Emine Ayaz is a Professor at Istanbul Technical University's Department of Electrical Engineering. Her research spans fault detection in electric motors, signal processing, and nuclear power plant monitoring, with recent work integrating deep learning (e.g., dual RNN architectures) and medical applications (e.g., parasitology, plant-based wound healing). Key Collaborations : International partnerships in motor diagnostics and nuclear engineering. Projects : Led grants on high-voltage training and predictive maintenance for TEİAŞ and industrial processes. Research Trends : Recent publications emphasize neural networks for motor fault classification, coherence analysis for insulation diagnostics, and interdisciplinary work in plant biotechnology and parasitology. Labs & Teams : Involved in projects analyzing vibration signals, wavelet transforms, and sensor fusion for industrial and nuclear systems.
Professor Patrick Steel is a faculty member at Durham University in the Department of Chemistry . His work spans Synthetic Organic Chemistry , Organosilicon Chemistry , and Chemical Biology , with applications in pharmaceuticals, agrochemicals, and parasitic disease treatment. Research Highlights: Developing C-H borylation methods for pharmaceutical intermediates Exploring silene cycloadditions for alkene functionalization Designing small molecule probes for plant and parasite biology Collaborating with Todd Marder (Würzburg) and others in synthetic biology Key Collaborations: Partnerships with pharmaceutical companies (GSK, Pfizer) and academic teams focus on novel antileishmanial compounds and herbicide resistance mechanisms . His group's organosilicon work intersects with collaborations on stereoselective synthesis and natural product analogs . Recent Publications (2025-2021) demonstrate expertise in transition metal catalysis , chemical probe development , and neglected disease research . The 2023 Leishmania proteomics and 2022 miltefosine studies show translational impact.
Dr. Elemir Simko is a Professor in the Department of Veterinary Pathology at the University of Saskatchewan, affiliated with Prairie Diagnostic Services. He holds a DVM from the University of Belgrade (Yugoslavia) and a DVSc from the University of Guelph, and is a Diplomate of the American College of Veterinary Pathologists. Since 1998, he has coordinated core anatomic pathology courses at both undergraduate and graduate levels. His research focuses on honey bee health, agricultural sustainability, comparative pathology, and innate immunity. Recent work includes studies on honey bee pathogen dynamics, pesticide impacts, and equine septic arthritis diagnostics using biomarkers. He collaborates extensively with researchers on investigative pathology and contributes to diagnostic services. Education: DVM (University of Belgrade), DVSc (University of Guelph), ACVP Diplomate Key Research Themes: Honey bee health, infectious disease pathogenesis, antimicrobial resistance, and diagnostic pathology Collaborations: Prairie Diagnostic Services, multiple veterinary and agricultural researchers Dr. Simko’s publications span veterinary pathology, honey bee health, and equine medicine. His recent articles highlight advancements in diagnostic techniques for septic arthritis in horses and interventions to mitigate honey bee colony threats. He has no listed awards but maintains active roles in teaching and applied research.
Prof. Torsten Ochsenreiter is a Group Leader at the Institute of Cell Biology, University of Bern, and part of the Multidisciplinary Center for Infectious Diseases (MCID). His research focuses on molecular parasitology, particularly on trypanosomes and malaria parasites, utilizing advanced microscopy techniques to study fundamental biological processes. His primary research interests include mitochondrial biogenesis, kinetoplast genome maintenance, RNA editing mechanisms, and cytoskeletal dynamics in Trypanosoma brucei . He investigates how mitochondrial DNA is segregated during cell division and how post-translational modifications regulate parasite transmission. His work bridges cell biology, structural biology, and infectious disease research to understand pathogenic mechanisms in neglected tropical diseases. Analysis of his recent publications reveals a consistent focus on the tripartite attachment complex (TAC), mitochondrial genome inheritance, and expansion microscopy applications. His research demonstrates how structural adaptations in parasite organelles enable survival and transmission, with significant implications for developing novel therapeutic strategies against African sleeping sickness and malaria. No scientific awards were mentioned in the provided text. Prof. Ochsenreiter advises students and leads an active research team at the University of Bern. The Ochsenreiter lab provides opportunities for undergraduate and graduate students to engage in cutting-edge parasitology research, though specific grant funding details were not provided in the text. The Ochsenreiter lab operates within the Institute of Cell Biology and specializes in molecular parasitology techniques including expansion microscopy, cryo-electron tomography, and genetic manipulation of trypanosomes. The team investigates mitochondrial biology and cytoskeletal organization to uncover vulnerabilities in parasite life cycles.
