Prof. Waldemar Kolanus leads the Molecular Immunology and Cell Biology department at the University of Bonn's Life & Medical Sciences Institute (LIMES) . His research bridges immunoregulation , stem cell dynamics , and metabolic stress responses in immune cells. Unit 2 member at LIMES Principal investigator in SFB 704 and ImmunoSensation Cluster Leads a multidisciplinary lab with postdocs, PhD students, and technical staff His work focuses on intracellular signaling pathways connecting immune activation to tissue homeostasis, particularly through: Cytohesin proteins in integrin-mediated adhesion and migration TRIM71 in stem cell regulation and congenital hydrocephalus High-salt environments affecting macrophage function Publication trends show expertise in immune cell migration , genetic models , and chemical inhibition , with frequent use of mice and zebrafish for in vivo studies. Key articles explore: TRIM71's dual role in auditory development and germ cell maintenance Cytohesin family's Golgi regulation and insulin signaling Ruxolitinib's off-target migration inhibition of dendritic cells Contact details: Address: LIMES Institute, Carl-Troll-Straße 31, Bonn Email: kolanus.sekretariat@uni-bonn.de Phone: +49 228 73-62788
Ueli Grossniklaus is an Ordinary Professor at the University of Zurich within the Faculty of Mathematical and Natural Sciences , affiliated with the Department of Plant and Microbiology . His work focuses on plant developmental biology, particularly epigenetic and genetic mechanisms governing reproduction and adaptation. Key Courses: Epigenetics, Plant Biology Workshop, Group Seminars on Current Research Laboratory Techniques: Advanced methods in plant cell mechanics, transcriptomics, and genome editing Research Interests span plant epigenetics, reproductive biology, and the interplay between environmental stress and genetic regulation. He investigates: Mechanistic control of gametogenesis and fertilization Epigenetic contributions to plant adaptation Evolutionary implications of asexual reproduction Biophysical forces in plant cell growth Publication Trends (2025–2018) reveal expertise in: Arabidopsis and fern model systems Epigenetic regulation (DNA methylation, histone dynamics) Apomixis and hybrid seed failure mechanisms Biomechanics of pollen tubes and carnivorous plants Genome editing tools (CRISPR) and long-read sequencing Scientific Collaborations include interdisciplinary projects on: Microfluidic devices for plant cell analysis Gene drive ecology and ethics 3D imaging of plant reproductive structures Advising and Grants focus on mentoring through research internships in developmental biology, genetics, and systems biology. His lab engages in: Epigenetic response to environmental stress Cell wall mechanics in reproduction Computational modeling of plant growth Laboratory Teams integrate plant biologists, bioengineers, and computational scientists to study: Mechanistic gene regulation Evolutionary developmental biology Microrobotics for cellular force measurement
Prof. Dr. med. Franz Lennard Ricklefs is a Senior Physician and Head of the Working Group at the Department of Neurosurgery, University of Hamburg Faculty of Medicine. He is a Medical Specialist in Neurosurgery with cross-disciplinary expertise in neuro-oncology, molecular pathology, and extracellular vesicle research. Affiliations: University Medical Center Hamburg-Eppendorf (UKE), European Liquid Biopsy Society (ELBS), International Consortium on Meningiomas (ICOM) Research Interests: His work focuses on neurosurgical oncology, particularly glioblastoma and meningioma pathobiology. He investigates DNA methylation patterns, extracellular vesicle biomarkers, and liquid biopsy implementation in clinical neuro-oncology. Additional interests include surgical outcomes for epilepsy and aneurysm management. Article Trends: Over the last decade, Dr. Ricklefs has published extensively on: Extracellular vesicle applications as liquid biopsy markers DNA methylation subclasses for glioblastoma and meningioma Multicenter surgical outcome benchmarking Immune evasion mechanisms in neuro-oncology Technological innovations in neurosurgical visualization Molecular characterization of rare CNS tumors Professional Contributions: He co-authored the MISEV2023 guidelines for extracellular vesicle studies and participates in international consensus reviews for meningioma classification. His collaborations span institutions across Europe and North America.
