors. He was inducted into the prestigious Sigma Xi in 2023 and awarded the President’s Excellence in Research Award in 2022. As a tenured professor at Texas Tech University, he earned the Chancellor’s Council Distinguished Research Award in 2021. His honors also include the American Heart Association Fellowship (2021) and a Keynote Speaker role at an International Conference in 2018. Earlier awards include the NIH K01 Award and National Merit Scholarship. 🏆🔬🎓

Experiences

Prof. Hiranmoy Das has taught a variety of undergraduate, graduate, and professional courses at TTUHSC, including leadership roles in Pharmaceutical Sciences Research (G) in Spring, Summer, and Fall sessions from 2021 to 2024 📚. He led courses like Clinical Correlation-6 and Integrated Therapy and Practice VII, as well as Experimental Design and Biostatistics 🧪. Prof. Das has mentored students in clinical and research settings, contributing significantly to pharmaceutical education 💡. His commitment to fostering academic growth is reflected in his continued leadership in research-focused courses, impacting future professionals in the field of pharmaceutical sciences 🎓.

PhD Thesis

Prof. Hiranmoy Das appears to be heavily involved in mentoring and advising graduate students, particularly in the fields related to pharmacy, veterinary medicine, and health sciences. His research likely focuses on advanced pharmaceutical sciences, drug development, and therapeutics. With his role in advising students pursuing PhD and MS theses, his research could be centered around pharmaceutical applications, medicinal chemistry, or pharmacology. Given his involvement in both veterinary and pharmacy programs, his research may also bridge the gap between human and veterinary health, focusing on biomedical sciences, drug formulations, and therapeutics for both sectors. 📚💊🐾👩‍🔬👨‍🔬

Research Focus

Hiranmoy Das focuses on molecular and cellular biology, particularly related to vascular biology, immunology, and inflammation. His research delves into the roles of Kruppel-like factor 2 (KLF2) in endothelial cells, immune responses, and its regulatory functions in cardiovascular health. He also investigates autophagy, cell death, and ischemic stroke therapies, emphasizing the use of assays for monitoring these processes. His work highlights the role of phytochemicals in cancer prevention and the immune system’s effector functions. Das has made significant contributions to understanding cellular signaling and disease mechanisms, with implications for therapeutic development. 🔬💉🧬🫀

Publication Profile

Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)1

Guidelines for the use and interpretation of assays for monitoring autophagy in higher eukaryotes

Guidelines for the use and interpretation of assays for monitoring cell death in higher eukaryotes

Current advances in ischemic stroke research and therapies

MICA engagement by human Vγ2Vδ2 T cells enhances their antigen-dependent effector function

Kruppel-like factor 2 as a novel mediator of statin effects in endothelial cells

Kruppel-like factor 2 (KLF2) regulates proinflammatory activation of monocytes

CD1-mediated γ/δ T cell maturation of dendritic cells

 

 

rosanna mallamaci | Biology and Life Sciences | Best Researcher Award

rosanna mallamaci | Biology and Life Sciences | Best Researcher Award

Assist Prof Dr rosanna mallamaci, University of Bari ‘Aldo Moro’, Italy

Based on the detailed CV of Assist. Prof. Dr. Rosanna Mallamaci, she appears to be a strong candidate for the Best Researcher Award. Here’s why:

publication profile

google scholar

Based on the detailed curriculum vitae of Assist. Prof. Dr. Rosanna Mallamaci, here’s an assessment of her suitability for the Best Researcher Award:

Research Excellence

Dr. Mallamaci’s research spans a broad range of topics, including:

  1. Cancer Research: Her work includes studying prognostic and predictive factors in colorectal cancer and breast cancer, as well as evaluating monoclonal antibodies’ effects on advanced tumors with bone metastases. These studies contribute significantly to clinical oncology and cancer therapeutics. 🧬🔬
  2. Neurodegeneration: She has conducted research on isoenzymes involved in neuroprotection and the effects of heavy metals on neurotoxicity. These contributions are crucial for understanding neurodegenerative diseases and potential interventions. 🧠⚛️
  3. Physiological Studies: Dr. Mallamaci has explored various physiological mechanisms, including hepatic carcinogenesis, intestinal permeability, and the role of proteins in muscle function and neuroblastoma cell protection. Her work offers valuable insights into both basic and applied physiology. 🏋️‍♂️🧪
  4. Pharmacological and Bioengineering Studies: She has investigated the impact of essential oils and secondary metabolites on health, demonstrating innovative approaches in pharmacology and bioengineering. 🌿🔍

Teaching and Leadership

Dr. Mallamaci’s extensive teaching experience in physiology across multiple academic levels and her involvement in various scientific societies indicate a strong commitment to education and research leadership. Her roles in academic committees and research evaluation further underscore her active contribution to advancing the scientific community. 📚👩‍🏫

Publications and Impact

Her publications, including those in reputable journals, reflect a robust research agenda and significant contributions to her fields of study. The variety and depth of her research underscore her ability to generate impactful and high-quality scientific knowledge. 📖🌟

Research focus

Based on the provided publications, the research focus of this individual seems to be diverse but primarily revolves around the biological effects of natural compounds and their therapeutic potential. Key areas include the antimicrobial properties of essential oils, particularly against Candida species, and the role of natural substances in health beyond oxidative stress and inflammation. They also explore the interaction between secondary metabolites from plants and human health, as well as the emergence of antibiotic-resistant bacterial strains. The research includes investigating protective effects against cellular apoptosis and angiogenesis.