Jennifer Golden is an Associate Professor in the Department of Pharmaceutical Sciences at the School of Pharmacy , University of Wisconsin-Madison . Her research focuses on synthetic medicinal chemistry to develop novel antiviral and anti-parasitic agents for diseases like alphavirus infections and kinetoplastid parasites. The Golden Lab emphasizes chemical methodology development and structure-activity relationship analysis through collaborations assessing compound efficacy in cell and animal models . Research Projects Quinazolinone Rearrangement: Developing synthetic transformations for amidine formation and ring-fused scaffolds. Anti-Alphaviral Agents: Creating FDA-approved therapeutic candidates for mosquito-borne RNA viruses. Broad-Spectrum Antiparasitics: Optimizing compounds for malaria, African sleeping sickness, and leishmaniasis. Publications highlight her work on ML336 (anti-VEEV), quinazolinone derivatives , and collaborations with experts in high-throughput screening and structural biology . Her lab trains students in hit-to-lead optimization , regioselective synthesis , and medicinal chemistry tactics . Education: B.S. (1996) – Eastern Illinois University Ph.D. (2002) – University of Kansas Postdoctoral Research (2004) – Stanford University
Baoyu Chen is an Associate Professor in the Department of Internal Medicine at UT Southwestern Medical Center and a member of its Division of Digestive and Liver Diseases. He holds a bachelor's degree in chemical engineering from Hunan University (China), a master's in biochemistry and molecular biology from Tsinghua University (China), and a doctorate in chemical biology from Pennsylvania State University (USA). His research integrates biochemical, biophysical, computational, and structural approaches to investigate molecular mechanisms linking membrane signaling to cytoskeletal dynamics. Education: BSc in Chemical Engineering, Hunan University, China MS in Biochemistry & Molecular Biology, Tsinghua University, China PhD in Chemical Biology, Pennsylvania State University, USA Research Interests: Dr. Chen’s work focuses on protein assemblies regulating actin polymerization and endosomal trafficking (WAVE, WASH, CCC-Retriever, Retromer complexes) and their roles in cellular processes like migration, adhesion, immune activation, and neural development. His lab employs cryo-electron microscopy and collaborations with clinicians to uncover disease mechanisms. Recent Research Trends: His publications emphasize structural insights into WAVE complex activation, endosomal trafficking regulation, and pathogen hijacking of cytoskeletal systems. These studies span cell biology, structural biology, and synthetic biology applications. Scientific Awards: His work is supported by prestigious grants including the NIH MIRA NSF CAREER Award Professional Affiliations: Active member of American Heart Association American Society for Cell Biology Society for Neuroscience Laboratory: The Stone Chen Lab at UT Southwestern investigates membrane-to-cytoskeleton signaling and its implications in human disease. The lab collaborates with biologists and clinicians and welcomes opportunities for collaboration.
Stéphane Lair is a Full Professor at the Faculty of Veterinary Medicine , University of Montreal , leading the Department of Clinical Sciences . He serves as Director of the Québec Center for Wildlife Health (CQSAS) and regional director for the Canadian Cooperative Wildlife Health Centre. His expertise focuses on wildlife health, aquatic animal medicine, and exotic species welfare. Education: IPSAV in Avian Pathology (1989) DVM from University of Montreal (1990) Residency in General Pathology (1995) DVSc in Zoo Animal Medicine (1998, University of Guelph) ACZM Diplomate (1999) His research investigates human impacts on wildlife health, including contaminant effects on marine mammals like belugas, and disease ecology in caribou and lemur populations. He leads projects funded by agencies like Fisheries and Oceans Canada and the American Association of Zoo Veterinarians. Recent work includes studying beluga body condition via 'omics techniques, toxin exposure in cetaceans, and pharmacokinetics in exotic species. Over 20 students have been supervised in topics ranging from beluga necropsy trends to analgesia in pigeons. Collaborations include the Nunavik Trichinellosis Prevention Program and studies on Besnoitia tarandi in caribou. His lab actively addresses wildlife health challenges in changing ecosystems, emphasizing conservation and veterinary medicine intersections.