Miler T. Lee is an Associate Professor at the University of Pittsburgh , focusing on gene regulation during early embryonic development through high-throughput experimental and computational genomics. He earned his Ph.D. in Genomics and Computational Biology in 2009 from the University of Pennsylvania under Dr. Junhyong Kim, followed by postdoctoral work with Dr. Antonio Giraldez at Yale University. Joining the university in 2016, his research spans maternal-to-zygotic transition (MZT), RNA stability, pluripotency networks, and evolutionary developmental biology, utilizing model organisms like zebrafish, Xenopus, and Hydractinia symbiolongicarpus. Key Research Themes: Maternally inherited RNA dynamics during embryogenesis Mechanisms of RNA degradation and transcriptome remodeling Evolution of pluripotency networks in hybrid species Role of zinc signaling in fertilization barriers Computational tools for RNA regulation and sensing Scientific Awards: Pan-American Society for Evolutionary Developmental Biology Junior Faculty Award (2024) Outstanding New Investigator – International Xenopus Board (2023) Basil O'Connor Scholar – March of Dimes (2017-2019) Recent publications highlight his work on enhancer classification, RNA degradation mechanisms, and cross-species MZT comparisons. His lab develops innovative methods like RESA for regulatory sequence analysis and studies evolutionary divergence in RNA localization patterns. While the articles span computational and experimental approaches, they consistently address RNA's role in cellular identity, developmental timing, and evolutionary adaptation. Applications include understanding pluripotency, designing RNA biosensors, and elucidating fertilization barriers. Prospective Ph.D. students are encouraged to contact him for opportunities in gene regulation, development, evo-devo, and computational genomics.
Olga Kovalchuk is a Professor in the Department of Biological Sciences at the University of Lethbridge. She leads the Epigenetics of Health and Disease research laboratory, which is affiliated with the Southern Alberta Cancer Research Institute (SACRI) and Alberta Health Services/Alberta Cancer Foundation (AHS/ACF). Her research program has received significant funding including a $3.2 million Canada Foundation for Innovation (CFI) start-up grant and NSERC Discovery Grants. Dr. Kovalchuk's research focuses on the role of epigenetic mechanisms in health and disease, particularly in the context of radiation exposure and cancer. Her primary areas of investigation include epigenetic dysregulation in carcinogenesis, radiation epigenetics, DNA damage and repair mechanisms, and transgenerational effects of radiation exposure. She has made significant contributions to understanding how radiation-induced epigenetic changes affect genome stability, cancer development, and treatment responses. Analysis of her recent publications reveals a strong focus on microRNA regulation in cancer, sex-specific radiation responses, and the epigenetic basis of radiation-induced bystander effects. Her work demonstrates how epigenetic changes, particularly DNA methylation and microRNA expression patterns, mediate radiation responses in various tissues and can be transmitted across generations. Much of her research utilizes mouse models to investigate these mechanisms in vivo. Board of Governors Research Chair at University of Lethbridge CIHR Institute of Gender and Health Research Chair in New Perspectives in Gender, Sex and Health Canada Foundation for Innovation Start-up Funding ($3.2 Million) NSERC Discovery Grant recipient Editor's Choice Paper Award for research on radiation-induced bystander effects Cover Page feature for transgenerational radiation effects research Dr. Kovalchuk actively mentors numerous graduate students and postdoctoral fellows, with a research team comprising PhD students, MSc students, research assistants, and postdoctoral associates. Her laboratory collaborates extensively with researchers at MIT, Harvard University, and other institutions. She has secured significant grant funding including NSERC Discovery Grants and CFI start-up funds to support her research program investigating epigenetic mechanisms in radiation biology and cancer. Her laboratory, the Epigenetics of Health and Disease research group, maintains strong collaborations with the Southern Alberta Cancer Research Institute and has established partnerships with researchers across North America. Dr. Kovalchuk's work has important implications for understanding radiation risks, improving cancer therapies, and developing strategies to mitigate radiation damage.