🔬🌿🦠💊🧬

Conclusion

Given Dr. Mallamaci’s comprehensive research portfolio, her impactful contributions to cancer research, neurodegeneration, and pharmacology, as well as her dedication to teaching and leadership in science, she is a highly suitable candidate for the Best Researcher Award. Her diverse and influential work positions her as a leading figure in her field, deserving of recognition for her excellence in research. 🏆🔬

publication top notes

β-Caryophyllene: a sesquiterpene with countless biological properties

The inhibition of Candida species by selected essential oils and their synergism with amphotericin B

In vitro synergic efficacy of the combination of Nystatin with the essential oils of Origanum vulgare and Pelargonium graveolens against some Candida species

Olive tree in circular economy as a source of secondary metabolites active for human and animal health beyond oxidative stress and inflammation

Emerging high-risk ST101 and ST307 carbapenem-resistant Klebsiella pneumoniae clones from bloodstream infections in Southern Italy

Protective effect of augmenter of liver regeneration on hydrogen peroxide-induced apoptosis in SH-SY5Y human neuroblastoma cells

HB-EGF–EGFR signaling in bone marrow endothelial cells mediates angiogenesis associated with multiple myeloma

Anisakiasis, an Underestimated Infection: Effect on Intestinal Permeability of Anisakis simplex–Sensitized Patients

The biophysical and pharmacological characteristics of skeletal muscle ATP-sensitive K+ channels are modified in K+-depleted rat, an animal model of hypokalemic periodic paralysis

Susana Saad | Biology and Life Sciences | Best Researcher Award

Susana Saad | Biology and Life Sciences | Best Researcher Award

Prof Susana Saad, University of Sao Paulo, USP, Brazil

Based on the detailed information provided about Prof. Susana Marta Isay Saad, she appears to be an exceptional candidate for the Research for Best Researcher Award.

Publication profile

google scholar

Extensive Expertise

Prof. Saad has a deep academic background in Pharmacy, Biochemistry, and Food Science, with degrees from the University of São Paulo (USP) and postdoctoral work in Food Technology. Her extensive research focuses on the development and evaluation of food products supplemented with probiotic cultures, showcasing her expertise in Food Science and Technology.

Significant Contributions

She has contributed extensively to the field through her research on probiotics and synbiotics. Her work includes developing dairy and non-dairy products with probiotic cultures, evaluating their health benefits, and conducting clinical trials. Her research directly impacts food technology and human health.

Leadership and Editorial Roles

Prof. Saad has held leadership roles such as Vice-Head and Head of the Department of Biochemical and Pharmaceutical Technology. She has also been an Associate Editor for several prominent journals, indicating her influence and leadership in the field.

International Collaboration

She has coordinated and participated in international projects, demonstrating her ability to work on a global scale. Her involvement in projects like BioSyn and VITALAB reflects her commitment to advancing food science through international collaboration.

Scholarly Impact

With over 96 peer-reviewed publications and significant citations, Prof. Saad’s research has made a substantial impact on the scientific community. Her h-index of 35 (Web of Science) and 38 (Scopus) highlights the recognition and influence of her work.

Mentorship

She has supervised numerous postgraduate and undergraduate students, contributing to the development of future researchers in her field. This mentorship adds another layer to her qualifications for the Best Researcher Award.

In summary, Prof. Susana Marta Isay Saad’s extensive research contributions, leadership roles, international collaborations, and impactful publications make her a highly suitable candidate for the Research for Best Researcher Award. Her work not only advances the field of Food Science but also has significant implications for human health and food technology.

