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

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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

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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

 

 

Kyeong-Man Kim | Biology and Life Sciences | Best Researcher Award

Kyeong-Man Kim | Biology and Life Sciences | Best Researcher Award

Dr Kyeong-Man Kim, Chonnam National University, South Korea

Evaluation of Dr. Kyeong-Man Kim for the Best Researcher Award.

Publication profile

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Dr. Kyeong-Man Kim’s long and distinguished career in pharmacology makes him a strong candidate for the Best Researcher Award. With over three decades of experience as a Professor at the College of Pharmacy, Chonnam National University, Dr. Kim has made significant contributions to the field of pharmacology, particularly in the study of G protein-coupled receptors (GPCRs).

Academic and Research Background

Dr. Kim holds a Ph.D. in Pharmacology from the University of Illinois at Chicago and has completed a postdoctoral fellowship at Duke University Medical Center. His extensive education and training in pharmacology have laid the foundation for his impactful research in GPCR signaling and regulation, transactivation between membrane receptors, and the development of selective ligands and inhibitors for GPCRs and transporters.

Significant Research Contributions

Dr. Kim has made notable contributions to the understanding of GPCR mechanisms. His research has explored novel mechanisms such as the sequestration of Gβγ by deubiquitinated arrestins into the nucleus as a desensitization mechanism of GPCRs and the role of GRK2-mediated receptor phosphorylation in GPCR endocytosis. His work on the interaction between the transient receptor potential ankyrin 1 channel and the dopamine transporter in modulating methamphetamine abuse-related mechanisms has been published in prestigious journals like the British Journal of Pharmacology and Life Science Alliance.

Conclusion

Given Dr. Kyeong-Man Kim’s significant and ongoing contributions to pharmacology, particularly his groundbreaking research on GPCRs and their signaling pathways, he is highly deserving of consideration for the Best Researcher Award. His work has advanced our understanding of cellular signaling mechanisms and has the potential to lead to new therapeutic approaches for various conditions.

publication top notes

Transient receptor potential ankyrin 1 channel modulates the abuse‐related mechanisms of methamphetamine through interaction with dopamine transporter

PKCβII activation requires nuclear trafficking for phosphorylation and Mdm2-mediated ubiquitination

Sequestration of Gβγ by deubiquitinated arrestins into the nucleus as a novel desensitization mechanism of G protein–coupled receptors

β‐Arrestin1 and GPCR kinase2 play permissive roles in Src‐mediated endocytosis of α4β2 nicotinic ACh receptors

GRK2-mediated receptor phosphorylation and Mdm2-mediated β-arrestin2 ubiquitination drive clathrin-mediated endocytosis of G protein-coupled receptors

Cytoplasmic recruitment of Mdm2 as a common characteristic of G protein-coupled receptors that undergo desensitization

A novel molecular mechanism involved in the crosstalks between homologous and PKC-mediated heterologous regulatory pathway of dopamine D2 receptor

Weiquan Cai | Chemistry and Materials Science | Best Researcher Award

Weiquan Cai | Chemistry and Materials Science | Best Researcher Award

Prof Weiquan Cai, School of Chemistry and Chemical Engineering, Guangzhou University, China

Prof. Weiquan Cai: A Leading Contender for the Best Researcher Award.

Publication profile

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Academic and Professional Background

Prof. Weiquan Cai is a Distinguished Professor and Academic Leader at Guangzhou University, holding this position since 2017. He earned his BS in Chemical Technology from Wuhan Institute of Technology in 1995, an MS in Environmental Engineering from China University of Petroleum in 2002, and a PhD in Chemical Technology from the Institute of Process Engineering, Chinese Academy of Sciences in 2005. His postdoctoral research focused on Material Chemistry and Physics at Wuhan University of Technology, and he was a visiting scholar at Kent State University (2009-2010). In 2012, he joined Wuhan University of Technology as a professor in the School of Chemical Engineering.

Research and Innovations

Prof. Cai has led over 30 research projects funded by various government bodies and enterprises, including five from the National Natural Science Foundation of China and four from Guangdong Provincial Science and Technology Plan. His research includes notable industrial applications, such as a high-efficiency grease cleaning agent. He has published over 200 papers, with around 165 indexed by SCI, including nine Highly Cited Papers. His work has earned significant citations and includes over 115 national invention patents, with 60 granted. His research has led to advancements in materials and chemical engineering, evidenced by his recent publications in prominent journals like Fuel and Chemical Engineering Journal.