Professor Susan Brooks is a faculty member at Oxford Brookes University in the School of Biological and Medical Sciences . Her research focuses on glycobiology , cancer progression , and the role of extracellular vesicles in metastasis. Professor of Cell Biology Director of Researcher Development Focus on breast and ovarian cancer Specialized in glycosylation mechanisms Research Interests : Dr. Brooks' work explores how aberrant glycosylation of proteins and glycans influences cancer cell behavior, including metastasis and drug resistance . Her recent studies examine extracellular vesicles as diagnostic tools and therapeutic targets. Article Trends : Over 25 years, Dr. Brooks has published 15+ articles on glycosylation patterns in breast and ovarian cancer. Key areas include lectin binding , miRNA regulation , and radiation-induced metastatic changes . Her work bridges cell biology and clinical applications .
Prof. Valentina Boeva is an Assistant Professor at the Department of Computer Science, ETH Zürich, specializing in biomedical informatics. Her research focuses on integrating machine learning and computational methods to address challenges in genomics, oncology, and precision medicine. She holds a position in the Professur für Biomedizininformatik (Biomedical Informatics) and is based at CAB G32.2, Universitätstrasse 6, Zürich, Switzerland. Her work emphasizes applications such as cancer biomarker discovery, tumor heterogeneity analysis, and epigenetic profiling. She teaches courses including Machine Learning Seminar, Data Science Lab, and Machine Learning for Genomics. Her research group develops computational tools like CDState and UniversalEPI to decode complex biological systems. She actively publishes in top-tier journals, with recent work on exosome-driven diagnostics and chromatin interaction modeling. Her scientific contributions span methodologies for single-cell data analysis, survival modeling, and drug response prediction. She collaborates across disciplines to bridge computational science with clinical applications in cancer research.
Matthew Ronshaugen is a Senior Lecturer in the Division of Developmental Biology & Medicine (L5) at the Faculty of Life Sciences, University of Manchester. He has held academic positions since 2007 as a Manchester Fellow, followed by Lecturer (2012-2017), and Senior Lecturer since 2017. 1991-1995: Bachelor of Arts in Philosophy and Linguistics, University of Nevada, Las Vegas 1995-1997: Master of Science in Systematics, University of Nevada, Las Vegas 1997-2002: Doctor of Philosophy in Cell and Molecular Biology, University of California, San Diego 2003-2007: Ruth L. Kirschstein NIH Postdoctoral Fellow at University of California, Berkeley His research focuses on non-coding RNAs (ncRNAs), particularly their roles in gene expression and developmental differentiation. His lab investigates how ncRNA evolution contributes to metazoan body plan diversification, centering on the Hox complex—a conserved genomic region rich in ncRNAs. He uses tiling microarrays and fluorescent in situ hybridization to analyze ncRNA dynamics in Drosophila, Tribolium, and Parhyale. Recent publications highlight his work on miRNA functions in embryonic development, aging-related changes in myeloid cells, and comparative transcriptomics across arthropods. His team employs genetics tools to dissect ncRNA roles in transcriptional regulation, epigenetic control, and silencing mechanisms. Scientific Awards: Ruth L. Kirschstein NIH Postdoctoral Fellow Manchester Fellow He supervises research on developmental transcriptomes and contributes to datasets on piRNA expression and Hox complex analysis. Collaborations span immunology, genomics, and evolutionary development, with outputs cited in fields like RNA interference, transgenics, and wound healing.