Publication top notes

Probióticos e prebióticos: o estado da arte

Ice-cream as a probiotic food carrier

Probiotic cheese: health benefits, technological and stability aspects

Inulin and oligofructose improve sensory quality and increase the probiotic viable count in potentially synbiotic petit-suisse cheese

Potentially probiotic and synbiotic chocolate mousse

Incorporation of Lactobacillus acidophilus in Minas fresh cheese and its implications for textural and sensorial properties during storage

Scientific evidence for health effects attributed to the consumption of probiotics and prebiotics: an update for current perspectives and future challenges

Impact of inulin and okara on Lactobacillus acidophilus La-5 and Bifidobacterium animalis Bb-12 viability in a fermented soy product and probiotic survival under in vitro …

Viability of Lactobacillus acidophilus in synbiotic guava mousses and its survival under in vitro simulated gastrointestinal conditions

Probiotic potential of Minas fresh cheese prepared with the addition of Lactobacillus paracasei

 

 

Iwona Golonka | Biology and Life Sciences | Hypothesis Achievement Award

Iwona Golonka | Biology and Life Sciences | Hypothesis Achievement Award

Dr Iwona Golonka, Department of Physical Chemistry and Biophysics Pharmaceutical Faculty Wroclaw Medical University, Poland

Iwona Maria Golonka is an assistant professor at Wroclaw Medical University, specializing in Physical Chemistry and Biophysics. She earned her Ph.D. in Chemical Sciences from the University of Wrocław and holds a Master’s degree in Chemistry. With over 15 impactful publications and a research focus on antimicrobial peptides and advanced pharmaceutical methods, her work includes significant national and international collaborations. Notable achievements include awards for her research in antimicrobial compounds and patents for innovative drug delivery methods. She has also contributed to academic lectures and conferences globally. 🧪📚🏅

Publication profile

Orcid

Education

Dr. Iwona Golonka has been an Assistant Professor at Wroclaw Medical University’s Faculty of Pharmacy since 2003, specializing in Physical Chemistry and Biophysics. With 15 scientific papers boasting a total Impact Factor of 48.378, including a notable 2020 publication with an IF of 9.381, Dr. [Name] has significantly contributed to the field. They also co-authored a script for pharmacy and medical analytics students. Dr. [Name] earned their Ph.D. in Chemical Sciences from the University of Wrocław in 2006, with a focus on coordination chemistry, following a Master’s degree in Chemistry in 1999. 🧪📚🔬

Presentations

Golonka I. has contributed significantly to the field of chemistry through various presentations. At the Chemistry towards Biology 10 conference in Bratislava (2022), she explored peptide stability in monolayers and Langmuir balance applications in pharmaceutical sciences. Earlier, at the Fifth Informal Conference on Reaction Kinetics and Atmosphere Chemistry (2004), she studied the reactions of nitrogen dioxide with propanols and fluorinated derivatives. Her research on EPR characteristics of metal complexes was presented at the 9th Nordic IHSS Symposium (2003), and she investigated the impact of metal ions on free radicals in humic brown coal at ISEB 15 (2001). 🌟🔬📊

Awards

In 2022, the Rector of the Medical University of Gdańsk awarded a diploma for scientific and team achievements of the 1st degree for the synthesis and assessment of new antimicrobial compounds and fluorescent dyes. Individual awards of II degree were received in 2021, 2020, and 2022 for publications in the JCR database. In 2016, received a 1st degree Team Award for work on physicochemical methods in drug development and a distinction in the Eureka! MZD competition for inventing a flotation tablet. Previous accolades include the 2004 Dr. Emil Niedźwirski Scholarship and multiple team awards in 2007, 2010, and 2016. 🏆📜🔬💡

Research focus

Iwona Golonka’s research focuses on the stability and effectiveness of peptides and antioxidants in various matrices. Her work includes evaluating the decay kinetics of antioxidants in black elderberry, studying the impact of peptides on monolayers, and analyzing peptide stability. Key studies involve examining how newly synthesized peptides affect monolayer stability and antibacterial properties. Golonka’s contributions also cover antioxidant properties in cellulose matrices and interactions with phosphatidylinositol monolayers. Her research integrates aspects of biochemistry and material science, aiming to enhance the understanding and application of peptides and antioxidants in health and industry. 🧬🔬🍇

Publication top notes

Evaluation of Decay Kinetics of Black Elderberry Antioxidants from Fruits and Flowers

Evaluation of the Effect of Antibacterial Peptides on Model Monolayers

Effect of Newly Synthesized Structures of Peptides on the Stability of the Monolayers Formed

Assessment of the Influence of the Selected Range of Visible Light Radiation on the Durability of the Gel with Ascorbic Acid and Its Derivative

Antimicrobial and Antioxidative Activity of Newly Synthesized Peptides Absorbed into Bacterial Cellulose Carrier against Acne vulgaris

Edible alginate/chitosan-based nanocomposite microspheres as delivery vehicles of omega-3 rich oils

The Influence of UV Radiation on the Degradation of Pharmaceutical Formulations Containing Quercetin

Antioxidant and antibacterial activities of omega-3 rich oils/curcumin nanoemulsions loaded in chitosan and alginate-based microbeads

Application of an anionic polymer in the formulation of floating tablets containing an alkaline model drug

Selected physicochemical and biological properties of ethyl ascorbic acid compared to ascorbic acid