Professor Pilar Fernandez-Ibanez is a distinguished Professor in Environmental Engineering at Ulster University's School of Engineering. She previously served as Head of Group at Plataforma Solar de Almería of CIEMAT in Spain before joining Ulster University. Her academic career spans multiple institutions across Spain and the UK, with a strong focus on solving global water challenges. She holds a PhD in Applied Physics (2004) and a Bachelor's degree in Theoretical Physics (1994), both from the University of Granada. Her professional journey includes significant roles at CIEMAT as Research Assistant, Research Fellow, Senior Researcher, and ultimately Head of Group. Professor Fernandez-Ibanez's research primarily focuses on low-cost technologies for water purification, photochemical and advanced oxidation processes for removing microbiological pathogens and hazardous chemical contaminants, and decentralized technologies for drinking water in developing communities. Her work directly contributes to UN Sustainable Development Goals related to clean water and sanitation. Her extensive publication record includes 182 peer-reviewed articles with an h-index of 60 and over 12,000 citations. Her research output demonstrates consistent growth and impact, with recent publications focusing on household-based water disinfection systems, UVC-LED radiation efficacy, and nanomechanical biosensing technologies. Member of the Royal Irish Academy (2024) Fellow of the Institute of Physics-UK and Ireland Fellow of the Higher Education Academy-UK Distinguished Research Awards 2021 University Champion Top 2% of scientists most-cited worldwide (2019) Finalist in the WISE awards 2019 on gender balance in STEM Professor Fernandez-Ibanez has secured substantial research funding, including serving as Principal Investigator on two H2020 projects (REWATERGY and PANIWATER) and a Royal Society International Collaboration Award. She is currently involved in multiple active projects including the AHRC-funded Green Transition Ecosystem and SAFEWATER initiatives. She also serves as Regional Editor for Europe of the Journal of Photochemistry & Photobiology and associate editor for the Journal of Environmental Chemical Engineering. She actively participates in international collaborations, serving as Ireland's representative to the International Union of Pure and Applied Physics (IUPAP) committee on physics for development. Her research group at Ulster University focuses on developing practical water treatment solutions with real-world impact, particularly for underserved communities.
Dr. Vikram Sharma serves as Associate Professor in Biomedical Sciences and Head of Proteomics Core Laboratory at University of Plymouth's School of Biomedical Sciences. His research focuses on proteomics, molecular biology, and biomedical applications including cancer biology, infectious diseases, and neuro-oncology. Research interests span proteomic analysis of neurological tumors, mitochondrial dysfunction in viral infections, ubiquitin pathways in parasitic diseases, and kinase signaling in cancer. Recent work explores COVID-19's oral health impacts, meningioma stratification, and malaria parasite development. Teaching responsibilities include lecturing in Molecular Biology (BIOM5001), Proteomics (BIOM5006), Human Metabolism (BHCS2020), and supervising undergraduate/postgraduate projects. Module leadership covers genomics, transcriptomics and proteomics in the MSc Biomedical Sciences program.