Andrea M. Baran, M.S. serves as a Senior Associate (Part-Time) in the Department of Biostatistics and Computational Biology at the University of Rochester School of Medicine and Dentistry. With expertise spanning biostatistics, oncology, and infectious diseases, she contributes significantly to clinical research across multiple medical disciplines through rigorous statistical analysis and methodological innovation. Her educational background includes: MS in Medical Statistics from University of Rochester School of Medicine & Dentistry (2009) BS in Cell Biology, Cytology from University of Rochester (2008) BA in Statistics from University of Rochester (2008) Ms. Baran's research focuses on biostatistical methodology applied to clinical medicine , with particular emphasis on oncology, hematology, and infectious disease applications. Her work bridges statistical theory with clinical practice, developing analytical approaches for complex medical data including gene expression patterns, clinical trial outcomes, and disease progression models. She has made significant contributions to studies examining miRNA analysis, clinical trial design, and biomarker development. Analysis of her recent publication record reveals a strong concentration on hematologic malignancies, particularly chronic lymphocytic leukemia and lymphoma, where she applies sophisticated statistical models to evaluate treatment efficacy, resistance mechanisms, and patient outcomes. Her work also extends to infectious disease research, where she develops statistical approaches for understanding host immune responses to respiratory viruses and other pathogens. While specific awards are not mentioned in available records, her extensive publication history in high-impact journals including Journal of Infectious Diseases , Blood Advances , and Genome Biology demonstrates significant recognition within her fields of expertise. Ms. Baran collaborates extensively with clinical researchers across the University of Rochester Medical Center, providing biostatistical leadership for numerous clinical trials and observational studies. Her work supports research initiatives in oncology, hematology, infectious diseases, and geriatric care, contributing to evidence-based medical practice through rigorous statistical analysis and interpretation of complex datasets. She is actively involved in multiple research teams studying hematologic malignancies, infectious diseases, and clinical trial methodology, where her biostatistical expertise helps shape research design, data collection protocols, and interpretation of findings for clinical application.
Professor Aideen Sullivan is Head of the Department of Anatomy and Neuroscience at University College Cork (UCC). With a career spanning over two decades at UCC, she leads research on neuroprotective therapies for Parkinson's disease, focusing on growth factors, stem cell applications, and epigenetic mechanisms. She established Ireland's first BSc in Neuroscience and co-developed the cross-College BSc in Medical and Health Sciences (CK707). BSc (First Class Honours) in Pharmacology, University College Dublin (1992) PhD in Neuropharmacology, University of Cambridge (1995) Her research program investigates Parkinson's disease through five key themes: viral vector delivery of neurotrophic factors, molecular mechanisms of neuroprotection, biomarker discovery, neuronal degeneration models, and stem cell-based treatments. She has secured significant grants from Health Research Board, Enterprise Ireland, and the Wellcome Trust. Recent publications (2022-2020) emphasize epigenetic regulation (HDAC inhibitors), microbiome-gut-brain axis interactions, and novel neurotrophic strategies. Articles highlight GDF5's neuroprotective effects, miRNA modulation, and molecular pathways like BMP-Smad and p38-MAPK. Scientific awards include: Postgraduate Certificate in Teaching and Learning (UCC, 2006) FETAC Certificate in Peer-Mentoring (2010) Leadership Foundation Aurora Programme Scholarship (2015) Over €2 million in research grants She mentors undergraduate and postgraduate students, chairs UCC's Athena SWAN 'Flexible Working' group, and serves as Editor-in-Chief of Neuronal Signaling . Her work spans laboratory research, public engagement, and educational innovation.
Ayesha Ali is a Professor of Statistics and Director of the Master of Data Science program at the University of Guelph. She holds a PhD in Statistics from the University of Washington (2002) and has expertise in statistical methods for complex high-dimensional systems, including ecological networks, causal inference, and bioinformatics. Her research integrates graphical Markov models, machine learning, and statistical computing to address challenges in plant-pollinator networks, livestock genetics, and disease risk modeling. Education: B.Sc. Honours in Statistics and Actuarial Science, University of Western Ontario (1996) M.Sc. in Statistics, University of Toronto (1998) Ph.D. in Statistics, University of Washington (2002) Research Interests: Graphical Markov models and ecological networks Causal inference and longitudinal data analysis Machine learning and high-dimensional predictive modeling Statistical methods for livestock genetics and animal health Computational statistics and bioinformatics Articles Trends: Her recent work spans interdisciplinary applications, including veterinary oncology biomarker discovery, remote sensing for agricultural suitability, and pipeline development for cross-species transcriptomics. She emphasizes graphical structure exploitation in regression and predictive modeling, with contributions to both theoretical and applied statistical methodologies. Awards: Canadian Journal of Statistics Award (2020) for groundbreaking work on doubly sparse regression NSERC Discovery Grant (2018) NSERC Collaborative Research and Development Grant (2015) Advising & Grants: She has supervised numerous graduate and undergraduate students on projects ranging from plant-pollinator network analysis to bioinformatics. Her grants include NSERC-funded research on milk fatty acid genetics and statistical methods for clustered data. Labs/Teams: Involved in the Bioinformatics program at the University of Guelph, contributing to interdisciplinary research collaborations in ecology and animal science.
