Graciela Castro Escarpulli | Biology and Life Sciences | Best Researcher Award

Graciela Castro Escarpulli | Biology and Life Sciences | Best Researcher Award

Prof. Dr Graciela Castro Escarpulli, Escuela Nacional de Ciencias Biológicas IPN, Mexico

Prof. Dr. Graciela Castro Escarpulli is a renowned professor and researcher at the National School of Biological Sciences, IPN, specializing in Medical Bacteriology and Molecular Biomedicine. She leads multiple research lines using conventional and molecular methods to identify infectious bacteria. With 145 undergraduate theses, 44 master’s, and 18 doctoral theses directed, her contributions include 114 publications, 33 book chapters, and 342 conference presentations. A pioneer in CRISPR-Cas for bacterial typing, she has received numerous awards, including the IPN Research Award and the Lázaro Cárdenas Medal. She is a member of the National System of Researchers (Level 2) since 2006. 🧬🔬📚🏅

Publication Profile

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Academic & Research Background

Prof. Dr. Graciela Castro Escarpulli is a distinguished professor and researcher at the National School of Biological Sciences, IPN. With expertise in diagnostic medical bacteriology and molecular biomedicine, she has significantly contributed to the field. Her research focuses on both conventional and molecular methods for identifying bacteria responsible for infectious diseases. Through her leadership, she has driven various research lines, advancing diagnostic techniques and improving public health outcomes. Prof. Dr. Castro Escarpulli’s work continues to have a profound impact on medical microbiology, enhancing our understanding of bacterial infections. 🧬🔬🦠👩‍🔬

Achievements & Recognition 

Prof. Dr. Graciela Castro Escarpulli is an accomplished academic with an impressive track record. She has supervised 145 bachelor’s theses, 44 master’s theses, and 18 doctoral theses. With 114 indexed papers, 33 book chapters, and 342 global presentations, her expertise spans multiple disciplines. Prof. Castro Escarpulli holds one international patent and has 849 sequences deposited in NCBI, showcasing her contributions to scientific research. Her work continues to make a significant impact in her field, both through academic achievements and innovation. 📚🎓🌍🧬🔬📑

Awards & Contributions 

Prof. Dr. Graciela Castro Escarpulli is a renowned researcher and a pioneer in using the CRISPR-Cas system for bacterial typing. She has received several prestigious awards, including the IPN Research Award, the National Technological Innovation Award, and the Lázaro Cárdenas Medal 🏅. Dr. Castro Escarpulli is highly regarded for her contributions to microbiology and biotechnology 🌱. As a frequent speaker at global conferences 🌍, she continues to influence scientific advancements in her field. Her work exemplifies innovation and dedication to improving scientific understanding, particularly in microbial genetics 🧬.

Research Focus

Prof. Dr. Graciela Castro Escarpulli’s research focuses on microbiology, particularly infectious diseases, and the study of pathogens through advanced genetic analysis techniques. Her work includes the use of massive sequencing to identify unusual bacteria in pyogenic liver abscesses, which may not be detected by classical culture methods. She also explores the genetic makeup of pathogens like Acinetobacter baumannii and Candida spp., as well as antimicrobial resistance in Escherichia coli. Her studies contribute to understanding disease mechanisms, improving diagnostics, and combating antimicrobial resistance. 🔬🦠💉🧬

Publication Top Notes

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

Alexander Cerwenka | Biology and Life Sciences | Best Researcher Award

Alexander Cerwenka | Biology and Life Sciences | Best Researcher Award

Dr Alexander Cerwenka, SNSB-ZSM, Germany

Dr. Alexander Cerwenka is a dedicated technical assistant at SNSB-Zoologische Staatssammlung München, overseeing the operation, maintenance, and supervision of light microscopy equipment, Micro-CT, and scanning electron microscope since August 2016. He also serves in the Evertebrata varia section. From October 2016 to May 2018, he was a scientific associate at SNSB, working on the “BioniCut” project for high-performance saw blades. Previously, he was a research associate at the Technical University of Munich, studying the invasion front of Neogobius melanostomus in the upper Danube River. 🌊🔬🦠🪚📊

Publication profile

google scholar

Education

2010-2014: Ph.D. in Aquatic System Biology 🐠 Research on evolutionary, population genomic, and ecological mechanisms of simultaneous invasion processes of two closely related fish species (Neogobius ssp.) in the upper Danube. 2008-2009: Preparation of DFG Application for Ph.D. 🎓 Focus: Evolutionary, population genomic, and ecological mechanisms of simultaneous invasion processes of two closely related fish species (Neogobius ssp.) in the upper Danube. 2002-2007: Studied Biology at the Technical University of Munich 📘

Experience

Since 8/2016: Technical Assistant 🔬 Managing all light microscopy equipment, micro-CT, and scanning electron microscopes. Since 8/2016: Technical Assistant in the Evertebrata varia section 🦋 10/2016-5/2018: Scientific Employee 🛠️
Project: “Bionically optimized high-performance saw blades for woodworking (BioniCut)”.

Awards

Rüdiger-Riehl-Preis 2015 🏆 In recognition of scientific achievements in the dissertation: “Phenotypic and genetic differentiation of invasive gobies in the upper Danube River.”

Research focus

Dr. Andreas F. Cerwenka’s research focuses on the ecology and invasion biology of aquatic species, particularly invasive gobies in European rivers. His studies explore the ecological impacts, dispersal patterns, and adaptive strategies of invasive species like the round goby (Neogobius melanostomus) and their effects on native ecosystems. Through field experiments and molecular analyses, Cerwenka investigates how environmental conditions and human activities influence the success and spread of these invasions. His work also includes evaluating methods for population assessment and the impacts of invasive species on native biodiversity. 🌊🔬🐟🌍📊

Publication top notes

Bigger is better: characteristics of round gobies forming an invasion front in the Danube River

Comparative feeding ecology of invasive Ponto-Caspian gobies

A systematic approach to evaluate the influence of environmental conditions on eDNA detection success in aquatic ecosystems

Effects of sampling techniques on population assessment of invasive round goby Neogobius melanostomus

Shell morphological versus genetic identification of quagga mussel (Dreissena bugensis) and zebra mussel (Dreissena polymorpha)

Invasion strategies in round goby (Neogobius melanostomus): Is bigger really better?

Synergistic impacts by an invasive amphipod and an invasive fish explain native gammarid extinction

Isotope evidence for preferential dispersal of fast-spreading invasive gobies along man-made river bank structures

Phenotypic differentiation of Ponto-Caspian gobies during a contemporary invasion of the upper Danube River

Population trends of invasive alien gobies in the upper Danube River: 10 years after first detection of the globally invasive round goby (Neogobius melanostomus)