Books Published (ISBN)

Prof. Cai co-authored “Chemical Engineering Principles Experiment” (ISBN: 978-7-5629-3466-0), published by Wuhan University of Technology Press in 2011, alongside Guangxu Zhang and Xuanjun Wu.

Patents Published/Under Process

He holds more than 115 national invention patents, with 60 authorized, including one USA invention patent.

Recent Journal Publications

Sorptive-enhanced biogas steam reforming over Pb-modified Ni-CaO bifunctional catalysts (Fuel, 2024). Immobilization of Ni on MOF-derived CeO2 for low-temperature dry reforming of methane (Fuel, 2024). Preparation of poly (vinyl alcohol)/polydopamine/tannin acid coupling of heterogeneous advanced oxidation processes and photocatalysis (Chemical Engineering Journal, 2024).

Publication top notes

Coupling of heterogeneous advanced oxidation processes and photocatalysis in efficient degradation of tetracycline hydrochloride by Fe-based MOFs: Synergistic effect and …

Synthesis of hierarchical Ni (OH) 2 and NiO nanosheets and their adsorption kinetics and isotherms to Congo red in water

Facile synthesis of ordered mesoporous alumina and alumina-supported metal oxides with tailored adsorption and framework properties

Template-free synthesis of hierarchical spindle-like γ-Al 2 O 3 materials and their adsorption affinity towards organic and inorganic pollutants in water

Engineering Bismuth–Tin Interface in Bimetallic Aerogel with a 3D Porous Structure for Highly Selective Electrocatalytic CO2 Reduction to HCOOH

Synthesis of boehmite hollow core/shell and hollow microspheres via sodium tartrate-mediated phase transformation and their enhanced adsorption performance in water treatment

Preparation of amino-functionalized magnetic biochar with excellent adsorption performance for Cr (VI) by a mild one-step hydrothermal method from peanut hull

Rapid degradation of tetracycline hydrochloride by heterogeneous photocatalysis coupling persulfate oxidation with MIL-53 (Fe) under visible light irradiation

Preparation and properties of quaternary ammonium chitosan-g-poly (acrylic acid-co-acrylamide) superabsorbent hydrogels

 

Cristina Marcu | Environmental Science | Best Researcher Award

Cristina Marcu | Environmental Science | Best Researcher Award

Dr Cristina Marcu, National Institute for Research and Development of Isotopic and Molecular Technologies, Romania

Cristina Marcu, a dedicated chemist 🧪, specializes in adsorption studies using anion exchange resins. Her research, conducted at PIM Cluj-Napoca 🏛️, Romania, focuses on kinetics and thermodynamics of U(VI), Fe(III), and Cr(VI) adsorption. She has contributed significantly to understanding chemical exchange reactions and catalytic processes, presenting her findings at national and international conferences 🌍. Marcu’s work underscores her expertise in environmental chemistry and sustainable technologies, notably in uranium isotope enrichment and pollutant removal from aqueous solutions. Her collaborations with Damian Axente and Ancuţa Balla highlight her impactful contributions to the field. 📊

Publication profile

Scopus

Research focus

Based on the published papers, Cristina Marcu’s research focus revolves around environmental chemistry and chemical engineering, with a specialization in adsorption processes and oxidation reactions. Her work includes investigating adsorption isotherms and kinetics for various contaminants like chromium (VI) and uranium (VI), using materials such as anion exchange resins and Dowex-Marathon resin. Additionally, she explores the catalytic oxidation of carbon monoxide and processes related to isotope production and nitrogen separation. 🌿🔬 Her studies contribute to environmental management and industrial processes involving chemical reactions and materials science.