Zhang Yang is an Associate Professor at the School of Medical Engineering, Harbin Institute of Technology (Shenzhen), with a joint appointment as Visiting Professor at the University of Tokyo starting in July 2024. He holds a PhD from the University of Cambridge's Department of Pathology and an M.Phil. from the University of Hong Kong's HKU-Pasteur Research Center. Previously, he served as an Assistant Professor at Harbin Institute of Technology (Shenzhen) from September 2015 to December 2020. His research integrates computational and experimental approaches to address challenges in pathogen and cancer research. On the computational side, his work focuses on developing AI-powered microscopic imaging systems, applying deep learning to analyze multi-omics data (including proteins, DNA, miRNAs, LncRNAs, and mRNAs), and utilizing deep learning in cheminformatics for drug discovery. On the experimental side, his laboratory combines imaging, high-throughput sequencing, mass spectrometry, and chemical biology to understand disease mechanisms at the molecular level. His publication record demonstrates significant impact, with over 50 SCI-indexed papers in high-impact journals including Nature Communications, Briefings in Bioinformatics, Bioinformatics, Analytical Chemistry, and Trends in Biotechnology. His work has been cited by prestigious journals such as Nature Reviews Methods Primers and Nature Communications, with three ESI highly cited papers. His research spans multiple interdisciplinary fields, combining artificial intelligence with biomedical applications to advance diagnostic and therapeutic approaches. World's Top 2% Scientists 2021 Fellow of the Royal Society of Biology Three ESI Highly Cited Papers Five authorized national invention patents As an academic leader, he serves as Associate Editor for BMC Biology and Frontiers in Microbiology, Academic Editor for PLOS Genetics, Editorial Board Member for Communications Biology, and Guest Editor for a Special Issue on AI in analytical chemistry in Trends in Analytical Chemistry. His laboratory actively collaborates with international institutions, with graduates pursuing further studies at Hong Kong Chinese University, Hong Kong University of Science and Technology, Hong Kong Polytechnic University, Macau University, and the University of New South Wales. He teaches Introduction to Modern Biology for undergraduates and Bioanalytical Chemistry for graduate students.
Wendy P. Robinson is a Professor in the Department of Medical Genetics at the University of British Columbia Faculty of Medicine , and a Senior Scientist at the BC Children’s Hospital Research Institute . She holds the CIHR Sex and Gender Science Chair . Research Interests: Genetics and epigenetics of early human development, placental function in pregnancy complications (fetal growth restriction, preterm birth), DNA methylation, non-coding RNA, sex differences, and polymorphisms. Her lab employs genomic and bioinformatic tools to study placental health and its impact on newborn outcomes. Recent Publications (2025-2024) focus on X-chromosome inactivation patterns in placenta, cell-type specific DNA methylation, maternal socioeconomic effects on placental epigenetics, and modeling placental development with organoids. Key themes include sex-specific epigenetic regulation , maternal-fetal interactions , and human placental methylome . Awards: UBC Faculty of Medicine Distinguished Achievement Award (2018), with trainees receiving the James Miller Memorial Prize and Mary-Jane Carroll Trainee Award. Students & Collaborations: Supervised PhD/MSc students include Li Qing Wang, Icíar Fernández Boyano, Giulia Del Gobbo, Victor Yuan, and Magda Price. Collaborators span the Alex Beristain Lab and University of Toronto institutions. Laboratory Activities: Regular team-building events like mountain hikes, climbing outings, and kayaking trips, alongside providing open access to epigenetic tools (e.g., Bisearch, SeqDoc) for the research community.