Andrew J. Roger is a Professor in the Department of Biochemistry and Molecular Biology at Dalhousie University, Faculty of Medicine. His primary roles include academic research and leadership as the Founding Director of the Institute for Comparative Genomics (ICG) and Canada Research Chair in Comparative Genomics. He has been a department member since 2001. Education: PhD in Biochemistry from Dalhousie University Affiliations: Dalhousie University, Department of Biochemistry and Molecular Biology; Institute for Comparative Genomics (ICG) His research focuses on genome evolution, particularly in eukaryotic protists. Key interests include: Phylogenomics of eukaryotic super-kingdoms like Excavata Comparative genomics of anaerobic protists and lateral gene transfer (LGT) Evolution of mitochondria, hydrogenosomes, and mitosomes Modeling molecular evolution with computational tools Recent publications (2021–2023) highlight studies on protist organelle evolution, genomic adaptation mechanisms, and novel phylogenetic methods. His lab includes graduate students and postdocs actively researching these areas. He collaborates extensively with statisticians and computational biologists. Lab Members: Tugba Nur Atalay, Min Cho, Marlena Dlutek, Katherine Dunn, Ryo Harada, Joran Martijn, Charley McCarthy, Greg Seaton, Jason Shao, Kelsey Williamson, and others.
Pallavi Singh is an Associate Research Scientist at Yale School of Medicine's Department of Internal Medicine, specializing in infectious diseases including malaria and babesiosis. Her research focuses on understanding host-parasite interactions, vector-borne disease transmission mechanisms, and developing diagnostic tools and therapies. She holds a PhD in Parasite and Insect Vectors from Institut Pasteur (2017) and an MSc in Genetics from University of Delhi (2012). Key research areas include Babesia species pathogenesis, polyamine metabolism in parasites, and multi-omics approaches to identify drug targets. Collaborates extensively with teams studying malaria and tick-borne diseases. Has developed novel culture systems for Babesia parasites and fluorescent assays for enzyme activity measurements. Her work bridges basic science and translational medicine, addressing critical gaps in understanding and combating vector-borne infections.
Nolwenn Dheilly is a researcher at the Pasteur Institute in Paris, France, contributing to studies on emerging infectious diseases, particularly in the areas of virology, parasitology, and microbiome science. She is actively involved in pathogen discovery and molecular characterization of viruses and parasites, with a focus on zoonotic agents and host-pathogen interactions. Her research interests span Virology , Parasitology , Microbiome , Emerging Infectious Diseases , Zoonoses , Metagenomics , Molecular Virology , and Host-Pathogen Interactions . Her work integrates molecular biology, genomics, and ecological perspectives to understand how microbial communities influence parasitic life cycles and disease transmission. The recent publications highlight a strong trend in viral discovery and classification, including work on Jingchuvirales, circoviruses, and flaviviruses like West Nile and tick-borne encephalitis virus. Her research also explores the virome of parasites and the role of symbiotic microbes in helminth evolution. These studies are critical for advancing diagnostics, understanding disease emergence, and informing public and veterinary health strategies. Scientific Awards: No awards listed in the provided text. Advising and Grants: No formal students or grants are mentioned in the available information. However, her collaborative work across multiple institutions and projects, including Labex IBEID and ANR PREZODE AMAZED, suggests active participation in funded research initiatives and interdisciplinary teams. Labs and Teams: She is part of a research group at the Pasteur Institute led by Marc Eloit, focusing on pathogen discovery and metagenomics. Her collaborations extend to teams working on veterinary virology, arboviruses, and parasitic microbiomes, indicating integration within a broad network of infectious disease research.