Publication top notes

Compensation Effect in Catalytic Oxidation of Carbon Monoxide

INVESTIGATION OF CARBON MONOXIDE (CO) OXIDATION PROCESS FOR CONVERTING 13CO TO 13CO2

Adsorption Isotherms and Thermodynamics for Chromium (VI) Using an Anion Exchange Resin

Adsorption Kinetics of Chromium (VI) from Aqueous Solution Using an Anion Exchange Resin

Determination of nitrogen losses in the sulfuric acid solution, waste of the 15N separation plant

The production of the isotope 15N by isotopic exchange in nitrox system at pressure

The calculus of the operation parameters at pressure of the primary separation column of the 15n production plant

The energy consumptions for thermo-catalytic conversion of sulphuric acid into sulfphur dioxide for its recycling in the 15N production plant

Study of Fe(III) adsorption onto Dowex-Marathon resin, as a rate determining step of the U(IV) oxidation in 235U enrichment column

Kinetic and thermodynamic studies of U(VI) adsorption using Dowex-Marathon resin

Zsuzsanna Izsvak | Biology and Life Sciences | Best Researcher Award

Zsuzsanna Izsvak | Biology and Life Sciences | Best Researcher Award

Prof Dr Zsuzsanna Izsvak, Max Delbruck Center for Molecular Medicine, Germany

Dr. Zsuzsanna Izsvák is a distinguished geneticist and the Permanent Group Leader of Mobile DNA at Max-Delbrück-Center in Berlin, Germany. Renowned for her pioneering work on the Sleeping Beauty transposon system 🧬, she has revolutionized gene therapy and genome engineering. With over 17,000 citations and an H-index of 67 📚, her research spans transposon-based genome manipulations, stem cell technology, and translational applications in cancer and gene therapy. Awarded the European Young Investigator Award, ERC Advanced Grants, and nominated for a Nobel Prize 🏆, Dr. Izsvák’s innovative contributions have had a profound impact on modern genetics.

Publiucation profile

google scholar

Education

In 1994, He earned my Ph.D. in Biology from the Hungarian Academy of Sciences. My post-doctoral journey included prestigious institutions such as the University of Minnesota and the Netherlands Cancer Institute in Amsterdam, NL. From 1991 to 1997, he served at the Hungarian Academy of Sciences, and from 1997 to 1999, He continued my research at the Medical University of Debrecen in Hungary. In 2011, He was recognized as an EMBO fellow and awarded a DSc. My academic focus has spanned Genetics, Molecular Biology, Molecular Genetics, and Human Genetics, culminating in my current role as a Professor 👩‍🔬📚🔬.

Honors

Dr Zsuzsanna Izsvak, a distinguished scientist in molecular biology, has garnered numerous accolades throughout a prolific career. Notable milestones include receiving the Excellence Award from the Hungarian Academy of Sciences in 1990 🏆, an EMBO long-term postdoctoral fellowship in 1996 🌍, and the prestigious EURYI European Young Investigator Award in 2004 🌟. Their groundbreaking work on SB100X earned them international acclaim, including the SB100X Molecule of the Year in 2009 and recognition from the European Society of Gene and Cell Therapy. Nominated for a Nobel Prize in 2011, Dr.  Zsuzsanna Izsvak continues to shape research, notably with ERC Advanced grants and leadership roles in scientific committees. Elected as a foreign member of the Hungarian Academy of Sciences in 2019, they now serve as President of the Dennis Gabor Gesellschaft since 2023 🌐.

Research focus

Based on their research focus, the authors primarily delve into the molecular characteristics, evolution, and applications of transposable elements (TEs), particularly the Sleeping Beauty (SB) transposon. Their work spans from fundamental studies elucidating the structural and functional domains of TEs to pioneering applications in genetic manipulation across vertebrate species, including humans. They explore how TEs like SB can be harnessed as genetic tools for stable gene transfer and long-term transgene expression, highlighting their potential in molecular therapy and genome engineering. This research is crucial for understanding TE biology and exploiting their utility in biotechnological and biomedical contexts. 🧬🔬

Publication top notes

Molecular reconstruction of Sleeping Beauty, a Tc1-like transposon from fish, and its transposition in human cells

Ten things you should know about transposable elements

Molecular evolution of a novel hyperactive Sleeping Beauty transposase enables robust stable gene transfer in vertebrates

Somatic integration and long-term transgene expression in normal and haemophilic mice using a DNA transposon system

Resident aliens: the Tc1/mariner superfamily of transposable elements

Sleeping Beauty, a wide host-range transposon vector for genetic transformation in vertebrates

Primate-specific endogenous retrovirus-driven transcription defines naive-like stem cells

Gibbon genome and the fast karyotype evolution of small apes

Transposon-mediated genome manipulation in vertebrates

Progress and prospects in rat genetics: a community view