Dr. Li Yang is an Associate Professor in the Department of Plant Pathology at the University of Georgia's College of Agricultural & Environmental Sciences. Their research focuses on molecular mechanisms of plant immunity, plant growth-defense crosstalk, and plant disease management tools. Education : PhD in Genetics (University of Pennsylvania, 2011), MPhil in Plant Biology (Shanghai Jiao Tong University, 2005), BA in Biotechnology (Shanghai Jiao Tong University, 2002) Research interests span plant immunity regulation, stress-induced developmental changes, and microbial interactions. Key projects include salicylic acid signaling in regeneration suppression, calcite-dissolving bacteria for soil calcium mobilization, and age-dependent resistance mechanisms. Current work explores proteomic aspects of pattern-triggered immunity and spatial regulation of defense responses. The Yang Lab recently published 7 articles in 2024-2025 covering topics from evaporative cooling signals to wound healing and proteomic landscapes of immunity. Their 2023 publications focused on developmental-immunity tradeoffs, while 2022 work included novel cultivation systems for peanut pod studies. Scientific Awards Graduate School Summer Research Grant (awarded to Carter) 2nd place in Cleantech Symposium poster competition (Alan Peper) 2nd/3rd places at Plant Center Spring Symposium (Joseph Balem, Mariah Lee Arnold) Dr. Yang supervises an active research group with notable advisees including Alan Peper (published on bacterial communities), Sorrel Tran (root regeneration research), Lanxi Hu (age-related resistance), and postdoc Feng Kong (plant development-defense interplay).
Tim Jenkins, Ph.D., is an Adjunct Professor in the Department of Surgery, Division of Urology at the University of Utah. He earned a B.S. in Physiology and Developmental Biology from Brigham Young University (2008) and a Ph.D. in Physiology from the University of Utah (2013). After completing a postdoctoral fellowship at the University of Utah School of Medicine, he accepted an adjunct faculty position where he continues to pursue translational research in male reproductive health. Education Ph.D. in Physiology, University of Utah, 2013 B.S. in Physiology and Developmental Biology, Brigham Young University, 2008 Postdoctoral Fellowship, University of Utah School of Medicine Research Focus Jenkins’ research centers on the intersection of sperm epigenetics, male infertility, and assisted reproductive technologies. Key themes include: Impact of paternal age on the sperm epigenome and subsequent offspring health Development of microfluidic platforms for gentle, high-precision sperm selection to improve intrauterine insemination and TESE outcomes Epigenetic biomarkers as predictors of male fertility and embryo quality His work integrates molecular epigenetic profiling with innovative bioengineering approaches to translate laboratory findings into clinical practice. Publication Trends Jenkins has authored more than 30 peer-reviewed papers since 2011. Early work established baseline DNA methylation changes in aging sperm, while more recent studies expand into multi-omics meta-analyses, systematic reviews on miRNA roles in reproduction, and engineering microfluidic devices for sperm isolation. The trajectory shows a clear shift from descriptive epigenetic studies to translational technologies aimed at improving ART success rates. Intellectual Property & Editorial Contributions Co-inventor on patent: "Systems and Methods for Determining Impact of Age Related Changes in Sperm Epigenome on Offspring Phenotype" (2019) Editorial commentary: "Microfluidics: a way to interrogate a single sperm?" Fertil Steril (2019) Collaborative Teams Jenkins collaborates closely with investigators in the Departments of Surgery, Human Genetics, and Bioengineering at the University of Utah, notably with Drs. Carrell, Aston, Hotaling, and Cairns. His lab is embedded within the larger Utah Center for Reproductive Medicine, providing access to clinical samples for translational projects.