Sonia M. Altizer is a Professor and Department Head of Entomology at the University of Georgia's College of Agricultural and Environmental Sciences. Her research focuses on the intersection of insect ecology, animal migrations, and the ecology of infectious diseases in natural populations. With a Ph.D. from the University of Minnesota and a B.S. from Duke University, she has established herself as a leading expert on monarch butterfly migration and disease dynamics. Her work combines field studies, laboratory experiments, and mathematical modeling to understand host-parasite interactions in migratory systems. Ph.D. – University of Minnesota B.S. – Duke University Dr. Altizer investigates how migration affects disease transmission in wildlife populations, with particular emphasis on monarch butterflies and their protozoan parasites. Her research explores the evolution of host resistance, parasite virulence, and the impacts of climate change and anthropogenic factors on these interactions. She has pioneered studies on tropical milkweed's role in monarch disease risk and developed conservation strategies for declining migratory species. Dr. Altizer's recent articles examine thermal tolerance in butterfly-parasite systems, migratory phenology shifts, and the consequences of resource supplementation for disease dynamics. These publications consistently address climate change effects, pesticide impacts, and conservation-oriented solutions across ecological, evolutionary, and epidemiological contexts. 2025: UGA Distinguished Research Professor 2024: Fellow, Ecological Society of America 2020: AAAS Fellow 2018: Lamar Dodd Creative Research Award 2016: Lothar Tresp Outstanding Honors Professor 2014: UGA Athletic Association Professor of Ecology 2008: Presidential Early Career Award in Science and Engineering (PECASE) 2008: UGA Award for Teaching Excellence As head of the Altizer Lab (altizerlab.org), she leads interdisciplinary research teams investigating migratory animal health, with applications to conservation policy and practice. Her work has shaped understanding of how human-altered landscapes affect disease risks in wildlife populations, particularly for pollinators like monarch butterflies.
Professor Sir Michael Ferguson is the Regius Professor of Life Sciences at the University of Dundee and an Interim Dean of the School of Life Sciences. He is a Fellow of the Royal Society (FRS), Royal Society of Edinburgh (FRSE), Academy of Medical Sciences (FMedSci), and Royal Society of Biology (FRSB). Education : BSc in Biochemistry, University of Manchester (1976-1979) PhD in Biochemistry, University of London (1979-1982) His research focuses on the biochemistry of protozoan parasites causing tropical diseases such as human African Sleeping Sickness, Chagas' disease, and leishmaniasis. He emphasizes the Biology/Chemistry interface and translational research, co-founding the Drug Discovery Unit and directing the Dundee Proteomics Facility . His work on glycosylphosphatidylinositol (GPI) membrane anchors has transformed understanding of eukaryotic biology. Recent publications highlight advancements in antimicrobial resistance , serology standards for SARS-CoV-2 , and mechanochemical drug formulation . He contributes to UN Sustainable Development Goals in Health and Life Sciences . Scientific Awards : Royal Society Leeuwenhoek Medal (2025) Biochemical Society Morton Lecture (2024) Knight Bachelor (2019) Colworth Medal (1991) Howard Hughes International Scholar (1993) He serves on the boards of UK Biobank , Medicines Discovery Catapult , and chairs PhaSER Bio . During the pandemic, he advised the UK government on antibody testing and national core studies.
Mark van der Giezen is a Professor of Biological Chemistry at the University of South-Eastern Norway, affiliated with the Faculty of Science and Technology and the Department of Chemistry, Life Sciences and Environmental Technology. His research focuses on microbial interactions with hosts, particularly in gut environments, and their implications for human and animal health. Key areas include pathogen biology (e.g., Giardia, Entamoeba, Blastocystis), food security through livestock and fisheries pathogen studies (Aphanomyces, Fasciola hepatica), and collaborations with institutions like the National Lobster Hatchery and Cefas to study lobster microbiome health. He has published in high-impact journals such as Nature and Current Biology, with work on anaerobic adaptations and novel pathogens in crustaceans. Education details are not explicitly stated in the provided text. His research integrates biochemistry, genomics, and microbial ecology, addressing topics like anaerobic energy metabolism, host-microbe symbiosis, and the role of microbiomes in health and disease. Current projects include understanding microbial responses to low oxygen conditions and developing drug targets against gut pathogens. His work on crayfish plague (Aphanomyces astaci) and lobster pathogens has advanced diagnostic methods, while collaborations on microbiome influences on epigenetics and cardiovascular health highlight interdisciplinary approaches. He leads projects on the lobster gut microbiome and has discovered new pathogens affecting European lobster populations. Despite no explicitly listed awards, his contributions to microbial evolution and anaerobic biology are internationally recognized. Grant and advising details are not provided, but his lab’s focus on aquatic and terrestrial pathogen systems suggests active research funding. The lab collaborates globally, emphasizing applied microbiology for food security and environmental health.